1 /*
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 
17 #ifndef _RUNTIME_EVENT_HUB_H
18 #define _RUNTIME_EVENT_HUB_H
19 
20 #include <vector>
21 
22 #include <input/Input.h>
23 #include <input/InputDevice.h>
24 #include <input/KeyCharacterMap.h>
25 #include <input/KeyLayoutMap.h>
26 #include <input/Keyboard.h>
27 #include <input/VirtualKeyMap.h>
28 #include <utils/BitSet.h>
29 #include <utils/Errors.h>
30 #include <utils/KeyedVector.h>
31 #include <utils/List.h>
32 #include <utils/Log.h>
33 #include <utils/Mutex.h>
34 #include <utils/PropertyMap.h>
35 
36 #include <linux/input.h>
37 #include <sys/epoll.h>
38 
39 #include "TouchVideoDevice.h"
40 
41 /* Convenience constants. */
42 
43 #define BTN_FIRST 0x100 // first button code
44 #define BTN_LAST 0x15f  // last button code
45 
46 namespace android {
47 
48 /*
49  * A raw event as retrieved from the EventHub.
50  */
51 struct RawEvent {
52     nsecs_t when;
53     int32_t deviceId;
54     int32_t type;
55     int32_t code;
56     int32_t value;
57 };
58 
59 /* Describes an absolute axis. */
60 struct RawAbsoluteAxisInfo {
61     bool valid; // true if the information is valid, false otherwise
62 
63     int32_t minValue;   // minimum value
64     int32_t maxValue;   // maximum value
65     int32_t flat;       // center flat position, eg. flat == 8 means center is between -8 and 8
66     int32_t fuzz;       // error tolerance, eg. fuzz == 4 means value is +/- 4 due to noise
67     int32_t resolution; // resolution in units per mm or radians per mm
68 
clearRawAbsoluteAxisInfo69     inline void clear() {
70         valid = false;
71         minValue = 0;
72         maxValue = 0;
73         flat = 0;
74         fuzz = 0;
75         resolution = 0;
76     }
77 };
78 
79 /*
80  * Input device classes.
81  */
82 enum {
83     /* The input device is a keyboard or has buttons. */
84     INPUT_DEVICE_CLASS_KEYBOARD = 0x00000001,
85 
86     /* The input device is an alpha-numeric keyboard (not just a dial pad). */
87     INPUT_DEVICE_CLASS_ALPHAKEY = 0x00000002,
88 
89     /* The input device is a touchscreen or a touchpad (either single-touch or multi-touch). */
90     INPUT_DEVICE_CLASS_TOUCH = 0x00000004,
91 
92     /* The input device is a cursor device such as a trackball or mouse. */
93     INPUT_DEVICE_CLASS_CURSOR = 0x00000008,
94 
95     /* The input device is a multi-touch touchscreen. */
96     INPUT_DEVICE_CLASS_TOUCH_MT = 0x00000010,
97 
98     /* The input device is a directional pad (implies keyboard, has DPAD keys). */
99     INPUT_DEVICE_CLASS_DPAD = 0x00000020,
100 
101     /* The input device is a gamepad (implies keyboard, has BUTTON keys). */
102     INPUT_DEVICE_CLASS_GAMEPAD = 0x00000040,
103 
104     /* The input device has switches. */
105     INPUT_DEVICE_CLASS_SWITCH = 0x00000080,
106 
107     /* The input device is a joystick (implies gamepad, has joystick absolute axes). */
108     INPUT_DEVICE_CLASS_JOYSTICK = 0x00000100,
109 
110     /* The input device has a vibrator (supports FF_RUMBLE). */
111     INPUT_DEVICE_CLASS_VIBRATOR = 0x00000200,
112 
113     /* The input device has a microphone. */
114     INPUT_DEVICE_CLASS_MIC = 0x00000400,
115 
116     /* The input device is an external stylus (has data we want to fuse with touch data). */
117     INPUT_DEVICE_CLASS_EXTERNAL_STYLUS = 0x00000800,
118 
119     /* The input device has a rotary encoder */
120     INPUT_DEVICE_CLASS_ROTARY_ENCODER = 0x00001000,
121 
122     /* The input device is virtual (not a real device, not part of UI configuration). */
123     INPUT_DEVICE_CLASS_VIRTUAL = 0x40000000,
124 
125     /* The input device is external (not built-in). */
126     INPUT_DEVICE_CLASS_EXTERNAL = 0x80000000,
127 };
128 
129 /*
130  * Gets the class that owns an axis, in cases where multiple classes might claim
131  * the same axis for different purposes.
