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      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 //
     18 #ifndef _RUNTIME_EVENT_HUB_H
     19 #define _RUNTIME_EVENT_HUB_H
     20 
     21 #include <input/Input.h>
     22 #include <input/InputDevice.h>
     23 #include <input/Keyboard.h>
     24 #include <input/KeyLayoutMap.h>
     25 #include <input/KeyCharacterMap.h>
     26 #include <input/VirtualKeyMap.h>
     27 #include <utils/Mutex.h>
     28 #include <utils/Log.h>
     29 #include <utils/List.h>
     30 #include <utils/Errors.h>
     31 #include <utils/PropertyMap.h>
     32 #include <utils/Vector.h>
     33 #include <utils/KeyedVector.h>
     34 #include <utils/BitSet.h>
     35 
     36 #include <linux/input.h>
     37 #include <sys/epoll.h>
     38 
     39 /* Convenience constants. */
     40 
     41 #define BTN_FIRST 0x100  // first button code
     42 #define BTN_LAST 0x15f   // last button code
     43 
     44 /*
     45  * These constants are used privately in Android to pass raw timestamps
     46  * through evdev from uinput device drivers because there is currently no
     47  * other way to transfer this information.  The evdev driver automatically
     48  * timestamps all input events with the time they were posted and clobbers
     49  * whatever information was passed in.
     50  *
     51  * For the purposes of this hack, the timestamp is specified in the
     52  * CLOCK_MONOTONIC timebase and is split into two EV_MSC events specifying
     53  * seconds and microseconds.
     54  */
     55 #define MSC_ANDROID_TIME_SEC 0x6
     56 #define MSC_ANDROID_TIME_USEC 0x7
     57 
     58 namespace android {
     59 
     60 enum {
     61     // Device id of a special "virtual" keyboard that is always present.
     62     VIRTUAL_KEYBOARD_ID = -1,
     63     // Device id of the "built-in" keyboard if there is one.
     64     BUILT_IN_KEYBOARD_ID = 0,
     65 };
     66 
     67 /*
     68  * A raw event as retrieved from the EventHub.
     69  */
     70 struct RawEvent {
     71     nsecs_t when;
     72     int32_t deviceId;
     73     int32_t type;
     74     int32_t code;
     75     int32_t value;
     76 };
     77 
     78 /* Describes an absolute axis. */
     79 struct RawAbsoluteAxisInfo {
     80     bool valid; // true if the information is valid, false otherwise
     81 
     82     int32_t minValue;  // minimum value
     83     int32_t maxValue;  // maximum value
     84     int32_t flat;      // center flat position, eg. flat == 8 means center is between -8 and 8
     85     int32_t fuzz;      // error tolerance, eg. fuzz == 4 means value is +/- 4 due to noise
     86     int32_t resolution; // resolution in units per mm or radians per mm
     87 
     88     inline void clear() {
     89         valid = false;
     90         minValue = 0;
     91         maxValue = 0;
     92         flat = 0;
     93         fuzz = 0;
     94         resolution = 0;
     95     }
     96 };
     97 
     98 /*
     99  * Input device classes.
