blob: 1c76dbb38635a5d63cc6d98f5d1bd159ad019d99 [file] [log] [blame]
Michael Wrightd02c5b62014-02-10 15:10:22 -08001/*
2 * Copyright (C) 2005 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
Mark Salyzyn5aa26b22014-06-10 13:07:44 -070017#include <assert.h>
18#include <dirent.h>
19#include <errno.h>
20#include <fcntl.h>
21#include <inttypes.h>
22#include <memory.h>
23#include <stdint.h>
24#include <stdio.h>
25#include <stdlib.h>
26#include <string.h>
Siarhei Vishniakou7a522bf2019-09-24 12:46:29 +010027#include <sys/capability.h>
Mark Salyzyn5aa26b22014-06-10 13:07:44 -070028#include <sys/epoll.h>
Mark Salyzyn5aa26b22014-06-10 13:07:44 -070029#include <sys/inotify.h>
30#include <sys/ioctl.h>
Prabir Pradhanda7c00c2019-08-29 14:12:42 -070031#include <sys/limits.h>
Kim Low03ea0352020-11-06 12:45:07 -080032#include <sys/stat.h>
33#include <sys/sysmacros.h>
Mark Salyzyn5aa26b22014-06-10 13:07:44 -070034#include <unistd.h>
35
Michael Wrightd02c5b62014-02-10 15:10:22 -080036#define LOG_TAG "EventHub"
37
38// #define LOG_NDEBUG 0
Kim Low03ea0352020-11-06 12:45:07 -080039#include <android-base/file.h>
Siarhei Vishniakouf93fcf42017-11-22 16:00:14 -080040#include <android-base/stringprintf.h>
Chris Yed3fef462021-03-07 17:10:08 -080041#include <android-base/strings.h>
Philip Quinn39b81682019-01-09 22:20:39 -080042#include <cutils/properties.h>
Chris Ye8594e192020-07-14 10:34:06 -070043#include <input/KeyCharacterMap.h>
44#include <input/KeyLayoutMap.h>
45#include <input/VirtualKeyMap.h>
Dan Albert677d87e2014-06-16 17:31:28 -070046#include <openssl/sha.h>
Chris Yed3fef462021-03-07 17:10:08 -080047#include <statslog.h>
Prabir Pradhanda7c00c2019-08-29 14:12:42 -070048#include <utils/Errors.h>
Michael Wrightd02c5b62014-02-10 15:10:22 -080049#include <utils/Log.h>
50#include <utils/Timers.h>
Michael Wrightd02c5b62014-02-10 15:10:22 -080051
Chris Ye8594e192020-07-14 10:34:06 -070052#include <filesystem>
Chris Ye3fdbfef2021-01-06 18:45:18 -080053#include <regex>
Chris Ye8594e192020-07-14 10:34:06 -070054
55#include "EventHub.h"
Michael Wrightd02c5b62014-02-10 15:10:22 -080056
Michael Wrightd02c5b62014-02-10 15:10:22 -080057#define INDENT " "
58#define INDENT2 " "
59#define INDENT3 " "
60
Siarhei Vishniakouf93fcf42017-11-22 16:00:14 -080061using android::base::StringPrintf;
Chris Ye1b0c7342020-07-28 21:57:03 -070062using namespace android::flag_operators;
Siarhei Vishniakouf93fcf42017-11-22 16:00:14 -080063
Michael Wrightd02c5b62014-02-10 15:10:22 -080064namespace android {
65
Prabir Pradhanda7c00c2019-08-29 14:12:42 -070066static const char* DEVICE_PATH = "/dev/input";
Siarhei Vishniakou951f3622018-12-12 19:45:42 -080067// v4l2 devices go directly into /dev
Prabir Pradhanda7c00c2019-08-29 14:12:42 -070068static const char* VIDEO_DEVICE_PATH = "/dev";
Michael Wrightd02c5b62014-02-10 15:10:22 -080069
Chris Ye657c2f02021-05-25 16:24:37 -070070static constexpr size_t OBFUSCATED_LENGTH = 8;
71
Chris Ye87143712020-11-10 05:05:58 +000072static constexpr int32_t FF_STRONG_MAGNITUDE_CHANNEL_IDX = 0;
73static constexpr int32_t FF_WEAK_MAGNITUDE_CHANNEL_IDX = 1;
Chris Ye6393a262020-08-04 19:41:36 -070074
Chris Yee2b1e5c2021-03-10 22:45:12 -080075// Mapping for input battery class node IDs lookup.
76// https://www.kernel.org/doc/Documentation/power/power_supply_class.txt
77static const std::unordered_map<std::string, InputBatteryClass> BATTERY_CLASSES =
78 {{"capacity", InputBatteryClass::CAPACITY},
79 {"capacity_level", InputBatteryClass::CAPACITY_LEVEL},
80 {"status", InputBatteryClass::STATUS}};
81
82// Mapping for input battery class node names lookup.
83// https://www.kernel.org/doc/Documentation/power/power_supply_class.txt
84static const std::unordered_map<InputBatteryClass, std::string> BATTERY_NODES =
85 {{InputBatteryClass::CAPACITY, "capacity"},
86 {InputBatteryClass::CAPACITY_LEVEL, "capacity_level"},
87 {InputBatteryClass::STATUS, "status"}};
88
Kim Low03ea0352020-11-06 12:45:07 -080089// must be kept in sync with definitions in kernel /drivers/power/supply/power_supply_sysfs.c
90static const std::unordered_map<std::string, int32_t> BATTERY_STATUS =
91 {{"Unknown", BATTERY_STATUS_UNKNOWN},
92 {"Charging", BATTERY_STATUS_CHARGING},
93 {"Discharging", BATTERY_STATUS_DISCHARGING},
94 {"Not charging", BATTERY_STATUS_NOT_CHARGING},
95 {"Full", BATTERY_STATUS_FULL}};
96
97// Mapping taken from
98// https://gitlab.freedesktop.org/upower/upower/-/blob/master/src/linux/up-device-supply.c#L484
99static const std::unordered_map<std::string, int32_t> BATTERY_LEVEL = {{"Critical", 5},
100 {"Low", 10},
101 {"Normal", 55},
102 {"High", 70},
103 {"Full", 100},
104 {"Unknown", 50}};
105
Chris Ye3fdbfef2021-01-06 18:45:18 -0800106// Mapping for input led class node names lookup.
107// https://www.kernel.org/doc/html/latest/leds/leds-class.html
108static const std::unordered_map<std::string, InputLightClass> LIGHT_CLASSES =
109 {{"red", InputLightClass::RED},
110 {"green", InputLightClass::GREEN},
111 {"blue", InputLightClass::BLUE},
112 {"global", InputLightClass::GLOBAL},
113 {"brightness", InputLightClass::BRIGHTNESS},
114 {"multi_index", InputLightClass::MULTI_INDEX},
115 {"multi_intensity", InputLightClass::MULTI_INTENSITY},
116 {"max_brightness", InputLightClass::MAX_BRIGHTNESS}};
117
118// Mapping for input multicolor led class node names.
119// https://www.kernel.org/doc/html/latest/leds/leds-class-multicolor.html
120static const std::unordered_map<InputLightClass, std::string> LIGHT_NODES =
121 {{InputLightClass::BRIGHTNESS, "brightness"},
122 {InputLightClass::MULTI_INDEX, "multi_index"},
123 {InputLightClass::MULTI_INTENSITY, "multi_intensity"}};
124
125// Mapping for light color name and the light color
126const std::unordered_map<std::string, LightColor> LIGHT_COLORS = {{"red", LightColor::RED},
127 {"green", LightColor::GREEN},
128 {"blue", LightColor::BLUE}};
129
Michael Wrightd02c5b62014-02-10 15:10:22 -0800130static inline const char* toString(bool value) {
131 return value ? "true" : "false";
132}
133
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +0100134static std::string sha1(const std::string& in) {
Dan Albert677d87e2014-06-16 17:31:28 -0700135 SHA_CTX ctx;
136 SHA1_Init(&ctx);
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +0100137 SHA1_Update(&ctx, reinterpret_cast<const u_char*>(in.c_str()), in.size());
Dan Albert677d87e2014-06-16 17:31:28 -0700138 u_char digest[SHA_DIGEST_LENGTH];
139 SHA1_Final(digest, &ctx);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800140
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +0100141 std::string out;
Dan Albert677d87e2014-06-16 17:31:28 -0700142 for (size_t i = 0; i < SHA_DIGEST_LENGTH; i++) {
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +0100143 out += StringPrintf("%02x", digest[i]);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800144 }
145 return out;
146}
147
Siarhei Vishniakou951f3622018-12-12 19:45:42 -0800148/**
149 * Return true if name matches "v4l-touch*"
150 */
Chris Ye8594e192020-07-14 10:34:06 -0700151static bool isV4lTouchNode(std::string name) {
152 return name.find("v4l-touch") != std::string::npos;
Siarhei Vishniakou951f3622018-12-12 19:45:42 -0800153}
154
Philip Quinn39b81682019-01-09 22:20:39 -0800155/**
156 * Returns true if V4L devices should be scanned.
157 *
158 * The system property ro.input.video_enabled can be used to control whether
159 * EventHub scans and opens V4L devices. As V4L does not support multiple
160 * clients, EventHub effectively blocks access to these devices when it opens
Siarhei Vishniakou29f88492019-04-05 14:11:43 -0700161 * them.
162 *
163 * Setting this to "false" would prevent any video devices from being discovered and
164 * associated with input devices.
165 *
166 * This property can be used as follows:
167 * 1. To turn off features that are dependent on video device presence.
168 * 2. During testing and development, to allow other clients to read video devices
169 * directly from /dev.
Philip Quinn39b81682019-01-09 22:20:39 -0800170 */
171static bool isV4lScanningEnabled() {
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700172 return property_get_bool("ro.input.video_enabled", true /* default_value */);
Philip Quinn39b81682019-01-09 22:20:39 -0800173}
174
Siarhei Vishniakou592bac22018-11-08 19:42:38 -0800175static nsecs_t processEventTimestamp(const struct input_event& event) {
176 // Use the time specified in the event instead of the current time
177 // so that downstream code can get more accurate estimates of
178 // event dispatch latency from the time the event is enqueued onto
179 // the evdev client buffer.
180 //
181 // The event's timestamp fortuitously uses the same monotonic clock
182 // time base as the rest of Android. The kernel event device driver
183 // (drivers/input/evdev.c) obtains timestamps using ktime_get_ts().
184 // The systemTime(SYSTEM_TIME_MONOTONIC) function we use everywhere
185 // calls clock_gettime(CLOCK_MONOTONIC) which is implemented as a
186 // system call that also queries ktime_get_ts().
187
188 const nsecs_t inputEventTime = seconds_to_nanoseconds(event.time.tv_sec) +
189 microseconds_to_nanoseconds(event.time.tv_usec);
190 return inputEventTime;
191}
192
Kim Low03ea0352020-11-06 12:45:07 -0800193/**
194 * Returns the sysfs root path of the input device
195 *
196 */
Chris Ye3fdbfef2021-01-06 18:45:18 -0800197static std::optional<std::filesystem::path> getSysfsRootPath(const char* devicePath) {
Kim Low03ea0352020-11-06 12:45:07 -0800198 std::error_code errorCode;
199
200 // Stat the device path to get the major and minor number of the character file
201 struct stat statbuf;
202 if (stat(devicePath, &statbuf) == -1) {
203 ALOGE("Could not stat device %s due to error: %s.", devicePath, std::strerror(errno));
Chris Ye3fdbfef2021-01-06 18:45:18 -0800204 return std::nullopt;
Kim Low03ea0352020-11-06 12:45:07 -0800205 }
206
207 unsigned int major_num = major(statbuf.st_rdev);
208 unsigned int minor_num = minor(statbuf.st_rdev);
209
210 // Realpath "/sys/dev/char/{major}:{minor}" to get the sysfs path to the input event
211 auto sysfsPath = std::filesystem::path("/sys/dev/char/");
212 sysfsPath /= std::to_string(major_num) + ":" + std::to_string(minor_num);
213 sysfsPath = std::filesystem::canonical(sysfsPath, errorCode);
214
215 // Make sure nothing went wrong in call to canonical()
216 if (errorCode) {
217 ALOGW("Could not run filesystem::canonical() due to error %d : %s.", errorCode.value(),
218 errorCode.message().c_str());
Chris Ye3fdbfef2021-01-06 18:45:18 -0800219 return std::nullopt;
Kim Low03ea0352020-11-06 12:45:07 -0800220 }
221
222 // Continue to go up a directory until we reach a directory named "input"
223 while (sysfsPath != "/" && sysfsPath.filename() != "input") {
224 sysfsPath = sysfsPath.parent_path();
225 }
226
227 // Then go up one more and you will be at the sysfs root of the device
228 sysfsPath = sysfsPath.parent_path();
229
230 // Make sure we didn't reach root path and that directory actually exists
231 if (sysfsPath == "/" || !std::filesystem::exists(sysfsPath, errorCode)) {
232 if (errorCode) {
233 ALOGW("Could not run filesystem::exists() due to error %d : %s.", errorCode.value(),
234 errorCode.message().c_str());
235 }
236
237 // Not found
Chris Ye3fdbfef2021-01-06 18:45:18 -0800238 return std::nullopt;
Kim Low03ea0352020-11-06 12:45:07 -0800239 }
240
241 return sysfsPath;
242}
243
244/**
Chris Ye3fdbfef2021-01-06 18:45:18 -0800245 * Returns the list of files under a specified path.
Kim Low03ea0352020-11-06 12:45:07 -0800246 */
Chris Ye3fdbfef2021-01-06 18:45:18 -0800247static std::vector<std::filesystem::path> allFilesInPath(const std::filesystem::path& path) {
248 std::vector<std::filesystem::path> nodes;
249 std::error_code errorCode;
250 auto iter = std::filesystem::directory_iterator(path, errorCode);
251 while (!errorCode && iter != std::filesystem::directory_iterator()) {
252 nodes.push_back(iter->path());
253 iter++;
254 }
255 return nodes;
256}
257
258/**
259 * Returns the list of files under a specified directory in a sysfs path.
260 * Example:
261 * findSysfsNodes(sysfsRootPath, SysfsClass::LEDS) will return all led nodes under "leds" directory
262 * in the sysfs path.
263 */
264static std::vector<std::filesystem::path> findSysfsNodes(const std::filesystem::path& sysfsRoot,
265 SysfsClass clazz) {
266 std::string nodeStr = NamedEnum::string(clazz);
267 std::for_each(nodeStr.begin(), nodeStr.end(),
268 [](char& c) { c = std::tolower(static_cast<unsigned char>(c)); });
269 std::vector<std::filesystem::path> nodes;
270 for (auto path = sysfsRoot; path != "/" && nodes.empty(); path = path.parent_path()) {
271 nodes = allFilesInPath(path / nodeStr);
272 }
273 return nodes;
274}
275
276static std::optional<std::array<LightColor, COLOR_NUM>> getColorIndexArray(
277 std::filesystem::path path) {
278 std::string indexStr;
279 if (!base::ReadFileToString(path, &indexStr)) {
280 return std::nullopt;
281 }
282
283 // Parse the multi color LED index file, refer to kernel docs
284 // leds/leds-class-multicolor.html
285 std::regex indexPattern("(red|green|blue)\\s(red|green|blue)\\s(red|green|blue)[\\n]");
286 std::smatch results;
287 std::array<LightColor, COLOR_NUM> colors;
288 if (!std::regex_match(indexStr, results, indexPattern)) {
289 return std::nullopt;
290 }
291
292 for (size_t i = 1; i < results.size(); i++) {
293 const auto it = LIGHT_COLORS.find(results[i].str());
294 if (it != LIGHT_COLORS.end()) {
295 // intensities.emplace(it->second, 0);
296 colors[i - 1] = it->second;
Kim Low03ea0352020-11-06 12:45:07 -0800297 }
298 }
Chris Ye3fdbfef2021-01-06 18:45:18 -0800299 return colors;
Kim Low03ea0352020-11-06 12:45:07 -0800300}
301
Michael Wrightd02c5b62014-02-10 15:10:22 -0800302// --- Global Functions ---
303
Chris Ye1b0c7342020-07-28 21:57:03 -0700304Flags<InputDeviceClass> getAbsAxisUsage(int32_t axis, Flags<InputDeviceClass> deviceClasses) {
Michael Wrightd02c5b62014-02-10 15:10:22 -0800305 // Touch devices get dibs on touch-related axes.
Chris Ye1b0c7342020-07-28 21:57:03 -0700306 if (deviceClasses.test(InputDeviceClass::TOUCH)) {
Michael Wrightd02c5b62014-02-10 15:10:22 -0800307 switch (axis) {
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700308 case ABS_X:
309 case ABS_Y:
310 case ABS_PRESSURE:
311 case ABS_TOOL_WIDTH:
312 case ABS_DISTANCE:
313 case ABS_TILT_X:
314 case ABS_TILT_Y:
315 case ABS_MT_SLOT:
316 case ABS_MT_TOUCH_MAJOR:
317 case ABS_MT_TOUCH_MINOR:
318 case ABS_MT_WIDTH_MAJOR:
319 case ABS_MT_WIDTH_MINOR:
320 case ABS_MT_ORIENTATION:
321 case ABS_MT_POSITION_X:
322 case ABS_MT_POSITION_Y:
323 case ABS_MT_TOOL_TYPE:
324 case ABS_MT_BLOB_ID:
325 case ABS_MT_TRACKING_ID:
326 case ABS_MT_PRESSURE:
327 case ABS_MT_DISTANCE:
Chris Ye1b0c7342020-07-28 21:57:03 -0700328 return InputDeviceClass::TOUCH;
Michael Wrightd02c5b62014-02-10 15:10:22 -0800329 }
330 }
331
Chris Yef59a2f42020-10-16 12:55:26 -0700332 if (deviceClasses.test(InputDeviceClass::SENSOR)) {
333 switch (axis) {
334 case ABS_X:
335 case ABS_Y:
336 case ABS_Z:
337 case ABS_RX:
338 case ABS_RY:
339 case ABS_RZ:
340 return InputDeviceClass::SENSOR;
341 }
342 }
343
Michael Wright842500e2015-03-13 17:32:02 -0700344 // External stylus gets the pressure axis
Chris Ye1b0c7342020-07-28 21:57:03 -0700345 if (deviceClasses.test(InputDeviceClass::EXTERNAL_STYLUS)) {
Michael Wright842500e2015-03-13 17:32:02 -0700346 if (axis == ABS_PRESSURE) {
Chris Ye1b0c7342020-07-28 21:57:03 -0700347 return InputDeviceClass::EXTERNAL_STYLUS;
Michael Wright842500e2015-03-13 17:32:02 -0700348 }
349 }
350
Michael Wrightd02c5b62014-02-10 15:10:22 -0800351 // Joystick devices get the rest.