132  */
133 extern uint32_t getAbsAxisUsage(int32_t axis, uint32_t deviceClasses);
134 
135 /*
136  * Grand Central Station for events.
137  *
138  * The event hub aggregates input events received across all known input
139  * devices on the system, including devices that may be emulated by the simulator
140  * environment.  In addition, the event hub generates fake input events to indicate
141  * when devices are added or removed.
142  *
143  * The event hub provides a stream of input events (via the getEvent function).
144  * It also supports querying the current actual state of input devices such as identifying
145  * which keys are currently down.  Finally, the event hub keeps track of the capabilities of
146  * individual input devices, such as their class and the set of key codes that they support.
147  */
148 class EventHubInterface {
149 public:
EventHubInterface()150     EventHubInterface() {}
~EventHubInterface()151     virtual ~EventHubInterface() {}
152 
153     // Synthetic raw event type codes produced when devices are added or removed.
154     enum {
155         // Sent when a device is added.
156         DEVICE_ADDED = 0x10000000,
157         // Sent when a device is removed.
158         DEVICE_REMOVED = 0x20000000,
159         // Sent when all added/removed devices from the most recent scan have been reported.
160         // This event is always sent at least once.
161         FINISHED_DEVICE_SCAN = 0x30000000,
162 
163         FIRST_SYNTHETIC_EVENT = DEVICE_ADDED,
164     };
165 
166     virtual uint32_t getDeviceClasses(int32_t deviceId) const = 0;
167 
168     virtual InputDeviceIdentifier getDeviceIdentifier(int32_t deviceId) const = 0;
169 
170     virtual int32_t getDeviceControllerNumber(int32_t deviceId) const = 0;
171 
172     virtual void getConfiguration(int32_t deviceId, PropertyMap* outConfiguration) const = 0;
173 
174     virtual status_t getAbsoluteAxisInfo(int32_t deviceId, int axis,
175                                          RawAbsoluteAxisInfo* outAxisInfo) const = 0;
176 
177     virtual bool hasRelativeAxis(int32_t deviceId, int axis) const = 0;
178 
179     virtual bool hasInputProperty(int32_t deviceId, int property) const = 0;
180 
181     virtual status_t mapKey(int32_t deviceId, int32_t scanCode, int32_t usageCode,
182                             int32_t metaState, int32_t* outKeycode, int32_t* outMetaState,
183                             uint32_t* outFlags) const = 0;
184 
185     virtual status_t mapAxis(int32_t deviceId, int32_t scanCode, AxisInfo* outAxisInfo) const = 0;
186 
187     // Sets devices that are excluded from opening.
188     // This can be used to ignore input devices for sensors.
189     virtual void setExcludedDevices(const std::vector<std::string>& devices) = 0;
190 
191     /*
192      * Wait for events to become available and returns them.
193      * After returning, the EventHub holds onto a wake lock until the next call to getEvent.
194      * This ensures that the device will not go to sleep while the event is being processed.
195      * If the device needs to remain awake longer than that, then the caller is responsible
196      * for taking care of it (say, by poking the power manager user activity timer).
197      *
198      * The timeout is advisory only.  If the device is asleep, it will not wake just to
199      * service the timeout.
200      *
201      * Returns the number of events obtained, or 0 if the timeout expired.
202      */
203     virtual size_t getEvents(int timeoutMillis, RawEvent* buffer, size_t bufferSize) = 0;
204     virtual std::vector<TouchVideoFrame> getVideoFrames(int32_t deviceId) = 0;
205 
206     /*
207      * Query current input state.