    100  */
    101 enum {
    102     /* The input device is a keyboard or has buttons. */
    103     INPUT_DEVICE_CLASS_KEYBOARD      = 0x00000001,
    104 
    105     /* The input device is an alpha-numeric keyboard (not just a dial pad). */
    106     INPUT_DEVICE_CLASS_ALPHAKEY      = 0x00000002,
    107 
    108     /* The input device is a touchscreen or a touchpad (either single-touch or multi-touch). */
    109     INPUT_DEVICE_CLASS_TOUCH         = 0x00000004,
    110 
    111     /* The input device is a cursor device such as a trackball or mouse. */
    112     INPUT_DEVICE_CLASS_CURSOR        = 0x00000008,
    113 
    114     /* The input device is a multi-touch touchscreen. */
    115     INPUT_DEVICE_CLASS_TOUCH_MT      = 0x00000010,
    116 
    117     /* The input device is a directional pad (implies keyboard, has DPAD keys). */
    118     INPUT_DEVICE_CLASS_DPAD          = 0x00000020,
    119 
    120     /* The input device is a gamepad (implies keyboard, has BUTTON keys). */
    121     INPUT_DEVICE_CLASS_GAMEPAD       = 0x00000040,
    122 
    123     /* The input device has switches. */
    124     INPUT_DEVICE_CLASS_SWITCH        = 0x00000080,
    125 
    126     /* The input device is a joystick (implies gamepad, has joystick absolute axes). */
    127     INPUT_DEVICE_CLASS_JOYSTICK      = 0x00000100,
    128 
    129     /* The input device has a vibrator (supports FF_RUMBLE). */
    130     INPUT_DEVICE_CLASS_VIBRATOR      = 0x00000200,
    131 
    132     /* The input device has a microphone. */
    133     INPUT_DEVICE_CLASS_MIC           = 0x00000400,
    134 
    135     /* The input device is an external stylus (has data we want to fuse with touch data). */
    136     INPUT_DEVICE_CLASS_EXTERNAL_STYLUS = 0x00000800,
    137 
    138     /* The input device has a rotary encoder */
    139     INPUT_DEVICE_CLASS_ROTARY_ENCODER = 0x00001000,
    140 
    141     /* The input device is virtual (not a real device, not part of UI configuration). */
    142     INPUT_DEVICE_CLASS_VIRTUAL       = 0x40000000,
    143 
    144     /* The input device is external (not built-in). */
    145     INPUT_DEVICE_CLASS_EXTERNAL      = 0x80000000,
    146 };
    147 
    148 /*
    149  * Gets the class that owns an axis, in cases where multiple classes might claim
    150  * the same axis for different purposes.
    151  */
    152 extern uint32_t getAbsAxisUsage(int32_t axis, uint32_t deviceClasses);
    153 
    154 /*
    155  * Grand Central Station for events.
    156  *
    157  * The event hub aggregates input events received across all known input
    158  * devices on the system, including devices that may be emulated by the simulator
    159  * environment.  In addition, the event hub generates fake input events to indicate
    160  * when devices are added or removed.
    161  *
    162  * The event hub provides a stream of input events (via the getEvent function).
    163  * It also supports querying the current actual state of input devices such as identifying
    164  * which keys are currently down.  Finally, the event hub keeps track of the capabilities of
    165  * individual input devices, such as their class and the set of key codes that they support.
    166  */
    167 class EventHubInterface : public virtual RefBase {
    168 protected:
    169     EventHubInterface() { }
    170     virtual ~EventHubInterface() { }
    171 
    172 public:
    173     // Synthetic raw event type codes produced when devices are added or removed.
    174     enum {
    175         // Sent when a device is added.
    176         DEVICE_ADDED = 0x10000000,
    177         // Sent when a device is removed.
    178         DEVICE_REMOVED = 0x20000000,
    179         // Sent when all added/removed devices from the most recent scan have been reported.
    180         // This event is always sent at least once.
    181         FINISHED_DEVICE_SCAN = 0x30000000,
    182 
    183         FIRST_SYNTHETIC_EVENT = DEVICE_ADDED,
    184     };
    185 
    186     virtual uint32_t getDeviceClasses(int32_t deviceId) const = 0;
    187 
    188     virtual InputDeviceIdentifier getDeviceIdentifier(int32_t deviceId) const = 0;
    189 
    190     virtual int32_t getDeviceControllerNumber(int32_t deviceId) const = 0;
    191 
    192     virtual void getConfiguration(int32_t deviceId, PropertyMap* outConfiguration) const = 0;
    193 
    194     virtual status_t getAbsoluteAxisInfo(int32_t deviceId, int axis,
    195             RawAbsoluteAxisInfo* outAxisInfo) const = 0;
    196 
    197     virtual bool hasRelativeAxis(int32_t deviceId, int axis) const = 0;
    198 
    199     virtual bool hasInputProperty(int32_t deviceId, int property) const = 0;
    200 
    201     virtual status_t mapKey(int32_t deviceId,
    202             int32_t scanCode, int32_t usageCode, int32_t metaState,
    203             int32_t* outKeycode, int32_t *outMetaState, uint32_t* outFlags) const = 0;
    204 
    205     virtual status_t mapAxis(int32_t deviceId, int32_t scanCode,
    206             AxisInfo* outAxisInfo) const = 0;
    207 
    208     // Sets devices that are excluded from opening.