Chris Ye1b0c7342020-07-28 21:57:03 -0700352 return deviceClasses & InputDeviceClass::JOYSTICK;
Michael Wrightd02c5b62014-02-10 15:10:22 -0800353}
354
355// --- EventHub::Device ---
356
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +0100357EventHub::Device::Device(int fd, int32_t id, const std::string& path,
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700358 const InputDeviceIdentifier& identifier)
Chris Ye989bb932020-07-04 16:18:59 -0700359 : fd(fd),
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700360 id(id),
361 path(path),
362 identifier(identifier),
363 classes(0),
364 configuration(nullptr),
365 virtualKeyMap(nullptr),
366 ffEffectPlaying(false),
367 ffEffectId(-1),
Chris Ye1dd2e5c2021-04-04 23:12:41 -0700368 associatedDevice(nullptr),
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700369 controllerNumber(0),
370 enabled(true),
Chris Ye66fbac32020-07-06 20:36:43 -0700371 isVirtual(fd < 0) {}
Michael Wrightd02c5b62014-02-10 15:10:22 -0800372
373EventHub::Device::~Device() {
374 close();
Michael Wrightd02c5b62014-02-10 15:10:22 -0800375}
376
377void EventHub::Device::close() {
378 if (fd >= 0) {
379 ::close(fd);
380 fd = -1;
381 }
382}
383
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -0700384status_t EventHub::Device::enable() {
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +0100385 fd = open(path.c_str(), O_RDWR | O_CLOEXEC | O_NONBLOCK);
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700386 if (fd < 0) {
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +0100387 ALOGE("could not open %s, %s\n", path.c_str(), strerror(errno));
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -0700388 return -errno;
389 }
390 enabled = true;
391 return OK;
392}
393
394status_t EventHub::Device::disable() {
395 close();
396 enabled = false;
397 return OK;
398}
399
Chris Ye989bb932020-07-04 16:18:59 -0700400bool EventHub::Device::hasValidFd() const {
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -0700401 return !isVirtual && enabled;
402}
Michael Wrightd02c5b62014-02-10 15:10:22 -0800403
Chris Ye3a1e4462020-08-12 10:13:15 -0700404const std::shared_ptr<KeyCharacterMap> EventHub::Device::getKeyCharacterMap() const {
Chris Ye989bb932020-07-04 16:18:59 -0700405 return keyMap.keyCharacterMap;
406}
407
408template <std::size_t N>
409status_t EventHub::Device::readDeviceBitMask(unsigned long ioctlCode, BitArray<N>& bitArray) {
410 if (!hasValidFd()) {
411 return BAD_VALUE;
412 }
413 if ((_IOC_SIZE(ioctlCode) == 0)) {
414 ioctlCode |= _IOC(0, 0, 0, bitArray.bytes());
415 }
416
417 typename BitArray<N>::Buffer buffer;
418 status_t ret = ioctl(fd, ioctlCode, buffer.data());
419 bitArray.loadFromBuffer(buffer);
420 return ret;
421}
422
423void EventHub::Device::configureFd() {
424 // Set fd parameters with ioctl, such as key repeat, suspend block, and clock type
425 if (classes.test(InputDeviceClass::KEYBOARD)) {
426 // Disable kernel key repeat since we handle it ourselves
427 unsigned int repeatRate[] = {0, 0};
428 if (ioctl(fd, EVIOCSREP, repeatRate)) {
429 ALOGW("Unable to disable kernel key repeat for %s: %s", path.c_str(), strerror(errno));
430 }
431 }
432
433 // Tell the kernel that we want to use the monotonic clock for reporting timestamps
434 // associated with input events. This is important because the input system
435 // uses the timestamps extensively and assumes they were recorded using the monotonic
436 // clock.
437 int clockId = CLOCK_MONOTONIC;
Chris Yef59a2f42020-10-16 12:55:26 -0700438 if (classes.test(InputDeviceClass::SENSOR)) {
439 // Each new sensor event should use the same time base as
440 // SystemClock.elapsedRealtimeNanos().
441 clockId = CLOCK_BOOTTIME;
442 }
Chris Ye989bb932020-07-04 16:18:59 -0700443 bool usingClockIoctl = !ioctl(fd, EVIOCSCLOCKID, &clockId);
444 ALOGI("usingClockIoctl=%s", toString(usingClockIoctl));
445}
446
447bool EventHub::Device::hasKeycodeLocked(int keycode) const {
448 if (!keyMap.haveKeyLayout()) {
449 return false;
450 }
451
452 std::vector<int32_t> scanCodes;
453 keyMap.keyLayoutMap->findScanCodesForKey(keycode, &scanCodes);
454 const size_t N = scanCodes.size();
455 for (size_t i = 0; i < N && i <= KEY_MAX; i++) {
456 int32_t sc = scanCodes[i];
457 if (sc >= 0 && sc <= KEY_MAX && keyBitmask.test(sc)) {
458 return true;
459 }
460 }
461
462 return false;
463}
464
465void EventHub::Device::loadConfigurationLocked() {
466 configurationFile =
467 getInputDeviceConfigurationFilePathByDeviceIdentifier(identifier,
468 InputDeviceConfigurationFileType::
469 CONFIGURATION);
470 if (configurationFile.empty()) {
471 ALOGD("No input device configuration file found for device '%s'.", identifier.name.c_str());
472 } else {
Siarhei Vishniakou4d9f9772020-09-02 22:28:29 -0500473 android::base::Result<std::unique_ptr<PropertyMap>> propertyMap =
474 PropertyMap::load(configurationFile.c_str());
475 if (!propertyMap.ok()) {
Chris Ye989bb932020-07-04 16:18:59 -0700476 ALOGE("Error loading input device configuration file for device '%s'. "
477 "Using default configuration.",
478 identifier.name.c_str());
Siarhei Vishniakoud549b252020-08-11 11:25:26 -0500479 } else {
Siarhei Vishniakou4d9f9772020-09-02 22:28:29 -0500480 configuration = std::move(*propertyMap);
Chris Ye989bb932020-07-04 16:18:59 -0700481 }
482 }
483}
484
485bool EventHub::Device::loadVirtualKeyMapLocked() {
486 // The virtual key map is supplied by the kernel as a system board property file.
487 std::string propPath = "/sys/board_properties/virtualkeys.";
488 propPath += identifier.getCanonicalName();
489 if (access(propPath.c_str(), R_OK)) {
490 return false;
491 }
492 virtualKeyMap = VirtualKeyMap::load(propPath);
493 return virtualKeyMap != nullptr;
494}
495
496status_t EventHub::Device::loadKeyMapLocked() {
Siarhei Vishniakoud549b252020-08-11 11:25:26 -0500497 return keyMap.load(identifier, configuration.get());
Chris Ye989bb932020-07-04 16:18:59 -0700498}
499
500bool EventHub::Device::isExternalDeviceLocked() {
501 if (configuration) {
502 bool value;
503 if (configuration->tryGetProperty(String8("device.internal"), value)) {
504 return !value;
505 }
506 }
507 return identifier.bus == BUS_USB || identifier.bus == BUS_BLUETOOTH;
508}
509
510bool EventHub::Device::deviceHasMicLocked() {
511 if (configuration) {
512 bool value;
513 if (configuration->tryGetProperty(String8("audio.mic"), value)) {
514 return value;
515 }
516 }
517 return false;
518}
519
520void EventHub::Device::setLedStateLocked(int32_t led, bool on) {
521 int32_t sc;
522 if (hasValidFd() && mapLed(led, &sc) != NAME_NOT_FOUND) {
523 struct input_event ev;
524 ev.time.tv_sec = 0;
525 ev.time.tv_usec = 0;
526 ev.type = EV_LED;
527 ev.code = sc;
528 ev.value = on ? 1 : 0;
529
530 ssize_t nWrite;
531 do {
532 nWrite = write(fd, &ev, sizeof(struct input_event));
533 } while (nWrite == -1 && errno == EINTR);
534 }
535}
536
537void EventHub::Device::setLedForControllerLocked() {
538 for (int i = 0; i < MAX_CONTROLLER_LEDS; i++) {
539 setLedStateLocked(ALED_CONTROLLER_1 + i, controllerNumber == i + 1);
540 }
541}
542
543status_t EventHub::Device::mapLed(int32_t led, int32_t* outScanCode) const {
544 if (!keyMap.haveKeyLayout()) {
545 return NAME_NOT_FOUND;
546 }
547
548 int32_t scanCode;
549 if (keyMap.keyLayoutMap->findScanCodeForLed(led, &scanCode) != NAME_NOT_FOUND) {
550 if (scanCode >= 0 && scanCode <= LED_MAX && ledBitmask.test(scanCode)) {
551 *outScanCode = scanCode;
552 return NO_ERROR;
553 }
554 }
555 return NAME_NOT_FOUND;
556}
557
Chris Ye3fdbfef2021-01-06 18:45:18 -0800558// Check the sysfs path for any input device batteries, returns true if battery found.
Chris Ye1dd2e5c2021-04-04 23:12:41 -0700559bool EventHub::AssociatedDevice::configureBatteryLocked() {
Chris Yee2b1e5c2021-03-10 22:45:12 -0800560 nextBatteryId = 0;
561 // Check if device has any battery.
562 const auto& paths = findSysfsNodes(sysfsRootPath, SysfsClass::POWER_SUPPLY);
563 for (const auto& nodePath : paths) {
564 RawBatteryInfo info;
565 info.id = ++nextBatteryId;
566 info.path = nodePath;
567 info.name = nodePath.filename();
568
569 // Scan the path for all the files
570 // Refer to https://www.kernel.org/doc/Documentation/leds/leds-class.txt
571 const auto& files = allFilesInPath(nodePath);
572 for (const auto& file : files) {
573 const auto it = BATTERY_CLASSES.find(file.filename().string());
574 if (it != BATTERY_CLASSES.end()) {
575 info.flags |= it->second;
576 }
577 }
578 batteryInfos.insert_or_assign(info.id, info);
579 ALOGD("configureBatteryLocked rawBatteryId %d name %s", info.id, info.name.c_str());
Chris Ye3fdbfef2021-01-06 18:45:18 -0800580 }
Chris Yee2b1e5c2021-03-10 22:45:12 -0800581 return !batteryInfos.empty();
Chris Ye3fdbfef2021-01-06 18:45:18 -0800582}
583
584// Check the sysfs path for any input device lights, returns true if lights found.
Chris Ye1dd2e5c2021-04-04 23:12:41 -0700585bool EventHub::AssociatedDevice::configureLightsLocked() {
Chris Yee2b1e5c2021-03-10 22:45:12 -0800586 nextLightId = 0;
Chris Ye3fdbfef2021-01-06 18:45:18 -0800587 // Check if device has any lights.
Chris Yee2b1e5c2021-03-10 22:45:12 -0800588 const auto& paths = findSysfsNodes(sysfsRootPath, SysfsClass::LEDS);
Chris Ye3fdbfef2021-01-06 18:45:18 -0800589 for (const auto& nodePath : paths) {
590 RawLightInfo info;
591 info.id = ++nextLightId;
592 info.path = nodePath;
593 info.name = nodePath.filename();
594 info.maxBrightness = std::nullopt;
595 size_t nameStart = info.name.rfind(":");
596 if (nameStart != std::string::npos) {
597 // Trim the name to color name
598 info.name = info.name.substr(nameStart + 1);
599 // Set InputLightClass flag for colors
600 const auto it = LIGHT_CLASSES.find(info.name);
601 if (it != LIGHT_CLASSES.end()) {
602 info.flags |= it->second;
603 }
604 }
605 // Scan the path for all the files
606 // Refer to https://www.kernel.org/doc/Documentation/leds/leds-class.txt
607 const auto& files = allFilesInPath(nodePath);
608 for (const auto& file : files) {
609 const auto it = LIGHT_CLASSES.find(file.filename().string());
610 if (it != LIGHT_CLASSES.end()) {
611 info.flags |= it->second;
612 // If the node has maximum brightness, read it
613 if (it->second == InputLightClass::MAX_BRIGHTNESS) {
614 std::string str;
615 if (base::ReadFileToString(file, &str)) {
616 info.maxBrightness = std::stoi(str);
617 }
618 }
619 }
620 }
621 lightInfos.insert_or_assign(info.id, info);
Chris Yee2b1e5c2021-03-10 22:45:12 -0800622 ALOGD("configureLightsLocked rawLightId %d name %s", info.id, info.name.c_str());
Chris Ye3fdbfef2021-01-06 18:45:18 -0800623 }
624 return !lightInfos.empty();
625}
626
Siarhei Vishniakou7a522bf2019-09-24 12:46:29 +0100627/**
628 * Get the capabilities for the current process.
629 * Crashes the system if unable to create / check / destroy the capabilities object.
630 */
631class Capabilities final {
632public:
633 explicit Capabilities() {
634 mCaps = cap_get_proc();
635 LOG_ALWAYS_FATAL_IF(mCaps == nullptr, "Could not get capabilities of the current process");
636 }
637
638 /**
639 * Check whether the current process has a specific capability
640 * in the set of effective capabilities.
641 * Return CAP_SET if the process has the requested capability
642 * Return CAP_CLEAR otherwise.