208      */
209     virtual int32_t getScanCodeState(int32_t deviceId, int32_t scanCode) const = 0;
210     virtual int32_t getKeyCodeState(int32_t deviceId, int32_t keyCode) const = 0;
211     virtual int32_t getSwitchState(int32_t deviceId, int32_t sw) const = 0;
212     virtual status_t getAbsoluteAxisValue(int32_t deviceId, int32_t axis,
213                                           int32_t* outValue) const = 0;
214 
215     /*
216      * Examine key input devices for specific framework keycode support
217      */
218     virtual bool markSupportedKeyCodes(int32_t deviceId, size_t numCodes, const int32_t* keyCodes,
219                                        uint8_t* outFlags) const = 0;
220 
221     virtual bool hasScanCode(int32_t deviceId, int32_t scanCode) const = 0;
222 
223     /* LED related functions expect Android LED constants, not scan codes or HID usages */
224     virtual bool hasLed(int32_t deviceId, int32_t led) const = 0;
225     virtual void setLedState(int32_t deviceId, int32_t led, bool on) = 0;
226 
227     virtual void getVirtualKeyDefinitions(
228             int32_t deviceId, std::vector<VirtualKeyDefinition>& outVirtualKeys) const = 0;
229 
230     virtual sp<KeyCharacterMap> getKeyCharacterMap(int32_t deviceId) const = 0;
231     virtual bool setKeyboardLayoutOverlay(int32_t deviceId, const sp<KeyCharacterMap>& map) = 0;
232 
233     /* Control the vibrator. */
234     virtual void vibrate(int32_t deviceId, nsecs_t duration) = 0;
235     virtual void cancelVibrate(int32_t deviceId) = 0;
236 
237     /* Requests the EventHub to reopen all input devices on the next call to getEvents(). */
238     virtual void requestReopenDevices() = 0;
239 
240     /* Wakes up getEvents() if it is blocked on a read. */
241     virtual void wake() = 0;
242 
243     /* Dump EventHub state to a string. */
244     virtual void dump(std::string& dump) = 0;
245 
246     /* Called by the heatbeat to ensures that the reader has not deadlocked. */
247     virtual void monitor() = 0;
248 
249     /* Return true if the device is enabled. */
250     virtual bool isDeviceEnabled(int32_t deviceId) = 0;
251 
252     /* Enable an input device */
253     virtual status_t enableDevice(int32_t deviceId) = 0;
254 
255     /* Disable an input device. Closes file descriptor to that device. */
256     virtual status_t disableDevice(int32_t deviceId) = 0;
257 };
258 
259 class EventHub : public EventHubInterface {
260 public:
261     EventHub();
262 
263     virtual uint32_t getDeviceClasses(int32_t deviceId) const override;
264 
265     virtual InputDeviceIdentifier getDeviceIdentifier(int32_t deviceId) const override;
266 
267     virtual int32_t getDeviceControllerNumber(int32_t deviceId) const override;
268 
269     virtual void getConfiguration(int32_t deviceId, PropertyMap* outConfiguration) const override;
270 
271     virtual status_t getAbsoluteAxisInfo(int32_t deviceId, int axis,
272                                          RawAbsoluteAxisInfo* outAxisInfo) const override;
273 
274     virtual bool hasRelativeAxis(int32_t deviceId, int axis) const override;
275 
276     virtual bool hasInputProperty(int32_t deviceId, int property) const override;
277 
278     virtual status_t mapKey(int32_t deviceId, int32_t scanCode, int32_t usageCode,
279                             int32_t metaState, int32_t* outKeycode, int32_t* outMetaState,
280                             uint32_t* outFlags) const override;
281 
282     virtual status_t mapAxis(int32_t deviceId, int32_t scanCode,
283                              AxisInfo* outAxisInfo) const override;
284 
285     virtual void setExcludedDevices(const std::vector<std::string>& devices) override;
286 
287     virtual int32_t getScanCodeState(int32_t deviceId, int32_t scanCode) const override;
288     virtual int32_t getKeyCodeState(int32_t deviceId, int32_t keyCode) const override;
289     virtual int32_t getSwitchState(int32_t deviceId, int32_t sw) const override;
290     virtual status_t getAbsoluteAxisValue(int32_t deviceId, int32_t axis,
291                                           int32_t* outValue) const override;
292 
293     virtual bool markSupportedKeyCodes(int32_t deviceId, size_t numCodes, const int32_t* keyCodes,
294                                        uint8_t* outFlags) const override;
295 
296     virtual size_t getEvents(int timeoutMillis, RawEvent* buffer, size_t bufferSize) override;
297     virtual std::vector<TouchVideoFrame> getVideoFrames(int32_t deviceId) override;
298 