    209     // This can be used to ignore input devices for sensors.
    210     virtual void setExcludedDevices(const Vector<String8>& devices) = 0;
    211 
    212     /*
    213      * Wait for events to become available and returns them.
    214      * After returning, the EventHub holds onto a wake lock until the next call to getEvent.
    215      * This ensures that the device will not go to sleep while the event is being processed.
    216      * If the device needs to remain awake longer than that, then the caller is responsible
    217      * for taking care of it (say, by poking the power manager user activity timer).
    218      *
    219      * The timeout is advisory only.  If the device is asleep, it will not wake just to
    220      * service the timeout.
    221      *
    222      * Returns the number of events obtained, or 0 if the timeout expired.
    223      */
    224     virtual size_t getEvents(int timeoutMillis, RawEvent* buffer, size_t bufferSize) = 0;
    225 
    226     /*
    227      * Query current input state.
    228      */
    229     virtual int32_t getScanCodeState(int32_t deviceId, int32_t scanCode) const = 0;
    230     virtual int32_t getKeyCodeState(int32_t deviceId, int32_t keyCode) const = 0;
    231     virtual int32_t getSwitchState(int32_t deviceId, int32_t sw) const = 0;
    232     virtual status_t getAbsoluteAxisValue(int32_t deviceId, int32_t axis,
    233             int32_t* outValue) const = 0;
    234 
    235     /*
    236      * Examine key input devices for specific framework keycode support
    237      */
    238     virtual bool markSupportedKeyCodes(int32_t deviceId, size_t numCodes, const int32_t* keyCodes,
    239             uint8_t* outFlags) const = 0;
    240 
    241     virtual bool hasScanCode(int32_t deviceId, int32_t scanCode) const = 0;
    242 
    243     /* LED related functions expect Android LED constants, not scan codes or HID usages */
    244     virtual bool hasLed(int32_t deviceId, int32_t led) const = 0;
    245     virtual void setLedState(int32_t deviceId, int32_t led, bool on) = 0;
    246 
    247     virtual void getVirtualKeyDefinitions(int32_t deviceId,
    248             Vector<VirtualKeyDefinition>& outVirtualKeys) const = 0;
    249 
    250     virtual sp<KeyCharacterMap> getKeyCharacterMap(int32_t deviceId) const = 0;
    251     virtual bool setKeyboardLayoutOverlay(int32_t deviceId, const sp<KeyCharacterMap>& map) = 0;
    252 
    253     /* Control the vibrator. */
    254     virtual void vibrate(int32_t deviceId, nsecs_t duration) = 0;
    255     virtual void cancelVibrate(int32_t deviceId) = 0;
    256 
    257     /* Requests the EventHub to reopen all input devices on the next call to getEvents(). */
    258     virtual void requestReopenDevices() = 0;
    259 
    260     /* Wakes up getEvents() if it is blocked on a read. */
    261     virtual void wake() = 0;
    262 
    263     /* Dump EventHub state to a string. */
    264     virtual void dump(std::string& dump) = 0;
    265 
    266     /* Called by the heatbeat to ensures that the reader has not deadlocked. */
    267     virtual void monitor() = 0;
    268 
    269     /* Return true if the device is enabled. */
    270     virtual bool isDeviceEnabled(int32_t deviceId) = 0;
    271 
    272     /* Enable an input device */
    273     virtual status_t enableDevice(int32_t deviceId) = 0;
    274 
    275     /* Disable an input device. Closes file descriptor to that device. */
    276     virtual status_t disableDevice(int32_t deviceId) = 0;
    277 };
    278 
    279 class EventHub : public EventHubInterface
    280 {
    281 public:
    282     EventHub();
    283 
    284     virtual uint32_t getDeviceClasses(int32_t deviceId) const;
    285 
    286     virtual InputDeviceIdentifier getDeviceIdentifier(int32_t deviceId) const;
    287 
    288     virtual int32_t getDeviceControllerNumber(int32_t deviceId) const;
    289 
    290     virtual void getConfiguration(int32_t deviceId, PropertyMap* outConfiguration) const;
    291 