643 */
644 cap_flag_value_t checkEffectiveCapability(cap_value_t capability) {
645 cap_flag_value_t value;
646 const int result = cap_get_flag(mCaps, capability, CAP_EFFECTIVE, &value);
647 LOG_ALWAYS_FATAL_IF(result == -1, "Could not obtain the requested capability");
648 return value;
649 }
650
651 ~Capabilities() {
652 const int result = cap_free(mCaps);
653 LOG_ALWAYS_FATAL_IF(result == -1, "Could not release the capabilities structure");
654 }
655
656private:
657 cap_t mCaps;
658};
659
660static void ensureProcessCanBlockSuspend() {
661 Capabilities capabilities;
662 const bool canBlockSuspend =
663 capabilities.checkEffectiveCapability(CAP_BLOCK_SUSPEND) == CAP_SET;
664 LOG_ALWAYS_FATAL_IF(!canBlockSuspend,
665 "Input must be able to block suspend to properly process events");
666}
667
Michael Wrightd02c5b62014-02-10 15:10:22 -0800668// --- EventHub ---
669
Michael Wrightd02c5b62014-02-10 15:10:22 -0800670const int EventHub::EPOLL_MAX_EVENTS;
671
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700672EventHub::EventHub(void)
673 : mBuiltInKeyboardId(NO_BUILT_IN_KEYBOARD),
674 mNextDeviceId(1),
675 mControllerNumbers(),
Michael Wrightd02c5b62014-02-10 15:10:22 -0800676 mNeedToSendFinishedDeviceScan(false),
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700677 mNeedToReopenDevices(false),
678 mNeedToScanDevices(true),
679 mPendingEventCount(0),
680 mPendingEventIndex(0),
681 mPendingINotify(false) {
Siarhei Vishniakou7a522bf2019-09-24 12:46:29 +0100682 ensureProcessCanBlockSuspend();
Michael Wrightd02c5b62014-02-10 15:10:22 -0800683
Nick Kralevichfcf1b2b2018-12-15 11:59:30 -0800684 mEpollFd = epoll_create1(EPOLL_CLOEXEC);
Siarhei Vishniakou951f3622018-12-12 19:45:42 -0800685 LOG_ALWAYS_FATAL_IF(mEpollFd < 0, "Could not create epoll instance: %s", strerror(errno));
Michael Wrightd02c5b62014-02-10 15:10:22 -0800686
687 mINotifyFd = inotify_init();
Siarhei Vishniakou951f3622018-12-12 19:45:42 -0800688 mInputWd = inotify_add_watch(mINotifyFd, DEVICE_PATH, IN_DELETE | IN_CREATE);
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700689 LOG_ALWAYS_FATAL_IF(mInputWd < 0, "Could not register INotify for %s: %s", DEVICE_PATH,
690 strerror(errno));
Philip Quinn39b81682019-01-09 22:20:39 -0800691 if (isV4lScanningEnabled()) {
692 mVideoWd = inotify_add_watch(mINotifyFd, VIDEO_DEVICE_PATH, IN_DELETE | IN_CREATE);
693 LOG_ALWAYS_FATAL_IF(mVideoWd < 0, "Could not register INotify for %s: %s",
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700694 VIDEO_DEVICE_PATH, strerror(errno));
Philip Quinn39b81682019-01-09 22:20:39 -0800695 } else {
696 mVideoWd = -1;
697 ALOGI("Video device scanning disabled");
698 }
Michael Wrightd02c5b62014-02-10 15:10:22 -0800699
Siarhei Vishniakou2d0e9482019-09-24 12:52:47 +0100700 struct epoll_event eventItem = {};
701 eventItem.events = EPOLLIN | EPOLLWAKEUP;
Siarhei Vishniakou4bc561c2018-11-02 17:41:58 -0700702 eventItem.data.fd = mINotifyFd;
Siarhei Vishniakou951f3622018-12-12 19:45:42 -0800703 int result = epoll_ctl(mEpollFd, EPOLL_CTL_ADD, mINotifyFd, &eventItem);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800704 LOG_ALWAYS_FATAL_IF(result != 0, "Could not add INotify to epoll instance. errno=%d", errno);
705
706 int wakeFds[2];
707 result = pipe(wakeFds);
708 LOG_ALWAYS_FATAL_IF(result != 0, "Could not create wake pipe. errno=%d", errno);
709
710 mWakeReadPipeFd = wakeFds[0];
711 mWakeWritePipeFd = wakeFds[1];
712
713 result = fcntl(mWakeReadPipeFd, F_SETFL, O_NONBLOCK);
714 LOG_ALWAYS_FATAL_IF(result != 0, "Could not make wake read pipe non-blocking. errno=%d",
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700715 errno);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800716
717 result = fcntl(mWakeWritePipeFd, F_SETFL, O_NONBLOCK);
718 LOG_ALWAYS_FATAL_IF(result != 0, "Could not make wake write pipe non-blocking. errno=%d",
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700719 errno);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800720
Siarhei Vishniakou4bc561c2018-11-02 17:41:58 -0700721 eventItem.data.fd = mWakeReadPipeFd;
Michael Wrightd02c5b62014-02-10 15:10:22 -0800722 result = epoll_ctl(mEpollFd, EPOLL_CTL_ADD, mWakeReadPipeFd, &eventItem);
723 LOG_ALWAYS_FATAL_IF(result != 0, "Could not add wake read pipe to epoll instance. errno=%d",
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700724 errno);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800725}
726
727EventHub::~EventHub(void) {
728 closeAllDevicesLocked();
729
Michael Wrightd02c5b62014-02-10 15:10:22 -0800730 ::close(mEpollFd);
731 ::close(mINotifyFd);
732 ::close(mWakeReadPipeFd);
733 ::close(mWakeWritePipeFd);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800734}
735
736InputDeviceIdentifier EventHub::getDeviceIdentifier(int32_t deviceId) const {
Chris Ye87143712020-11-10 05:05:58 +0000737 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800738 Device* device = getDeviceLocked(deviceId);
Chris Ye989bb932020-07-04 16:18:59 -0700739 return device != nullptr ? device->identifier : InputDeviceIdentifier();
Michael Wrightd02c5b62014-02-10 15:10:22 -0800740}
741
Chris Ye1b0c7342020-07-28 21:57:03 -0700742Flags<InputDeviceClass> EventHub::getDeviceClasses(int32_t deviceId) const {
Chris Ye87143712020-11-10 05:05:58 +0000743 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800744 Device* device = getDeviceLocked(deviceId);
Chris Ye989bb932020-07-04 16:18:59 -0700745 return device != nullptr ? device->classes : Flags<InputDeviceClass>(0);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800746}
747
748int32_t EventHub::getDeviceControllerNumber(int32_t deviceId) const {
Chris Ye87143712020-11-10 05:05:58 +0000749 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800750 Device* device = getDeviceLocked(deviceId);
Chris Ye989bb932020-07-04 16:18:59 -0700751 return device != nullptr ? device->controllerNumber : 0;
Michael Wrightd02c5b62014-02-10 15:10:22 -0800752}
753
754void EventHub::getConfiguration(int32_t deviceId, PropertyMap* outConfiguration) const {
Chris Ye87143712020-11-10 05:05:58 +0000755 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800756 Device* device = getDeviceLocked(deviceId);
Chris Ye989bb932020-07-04 16:18:59 -0700757 if (device != nullptr && device->configuration) {
Michael Wrightd02c5b62014-02-10 15:10:22 -0800758 *outConfiguration = *device->configuration;
759 } else {
760 outConfiguration->clear();
761 }
762}
763
764status_t EventHub::getAbsoluteAxisInfo(int32_t deviceId, int axis,
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700765 RawAbsoluteAxisInfo* outAxisInfo) const {
Michael Wrightd02c5b62014-02-10 15:10:22 -0800766 outAxisInfo->clear();
767
768 if (axis >= 0 && axis <= ABS_MAX) {
Chris Ye87143712020-11-10 05:05:58 +0000769 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800770
771 Device* device = getDeviceLocked(deviceId);
Chris Ye66fbac32020-07-06 20:36:43 -0700772 if (device != nullptr && device->hasValidFd() && device->absBitmask.test(axis)) {
Michael Wrightd02c5b62014-02-10 15:10:22 -0800773 struct input_absinfo info;
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700774 if (ioctl(device->fd, EVIOCGABS(axis), &info)) {
775 ALOGW("Error reading absolute controller %d for device %s fd %d, errno=%d", axis,
776 device->identifier.name.c_str(), device->fd, errno);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800777 return -errno;
778 }
779
780 if (info.minimum != info.maximum) {
781 outAxisInfo->valid = true;
782 outAxisInfo->minValue = info.minimum;
783 outAxisInfo->maxValue = info.maximum;
784 outAxisInfo->flat = info.flat;
785 outAxisInfo->fuzz = info.fuzz;
786 outAxisInfo->resolution = info.resolution;
787 }
788 return OK;
789 }
790 }
791 return -1;
792}
793
794bool EventHub::hasRelativeAxis(int32_t deviceId, int axis) const {
795 if (axis >= 0 && axis <= REL_MAX) {
Chris Ye87143712020-11-10 05:05:58 +0000796 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800797 Device* device = getDeviceLocked(deviceId);
Chris Ye66fbac32020-07-06 20:36:43 -0700798 return device != nullptr ? device->relBitmask.test(axis) : false;
Michael Wrightd02c5b62014-02-10 15:10:22 -0800799 }
800 return false;
801}
802
803bool EventHub::hasInputProperty(int32_t deviceId, int property) const {
Chris Ye87143712020-11-10 05:05:58 +0000804 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800805
Chris Ye989bb932020-07-04 16:18:59 -0700806 Device* device = getDeviceLocked(deviceId);
807 return property >= 0 && property <= INPUT_PROP_MAX && device != nullptr
808 ? device->propBitmask.test(property)
809 : false;
Michael Wrightd02c5b62014-02-10 15:10:22 -0800810}
811
Chris Yef59a2f42020-10-16 12:55:26 -0700812bool EventHub::hasMscEvent(int32_t deviceId, int mscEvent) const {
813 std::scoped_lock _l(mLock);
814
815 Device* device = getDeviceLocked(deviceId);
816 return mscEvent >= 0 && mscEvent <= MSC_MAX && device != nullptr
817 ? device->mscBitmask.test(mscEvent)
818 : false;
819}
820
Michael Wrightd02c5b62014-02-10 15:10:22 -0800821int32_t EventHub::getScanCodeState(int32_t deviceId, int32_t scanCode) const {
822 if (scanCode >= 0 && scanCode <= KEY_MAX) {
Chris Ye87143712020-11-10 05:05:58 +0000823 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800824
825 Device* device = getDeviceLocked(deviceId);
Chris Ye66fbac32020-07-06 20:36:43 -0700826 if (device != nullptr && device->hasValidFd() && device->keyBitmask.test(scanCode)) {
827 if (device->readDeviceBitMask(EVIOCGKEY(0), device->keyState) >= 0) {
828 return device->keyState.test(scanCode) ? AKEY_STATE_DOWN : AKEY_STATE_UP;
Michael Wrightd02c5b62014-02-10 15:10:22 -0800829 }
830 }
831 }
832 return AKEY_STATE_UNKNOWN;
833}
834
835int32_t EventHub::getKeyCodeState(int32_t deviceId, int32_t keyCode) const {
Chris Ye87143712020-11-10 05:05:58 +0000836 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800837
838 Device* device = getDeviceLocked(deviceId);
Chris Ye66fbac32020-07-06 20:36:43 -0700839 if (device != nullptr && device->hasValidFd() && device->keyMap.haveKeyLayout()) {
Arthur Hung7c3ae9c2019-03-11 11:23:03 +0800840 std::vector<int32_t> scanCodes;
Michael Wrightd02c5b62014-02-10 15:10:22 -0800841 device->keyMap.keyLayoutMap->findScanCodesForKey(keyCode, &scanCodes);
842 if (scanCodes.size() != 0) {
Chris Ye66fbac32020-07-06 20:36:43 -0700843 if (device->readDeviceBitMask(EVIOCGKEY(0), device->keyState) >= 0) {
Michael Wrightd02c5b62014-02-10 15:10:22 -0800844 for (size_t i = 0; i < scanCodes.size(); i++) {
Arthur Hung7c3ae9c2019-03-11 11:23:03 +0800845 int32_t sc = scanCodes[i];
Chris Ye66fbac32020-07-06 20:36:43 -0700846 if (sc >= 0 && sc <= KEY_MAX && device->keyState.test(sc)) {
Michael Wrightd02c5b62014-02-10 15:10:22 -0800847 return AKEY_STATE_DOWN;
848 }
849 }
850 return AKEY_STATE_UP;
851 }
852 }
853 }
854 return AKEY_STATE_UNKNOWN;
855}
856
857int32_t EventHub::getSwitchState(int32_t deviceId, int32_t sw) const {
858 if (sw >= 0 && sw <= SW_MAX) {
Chris Ye87143712020-11-10 05:05:58 +0000859 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800860
861 Device* device = getDeviceLocked(deviceId);
Chris Ye66fbac32020-07-06 20:36:43 -0700862 if (device != nullptr && device->hasValidFd() && device->swBitmask.test(sw)) {
863 if (device->readDeviceBitMask(EVIOCGSW(0), device->swState) >= 0) {
864 return device->swState.test(sw) ? AKEY_STATE_DOWN : AKEY_STATE_UP;
Michael Wrightd02c5b62014-02-10 15:10:22 -0800865 }
866 }
867 }
868 return AKEY_STATE_UNKNOWN;
869}
870
871status_t EventHub::getAbsoluteAxisValue(int32_t deviceId, int32_t axis, int32_t* outValue) const {
872 *outValue = 0;
873
874 if (axis >= 0 && axis <= ABS_MAX) {
Chris Ye87143712020-11-10 05:05:58 +0000875 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800876
877 Device* device = getDeviceLocked(deviceId);
Chris Ye66fbac32020-07-06 20:36:43 -0700878 if (device != nullptr && device->hasValidFd() && device->absBitmask.test(axis)) {
Michael Wrightd02c5b62014-02-10 15:10:22 -0800879 struct input_absinfo info;
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700880 if (ioctl(device->fd, EVIOCGABS(axis), &info)) {
881 ALOGW("Error reading absolute controller %d for device %s fd %d, errno=%d", axis,
882 device->identifier.name.c_str(), device->fd, errno);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800883 return -errno;
884 }
885
886 *outValue = info.value;
887 return OK;
888 }
889 }
890 return -1;
891}
892
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700893bool EventHub::markSupportedKeyCodes(int32_t deviceId, size_t numCodes, const int32_t* keyCodes,
894 uint8_t* outFlags) const {
Chris Ye87143712020-11-10 05:05:58 +0000895 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800896
897 Device* device = getDeviceLocked(deviceId);
Chris Ye66fbac32020-07-06 20:36:43 -0700898 if (device != nullptr && device->keyMap.haveKeyLayout()) {
Arthur Hung7c3ae9c2019-03-11 11:23:03 +0800899 std::vector<int32_t> scanCodes;
Michael Wrightd02c5b62014-02-10 15:10:22 -0800900 for (size_t codeIndex = 0; codeIndex < numCodes; codeIndex++) {
901 scanCodes.clear();
902
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700903 status_t err = device->keyMap.keyLayoutMap->findScanCodesForKey(keyCodes[codeIndex],
904 &scanCodes);
905 if (!err) {
Michael Wrightd02c5b62014-02-10 15:10:22 -0800906 // check the possible scan codes identified by the layout map against the
907 // map of codes actually emitted by the driver
908 for (size_t sc = 0; sc < scanCodes.size(); sc++) {
Chris Ye66fbac32020-07-06 20:36:43 -0700909 if (device->keyBitmask.test(scanCodes[sc])) {
Michael Wrightd02c5b62014-02-10 15:10:22 -0800910 outFlags[codeIndex] = 1;
911 break;
912 }
913 }
914 }
915 }
916 return true;
917 }
918 return false;
919}
920
Prabir Pradhanda7c00c2019-08-29 14:12:42 -0700921status_t EventHub::mapKey(int32_t deviceId, int32_t scanCode, int32_t usageCode, int32_t metaState,
922 int32_t* outKeycode, int32_t* outMetaState, uint32_t* outFlags) const {
Chris Ye87143712020-11-10 05:05:58 +0000923 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800924 Device* device = getDeviceLocked(deviceId);
Dmitry Torokhov0faaa0b2015-09-24 13:13:55 -0700925 status_t status = NAME_NOT_FOUND;
Michael Wrightd02c5b62014-02-10 15:10:22 -0800926
Chris Ye66fbac32020-07-06 20:36:43 -0700927 if (device != nullptr) {
Michael Wrightd02c5b62014-02-10 15:10:22 -0800928 // Check the key character map first.
Chris Ye3a1e4462020-08-12 10:13:15 -0700929 const std::shared_ptr<KeyCharacterMap> kcm = device->getKeyCharacterMap();
930 if (kcm) {
Michael Wrightd02c5b62014-02-10 15:10:22 -0800931 if (!kcm->mapKey(scanCode, usageCode, outKeycode)) {
932 *outFlags = 0;
Dmitry Torokhov0faaa0b2015-09-24 13:13:55 -0700933 status = NO_ERROR;
Michael Wrightd02c5b62014-02-10 15:10:22 -0800934 }
935 }
936
937 // Check the key layout next.
Dmitry Torokhov0faaa0b2015-09-24 13:13:55 -0700938 if (status != NO_ERROR && device->keyMap.haveKeyLayout()) {
Siarhei Vishniakou592bac22018-11-08 19:42:38 -0800939 if (!device->keyMap.keyLayoutMap->mapKey(scanCode, usageCode, outKeycode, outFlags)) {
Dmitry Torokhov0faaa0b2015-09-24 13:13:55 -0700940 status = NO_ERROR;
941 }
942 }
943
944 if (status == NO_ERROR) {
Chris Ye3a1e4462020-08-12 10:13:15 -0700945 if (kcm) {
Dmitry Torokhov0faaa0b2015-09-24 13:13:55 -0700946 kcm->tryRemapKey(*outKeycode, metaState, outKeycode, outMetaState);
947 } else {
948 *outMetaState = metaState;
Michael Wrightd02c5b62014-02-10 15:10:22 -0800949 }
950 }
951 }
952
Dmitry Torokhov0faaa0b2015-09-24 13:13:55 -0700953 if (status != NO_ERROR) {
954 *outKeycode = 0;
955 *outFlags = 0;
956 *outMetaState = metaState;
957 }
958
959 return status;
Michael Wrightd02c5b62014-02-10 15:10:22 -0800960}
961
962status_t EventHub::mapAxis(int32_t deviceId, int32_t scanCode, AxisInfo* outAxisInfo) const {
Chris Ye87143712020-11-10 05:05:58 +0000963 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800964 Device* device = getDeviceLocked(deviceId);
965
Chris Ye66fbac32020-07-06 20:36:43 -0700966 if (device != nullptr && device->keyMap.haveKeyLayout()) {
Michael Wrightd02c5b62014-02-10 15:10:22 -0800967 status_t err = device->keyMap.keyLayoutMap->mapAxis(scanCode, outAxisInfo);
968 if (err == NO_ERROR) {
969 return NO_ERROR;
970 }
971 }
972
973 return NAME_NOT_FOUND;
974}
975
Chris Yef59a2f42020-10-16 12:55:26 -0700976base::Result<std::pair<InputDeviceSensorType, int32_t>> EventHub::mapSensor(int32_t deviceId,
977 int32_t absCode) {
978 std::scoped_lock _l(mLock);
979 Device* device = getDeviceLocked(deviceId);
980
981 if (device != nullptr && device->keyMap.haveKeyLayout()) {
982 return device->keyMap.keyLayoutMap->mapSensor(absCode);
983 }
984 return Errorf("Device not found or device has no key layout.");
985}
986
Chris Yee2b1e5c2021-03-10 22:45:12 -0800987// Gets the battery info map from battery ID to RawBatteryInfo of the miscellaneous device
988// associated with the device ID. Returns an empty map if no miscellaneous device found.
989const std::unordered_map<int32_t, RawBatteryInfo>& EventHub::getBatteryInfoLocked(
990 int32_t deviceId) const {
991 static const std::unordered_map<int32_t, RawBatteryInfo> EMPTY_BATTERY_INFO = {};
992 Device* device = getDeviceLocked(deviceId);
Chris Ye1dd2e5c2021-04-04 23:12:41 -0700993 if (device == nullptr || !device->associatedDevice) {
Chris Yee2b1e5c2021-03-10 22:45:12 -0800994 return EMPTY_BATTERY_INFO;
995 }
Chris Ye1dd2e5c2021-04-04 23:12:41 -0700996 return device->associatedDevice->batteryInfos;
Chris Yee2b1e5c2021-03-10 22:45:12 -0800997}
998
999const std::vector<int32_t> EventHub::getRawBatteryIds(int32_t deviceId) {
1000 std::scoped_lock _l(mLock);
1001 std::vector<int32_t> batteryIds;
1002
1003 for (const auto [id, info] : getBatteryInfoLocked(deviceId)) {
1004 batteryIds.push_back(id);
1005 }
1006
1007 return batteryIds;
1008}
1009
1010std::optional<RawBatteryInfo> EventHub::getRawBatteryInfo(int32_t deviceId, int32_t batteryId) {
1011 std::scoped_lock _l(mLock);
1012
1013 const auto infos = getBatteryInfoLocked(deviceId);
1014
1015 auto it = infos.find(batteryId);
1016 if (it != infos.end()) {
1017 return it->second;
1018 }
1019
1020 return std::nullopt;
1021}
1022
1023// Gets the light info map from light ID to RawLightInfo of the miscellaneous device associated
1024// with the deivice ID. Returns an empty map if no miscellaneous device found.