299     virtual bool hasScanCode(int32_t deviceId, int32_t scanCode) const override;
300     virtual bool hasLed(int32_t deviceId, int32_t led) const override;
301     virtual void setLedState(int32_t deviceId, int32_t led, bool on) override;
302 
303     virtual void getVirtualKeyDefinitions(
304             int32_t deviceId, std::vector<VirtualKeyDefinition>& outVirtualKeys) const override;
305 
306     virtual sp<KeyCharacterMap> getKeyCharacterMap(int32_t deviceId) const override;
307     virtual bool setKeyboardLayoutOverlay(int32_t deviceId,
308                                           const sp<KeyCharacterMap>& map) override;
309 
310     virtual void vibrate(int32_t deviceId, nsecs_t duration) override;
311     virtual void cancelVibrate(int32_t deviceId) override;
312 
313     virtual void requestReopenDevices() override;
314 
315     virtual void wake() override;
316 
317     virtual void dump(std::string& dump) override;
318     virtual void monitor() override;
319 
320     virtual ~EventHub() override;
321 
322 private:
323     struct Device {
324         Device* next;
325 
326         int fd; // may be -1 if device is closed
327         const int32_t id;
328         const std::string path;
329         const InputDeviceIdentifier identifier;
330 
331         std::unique_ptr<TouchVideoDevice> videoDevice;
332 
333         uint32_t classes;
334 
335         uint8_t keyBitmask[(KEY_MAX + 1) / 8];
336         uint8_t absBitmask[(ABS_MAX + 1) / 8];
337         uint8_t relBitmask[(REL_MAX + 1) / 8];
338         uint8_t swBitmask[(SW_MAX + 1) / 8];
339         uint8_t ledBitmask[(LED_MAX + 1) / 8];
340         uint8_t ffBitmask[(FF_MAX + 1) / 8];
341         uint8_t propBitmask[(INPUT_PROP_MAX + 1) / 8];
342 
343         std::string configurationFile;
344         PropertyMap* configuration;
345         std::unique_ptr<VirtualKeyMap> virtualKeyMap;
346         KeyMap keyMap;
347 
348         sp<KeyCharacterMap> overlayKeyMap;
349         sp<KeyCharacterMap> combinedKeyMap;
350 
351         bool ffEffectPlaying;
352         int16_t ffEffectId; // initially -1
353 
354         int32_t controllerNumber;
355 
356         Device(int fd, int32_t id, const std::string& path,
357                const InputDeviceIdentifier& identifier);
358         ~Device();
359 
360         void close();
361 
362         bool enabled; // initially true
363         status_t enable();
364         status_t disable();
365         bool hasValidFd();
366         const bool isVirtual; // set if fd < 0 is passed to constructor
367 
getKeyCharacterMapDevice368         const sp<KeyCharacterMap>& getKeyCharacterMap() const {
369             if (combinedKeyMap != nullptr) {
370                 return combinedKeyMap;
371             }
372             return keyMap.keyCharacterMap;
373         }
374     };
375 
376     status_t openDeviceLocked(const char* devicePath);
377     void openVideoDeviceLocked(const std::string& devicePath);
378     void createVirtualKeyboardLocked();
379     void addDeviceLocked(Device* device);
380     void assignDescriptorLocked(InputDeviceIdentifier& identifier);
381 
382     void closeDeviceByPathLocked(const char* devicePath);
383     void closeVideoDeviceByPathLocked(const std::string& devicePath);
384     void closeDeviceLocked(Device* device);
385     void closeAllDevicesLocked();
386 
387     void configureFd(Device* device);
388 
389     bool isDeviceEnabled(int32_t deviceId) override;
390     status_t enableDevice(int32_t deviceId) override;
391     status_t disableDevice(int32_t deviceId) override;
392     status_t registerFdForEpoll(int fd);
393     status_t unregisterFdFromEpoll(int fd);
394     status_t registerDeviceForEpollLocked(Device* device);
395     void registerVideoDeviceForEpollLocked(const TouchVideoDevice& videoDevice);
396     status_t unregisterDeviceFromEpollLocked(Device* device);
397     void unregisterVideoDeviceFromEpollLocked(const TouchVideoDevice& videoDevice);
398 
399     status_t scanDirLocked(const char* dirname);
400     status_t scanVideoDirLocked(const std::string& dirname);
401     void scanDevicesLocked();
402     status_t readNotifyLocked();
403 
404     Device* getDeviceByDescriptorLocked(const std::string& descriptor) const;
405     Device* getDeviceLocked(int32_t deviceId) const;
406     Device* getDeviceByPathLocked(const char* devicePath) const;
407     /**
408      * Look through all available fd's (both for input devices and for video devices),
409      * and return the device pointer.