    292     virtual status_t getAbsoluteAxisInfo(int32_t deviceId, int axis,
    293             RawAbsoluteAxisInfo* outAxisInfo) const;
    294 
    295     virtual bool hasRelativeAxis(int32_t deviceId, int axis) const;
    296 
    297     virtual bool hasInputProperty(int32_t deviceId, int property) const;
    298 
    299     virtual status_t mapKey(int32_t deviceId,
    300             int32_t scanCode, int32_t usageCode, int32_t metaState,
    301             int32_t* outKeycode, int32_t *outMetaState, uint32_t* outFlags) const;
    302 
    303     virtual status_t mapAxis(int32_t deviceId, int32_t scanCode,
    304             AxisInfo* outAxisInfo) const;
    305 
    306     virtual void setExcludedDevices(const Vector<String8>& devices);
    307 
    308     virtual int32_t getScanCodeState(int32_t deviceId, int32_t scanCode) const;
    309     virtual int32_t getKeyCodeState(int32_t deviceId, int32_t keyCode) const;
    310     virtual int32_t getSwitchState(int32_t deviceId, int32_t sw) const;
    311     virtual status_t getAbsoluteAxisValue(int32_t deviceId, int32_t axis, int32_t* outValue) const;
    312 
    313     virtual bool markSupportedKeyCodes(int32_t deviceId, size_t numCodes,
    314             const int32_t* keyCodes, uint8_t* outFlags) const;
    315 
    316     virtual size_t getEvents(int timeoutMillis, RawEvent* buffer, size_t bufferSize);
    317 
    318     virtual bool hasScanCode(int32_t deviceId, int32_t scanCode) const;
    319     virtual bool hasLed(int32_t deviceId, int32_t led) const;
    320     virtual void setLedState(int32_t deviceId, int32_t led, bool on);
    321 
    322     virtual void getVirtualKeyDefinitions(int32_t deviceId,
    323             Vector<VirtualKeyDefinition>& outVirtualKeys) const;
    324 
    325     virtual sp<KeyCharacterMap> getKeyCharacterMap(int32_t deviceId) const;
    326     virtual bool setKeyboardLayoutOverlay(int32_t deviceId, const sp<KeyCharacterMap>& map);
    327 
    328     virtual void vibrate(int32_t deviceId, nsecs_t duration);
    329     virtual void cancelVibrate(int32_t deviceId);
    330 
    331     virtual void requestReopenDevices();
    332 
    333     virtual void wake();
    334 
    335     virtual void dump(std::string& dump);
    336     virtual void monitor();
    337 
    338 protected:
    339     virtual ~EventHub();
    340 
    341 private:
    342     struct Device {
    343         Device* next;
    344 
    345         int fd; // may be -1 if device is closed
    346         const int32_t id;
    347         const String8 path;
    348         const InputDeviceIdentifier identifier;
    349 
    350         uint32_t classes;
    351 
    352         uint8_t keyBitmask[(KEY_MAX + 1) / 8];
    353         uint8_t absBitmask[(ABS_MAX + 1) / 8];
    354         uint8_t relBitmask[(REL_MAX + 1) / 8];
    355         uint8_t swBitmask[(SW_MAX + 1) / 8];
    356         uint8_t ledBitmask[(LED_MAX + 1) / 8];
    357         uint8_t ffBitmask[(FF_MAX + 1) / 8];
    358         uint8_t propBitmask[(INPUT_PROP_MAX + 1) / 8];
    359 
    360         String8 configurationFile;
    361         PropertyMap* configuration;
    362         VirtualKeyMap* virtualKeyMap;
    363         KeyMap keyMap;
    364 
    365         sp<KeyCharacterMap> overlayKeyMap;
    366         sp<KeyCharacterMap> combinedKeyMap;
    367 
    368         bool ffEffectPlaying;
    369         int16_t ffEffectId; // initially -1
    370 
    371         int32_t controllerNumber;
    372 
    373         int32_t timestampOverrideSec;
    374         int32_t timestampOverrideUsec;
    375 
    376         Device(int fd, int32_t id, const String8& path, const InputDeviceIdentifier& identifier);
    377         ~Device();
    378 
    379         void close();
    380 
    381         bool enabled; // initially true
    382         status_t enable();
    383         status_t disable();
    384         bool hasValidFd();
    385         const bool isVirtual; // set if fd < 0 is passed to constructor
    386 