1025const std::unordered_map<int32_t, RawLightInfo>& EventHub::getLightInfoLocked(
1026 int32_t deviceId) const {
1027 static const std::unordered_map<int32_t, RawLightInfo> EMPTY_LIGHT_INFO = {};
1028 Device* device = getDeviceLocked(deviceId);
Chris Ye1dd2e5c2021-04-04 23:12:41 -07001029 if (device == nullptr || !device->associatedDevice) {
Chris Yee2b1e5c2021-03-10 22:45:12 -08001030 return EMPTY_LIGHT_INFO;
1031 }
Chris Ye1dd2e5c2021-04-04 23:12:41 -07001032 return device->associatedDevice->lightInfos;
Chris Yee2b1e5c2021-03-10 22:45:12 -08001033}
1034
Chris Ye3fdbfef2021-01-06 18:45:18 -08001035const std::vector<int32_t> EventHub::getRawLightIds(int32_t deviceId) {
1036 std::scoped_lock _l(mLock);
Chris Ye3fdbfef2021-01-06 18:45:18 -08001037 std::vector<int32_t> lightIds;
1038
Chris Yee2b1e5c2021-03-10 22:45:12 -08001039 for (const auto [id, info] : getLightInfoLocked(deviceId)) {
1040 lightIds.push_back(id);
Chris Ye3fdbfef2021-01-06 18:45:18 -08001041 }
Chris Yee2b1e5c2021-03-10 22:45:12 -08001042
Chris Ye3fdbfef2021-01-06 18:45:18 -08001043 return lightIds;
1044}
1045
1046std::optional<RawLightInfo> EventHub::getRawLightInfo(int32_t deviceId, int32_t lightId) {
1047 std::scoped_lock _l(mLock);
Chris Ye3fdbfef2021-01-06 18:45:18 -08001048
Chris Yee2b1e5c2021-03-10 22:45:12 -08001049 const auto infos = getLightInfoLocked(deviceId);
1050
1051 auto it = infos.find(lightId);
1052 if (it != infos.end()) {
1053 return it->second;
Chris Ye3fdbfef2021-01-06 18:45:18 -08001054 }
Chris Yee2b1e5c2021-03-10 22:45:12 -08001055
Chris Ye3fdbfef2021-01-06 18:45:18 -08001056 return std::nullopt;
1057}
1058
1059std::optional<int32_t> EventHub::getLightBrightness(int32_t deviceId, int32_t lightId) {
1060 std::scoped_lock _l(mLock);
1061
Chris Yee2b1e5c2021-03-10 22:45:12 -08001062 const auto infos = getLightInfoLocked(deviceId);
1063 auto it = infos.find(lightId);
1064 if (it == infos.end()) {
Chris Ye3fdbfef2021-01-06 18:45:18 -08001065 return std::nullopt;
1066 }
1067 std::string buffer;
1068 if (!base::ReadFileToString(it->second.path / LIGHT_NODES.at(InputLightClass::BRIGHTNESS),
1069 &buffer)) {
1070 return std::nullopt;
1071 }
1072 return std::stoi(buffer);
1073}
1074
1075std::optional<std::unordered_map<LightColor, int32_t>> EventHub::getLightIntensities(
1076 int32_t deviceId, int32_t lightId) {
1077 std::scoped_lock _l(mLock);
1078
Chris Yee2b1e5c2021-03-10 22:45:12 -08001079 const auto infos = getLightInfoLocked(deviceId);
1080 auto lightIt = infos.find(lightId);
1081 if (lightIt == infos.end()) {
Chris Ye3fdbfef2021-01-06 18:45:18 -08001082 return std::nullopt;
1083 }
1084
1085 auto ret =
1086 getColorIndexArray(lightIt->second.path / LIGHT_NODES.at(InputLightClass::MULTI_INDEX));
1087
1088 if (!ret.has_value()) {
1089 return std::nullopt;
1090 }
1091 std::array<LightColor, COLOR_NUM> colors = ret.value();
1092
1093 std::string intensityStr;
1094 if (!base::ReadFileToString(lightIt->second.path /
1095 LIGHT_NODES.at(InputLightClass::MULTI_INTENSITY),
1096 &intensityStr)) {
1097 return std::nullopt;
1098 }
1099
1100 // Intensity node outputs 3 color values
1101 std::regex intensityPattern("([0-9]+)\\s([0-9]+)\\s([0-9]+)[\\n]");
1102 std::smatch results;
1103
1104 if (!std::regex_match(intensityStr, results, intensityPattern)) {
1105 return std::nullopt;
1106 }
1107 std::unordered_map<LightColor, int32_t> intensities;
1108 for (size_t i = 1; i < results.size(); i++) {
1109 int value = std::stoi(results[i].str());
1110 intensities.emplace(colors[i - 1], value);
1111 }
1112 return intensities;
1113}
1114
1115void EventHub::setLightBrightness(int32_t deviceId, int32_t lightId, int32_t brightness) {
1116 std::scoped_lock _l(mLock);
1117
Chris Yee2b1e5c2021-03-10 22:45:12 -08001118 const auto infos = getLightInfoLocked(deviceId);
1119 auto lightIt = infos.find(lightId);
1120 if (lightIt == infos.end()) {
1121 ALOGE("%s lightId %d not found ", __func__, lightId);
Chris Ye3fdbfef2021-01-06 18:45:18 -08001122 return;
1123 }
1124
1125 if (!base::WriteStringToFile(std::to_string(brightness),
1126 lightIt->second.path /
1127 LIGHT_NODES.at(InputLightClass::BRIGHTNESS))) {
1128 ALOGE("Can not write to file, error: %s", strerror(errno));
1129 }
1130}
1131
1132void EventHub::setLightIntensities(int32_t deviceId, int32_t lightId,
1133 std::unordered_map<LightColor, int32_t> intensities) {
1134 std::scoped_lock _l(mLock);
1135
Chris Yee2b1e5c2021-03-10 22:45:12 -08001136 const auto infos = getLightInfoLocked(deviceId);
1137 auto lightIt = infos.find(lightId);
1138 if (lightIt == infos.end()) {
Chris Ye3fdbfef2021-01-06 18:45:18 -08001139 ALOGE("Light Id %d does not exist.", lightId);
1140 return;
1141 }
1142
1143 auto ret =
1144 getColorIndexArray(lightIt->second.path / LIGHT_NODES.at(InputLightClass::MULTI_INDEX));
1145
1146 if (!ret.has_value()) {
1147 return;
1148 }
1149 std::array<LightColor, COLOR_NUM> colors = ret.value();
1150
1151 std::string rgbStr;
1152 for (size_t i = 0; i < COLOR_NUM; i++) {
1153 auto it = intensities.find(colors[i]);
1154 if (it != intensities.end()) {
1155 rgbStr += std::to_string(it->second);
1156 // Insert space between colors
1157 if (i < COLOR_NUM - 1) {
1158 rgbStr += " ";
1159 }
1160 }
1161 }
1162 // Append new line
1163 rgbStr += "\n";
1164
1165 if (!base::WriteStringToFile(rgbStr,
1166 lightIt->second.path /
1167 LIGHT_NODES.at(InputLightClass::MULTI_INTENSITY))) {
1168 ALOGE("Can not write to file, error: %s", strerror(errno));
1169 }
1170}
1171
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +01001172void EventHub::setExcludedDevices(const std::vector<std::string>& devices) {
Chris Ye87143712020-11-10 05:05:58 +00001173 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001174
1175 mExcludedDevices = devices;
1176}
1177
1178bool EventHub::hasScanCode(int32_t deviceId, int32_t scanCode) const {
Chris Ye87143712020-11-10 05:05:58 +00001179 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001180 Device* device = getDeviceLocked(deviceId);
Chris Ye66fbac32020-07-06 20:36:43 -07001181 if (device != nullptr && scanCode >= 0 && scanCode <= KEY_MAX) {
1182 return device->keyBitmask.test(scanCode);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001183 }
1184 return false;
1185}
1186
1187bool EventHub::hasLed(int32_t deviceId, int32_t led) const {
Chris Ye87143712020-11-10 05:05:58 +00001188 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001189 Device* device = getDeviceLocked(deviceId);
1190 int32_t sc;
Chris Ye989bb932020-07-04 16:18:59 -07001191 if (device != nullptr && device->mapLed(led, &sc) == NO_ERROR) {
Chris Ye66fbac32020-07-06 20:36:43 -07001192 return device->ledBitmask.test(sc);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001193 }
1194 return false;
1195}
1196
1197void EventHub::setLedState(int32_t deviceId, int32_t led, bool on) {
Chris Ye87143712020-11-10 05:05:58 +00001198 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001199 Device* device = getDeviceLocked(deviceId);
Chris Ye989bb932020-07-04 16:18:59 -07001200 if (device != nullptr && device->hasValidFd()) {
1201 device->setLedStateLocked(led, on);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001202 }
1203}
1204
1205void EventHub::getVirtualKeyDefinitions(int32_t deviceId,
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001206 std::vector<VirtualKeyDefinition>& outVirtualKeys) const {
Michael Wrightd02c5b62014-02-10 15:10:22 -08001207 outVirtualKeys.clear();
1208
Chris Ye87143712020-11-10 05:05:58 +00001209 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001210 Device* device = getDeviceLocked(deviceId);
Chris Ye66fbac32020-07-06 20:36:43 -07001211 if (device != nullptr && device->virtualKeyMap) {
Arthur Hung7c3ae9c2019-03-11 11:23:03 +08001212 const std::vector<VirtualKeyDefinition> virtualKeys =
1213 device->virtualKeyMap->getVirtualKeys();
1214 outVirtualKeys.insert(outVirtualKeys.end(), virtualKeys.begin(), virtualKeys.end());
Michael Wrightd02c5b62014-02-10 15:10:22 -08001215 }
1216}
1217
Chris Ye3a1e4462020-08-12 10:13:15 -07001218const std::shared_ptr<KeyCharacterMap> EventHub::getKeyCharacterMap(int32_t deviceId) const {
Chris Ye87143712020-11-10 05:05:58 +00001219 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001220 Device* device = getDeviceLocked(deviceId);
Chris Ye66fbac32020-07-06 20:36:43 -07001221 if (device != nullptr) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08001222 return device->getKeyCharacterMap();
1223 }
Yi Kong9b14ac62018-07-17 13:48:38 -07001224 return nullptr;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001225}
1226
Chris Ye3a1e4462020-08-12 10:13:15 -07001227bool EventHub::setKeyboardLayoutOverlay(int32_t deviceId, std::shared_ptr<KeyCharacterMap> map) {
Chris Ye87143712020-11-10 05:05:58 +00001228 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001229 Device* device = getDeviceLocked(deviceId);
Philip Junkerb60596f2021-12-10 18:39:42 +01001230 if (device == nullptr || map == nullptr || device->keyMap.keyCharacterMap == nullptr) {
1231 return false;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001232 }
Philip Junkerb60596f2021-12-10 18:39:42 +01001233 device->keyMap.keyCharacterMap->combine(*map);
1234 return true;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001235}
1236
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +01001237static std::string generateDescriptor(InputDeviceIdentifier& identifier) {
1238 std::string rawDescriptor;
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001239 rawDescriptor += StringPrintf(":%04x:%04x:", identifier.vendor, identifier.product);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001240 // TODO add handling for USB devices to not uniqueify kbs that show up twice
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +01001241 if (!identifier.uniqueId.empty()) {
1242 rawDescriptor += "uniqueId:";
1243 rawDescriptor += identifier.uniqueId;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001244 } else if (identifier.nonce != 0) {
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +01001245 rawDescriptor += StringPrintf("nonce:%04x", identifier.nonce);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001246 }
1247
1248 if (identifier.vendor == 0 && identifier.product == 0) {
1249 // If we don't know the vendor and product id, then the device is probably
1250 // built-in so we need to rely on other information to uniquely identify
1251 // the input device. Usually we try to avoid relying on the device name or
1252 // location but for built-in input device, they are unlikely to ever change.
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +01001253 if (!identifier.name.empty()) {
1254 rawDescriptor += "name:";
1255 rawDescriptor += identifier.name;
1256 } else if (!identifier.location.empty()) {
1257 rawDescriptor += "location:";
1258 rawDescriptor += identifier.location;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001259 }
1260 }
1261 identifier.descriptor = sha1(rawDescriptor);
1262 return rawDescriptor;
1263}
1264
1265void EventHub::assignDescriptorLocked(InputDeviceIdentifier& identifier) {
1266 // Compute a device descriptor that uniquely identifies the device.
1267 // The descriptor is assumed to be a stable identifier. Its value should not
1268 // change between reboots, reconnections, firmware updates or new releases
1269 // of Android. In practice we sometimes get devices that cannot be uniquely
1270 // identified. In this case we enforce uniqueness between connected devices.
1271 // Ideally, we also want the descriptor to be short and relatively opaque.
1272
1273 identifier.nonce = 0;
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +01001274 std::string rawDescriptor = generateDescriptor(identifier);
1275 if (identifier.uniqueId.empty()) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08001276 // If it didn't have a unique id check for conflicts and enforce
1277 // uniqueness if necessary.
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001278 while (getDeviceByDescriptorLocked(identifier.descriptor) != nullptr) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08001279 identifier.nonce++;
1280 rawDescriptor = generateDescriptor(identifier);
1281 }
1282 }
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +01001283 ALOGV("Created descriptor: raw=%s, cooked=%s", rawDescriptor.c_str(),
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001284 identifier.descriptor.c_str());
Michael Wrightd02c5b62014-02-10 15:10:22 -08001285}
1286
Nathaniel R. Lewiscacd69a2019-08-12 22:07:00 +00001287void EventHub::vibrate(int32_t deviceId, const VibrationElement& element) {
Chris Ye87143712020-11-10 05:05:58 +00001288 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001289 Device* device = getDeviceLocked(deviceId);
Chris Ye66fbac32020-07-06 20:36:43 -07001290 if (device != nullptr && device->hasValidFd()) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08001291 ff_effect effect;
1292 memset(&effect, 0, sizeof(effect));
1293 effect.type = FF_RUMBLE;
1294 effect.id = device->ffEffectId;
Nathaniel R. Lewiscacd69a2019-08-12 22:07:00 +00001295 // evdev FF_RUMBLE effect only supports two channels of vibration.
Chris Ye6393a262020-08-04 19:41:36 -07001296 effect.u.rumble.strong_magnitude = element.getMagnitude(FF_STRONG_MAGNITUDE_CHANNEL_IDX);
1297 effect.u.rumble.weak_magnitude = element.getMagnitude(FF_WEAK_MAGNITUDE_CHANNEL_IDX);
Nathaniel R. Lewiscacd69a2019-08-12 22:07:00 +00001298 effect.replay.length = element.duration.count();
Michael Wrightd02c5b62014-02-10 15:10:22 -08001299 effect.replay.delay = 0;
1300 if (ioctl(device->fd, EVIOCSFF, &effect)) {
1301 ALOGW("Could not upload force feedback effect to device %s due to error %d.",
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001302 device->identifier.name.c_str(), errno);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001303 return;
1304 }
1305 device->ffEffectId = effect.id;
1306
1307 struct input_event ev;
1308 ev.time.tv_sec = 0;
1309 ev.time.tv_usec = 0;
1310 ev.type = EV_FF;
1311 ev.code = device->ffEffectId;
1312 ev.value = 1;
1313 if (write(device->fd, &ev, sizeof(ev)) != sizeof(ev)) {
1314 ALOGW("Could not start force feedback effect on device %s due to error %d.",
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001315 device->identifier.name.c_str(), errno);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001316 return;
1317 }
1318 device->ffEffectPlaying = true;
1319 }
1320}
1321
1322void EventHub::cancelVibrate(int32_t deviceId) {
Chris Ye87143712020-11-10 05:05:58 +00001323 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001324 Device* device = getDeviceLocked(deviceId);
Chris Ye66fbac32020-07-06 20:36:43 -07001325 if (device != nullptr && device->hasValidFd()) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08001326 if (device->ffEffectPlaying) {
1327 device->ffEffectPlaying = false;
1328
1329 struct input_event ev;
1330 ev.time.tv_sec = 0;
1331 ev.time.tv_usec = 0;
1332 ev.type = EV_FF;
1333 ev.code = device->ffEffectId;
1334 ev.value = 0;
1335 if (write(device->fd, &ev, sizeof(ev)) != sizeof(ev)) {
1336 ALOGW("Could not stop force feedback effect on device %s due to error %d.",
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001337 device->identifier.name.c_str(), errno);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001338 return;
1339 }
1340 }
1341 }
1342}
1343
Chris Ye87143712020-11-10 05:05:58 +00001344std::vector<int32_t> EventHub::getVibratorIds(int32_t deviceId) {
1345 std::scoped_lock _l(mLock);
1346 std::vector<int32_t> vibrators;
1347 Device* device = getDeviceLocked(deviceId);
1348 if (device != nullptr && device->hasValidFd() &&
1349 device->classes.test(InputDeviceClass::VIBRATOR)) {
1350 vibrators.push_back(FF_STRONG_MAGNITUDE_CHANNEL_IDX);
1351 vibrators.push_back(FF_WEAK_MAGNITUDE_CHANNEL_IDX);
1352 }
1353 return vibrators;
1354}
1355
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +01001356EventHub::Device* EventHub::getDeviceByDescriptorLocked(const std::string& descriptor) const {
Chris Ye989bb932020-07-04 16:18:59 -07001357 for (const auto& [id, device] : mDevices) {
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +01001358 if (descriptor == device->identifier.descriptor) {
Chris Ye989bb932020-07-04 16:18:59 -07001359 return device.get();
Michael Wrightd02c5b62014-02-10 15:10:22 -08001360 }
1361 }
Yi Kong9b14ac62018-07-17 13:48:38 -07001362 return nullptr;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001363}
1364
1365EventHub::Device* EventHub::getDeviceLocked(int32_t deviceId) const {
Prabir Pradhancae4b3a2019-02-05 18:51:32 -08001366 if (deviceId == ReservedInputDeviceId::BUILT_IN_KEYBOARD_ID) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08001367 deviceId = mBuiltInKeyboardId;
1368 }
Chris Ye989bb932020-07-04 16:18:59 -07001369 const auto& it = mDevices.find(deviceId);
1370 return it != mDevices.end() ? it->second.get() : nullptr;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001371}
1372
Chris Ye8594e192020-07-14 10:34:06 -07001373EventHub::Device* EventHub::getDeviceByPathLocked(const std::string& devicePath) const {
Chris Ye989bb932020-07-04 16:18:59 -07001374 for (const auto& [id, device] : mDevices) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08001375 if (device->path == devicePath) {
Chris Ye989bb932020-07-04 16:18:59 -07001376 return device.get();
Michael Wrightd02c5b62014-02-10 15:10:22 -08001377 }
1378 }
Yi Kong9b14ac62018-07-17 13:48:38 -07001379 return nullptr;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001380}
1381
Siarhei Vishniakou12598682018-11-02 17:19:19 -07001382/**
1383 * The file descriptor could be either input device, or a video device (associated with a
1384 * specific input device). Check both cases here, and return the device that this event
1385 * belongs to. Caller can compare the fd's once more to determine event type.