410      */
411     Device* getDeviceByFdLocked(int fd) const;
412 
413     bool hasKeycodeLocked(Device* device, int keycode) const;
414 
415     void loadConfigurationLocked(Device* device);
416     bool loadVirtualKeyMapLocked(Device* device);
417     status_t loadKeyMapLocked(Device* device);
418 
419     bool isExternalDeviceLocked(Device* device);
420     bool deviceHasMicLocked(Device* device);
421 
422     int32_t getNextControllerNumberLocked(Device* device);
423     void releaseControllerNumberLocked(Device* device);
424     void setLedForControllerLocked(Device* device);
425 
426     status_t mapLed(Device* device, int32_t led, int32_t* outScanCode) const;
427     void setLedStateLocked(Device* device, int32_t led, bool on);
428 
429     // Protect all internal state.
430     mutable Mutex mLock;
431 
432     // The actual id of the built-in keyboard, or NO_BUILT_IN_KEYBOARD if none.
433     // EventHub remaps the built-in keyboard to id 0 externally as required by the API.
434     enum {
435         // Must not conflict with any other assigned device ids, including
436         // the virtual keyboard id (-1).
437         NO_BUILT_IN_KEYBOARD = -2,
438     };
439     int32_t mBuiltInKeyboardId;
440 
441     int32_t mNextDeviceId;
442 
443     BitSet32 mControllerNumbers;
444 
445     KeyedVector<int32_t, Device*> mDevices;
446     /**
447      * Video devices that report touchscreen heatmap, but have not (yet) been paired
448      * with a specific input device. Video device discovery is independent from input device
449      * discovery, so the two types of devices could be found in any order.
450      * Ideally, video devices in this queue do not have an open fd, or at least aren't
451      * actively streaming.
452      */
453     std::vector<std::unique_ptr<TouchVideoDevice>> mUnattachedVideoDevices;
454 
455     Device* mOpeningDevices;
456     Device* mClosingDevices;
457 
458     bool mNeedToSendFinishedDeviceScan;
459     bool mNeedToReopenDevices;
460     bool mNeedToScanDevices;
461     std::vector<std::string> mExcludedDevices;
462 
463     int mEpollFd;
464     int mINotifyFd;
465     int mWakeReadPipeFd;
466     int mWakeWritePipeFd;
467 
468     int mInputWd;
469     int mVideoWd;
470 
471     // Maximum number of signalled FDs to handle at a time.
472     static const int EPOLL_MAX_EVENTS = 16;
473 
474     // The array of pending epoll events and the index of the next event to be handled.
475     struct epoll_event mPendingEventItems[EPOLL_MAX_EVENTS];
476     size_t mPendingEventCount;
477     size_t mPendingEventIndex;
478     bool mPendingINotify;
479 };
480 
481 }; // namespace android
482 
483 #endif // _RUNTIME_EVENT_HUB_H
484