    387         const sp<KeyCharacterMap>& getKeyCharacterMap() const {
    388             if (combinedKeyMap != NULL) {
    389                 return combinedKeyMap;
    390             }
    391             return keyMap.keyCharacterMap;
    392         }
    393     };
    394 
    395     status_t openDeviceLocked(const char *devicePath);
    396     void createVirtualKeyboardLocked();
    397     void addDeviceLocked(Device* device);
    398     void assignDescriptorLocked(InputDeviceIdentifier& identifier);
    399 
    400     status_t closeDeviceByPathLocked(const char *devicePath);
    401     void closeDeviceLocked(Device* device);
    402     void closeAllDevicesLocked();
    403 
    404     void configureFd(Device* device);
    405 
    406     bool isDeviceEnabled(int32_t deviceId);
    407     status_t enableDevice(int32_t deviceId);
    408     status_t disableDevice(int32_t deviceId);
    409     status_t registerDeviceForEpollLocked(Device* device);
    410     status_t unregisterDeviceFromEpollLocked(Device* device);
    411 
    412     status_t scanDirLocked(const char *dirname);
    413     void scanDevicesLocked();
    414     status_t readNotifyLocked();
    415 
    416     Device* getDeviceByDescriptorLocked(String8& descriptor) const;
    417     Device* getDeviceLocked(int32_t deviceId) const;
    418     Device* getDeviceByPathLocked(const char* devicePath) const;
    419 
    420     bool hasKeycodeLocked(Device* device, int keycode) const;
    421 
    422     void loadConfigurationLocked(Device* device);
    423     status_t loadVirtualKeyMapLocked(Device* device);
    424     status_t loadKeyMapLocked(Device* device);
    425 
    426     bool isExternalDeviceLocked(Device* device);
    427     bool deviceHasMicLocked(Device* device);
    428 
    429     int32_t getNextControllerNumberLocked(Device* device);
    430     void releaseControllerNumberLocked(Device* device);
    431     void setLedForControllerLocked(Device* device);
    432 
    433     status_t mapLed(Device* device, int32_t led, int32_t* outScanCode) const;
    434     void setLedStateLocked(Device* device, int32_t led, bool on);
    435 
    436     // Protect all internal state.
    437     mutable Mutex mLock;
    438 
    439     // The actual id of the built-in keyboard, or NO_BUILT_IN_KEYBOARD if none.
    440     // EventHub remaps the built-in keyboard to id 0 externally as required by the API.
    441     enum {
    442         // Must not conflict with any other assigned device ids, including
    443         // the virtual keyboard id (-1).
    444         NO_BUILT_IN_KEYBOARD = -2,
    445     };
    446     int32_t mBuiltInKeyboardId;
    447 
    448     int32_t mNextDeviceId;
    449 
    450     BitSet32 mControllerNumbers;
    451 
    452     KeyedVector<int32_t, Device*> mDevices;
    453 
    454     Device *mOpeningDevices;
    455     Device *mClosingDevices;
    456 
    457     bool mNeedToSendFinishedDeviceScan;
    458     bool mNeedToReopenDevices;
    459     bool mNeedToScanDevices;
    460     Vector<String8> mExcludedDevices;
    461 
    462     int mEpollFd;
    463     int mINotifyFd;
    464     int mWakeReadPipeFd;
    465     int mWakeWritePipeFd;
    466 
    467     // Ids used for epoll notifications not associated with devices.
    468     static const uint32_t EPOLL_ID_INOTIFY = 0x80000001;
    469     static const uint32_t EPOLL_ID_WAKE = 0x80000002;
    470 
    471     // Epoll FD list size hint.
    472     static const int EPOLL_SIZE_HINT = 8;
    473 
    474     // Maximum number of signalled FDs to handle at a time.
    475     static const int EPOLL_MAX_EVENTS = 16;
    476 
    477     // The array of pending epoll events and the index of the next event to be handled.
    478     struct epoll_event mPendingEventItems[EPOLL_MAX_EVENTS];
    479     size_t mPendingEventCount;
    480     size_t mPendingEventIndex;
    481     bool mPendingINotify;
    482 
    483     bool mUsingEpollWakeup;
    484 };
    485 
    486 }; // namespace android
    487 
    488 #endif // _RUNTIME_EVENT_HUB_H
    489