1386 * Looks through all input devices, and only attached video devices. Unattached video
1387 * devices are ignored.
1388 */
Siarhei Vishniakou4bc561c2018-11-02 17:41:58 -07001389EventHub::Device* EventHub::getDeviceByFdLocked(int fd) const {
Chris Ye989bb932020-07-04 16:18:59 -07001390 for (const auto& [id, device] : mDevices) {
Siarhei Vishniakou4bc561c2018-11-02 17:41:58 -07001391 if (device->fd == fd) {
Siarhei Vishniakou12598682018-11-02 17:19:19 -07001392 // This is an input device event
Chris Ye989bb932020-07-04 16:18:59 -07001393 return device.get();
Siarhei Vishniakou12598682018-11-02 17:19:19 -07001394 }
1395 if (device->videoDevice && device->videoDevice->getFd() == fd) {
1396 // This is a video device event
Chris Ye989bb932020-07-04 16:18:59 -07001397 return device.get();
Siarhei Vishniakou4bc561c2018-11-02 17:41:58 -07001398 }
1399 }
Siarhei Vishniakou12598682018-11-02 17:19:19 -07001400 // We do not check mUnattachedVideoDevices here because they should not participate in epoll,
1401 // and therefore should never be looked up by fd.
Siarhei Vishniakou4bc561c2018-11-02 17:41:58 -07001402 return nullptr;
1403}
1404
Chris Yee2b1e5c2021-03-10 22:45:12 -08001405std::optional<int32_t> EventHub::getBatteryCapacity(int32_t deviceId, int32_t batteryId) const {
Kim Low03ea0352020-11-06 12:45:07 -08001406 std::scoped_lock _l(mLock);
Kim Low03ea0352020-11-06 12:45:07 -08001407
Chris Yee2b1e5c2021-03-10 22:45:12 -08001408 const auto infos = getBatteryInfoLocked(deviceId);
1409 auto it = infos.find(batteryId);
1410 if (it == infos.end()) {
Kim Low03ea0352020-11-06 12:45:07 -08001411 return std::nullopt;
1412 }
Chris Yee2b1e5c2021-03-10 22:45:12 -08001413 std::string buffer;
Kim Low03ea0352020-11-06 12:45:07 -08001414
1415 // Some devices report battery capacity as an integer through the "capacity" file
Chris Yee2b1e5c2021-03-10 22:45:12 -08001416 if (base::ReadFileToString(it->second.path / BATTERY_NODES.at(InputBatteryClass::CAPACITY),
1417 &buffer)) {
Chris Yed1936772021-02-22 10:30:40 -08001418 return std::stoi(base::Trim(buffer));
Kim Low03ea0352020-11-06 12:45:07 -08001419 }
1420
1421 // Other devices report capacity as an enum value POWER_SUPPLY_CAPACITY_LEVEL_XXX
1422 // These values are taken from kernel source code include/linux/power_supply.h
Chris Yee2b1e5c2021-03-10 22:45:12 -08001423 if (base::ReadFileToString(it->second.path /
1424 BATTERY_NODES.at(InputBatteryClass::CAPACITY_LEVEL),
1425 &buffer)) {
Chris Yed1936772021-02-22 10:30:40 -08001426 // Remove any white space such as trailing new line
Chris Yee2b1e5c2021-03-10 22:45:12 -08001427 const auto levelIt = BATTERY_LEVEL.find(base::Trim(buffer));
1428 if (levelIt != BATTERY_LEVEL.end()) {
1429 return levelIt->second;
Kim Low03ea0352020-11-06 12:45:07 -08001430 }
1431 }
Chris Yee2b1e5c2021-03-10 22:45:12 -08001432
Kim Low03ea0352020-11-06 12:45:07 -08001433 return std::nullopt;
1434}
1435
Chris Yee2b1e5c2021-03-10 22:45:12 -08001436std::optional<int32_t> EventHub::getBatteryStatus(int32_t deviceId, int32_t batteryId) const {
Kim Low03ea0352020-11-06 12:45:07 -08001437 std::scoped_lock _l(mLock);
Chris Yee2b1e5c2021-03-10 22:45:12 -08001438 const auto infos = getBatteryInfoLocked(deviceId);
1439 auto it = infos.find(batteryId);
1440 if (it == infos.end()) {
Kim Low03ea0352020-11-06 12:45:07 -08001441 return std::nullopt;
1442 }
Chris Yee2b1e5c2021-03-10 22:45:12 -08001443 std::string buffer;
Kim Low03ea0352020-11-06 12:45:07 -08001444
Chris Yee2b1e5c2021-03-10 22:45:12 -08001445 if (!base::ReadFileToString(it->second.path / BATTERY_NODES.at(InputBatteryClass::STATUS),
1446 &buffer)) {
Kim Low03ea0352020-11-06 12:45:07 -08001447 ALOGE("Failed to read sysfs battery info: %s", strerror(errno));
1448 return std::nullopt;
1449 }
1450
Chris Yed1936772021-02-22 10:30:40 -08001451 // Remove white space like trailing new line
Chris Yee2b1e5c2021-03-10 22:45:12 -08001452 const auto statusIt = BATTERY_STATUS.find(base::Trim(buffer));
1453 if (statusIt != BATTERY_STATUS.end()) {
1454 return statusIt->second;
Kim Low03ea0352020-11-06 12:45:07 -08001455 }
1456
1457 return std::nullopt;
1458}
1459
Michael Wrightd02c5b62014-02-10 15:10:22 -08001460size_t EventHub::getEvents(int timeoutMillis, RawEvent* buffer, size_t bufferSize) {
1461 ALOG_ASSERT(bufferSize >= 1);
1462
Chris Ye87143712020-11-10 05:05:58 +00001463 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001464
1465 struct input_event readBuffer[bufferSize];
1466
1467 RawEvent* event = buffer;
1468 size_t capacity = bufferSize;
1469 bool awoken = false;
1470 for (;;) {
1471 nsecs_t now = systemTime(SYSTEM_TIME_MONOTONIC);
1472
1473 // Reopen input devices if needed.
1474 if (mNeedToReopenDevices) {
1475 mNeedToReopenDevices = false;
1476
1477 ALOGI("Reopening all input devices due to a configuration change.");
1478
1479 closeAllDevicesLocked();
1480 mNeedToScanDevices = true;
1481 break; // return to the caller before we actually rescan
1482 }
1483
1484 // Report any devices that had last been added/removed.
Chris Ye989bb932020-07-04 16:18:59 -07001485 for (auto it = mClosingDevices.begin(); it != mClosingDevices.end();) {
1486 std::unique_ptr<Device> device = std::move(*it);
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001487 ALOGV("Reporting device closed: id=%d, name=%s\n", device->id, device->path.c_str());
Michael Wrightd02c5b62014-02-10 15:10:22 -08001488 event->when = now;
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001489 event->deviceId = (device->id == mBuiltInKeyboardId)
1490 ? ReservedInputDeviceId::BUILT_IN_KEYBOARD_ID
1491 : device->id;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001492 event->type = DEVICE_REMOVED;
1493 event += 1;
Chris Ye989bb932020-07-04 16:18:59 -07001494 it = mClosingDevices.erase(it);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001495 mNeedToSendFinishedDeviceScan = true;
1496 if (--capacity == 0) {
1497 break;
1498 }
1499 }
1500
1501 if (mNeedToScanDevices) {
1502 mNeedToScanDevices = false;
1503 scanDevicesLocked();
1504 mNeedToSendFinishedDeviceScan = true;
1505 }
1506
Siarhei Vishniakouf49608d2020-08-20 19:18:21 -05001507 while (!mOpeningDevices.empty()) {
1508 std::unique_ptr<Device> device = std::move(*mOpeningDevices.rbegin());
1509 mOpeningDevices.pop_back();
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001510 ALOGV("Reporting device opened: id=%d, name=%s\n", device->id, device->path.c_str());
Michael Wrightd02c5b62014-02-10 15:10:22 -08001511 event->when = now;
1512 event->deviceId = device->id == mBuiltInKeyboardId ? 0 : device->id;
1513 event->type = DEVICE_ADDED;
1514 event += 1;
Siarhei Vishniakouf49608d2020-08-20 19:18:21 -05001515
1516 // Try to find a matching video device by comparing device names
1517 for (auto it = mUnattachedVideoDevices.begin(); it != mUnattachedVideoDevices.end();
1518 it++) {
1519 std::unique_ptr<TouchVideoDevice>& videoDevice = *it;
Chris Yed3fef462021-03-07 17:10:08 -08001520 if (tryAddVideoDeviceLocked(*device, videoDevice)) {
Siarhei Vishniakouf49608d2020-08-20 19:18:21 -05001521 // videoDevice was transferred to 'device'
1522 it = mUnattachedVideoDevices.erase(it);
1523 break;
1524 }
1525 }
1526
1527 auto [dev_it, inserted] = mDevices.insert_or_assign(device->id, std::move(device));
1528 if (!inserted) {
Chris Ye989bb932020-07-04 16:18:59 -07001529 ALOGW("Device id %d exists, replaced.", device->id);
1530 }
Michael Wrightd02c5b62014-02-10 15:10:22 -08001531 mNeedToSendFinishedDeviceScan = true;
1532 if (--capacity == 0) {
1533 break;
1534 }
1535 }
1536
1537 if (mNeedToSendFinishedDeviceScan) {
1538 mNeedToSendFinishedDeviceScan = false;
1539 event->when = now;
1540 event->type = FINISHED_DEVICE_SCAN;
1541 event += 1;
1542 if (--capacity == 0) {
1543 break;
1544 }
1545 }
1546
1547 // Grab the next input event.
1548 bool deviceChanged = false;
1549 while (mPendingEventIndex < mPendingEventCount) {
1550 const struct epoll_event& eventItem = mPendingEventItems[mPendingEventIndex++];
Siarhei Vishniakou4bc561c2018-11-02 17:41:58 -07001551 if (eventItem.data.fd == mINotifyFd) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08001552 if (eventItem.events & EPOLLIN) {
1553 mPendingINotify = true;
1554 } else {
1555 ALOGW("Received unexpected epoll event 0x%08x for INotify.", eventItem.events);
1556 }
1557 continue;
1558 }
1559
Siarhei Vishniakou4bc561c2018-11-02 17:41:58 -07001560 if (eventItem.data.fd == mWakeReadPipeFd) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08001561 if (eventItem.events & EPOLLIN) {
1562 ALOGV("awoken after wake()");
1563 awoken = true;
Siarhei Vishniakoub4d960d2019-10-03 15:38:44 -05001564 char wakeReadBuffer[16];
Michael Wrightd02c5b62014-02-10 15:10:22 -08001565 ssize_t nRead;
1566 do {
Siarhei Vishniakoub4d960d2019-10-03 15:38:44 -05001567 nRead = read(mWakeReadPipeFd, wakeReadBuffer, sizeof(wakeReadBuffer));
1568 } while ((nRead == -1 && errno == EINTR) || nRead == sizeof(wakeReadBuffer));
Michael Wrightd02c5b62014-02-10 15:10:22 -08001569 } else {
1570 ALOGW("Received unexpected epoll event 0x%08x for wake read pipe.",
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001571 eventItem.events);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001572 }
1573 continue;
1574 }
1575
Siarhei Vishniakou4bc561c2018-11-02 17:41:58 -07001576 Device* device = getDeviceByFdLocked(eventItem.data.fd);
Chris Ye989bb932020-07-04 16:18:59 -07001577 if (device == nullptr) {
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001578 ALOGE("Received unexpected epoll event 0x%08x for unknown fd %d.", eventItem.events,
1579 eventItem.data.fd);
Siarhei Vishniakou12598682018-11-02 17:19:19 -07001580 ALOG_ASSERT(!DEBUG);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001581 continue;
1582 }
Siarhei Vishniakou12598682018-11-02 17:19:19 -07001583 if (device->videoDevice && eventItem.data.fd == device->videoDevice->getFd()) {
1584 if (eventItem.events & EPOLLIN) {
1585 size_t numFrames = device->videoDevice->readAndQueueFrames();
1586 if (numFrames == 0) {
1587 ALOGE("Received epoll event for video device %s, but could not read frame",
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001588 device->videoDevice->getName().c_str());
Siarhei Vishniakou12598682018-11-02 17:19:19 -07001589 }
1590 } else if (eventItem.events & EPOLLHUP) {
1591 // TODO(b/121395353) - consider adding EPOLLRDHUP
1592 ALOGI("Removing video device %s due to epoll hang-up event.",
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001593 device->videoDevice->getName().c_str());
Siarhei Vishniakou12598682018-11-02 17:19:19 -07001594 unregisterVideoDeviceFromEpollLocked(*device->videoDevice);
1595 device->videoDevice = nullptr;
1596 } else {
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001597 ALOGW("Received unexpected epoll event 0x%08x for device %s.", eventItem.events,
1598 device->videoDevice->getName().c_str());
Siarhei Vishniakou12598682018-11-02 17:19:19 -07001599 ALOG_ASSERT(!DEBUG);
1600 }
1601 continue;
1602 }
1603 // This must be an input event
Michael Wrightd02c5b62014-02-10 15:10:22 -08001604 if (eventItem.events & EPOLLIN) {
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001605 int32_t readSize =
1606 read(device->fd, readBuffer, sizeof(struct input_event) * capacity);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001607 if (readSize == 0 || (readSize < 0 && errno == ENODEV)) {
1608 // Device was removed before INotify noticed.
Mark Salyzyn5aa26b22014-06-10 13:07:44 -07001609 ALOGW("could not get event, removed? (fd: %d size: %" PRId32
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001610 " bufferSize: %zu capacity: %zu errno: %d)\n",
1611 device->fd, readSize, bufferSize, capacity, errno);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001612 deviceChanged = true;
Chris Ye989bb932020-07-04 16:18:59 -07001613 closeDeviceLocked(*device);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001614 } else if (readSize < 0) {
1615 if (errno != EAGAIN && errno != EINTR) {
1616 ALOGW("could not get event (errno=%d)", errno);
1617 }
1618 } else if ((readSize % sizeof(struct input_event)) != 0) {
1619 ALOGE("could not get event (wrong size: %d)", readSize);
1620 } else {
1621 int32_t deviceId = device->id == mBuiltInKeyboardId ? 0 : device->id;
1622
1623 size_t count = size_t(readSize) / sizeof(struct input_event);
1624 for (size_t i = 0; i < count; i++) {
1625 struct input_event& iev = readBuffer[i];
Siarhei Vishniakou592bac22018-11-08 19:42:38 -08001626 event->when = processEventTimestamp(iev);
Siarhei Vishniakou58ba3d12021-02-11 01:31:07 +00001627 event->readTime = systemTime(SYSTEM_TIME_MONOTONIC);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001628 event->deviceId = deviceId;
1629 event->type = iev.type;
1630 event->code = iev.code;
1631 event->value = iev.value;
1632 event += 1;
1633 capacity -= 1;
1634 }
1635 if (capacity == 0) {
1636 // The result buffer is full. Reset the pending event index
1637 // so we will try to read the device again on the next iteration.
1638 mPendingEventIndex -= 1;
1639 break;
1640 }
1641 }
1642 } else if (eventItem.events & EPOLLHUP) {
1643 ALOGI("Removing device %s due to epoll hang-up event.",
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001644 device->identifier.name.c_str());
Michael Wrightd02c5b62014-02-10 15:10:22 -08001645 deviceChanged = true;
Chris Ye989bb932020-07-04 16:18:59 -07001646 closeDeviceLocked(*device);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001647 } else {
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001648 ALOGW("Received unexpected epoll event 0x%08x for device %s.", eventItem.events,
1649 device->identifier.name.c_str());
Michael Wrightd02c5b62014-02-10 15:10:22 -08001650 }
1651 }
1652
1653 // readNotify() will modify the list of devices so this must be done after
1654 // processing all other events to ensure that we read all remaining events
1655 // before closing the devices.
1656 if (mPendingINotify && mPendingEventIndex >= mPendingEventCount) {
1657 mPendingINotify = false;
1658 readNotifyLocked();
1659 deviceChanged = true;
1660 }
1661
1662 // Report added or removed devices immediately.
1663 if (deviceChanged) {
1664 continue;
1665 }
1666
1667 // Return now if we have collected any events or if we were explicitly awoken.
1668 if (event != buffer || awoken) {
1669 break;
1670 }
1671
Siarhei Vishniakou4b5a87f2019-09-24 13:03:58 +01001672 // Poll for events.
1673 // When a device driver has pending (unread) events, it acquires
1674 // a kernel wake lock. Once the last pending event has been read, the device
1675 // driver will release the kernel wake lock, but the epoll will hold the wakelock,
1676 // since we are using EPOLLWAKEUP. The wakelock is released by the epoll when epoll_wait
1677 // is called again for the same fd that produced the event.
1678 // Thus the system can only sleep if there are no events pending or
1679 // currently being processed.
Michael Wrightd02c5b62014-02-10 15:10:22 -08001680 //
1681 // The timeout is advisory only. If the device is asleep, it will not wake just to
1682 // service the timeout.
1683 mPendingEventIndex = 0;
1684
Siarhei Vishniakou4b5a87f2019-09-24 13:03:58 +01001685 mLock.unlock(); // release lock before poll
Michael Wrightd02c5b62014-02-10 15:10:22 -08001686
1687 int pollResult = epoll_wait(mEpollFd, mPendingEventItems, EPOLL_MAX_EVENTS, timeoutMillis);
1688
Siarhei Vishniakou4b5a87f2019-09-24 13:03:58 +01001689 mLock.lock(); // reacquire lock after poll
Michael Wrightd02c5b62014-02-10 15:10:22 -08001690
1691 if (pollResult == 0) {
1692 // Timed out.
1693 mPendingEventCount = 0;
1694 break;
1695 }
1696
1697 if (pollResult < 0) {
1698 // An error occurred.
1699 mPendingEventCount = 0;
1700
1701 // Sleep after errors to avoid locking up the system.
1702 // Hopefully the error is transient.
1703 if (errno != EINTR) {
1704 ALOGW("poll failed (errno=%d)\n", errno);
1705 usleep(100000);
1706 }
1707 } else {
1708 // Some events occurred.
1709 mPendingEventCount = size_t(pollResult);
1710 }
1711 }
1712
1713 // All done, return the number of events we read.
1714 return event - buffer;
1715}
1716
Siarhei Vishniakouadd89292018-12-13 19:23:36 -08001717std::vector<TouchVideoFrame> EventHub::getVideoFrames(int32_t deviceId) {
Chris Ye87143712020-11-10 05:05:58 +00001718 std::scoped_lock _l(mLock);
Siarhei Vishniakouadd89292018-12-13 19:23:36 -08001719
1720 Device* device = getDeviceLocked(deviceId);
Chris Ye66fbac32020-07-06 20:36:43 -07001721 if (device == nullptr || !device->videoDevice) {
Siarhei Vishniakouadd89292018-12-13 19:23:36 -08001722 return {};
1723 }
1724 return device->videoDevice->consumeFrames();
1725}
1726
Michael Wrightd02c5b62014-02-10 15:10:22 -08001727void EventHub::wake() {
1728 ALOGV("wake() called");
1729
1730 ssize_t nWrite;
1731 do {
1732 nWrite = write(mWakeWritePipeFd, "W", 1);
1733 } while (nWrite == -1 && errno == EINTR);
1734
1735 if (nWrite != 1 && errno != EAGAIN) {
Siarhei Vishniakou22c88462018-12-13 19:34:53 -08001736 ALOGW("Could not write wake signal: %s", strerror(errno));
Michael Wrightd02c5b62014-02-10 15:10:22 -08001737 }
1738}
1739
1740void EventHub::scanDevicesLocked() {
Siarhei Vishniakou22c88462018-12-13 19:34:53 -08001741 status_t result = scanDirLocked(DEVICE_PATH);
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001742 if (result < 0) {
Siarhei Vishniakou22c88462018-12-13 19:34:53 -08001743 ALOGE("scan dir failed for %s", DEVICE_PATH);
1744 }
Philip Quinn39b81682019-01-09 22:20:39 -08001745 if (isV4lScanningEnabled()) {
1746 result = scanVideoDirLocked(VIDEO_DEVICE_PATH);
1747 if (result != OK) {
1748 ALOGE("scan video dir failed for %s", VIDEO_DEVICE_PATH);
1749 }
Michael Wrightd02c5b62014-02-10 15:10:22 -08001750 }
Chris Ye989bb932020-07-04 16:18:59 -07001751 if (mDevices.find(ReservedInputDeviceId::VIRTUAL_KEYBOARD_ID) == mDevices.end()) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08001752 createVirtualKeyboardLocked();
1753 }
1754}
1755
1756// ----------------------------------------------------------------------------
1757
Michael Wrightd02c5b62014-02-10 15:10:22 -08001758static const int32_t GAMEPAD_KEYCODES[] = {
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001759 AKEYCODE_BUTTON_A, AKEYCODE_BUTTON_B, AKEYCODE_BUTTON_C, //
1760 AKEYCODE_BUTTON_X, AKEYCODE_BUTTON_Y, AKEYCODE_BUTTON_Z, //
1761 AKEYCODE_BUTTON_L1, AKEYCODE_BUTTON_R1, //
1762 AKEYCODE_BUTTON_L2, AKEYCODE_BUTTON_R2, //
1763 AKEYCODE_BUTTON_THUMBL, AKEYCODE_BUTTON_THUMBR, //
1764 AKEYCODE_BUTTON_START, AKEYCODE_BUTTON_SELECT, AKEYCODE_BUTTON_MODE, //
Michael Wrightd02c5b62014-02-10 15:10:22 -08001765};
1766
Siarhei Vishniakou25920312018-12-12 15:24:44 -08001767status_t EventHub::registerFdForEpoll(int fd) {
Siarhei Vishniakou12598682018-11-02 17:19:19 -07001768 // TODO(b/121395353) - consider adding EPOLLRDHUP
Siarhei Vishniakou25920312018-12-12 15:24:44 -08001769 struct epoll_event eventItem = {};
1770 eventItem.events = EPOLLIN | EPOLLWAKEUP;
1771 eventItem.data.fd = fd;
1772 if (epoll_ctl(mEpollFd, EPOLL_CTL_ADD, fd, &eventItem)) {
1773 ALOGE("Could not add fd to epoll instance: %s", strerror(errno));
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -07001774 return -errno;
1775 }
1776 return OK;
1777}
1778
Siarhei Vishniakou25920312018-12-12 15:24:44 -08001779status_t EventHub::unregisterFdFromEpoll(int fd) {
1780 if (epoll_ctl(mEpollFd, EPOLL_CTL_DEL, fd, nullptr)) {
1781 ALOGW("Could not remove fd from epoll instance: %s", strerror(errno));
1782 return -errno;
1783 }
1784 return OK;
1785}
1786
Chris Ye989bb932020-07-04 16:18:59 -07001787status_t EventHub::registerDeviceForEpollLocked(Device& device) {
1788 status_t result = registerFdForEpoll(device.fd);
Siarhei Vishniakou25920312018-12-12 15:24:44 -08001789 if (result != OK) {
Chris Ye989bb932020-07-04 16:18:59 -07001790 ALOGE("Could not add input device fd to epoll for device %" PRId32, device.id);
Siarhei Vishniakou12598682018-11-02 17:19:19 -07001791 return result;
1792 }
Chris Ye989bb932020-07-04 16:18:59 -07001793 if (device.videoDevice) {
1794 registerVideoDeviceForEpollLocked(*device.videoDevice);
Siarhei Vishniakou25920312018-12-12 15:24:44 -08001795 }
1796 return result;
1797}
1798
Siarhei Vishniakou12598682018-11-02 17:19:19 -07001799void EventHub::registerVideoDeviceForEpollLocked(const TouchVideoDevice& videoDevice) {
1800 status_t result = registerFdForEpoll(videoDevice.getFd());
1801 if (result != OK) {
1802 ALOGE("Could not add video device %s to epoll", videoDevice.getName().c_str());
1803 }
1804}
1805
Chris Ye989bb932020-07-04 16:18:59 -07001806status_t EventHub::unregisterDeviceFromEpollLocked(Device& device) {
1807 if (device.hasValidFd()) {
1808 status_t result = unregisterFdFromEpoll(device.fd);
Siarhei Vishniakou25920312018-12-12 15:24:44 -08001809 if (result != OK) {
Chris Ye989bb932020-07-04 16:18:59 -07001810 ALOGW("Could not remove input device fd from epoll for device %" PRId32, device.id);
Siarhei Vishniakou25920312018-12-12 15:24:44 -08001811 return result;
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -07001812 }
1813 }
Chris Ye989bb932020-07-04 16:18:59 -07001814 if (device.videoDevice) {
1815 unregisterVideoDeviceFromEpollLocked(*device.videoDevice);
Siarhei Vishniakou12598682018-11-02 17:19:19 -07001816 }
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -07001817 return OK;
1818}
1819
Siarhei Vishniakou12598682018-11-02 17:19:19 -07001820void EventHub::unregisterVideoDeviceFromEpollLocked(const TouchVideoDevice& videoDevice) {
1821 if (videoDevice.hasValidFd()) {
1822 status_t result = unregisterFdFromEpoll(videoDevice.getFd());
1823 if (result != OK) {
1824 ALOGW("Could not remove video device fd from epoll for device: %s",
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001825 videoDevice.getName().c_str());
Siarhei Vishniakou12598682018-11-02 17:19:19 -07001826 }
1827 }
1828}
1829
Chris Yed3fef462021-03-07 17:10:08 -08001830void EventHub::reportDeviceAddedForStatisticsLocked(const InputDeviceIdentifier& identifier,
1831 Flags<InputDeviceClass> classes) {
Chris Ye657c2f02021-05-25 16:24:37 -07001832 SHA256_CTX ctx;
1833 SHA256_Init(&ctx);
1834 SHA256_Update(&ctx, reinterpret_cast<const uint8_t*>(identifier.uniqueId.c_str()),
1835 identifier.uniqueId.size());
1836 std::array<uint8_t, SHA256_DIGEST_LENGTH> digest;
1837 SHA256_Final(digest.data(), &ctx);
1838
1839 std::string obfuscatedId;
1840 for (size_t i = 0; i < OBFUSCATED_LENGTH; i++) {
1841 obfuscatedId += StringPrintf("%02x", digest[i]);
1842 }
1843
Chris Yed3fef462021-03-07 17:10:08 -08001844 android::util::stats_write(android::util::INPUTDEVICE_REGISTERED, identifier.name.c_str(),
1845 identifier.vendor, identifier.product, identifier.version,
Chris Ye657c2f02021-05-25 16:24:37 -07001846 identifier.bus, obfuscatedId.c_str(), classes.get());
Chris Yed3fef462021-03-07 17:10:08 -08001847}
1848
Siarhei Vishniakoua4c502a2021-02-05 00:45:20 +00001849void EventHub::openDeviceLocked(const std::string& devicePath) {
1850 // If an input device happens to register around the time when EventHub's constructor runs, it
1851 // is possible that the same input event node (for example, /dev/input/event3) will be noticed
1852 // in both 'inotify' callback and also in the 'scanDirLocked' pass. To prevent duplicate devices
1853 // from getting registered, ensure that this path is not already covered by an existing device.
1854 for (const auto& [deviceId, device] : mDevices) {
1855 if (device->path == devicePath) {
1856 return; // device was already registered
1857 }
1858 }
1859
Michael Wrightd02c5b62014-02-10 15:10:22 -08001860 char buffer[80];
1861
Chris Ye8594e192020-07-14 10:34:06 -07001862 ALOGV("Opening device: %s", devicePath.c_str());
Michael Wrightd02c5b62014-02-10 15:10:22 -08001863
Chris Ye8594e192020-07-14 10:34:06 -07001864 int fd = open(devicePath.c_str(), O_RDWR | O_CLOEXEC | O_NONBLOCK);
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001865 if (fd < 0) {
Chris Ye8594e192020-07-14 10:34:06 -07001866 ALOGE("could not open %s, %s\n", devicePath.c_str(), strerror(errno));
Siarhei Vishniakoua4c502a2021-02-05 00:45:20 +00001867 return;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001868 }
1869
1870 InputDeviceIdentifier identifier;
1871
1872 // Get device name.
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001873 if (ioctl(fd, EVIOCGNAME(sizeof(buffer) - 1), &buffer) < 1) {
Chris Ye8594e192020-07-14 10:34:06 -07001874 ALOGE("Could not get device name for %s: %s", devicePath.c_str(), strerror(errno));
Michael Wrightd02c5b62014-02-10 15:10:22 -08001875 } else {
1876 buffer[sizeof(buffer) - 1] = '\0';
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +01001877 identifier.name = buffer;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001878 }
1879
1880 // Check to see if the device is on our excluded list
1881 for (size_t i = 0; i < mExcludedDevices.size(); i++) {
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +01001882 const std::string& item = mExcludedDevices[i];
Michael Wrightd02c5b62014-02-10 15:10:22 -08001883 if (identifier.name == item) {
Chris Ye8594e192020-07-14 10:34:06 -07001884 ALOGI("ignoring event id %s driver %s\n", devicePath.c_str(), item.c_str());
Michael Wrightd02c5b62014-02-10 15:10:22 -08001885 close(fd);
Siarhei Vishniakoua4c502a2021-02-05 00:45:20 +00001886 return;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001887 }
1888 }
1889
1890 // Get device driver version.
1891 int driverVersion;
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001892 if (ioctl(fd, EVIOCGVERSION, &driverVersion)) {
Chris Ye8594e192020-07-14 10:34:06 -07001893 ALOGE("could not get driver version for %s, %s\n", devicePath.c_str(), strerror(errno));
Michael Wrightd02c5b62014-02-10 15:10:22 -08001894 close(fd);
Siarhei Vishniakoua4c502a2021-02-05 00:45:20 +00001895 return;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001896 }
1897
1898 // Get device identifier.
1899 struct input_id inputId;
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001900 if (ioctl(fd, EVIOCGID, &inputId)) {
Chris Ye8594e192020-07-14 10:34:06 -07001901 ALOGE("could not get device input id for %s, %s\n", devicePath.c_str(), strerror(errno));
Michael Wrightd02c5b62014-02-10 15:10:22 -08001902 close(fd);
Siarhei Vishniakoua4c502a2021-02-05 00:45:20 +00001903 return;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001904 }
1905 identifier.bus = inputId.bustype;
1906 identifier.product = inputId.product;
1907 identifier.vendor = inputId.vendor;
1908 identifier.version = inputId.version;
1909
1910 // Get device physical location.
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001911 if (ioctl(fd, EVIOCGPHYS(sizeof(buffer) - 1), &buffer) < 1) {
1912 // fprintf(stderr, "could not get location for %s, %s\n", devicePath, strerror(errno));
Michael Wrightd02c5b62014-02-10 15:10:22 -08001913 } else {
1914 buffer[sizeof(buffer) - 1] = '\0';
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +01001915 identifier.location = buffer;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001916 }
1917
1918 // Get device unique id.
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001919 if (ioctl(fd, EVIOCGUNIQ(sizeof(buffer) - 1), &buffer) < 1) {
1920 // fprintf(stderr, "could not get idstring for %s, %s\n", devicePath, strerror(errno));
Michael Wrightd02c5b62014-02-10 15:10:22 -08001921 } else {
1922 buffer[sizeof(buffer) - 1] = '\0';
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +01001923 identifier.uniqueId = buffer;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001924 }
1925
1926 // Fill in the descriptor.
1927 assignDescriptorLocked(identifier);
1928
Michael Wrightd02c5b62014-02-10 15:10:22 -08001929 // Allocate device. (The device object takes ownership of the fd at this point.)
1930 int32_t deviceId = mNextDeviceId++;
Chris Ye989bb932020-07-04 16:18:59 -07001931 std::unique_ptr<Device> device = std::make_unique<Device>(fd, deviceId, devicePath, identifier);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001932
Chris Ye8594e192020-07-14 10:34:06 -07001933 ALOGV("add device %d: %s\n", deviceId, devicePath.c_str());
Michael Wrightd02c5b62014-02-10 15:10:22 -08001934 ALOGV(" bus: %04x\n"
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001935 " vendor %04x\n"
1936 " product %04x\n"
1937 " version %04x\n",
1938 identifier.bus, identifier.vendor, identifier.product, identifier.version);
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +01001939 ALOGV(" name: \"%s\"\n", identifier.name.c_str());
1940 ALOGV(" location: \"%s\"\n", identifier.location.c_str());
1941 ALOGV(" unique id: \"%s\"\n", identifier.uniqueId.c_str());
1942 ALOGV(" descriptor: \"%s\"\n", identifier.descriptor.c_str());
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001943 ALOGV(" driver: v%d.%d.%d\n", driverVersion >> 16, (driverVersion >> 8) & 0xff,
1944 driverVersion & 0xff);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001945
1946 // Load the configuration file for the device.
Chris Ye989bb932020-07-04 16:18:59 -07001947 device->loadConfigurationLocked();
Michael Wrightd02c5b62014-02-10 15:10:22 -08001948
Chris Yee2b1e5c2021-03-10 22:45:12 -08001949 bool hasBattery = false;
1950 bool hasLights = false;
1951 // Check the sysfs root path
1952 std::optional<std::filesystem::path> sysfsRootPath = getSysfsRootPath(devicePath.c_str());
1953 if (sysfsRootPath.has_value()) {
Chris Ye1dd2e5c2021-04-04 23:12:41 -07001954 std::shared_ptr<AssociatedDevice> associatedDevice;
1955 for (const auto& [id, dev] : mDevices) {
1956 if (device->identifier.descriptor == dev->identifier.descriptor &&
1957 !dev->associatedDevice) {
1958 associatedDevice = dev->associatedDevice;
1959 }
Chris Yee2b1e5c2021-03-10 22:45:12 -08001960 }
Chris Ye1dd2e5c2021-04-04 23:12:41 -07001961 if (!associatedDevice) {
1962 associatedDevice = std::make_shared<AssociatedDevice>(sysfsRootPath.value());
1963 }
1964 hasBattery = associatedDevice->configureBatteryLocked();
1965 hasLights = associatedDevice->configureLightsLocked();
Chris Yee2b1e5c2021-03-10 22:45:12 -08001966
Chris Ye1dd2e5c2021-04-04 23:12:41 -07001967 device->associatedDevice = associatedDevice;
Chris Yee2b1e5c2021-03-10 22:45:12 -08001968 }
Chris Ye3fdbfef2021-01-06 18:45:18 -08001969
Michael Wrightd02c5b62014-02-10 15:10:22 -08001970 // Figure out the kinds of events the device reports.
Chris Ye66fbac32020-07-06 20:36:43 -07001971 device->readDeviceBitMask(EVIOCGBIT(EV_KEY, 0), device->keyBitmask);
1972 device->readDeviceBitMask(EVIOCGBIT(EV_ABS, 0), device->absBitmask);
1973 device->readDeviceBitMask(EVIOCGBIT(EV_REL, 0), device->relBitmask);
1974 device->readDeviceBitMask(EVIOCGBIT(EV_SW, 0), device->swBitmask);
1975 device->readDeviceBitMask(EVIOCGBIT(EV_LED, 0), device->ledBitmask);
1976 device->readDeviceBitMask(EVIOCGBIT(EV_FF, 0), device->ffBitmask);
Chris Yef59a2f42020-10-16 12:55:26 -07001977 device->readDeviceBitMask(EVIOCGBIT(EV_MSC, 0), device->mscBitmask);
Chris Ye66fbac32020-07-06 20:36:43 -07001978 device->readDeviceBitMask(EVIOCGPROP(0), device->propBitmask);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001979
1980 // See if this is a keyboard. Ignore everything in the button range except for
1981 // joystick and gamepad buttons which are handled like keyboards for the most part.
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07001982 bool haveKeyboardKeys =
Chris Ye66fbac32020-07-06 20:36:43 -07001983 device->keyBitmask.any(0, BTN_MISC) || device->keyBitmask.any(BTN_WHEEL, KEY_MAX + 1);
1984 bool haveGamepadButtons = device->keyBitmask.any(BTN_MISC, BTN_MOUSE) ||
1985 device->keyBitmask.any(BTN_JOYSTICK, BTN_DIGI);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001986 if (haveKeyboardKeys || haveGamepadButtons) {
Chris Ye1b0c7342020-07-28 21:57:03 -07001987 device->classes |= InputDeviceClass::KEYBOARD;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001988 }
1989
1990 // See if this is a cursor device such as a trackball or mouse.
Chris Ye66fbac32020-07-06 20:36:43 -07001991 if (device->keyBitmask.test(BTN_MOUSE) && device->relBitmask.test(REL_X) &&
1992 device->relBitmask.test(REL_Y)) {
Chris Ye1b0c7342020-07-28 21:57:03 -07001993 device->classes |= InputDeviceClass::CURSOR;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001994 }
1995
Prashant Malani1941ff52015-08-11 18:29:28 -07001996 // See if this is a rotary encoder type device.
1997 String8 deviceType = String8();
1998 if (device->configuration &&
1999 device->configuration->tryGetProperty(String8("device.type"), deviceType)) {
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002000 if (!deviceType.compare(String8("rotaryEncoder"))) {
Chris Ye1b0c7342020-07-28 21:57:03 -07002001 device->classes |= InputDeviceClass::ROTARY_ENCODER;
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002002 }
Prashant Malani1941ff52015-08-11 18:29:28 -07002003 }
2004
Michael Wrightd02c5b62014-02-10 15:10:22 -08002005 // See if this is a touch pad.
2006 // Is this a new modern multi-touch driver?
Chris Ye66fbac32020-07-06 20:36:43 -07002007 if (device->absBitmask.test(ABS_MT_POSITION_X) && device->absBitmask.test(ABS_MT_POSITION_Y)) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08002008 // Some joysticks such as the PS3 controller report axes that conflict
2009 // with the ABS_MT range. Try to confirm that the device really is
2010 // a touch screen.
Chris Ye66fbac32020-07-06 20:36:43 -07002011 if (device->keyBitmask.test(BTN_TOUCH) || !haveGamepadButtons) {
Chris Ye1b0c7342020-07-28 21:57:03 -07002012 device->classes |= (InputDeviceClass::TOUCH | InputDeviceClass::TOUCH_MT);
Michael Wrightd02c5b62014-02-10 15:10:22 -08002013 }
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002014 // Is this an old style single-touch driver?
Chris Ye66fbac32020-07-06 20:36:43 -07002015 } else if (device->keyBitmask.test(BTN_TOUCH) && device->absBitmask.test(ABS_X) &&
2016 device->absBitmask.test(ABS_Y)) {
Chris Ye1b0c7342020-07-28 21:57:03 -07002017 device->classes |= InputDeviceClass::TOUCH;
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002018 // Is this a BT stylus?
Chris Ye66fbac32020-07-06 20:36:43 -07002019 } else if ((device->absBitmask.test(ABS_PRESSURE) || device->keyBitmask.test(BTN_TOUCH)) &&
2020 !device->absBitmask.test(ABS_X) && !device->absBitmask.test(ABS_Y)) {
Chris Ye1b0c7342020-07-28 21:57:03 -07002021 device->classes |= InputDeviceClass::EXTERNAL_STYLUS;
Michael Wright842500e2015-03-13 17:32:02 -07002022 // Keyboard will try to claim some of the buttons but we really want to reserve those so we
2023 // can fuse it with the touch screen data, so just take them back. Note this means an
2024 // external stylus cannot also be a keyboard device.
Chris Ye1b0c7342020-07-28 21:57:03 -07002025 device->classes &= ~InputDeviceClass::KEYBOARD;
Michael Wrightd02c5b62014-02-10 15:10:22 -08002026 }
2027
2028 // See if this device is a joystick.
2029 // Assumes that joysticks always have gamepad buttons in order to distinguish them
2030 // from other devices such as accelerometers that also have absolute axes.
2031 if (haveGamepadButtons) {
Chris Ye1b0c7342020-07-28 21:57:03 -07002032 auto assumedClasses = device->classes | InputDeviceClass::JOYSTICK;
Michael Wrightd02c5b62014-02-10 15:10:22 -08002033 for (int i = 0; i <= ABS_MAX; i++) {
Chris Ye66fbac32020-07-06 20:36:43 -07002034 if (device->absBitmask.test(i) &&
Chris Ye1b0c7342020-07-28 21:57:03 -07002035 (getAbsAxisUsage(i, assumedClasses).test(InputDeviceClass::JOYSTICK))) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08002036 device->classes = assumedClasses;
2037 break;
2038 }
2039 }
2040 }
2041
Chris Yef59a2f42020-10-16 12:55:26 -07002042 // Check whether this device is an accelerometer.
2043 if (device->propBitmask.test(INPUT_PROP_ACCELEROMETER)) {
2044 device->classes |= InputDeviceClass::SENSOR;
2045 }
2046
Michael Wrightd02c5b62014-02-10 15:10:22 -08002047 // Check whether this device has switches.
2048 for (int i = 0; i <= SW_MAX; i++) {
Chris Ye66fbac32020-07-06 20:36:43 -07002049 if (device->swBitmask.test(i)) {
Chris Ye1b0c7342020-07-28 21:57:03 -07002050 device->classes |= InputDeviceClass::SWITCH;
Michael Wrightd02c5b62014-02-10 15:10:22 -08002051 break;
2052 }
2053 }
2054
2055 // Check whether this device supports the vibrator.
Chris Ye66fbac32020-07-06 20:36:43 -07002056 if (device->ffBitmask.test(FF_RUMBLE)) {
Chris Ye1b0c7342020-07-28 21:57:03 -07002057 device->classes |= InputDeviceClass::VIBRATOR;
Michael Wrightd02c5b62014-02-10 15:10:22 -08002058 }
2059
2060 // Configure virtual keys.
Chris Ye1b0c7342020-07-28 21:57:03 -07002061 if ((device->classes.test(InputDeviceClass::TOUCH))) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08002062 // Load the virtual keys for the touch screen, if any.
2063 // We do this now so that we can make sure to load the keymap if necessary.
Chris Ye989bb932020-07-04 16:18:59 -07002064 bool success = device->loadVirtualKeyMapLocked();
Siarhei Vishniakou3e78dec2019-02-20 16:21:46 -06002065 if (success) {
Chris Ye1b0c7342020-07-28 21:57:03 -07002066 device->classes |= InputDeviceClass::KEYBOARD;
Michael Wrightd02c5b62014-02-10 15:10:22 -08002067 }
2068 }
2069
2070 // Load the key map.
Chris Yef59a2f42020-10-16 12:55:26 -07002071 // We need to do this for joysticks too because the key layout may specify axes, and for
2072 // sensor as well because the key layout may specify the axes to sensor data mapping.
Michael Wrightd02c5b62014-02-10 15:10:22 -08002073 status_t keyMapStatus = NAME_NOT_FOUND;
Chris Yef59a2f42020-10-16 12:55:26 -07002074 if (device->classes.any(InputDeviceClass::KEYBOARD | InputDeviceClass::JOYSTICK |
2075 InputDeviceClass::SENSOR)) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08002076 // Load the keymap for the device.
Chris Ye989bb932020-07-04 16:18:59 -07002077 keyMapStatus = device->loadKeyMapLocked();
Michael Wrightd02c5b62014-02-10 15:10:22 -08002078 }
2079
2080 // Configure the keyboard, gamepad or virtual keyboard.
Chris Ye1b0c7342020-07-28 21:57:03 -07002081 if (device->classes.test(InputDeviceClass::KEYBOARD)) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08002082 // Register the keyboard as a built-in keyboard if it is eligible.
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002083 if (!keyMapStatus && mBuiltInKeyboardId == NO_BUILT_IN_KEYBOARD &&
Siarhei Vishniakoud549b252020-08-11 11:25:26 -05002084 isEligibleBuiltInKeyboard(device->identifier, device->configuration.get(),
2085 &device->keyMap)) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08002086 mBuiltInKeyboardId = device->id;
2087 }
2088
2089 // 'Q' key support = cheap test of whether this is an alpha-capable kbd
Chris Ye989bb932020-07-04 16:18:59 -07002090 if (device->hasKeycodeLocked(AKEYCODE_Q)) {
Chris Ye1b0c7342020-07-28 21:57:03 -07002091 device->classes |= InputDeviceClass::ALPHAKEY;
Michael Wrightd02c5b62014-02-10 15:10:22 -08002092 }
2093
2094 // See if this device has a DPAD.
Chris Ye989bb932020-07-04 16:18:59 -07002095 if (device->hasKeycodeLocked(AKEYCODE_DPAD_UP) &&
2096 device->hasKeycodeLocked(AKEYCODE_DPAD_DOWN) &&
2097 device->hasKeycodeLocked(AKEYCODE_DPAD_LEFT) &&
2098 device->hasKeycodeLocked(AKEYCODE_DPAD_RIGHT) &&
2099 device->hasKeycodeLocked(AKEYCODE_DPAD_CENTER)) {
Chris Ye1b0c7342020-07-28 21:57:03 -07002100 device->classes |= InputDeviceClass::DPAD;
Michael Wrightd02c5b62014-02-10 15:10:22 -08002101 }
2102
2103 // See if this device has a gamepad.
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002104 for (size_t i = 0; i < sizeof(GAMEPAD_KEYCODES) / sizeof(GAMEPAD_KEYCODES[0]); i++) {
Chris Ye989bb932020-07-04 16:18:59 -07002105 if (device->hasKeycodeLocked(GAMEPAD_KEYCODES[i])) {
Chris Ye1b0c7342020-07-28 21:57:03 -07002106 device->classes |= InputDeviceClass::GAMEPAD;
Michael Wrightd02c5b62014-02-10 15:10:22 -08002107 break;
2108 }
2109 }
Michael Wrightd02c5b62014-02-10 15:10:22 -08002110 }
2111
2112 // If the device isn't recognized as something we handle, don't monitor it.
Chris Ye1b0c7342020-07-28 21:57:03 -07002113 if (device->classes == Flags<InputDeviceClass>(0)) {
Chris Ye8594e192020-07-14 10:34:06 -07002114 ALOGV("Dropping device: id=%d, path='%s', name='%s'", deviceId, devicePath.c_str(),
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002115 device->identifier.name.c_str());
Siarhei Vishniakoua4c502a2021-02-05 00:45:20 +00002116 return;
Michael Wrightd02c5b62014-02-10 15:10:22 -08002117 }
2118
Chris Ye3fdbfef2021-01-06 18:45:18 -08002119 // Classify InputDeviceClass::BATTERY.
2120 if (hasBattery) {
2121 device->classes |= InputDeviceClass::BATTERY;
2122 }
Kim Low03ea0352020-11-06 12:45:07 -08002123
Chris Ye3fdbfef2021-01-06 18:45:18 -08002124 // Classify InputDeviceClass::LIGHT.
2125 if (hasLights) {
2126 device->classes |= InputDeviceClass::LIGHT;
Kim Low03ea0352020-11-06 12:45:07 -08002127 }
2128
Tim Kilbourn063ff532015-04-08 10:26:18 -07002129 // Determine whether the device has a mic.
Chris Ye989bb932020-07-04 16:18:59 -07002130 if (device->deviceHasMicLocked()) {
Chris Ye1b0c7342020-07-28 21:57:03 -07002131 device->classes |= InputDeviceClass::MIC;
Tim Kilbourn063ff532015-04-08 10:26:18 -07002132 }
2133
Michael Wrightd02c5b62014-02-10 15:10:22 -08002134 // Determine whether the device is external or internal.
Chris Ye989bb932020-07-04 16:18:59 -07002135 if (device->isExternalDeviceLocked()) {
Chris Ye1b0c7342020-07-28 21:57:03 -07002136 device->classes |= InputDeviceClass::EXTERNAL;
Michael Wrightd02c5b62014-02-10 15:10:22 -08002137 }
2138
Chris Ye1b0c7342020-07-28 21:57:03 -07002139 if (device->classes.any(InputDeviceClass::JOYSTICK | InputDeviceClass::DPAD) &&
2140 device->classes.test(InputDeviceClass::GAMEPAD)) {
Chris Ye989bb932020-07-04 16:18:59 -07002141 device->controllerNumber = getNextControllerNumberLocked(device->identifier.name);
2142 device->setLedForControllerLocked();
Michael Wrightd02c5b62014-02-10 15:10:22 -08002143 }
2144
Chris Ye989bb932020-07-04 16:18:59 -07002145 if (registerDeviceForEpollLocked(*device) != OK) {
Siarhei Vishniakoua4c502a2021-02-05 00:45:20 +00002146 return;
Michael Wrightd02c5b62014-02-10 15:10:22 -08002147 }
2148
Chris Ye989bb932020-07-04 16:18:59 -07002149 device->configureFd();
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -07002150
Chris Ye1b0c7342020-07-28 21:57:03 -07002151 ALOGI("New device: id=%d, fd=%d, path='%s', name='%s', classes=%s, "
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002152 "configuration='%s', keyLayout='%s', keyCharacterMap='%s', builtinKeyboard=%s, ",
Chris Ye1b0c7342020-07-28 21:57:03 -07002153 deviceId, fd, devicePath.c_str(), device->identifier.name.c_str(),
2154 device->classes.string().c_str(), device->configurationFile.c_str(),
2155 device->keyMap.keyLayoutFile.c_str(), device->keyMap.keyCharacterMapFile.c_str(),
2156 toString(mBuiltInKeyboardId == deviceId));
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -07002157
Chris Ye989bb932020-07-04 16:18:59 -07002158 addDeviceLocked(std::move(device));
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -07002159}
2160
Siarhei Vishniakou22c88462018-12-13 19:34:53 -08002161void EventHub::openVideoDeviceLocked(const std::string& devicePath) {
2162 std::unique_ptr<TouchVideoDevice> videoDevice = TouchVideoDevice::create(devicePath);
2163 if (!videoDevice) {
2164 ALOGE("Could not create touch video device for %s. Ignoring", devicePath.c_str());
2165 return;
2166 }
Siarhei Vishniakouec7854a2018-12-14 16:52:34 -08002167 // Transfer ownership of this video device to a matching input device
Chris Ye989bb932020-07-04 16:18:59 -07002168 for (const auto& [id, device] : mDevices) {
Chris Yed3fef462021-03-07 17:10:08 -08002169 if (tryAddVideoDeviceLocked(*device, videoDevice)) {
Siarhei Vishniakouf49608d2020-08-20 19:18:21 -05002170 return; // 'device' now owns 'videoDevice'
Siarhei Vishniakouec7854a2018-12-14 16:52:34 -08002171 }
2172 }
2173
2174 // Couldn't find a matching input device, so just add it to a temporary holding queue.
2175 // A matching input device may appear later.
Siarhei Vishniakou22c88462018-12-13 19:34:53 -08002176 ALOGI("Adding video device %s to list of unattached video devices",
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002177 videoDevice->getName().c_str());
Siarhei Vishniakou22c88462018-12-13 19:34:53 -08002178 mUnattachedVideoDevices.push_back(std::move(videoDevice));
2179}
2180
Chris Yed3fef462021-03-07 17:10:08 -08002181bool EventHub::tryAddVideoDeviceLocked(EventHub::Device& device,
2182 std::unique_ptr<TouchVideoDevice>& videoDevice) {
Siarhei Vishniakouf49608d2020-08-20 19:18:21 -05002183 if (videoDevice->getName() != device.identifier.name) {
2184 return false;
2185 }
2186 device.videoDevice = std::move(videoDevice);
2187 if (device.enabled) {
2188 registerVideoDeviceForEpollLocked(*device.videoDevice);
2189 }
2190 return true;
2191}
2192
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -07002193bool EventHub::isDeviceEnabled(int32_t deviceId) {
Chris Ye87143712020-11-10 05:05:58 +00002194 std::scoped_lock _l(mLock);
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -07002195 Device* device = getDeviceLocked(deviceId);
Yi Kong9b14ac62018-07-17 13:48:38 -07002196 if (device == nullptr) {
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -07002197 ALOGE("Invalid device id=%" PRId32 " provided to %s", deviceId, __func__);
2198 return false;
2199 }
2200 return device->enabled;
2201}
Michael Wrightd02c5b62014-02-10 15:10:22 -08002202
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -07002203status_t EventHub::enableDevice(int32_t deviceId) {
Chris Ye87143712020-11-10 05:05:58 +00002204 std::scoped_lock _l(mLock);
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -07002205 Device* device = getDeviceLocked(deviceId);
Yi Kong9b14ac62018-07-17 13:48:38 -07002206 if (device == nullptr) {
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -07002207 ALOGE("Invalid device id=%" PRId32 " provided to %s", deviceId, __func__);
2208 return BAD_VALUE;
2209 }
2210 if (device->enabled) {
2211 ALOGW("Duplicate call to %s, input device %" PRId32 " already enabled", __func__, deviceId);
2212 return OK;
2213 }
2214 status_t result = device->enable();
2215 if (result != OK) {
2216 ALOGE("Failed to enable device %" PRId32, deviceId);
2217 return result;
2218 }
2219
Chris Ye989bb932020-07-04 16:18:59 -07002220 device->configureFd();
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -07002221
Chris Ye989bb932020-07-04 16:18:59 -07002222 return registerDeviceForEpollLocked(*device);
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -07002223}
2224
2225status_t EventHub::disableDevice(int32_t deviceId) {
Chris Ye87143712020-11-10 05:05:58 +00002226 std::scoped_lock _l(mLock);
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -07002227 Device* device = getDeviceLocked(deviceId);
Yi Kong9b14ac62018-07-17 13:48:38 -07002228 if (device == nullptr) {
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -07002229 ALOGE("Invalid device id=%" PRId32 " provided to %s", deviceId, __func__);
2230 return BAD_VALUE;
2231 }
2232 if (!device->enabled) {
2233 ALOGW("Duplicate call to %s, input device already disabled", __func__);
2234 return OK;
2235 }
Chris Ye989bb932020-07-04 16:18:59 -07002236 unregisterDeviceFromEpollLocked(*device);
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -07002237 return device->disable();
Michael Wrightd02c5b62014-02-10 15:10:22 -08002238}
2239
2240void EventHub::createVirtualKeyboardLocked() {
2241 InputDeviceIdentifier identifier;
2242 identifier.name = "Virtual";
2243 identifier.uniqueId = "<virtual>";
2244 assignDescriptorLocked(identifier);
2245
Chris Ye989bb932020-07-04 16:18:59 -07002246 std::unique_ptr<Device> device =
2247 std::make_unique<Device>(-1, ReservedInputDeviceId::VIRTUAL_KEYBOARD_ID, "<virtual>",
2248 identifier);
Chris Ye1b0c7342020-07-28 21:57:03 -07002249 device->classes = InputDeviceClass::KEYBOARD | InputDeviceClass::ALPHAKEY |
2250 InputDeviceClass::DPAD | InputDeviceClass::VIRTUAL;
Chris Ye989bb932020-07-04 16:18:59 -07002251 device->loadKeyMapLocked();
2252 addDeviceLocked(std::move(device));
Michael Wrightd02c5b62014-02-10 15:10:22 -08002253}
2254
Chris Ye989bb932020-07-04 16:18:59 -07002255void EventHub::addDeviceLocked(std::unique_ptr<Device> device) {
Chris Yed3fef462021-03-07 17:10:08 -08002256 reportDeviceAddedForStatisticsLocked(device->identifier, device->classes);
Chris Ye989bb932020-07-04 16:18:59 -07002257 mOpeningDevices.push_back(std::move(device));
Michael Wrightd02c5b62014-02-10 15:10:22 -08002258}
2259
Chris Ye989bb932020-07-04 16:18:59 -07002260int32_t EventHub::getNextControllerNumberLocked(const std::string& name) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08002261 if (mControllerNumbers.isFull()) {
2262 ALOGI("Maximum number of controllers reached, assigning controller number 0 to device %s",
Chris Ye989bb932020-07-04 16:18:59 -07002263 name.c_str());
Michael Wrightd02c5b62014-02-10 15:10:22 -08002264 return 0;
2265 }
2266 // Since the controller number 0 is reserved for non-controllers, translate all numbers up by
2267 // one
2268 return static_cast<int32_t>(mControllerNumbers.markFirstUnmarkedBit() + 1);
2269}
2270
Chris Ye989bb932020-07-04 16:18:59 -07002271void EventHub::releaseControllerNumberLocked(int32_t num) {
2272 if (num > 0) {
2273 mControllerNumbers.clearBit(static_cast<uint32_t>(num - 1));
Michael Wrightd02c5b62014-02-10 15:10:22 -08002274 }
Michael Wrightd02c5b62014-02-10 15:10:22 -08002275}
2276
Chris Ye8594e192020-07-14 10:34:06 -07002277void EventHub::closeDeviceByPathLocked(const std::string& devicePath) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08002278 Device* device = getDeviceByPathLocked(devicePath);
Chris Ye989bb932020-07-04 16:18:59 -07002279 if (device != nullptr) {
2280 closeDeviceLocked(*device);
Siarhei Vishniakou22c88462018-12-13 19:34:53 -08002281 return;
Michael Wrightd02c5b62014-02-10 15:10:22 -08002282 }
Chris Ye8594e192020-07-14 10:34:06 -07002283 ALOGV("Remove device: %s not found, device may already have been removed.", devicePath.c_str());
Siarhei Vishniakou22c88462018-12-13 19:34:53 -08002284}
2285
Siarhei Vishniakouec7854a2018-12-14 16:52:34 -08002286/**
2287 * Find the video device by filename, and close it.
2288 * The video device is closed by path during an inotify event, where we don't have the
2289 * additional context about the video device fd, or the associated input device.
2290 */
Siarhei Vishniakou22c88462018-12-13 19:34:53 -08002291void EventHub::closeVideoDeviceByPathLocked(const std::string& devicePath) {
Siarhei Vishniakouec7854a2018-12-14 16:52:34 -08002292 // A video device may be owned by an existing input device, or it may be stored in
2293 // the mUnattachedVideoDevices queue. Check both locations.
Chris Ye989bb932020-07-04 16:18:59 -07002294 for (const auto& [id, device] : mDevices) {
Siarhei Vishniakouec7854a2018-12-14 16:52:34 -08002295 if (device->videoDevice && device->videoDevice->getPath() == devicePath) {
Siarhei Vishniakou12598682018-11-02 17:19:19 -07002296 unregisterVideoDeviceFromEpollLocked(*device->videoDevice);
Siarhei Vishniakouec7854a2018-12-14 16:52:34 -08002297 device->videoDevice = nullptr;
2298 return;
2299 }
2300 }
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002301 mUnattachedVideoDevices
2302 .erase(std::remove_if(mUnattachedVideoDevices.begin(), mUnattachedVideoDevices.end(),
2303 [&devicePath](
2304 const std::unique_ptr<TouchVideoDevice>& videoDevice) {
2305 return videoDevice->getPath() == devicePath;
2306 }),
2307 mUnattachedVideoDevices.end());
Michael Wrightd02c5b62014-02-10 15:10:22 -08002308}
2309
2310void EventHub::closeAllDevicesLocked() {
Siarhei Vishniakou22c88462018-12-13 19:34:53 -08002311 mUnattachedVideoDevices.clear();
Siarhei Vishniakoud549b252020-08-11 11:25:26 -05002312 while (!mDevices.empty()) {
2313 closeDeviceLocked(*(mDevices.begin()->second));
Michael Wrightd02c5b62014-02-10 15:10:22 -08002314 }
2315}
2316
Chris Ye989bb932020-07-04 16:18:59 -07002317void EventHub::closeDeviceLocked(Device& device) {
2318 ALOGI("Removed device: path=%s name=%s id=%d fd=%d classes=%s", device.path.c_str(),
2319 device.identifier.name.c_str(), device.id, device.fd, device.classes.string().c_str());
Michael Wrightd02c5b62014-02-10 15:10:22 -08002320
Chris Ye989bb932020-07-04 16:18:59 -07002321 if (device.id == mBuiltInKeyboardId) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08002322 ALOGW("built-in keyboard device %s (id=%d) is closing! the apps will not like this",
Chris Ye989bb932020-07-04 16:18:59 -07002323 device.path.c_str(), mBuiltInKeyboardId);
Michael Wrightd02c5b62014-02-10 15:10:22 -08002324 mBuiltInKeyboardId = NO_BUILT_IN_KEYBOARD;
2325 }
2326
Siarhei Vishniakoue54cb852017-03-21 17:48:16 -07002327 unregisterDeviceFromEpollLocked(device);
Chris Ye989bb932020-07-04 16:18:59 -07002328 if (device.videoDevice) {
Siarhei Vishniakou12598682018-11-02 17:19:19 -07002329 // This must be done after the video device is removed from epoll
Chris Ye989bb932020-07-04 16:18:59 -07002330 mUnattachedVideoDevices.push_back(std::move(device.videoDevice));
Siarhei Vishniakouec7854a2018-12-14 16:52:34 -08002331 }
Michael Wrightd02c5b62014-02-10 15:10:22 -08002332
Chris Ye989bb932020-07-04 16:18:59 -07002333 releaseControllerNumberLocked(device.controllerNumber);
Siarhei Vishniakoud549b252020-08-11 11:25:26 -05002334 device.controllerNumber = 0;
Chris Ye989bb932020-07-04 16:18:59 -07002335 device.close();
Chris Ye989bb932020-07-04 16:18:59 -07002336 mClosingDevices.push_back(std::move(mDevices[device.id]));
Siarhei Vishniakoud549b252020-08-11 11:25:26 -05002337
Chris Ye989bb932020-07-04 16:18:59 -07002338 mDevices.erase(device.id);
Michael Wrightd02c5b62014-02-10 15:10:22 -08002339}
2340
2341status_t EventHub::readNotifyLocked() {
2342 int res;
Michael Wrightd02c5b62014-02-10 15:10:22 -08002343 char event_buf[512];
2344 int event_size;
2345 int event_pos = 0;
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002346 struct inotify_event* event;
Michael Wrightd02c5b62014-02-10 15:10:22 -08002347
2348 ALOGV("EventHub::readNotify nfd: %d\n", mINotifyFd);
2349 res = read(mINotifyFd, event_buf, sizeof(event_buf));
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002350 if (res < (int)sizeof(*event)) {
2351 if (errno == EINTR) return 0;
Michael Wrightd02c5b62014-02-10 15:10:22 -08002352 ALOGW("could not get event, %s\n", strerror(errno));
2353 return -1;
2354 }
Michael Wrightd02c5b62014-02-10 15:10:22 -08002355
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002356 while (res >= (int)sizeof(*event)) {
2357 event = (struct inotify_event*)(event_buf + event_pos);
2358 if (event->len) {
Siarhei Vishniakou951f3622018-12-12 19:45:42 -08002359 if (event->wd == mInputWd) {
Chris Ye8594e192020-07-14 10:34:06 -07002360 std::string filename = std::string(DEVICE_PATH) + "/" + event->name;
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002361 if (event->mask & IN_CREATE) {
Chris Ye8594e192020-07-14 10:34:06 -07002362 openDeviceLocked(filename);
Siarhei Vishniakou951f3622018-12-12 19:45:42 -08002363 } else {
2364 ALOGI("Removing device '%s' due to inotify event\n", filename.c_str());
Chris Ye8594e192020-07-14 10:34:06 -07002365 closeDeviceByPathLocked(filename);
Siarhei Vishniakou951f3622018-12-12 19:45:42 -08002366 }
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002367 } else if (event->wd == mVideoWd) {
Siarhei Vishniakou951f3622018-12-12 19:45:42 -08002368 if (isV4lTouchNode(event->name)) {
Chris Ye8594e192020-07-14 10:34:06 -07002369 std::string filename = std::string(VIDEO_DEVICE_PATH) + "/" + event->name;
Siarhei Vishniakou22c88462018-12-13 19:34:53 -08002370 if (event->mask & IN_CREATE) {
2371 openVideoDeviceLocked(filename);
2372 } else {
2373 ALOGI("Removing video device '%s' due to inotify event", filename.c_str());
2374 closeVideoDeviceByPathLocked(filename);
2375 }
Siarhei Vishniakou951f3622018-12-12 19:45:42 -08002376 }
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002377 } else {
Siarhei Vishniakou951f3622018-12-12 19:45:42 -08002378 LOG_ALWAYS_FATAL("Unexpected inotify event, wd = %i", event->wd);
Michael Wrightd02c5b62014-02-10 15:10:22 -08002379 }
2380 }
2381 event_size = sizeof(*event) + event->len;
2382 res -= event_size;
2383 event_pos += event_size;
2384 }
2385 return 0;
2386}
2387
Chris Ye8594e192020-07-14 10:34:06 -07002388status_t EventHub::scanDirLocked(const std::string& dirname) {
2389 for (const auto& entry : std::filesystem::directory_iterator(dirname)) {
2390 openDeviceLocked(entry.path());
Michael Wrightd02c5b62014-02-10 15:10:22 -08002391 }
Michael Wrightd02c5b62014-02-10 15:10:22 -08002392 return 0;
2393}
2394
Siarhei Vishniakou22c88462018-12-13 19:34:53 -08002395/**
2396 * Look for all dirname/v4l-touch* devices, and open them.
2397 */
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002398status_t EventHub::scanVideoDirLocked(const std::string& dirname) {
Chris Ye8594e192020-07-14 10:34:06 -07002399 for (const auto& entry : std::filesystem::directory_iterator(dirname)) {
2400 if (isV4lTouchNode(entry.path())) {
2401 ALOGI("Found touch video device %s", entry.path().c_str());
2402 openVideoDeviceLocked(entry.path());
Siarhei Vishniakou22c88462018-12-13 19:34:53 -08002403 }
2404 }
Siarhei Vishniakou22c88462018-12-13 19:34:53 -08002405 return OK;
2406}
2407
Michael Wrightd02c5b62014-02-10 15:10:22 -08002408void EventHub::requestReopenDevices() {
2409 ALOGV("requestReopenDevices() called");
2410
Chris Ye87143712020-11-10 05:05:58 +00002411 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -08002412 mNeedToReopenDevices = true;
2413}
2414
Siarhei Vishniakouf93fcf42017-11-22 16:00:14 -08002415void EventHub::dump(std::string& dump) {
2416 dump += "Event Hub State:\n";
Michael Wrightd02c5b62014-02-10 15:10:22 -08002417
2418 { // acquire lock
Chris Ye87143712020-11-10 05:05:58 +00002419 std::scoped_lock _l(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -08002420
Siarhei Vishniakouf93fcf42017-11-22 16:00:14 -08002421 dump += StringPrintf(INDENT "BuiltInKeyboardId: %d\n", mBuiltInKeyboardId);
Michael Wrightd02c5b62014-02-10 15:10:22 -08002422
Siarhei Vishniakouf93fcf42017-11-22 16:00:14 -08002423 dump += INDENT "Devices:\n";
Michael Wrightd02c5b62014-02-10 15:10:22 -08002424
Chris Ye989bb932020-07-04 16:18:59 -07002425 for (const auto& [id, device] : mDevices) {
Michael Wrightd02c5b62014-02-10 15:10:22 -08002426 if (mBuiltInKeyboardId == device->id) {
Siarhei Vishniakouf93fcf42017-11-22 16:00:14 -08002427 dump += StringPrintf(INDENT2 "%d: %s (aka device 0 - built-in keyboard)\n",
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002428 device->id, device->identifier.name.c_str());
Michael Wrightd02c5b62014-02-10 15:10:22 -08002429 } else {
Siarhei Vishniakouf93fcf42017-11-22 16:00:14 -08002430 dump += StringPrintf(INDENT2 "%d: %s\n", device->id,
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002431 device->identifier.name.c_str());
Michael Wrightd02c5b62014-02-10 15:10:22 -08002432 }
Chris Ye1b0c7342020-07-28 21:57:03 -07002433 dump += StringPrintf(INDENT3 "Classes: %s\n", device->classes.string().c_str());
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +01002434 dump += StringPrintf(INDENT3 "Path: %s\n", device->path.c_str());
Siarhei Vishniakouf93fcf42017-11-22 16:00:14 -08002435 dump += StringPrintf(INDENT3 "Enabled: %s\n", toString(device->enabled));
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +01002436 dump += StringPrintf(INDENT3 "Descriptor: %s\n", device->identifier.descriptor.c_str());
2437 dump += StringPrintf(INDENT3 "Location: %s\n", device->identifier.location.c_str());
Siarhei Vishniakouf93fcf42017-11-22 16:00:14 -08002438 dump += StringPrintf(INDENT3 "ControllerNumber: %d\n", device->controllerNumber);
Siarhei Vishniakouec8f7252018-07-06 11:19:32 +01002439 dump += StringPrintf(INDENT3 "UniqueId: %s\n", device->identifier.uniqueId.c_str());
Siarhei Vishniakouf93fcf42017-11-22 16:00:14 -08002440 dump += StringPrintf(INDENT3 "Identifier: bus=0x%04x, vendor=0x%04x, "
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002441 "product=0x%04x, version=0x%04x\n",
2442 device->identifier.bus, device->identifier.vendor,
2443 device->identifier.product, device->identifier.version);
Siarhei Vishniakouf93fcf42017-11-22 16:00:14 -08002444 dump += StringPrintf(INDENT3 "KeyLayoutFile: %s\n",
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002445 device->keyMap.keyLayoutFile.c_str());
Siarhei Vishniakouf93fcf42017-11-22 16:00:14 -08002446 dump += StringPrintf(INDENT3 "KeyCharacterMapFile: %s\n",
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002447 device->keyMap.keyCharacterMapFile.c_str());
Siarhei Vishniakouf93fcf42017-11-22 16:00:14 -08002448 dump += StringPrintf(INDENT3 "ConfigurationFile: %s\n",
Prabir Pradhanda7c00c2019-08-29 14:12:42 -07002449 device->configurationFile.c_str());
Siarhei Vishniakouec7854a2018-12-14 16:52:34 -08002450 dump += INDENT3 "VideoDevice: ";
2451 if (device->videoDevice) {
2452 dump += device->videoDevice->dump() + "\n";
2453 } else {
2454 dump += "<none>\n";
2455 }
Michael Wrightd02c5b62014-02-10 15:10:22 -08002456 }
Siarhei Vishniakou22c88462018-12-13 19:34:53 -08002457
2458 dump += INDENT "Unattached video devices:\n";
2459 for (const std::unique_ptr<TouchVideoDevice>& videoDevice : mUnattachedVideoDevices) {
2460 dump += INDENT2 + videoDevice->dump() + "\n";
2461 }
2462 if (mUnattachedVideoDevices.empty()) {
2463 dump += INDENT2 "<none>\n";
2464 }
Michael Wrightd02c5b62014-02-10 15:10:22 -08002465 } // release lock
2466}
2467
2468void EventHub::monitor() {
2469 // Acquire and release the lock to ensure that the event hub has not deadlocked.
Chris Ye1c2e0892020-11-30 21:41:44 -08002470 std::unique_lock<std::mutex> lock(mLock);
Michael Wrightd02c5b62014-02-10 15:10:22 -08002471}
2472
Michael Wrightd02c5b62014-02-10 15:10:22 -08002473}; // namespace android