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475 lines
15 KiB
475 lines
15 KiB
/* |
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* Copyright (C) 2014 Invensense, Inc. |
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* |
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* Licensed under the Apache License, Version 2.0 (the "License"); |
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* you may not use this file except in compliance with the License. |
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* You may obtain a copy of the License at |
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* |
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* http://www.apache.org/licenses/LICENSE-2.0 |
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* |
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* Unless required by applicable law or agreed to in writing, software |
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* distributed under the License is distributed on an "AS IS" BASIS, |
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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* See the License for the specific language governing permissions and |
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* limitations under the License. |
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*/ |
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#define FUNC_LOG LOGV("%s", __PRETTY_FUNCTION__) |
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#include <hardware_legacy/power.h> |
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#include <hardware/sensors.h> |
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#include <fcntl.h> |
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#include <errno.h> |
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#include <dirent.h> |
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#include <math.h> |
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#include <poll.h> |
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#include <pthread.h> |
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#include <stdlib.h> |
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#include <sys/queue.h> |
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#include <linux/input.h> |
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#include <utils/Atomic.h> |
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#include <utils/Log.h> |
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#include <utils/SystemClock.h> |
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#include "sensors.h" |
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#include "MPLSensor.h" |
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/* |
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* Vendor-defined Accel Load Calibration File Method |
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* @param[out] Accel bias, length 3. In HW units scaled by 2^16 in body frame |
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* @return '0' for a successful load, '1' otherwise |
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* example: int AccelLoadConfig(long* offset); |
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* End of Vendor-defined Accel Load Cal Method |
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*/ |
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/*****************************************************************************/ |
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/* The SENSORS Module */ |
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#ifdef ENABLE_DMP_SCREEN_AUTO_ROTATION |
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#define LOCAL_SENSORS (NumSensors + 1) |
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#else |
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#define LOCAL_SENSORS (NumSensors) |
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#endif |
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struct handle_entry { |
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SIMPLEQ_ENTRY(handle_entry) entries; |
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int handle; |
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}; |
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static SIMPLEQ_HEAD(simplehead, handle_entry) pending_flush_items_head; |
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struct simplehead *headp; |
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static pthread_mutex_t flush_handles_mutex = PTHREAD_MUTEX_INITIALIZER; |
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static const char *smdWakelockStr = "significant motion"; |
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static struct sensor_t sSensorList[LOCAL_SENSORS]; |
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static int sensors = (sizeof(sSensorList) / sizeof(sensor_t)); |
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static int open_sensors(const struct hw_module_t* module, const char* id, |
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struct hw_device_t** device); |
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static int sensors__get_sensors_list(struct sensors_module_t* module, |
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struct sensor_t const** list) |
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{ |
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*list = sSensorList; |
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return sensors; |
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} |
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static struct hw_module_methods_t sensors_module_methods = { |
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open: open_sensors |
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}; |
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static int sensors_set_operation_mode(unsigned int mode) |
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{ |
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LOGI("%s", __FUNCTION__); |
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LOGI("%s: stub function: ignoring mode request (%d)", __FUNCTION__, |
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mode); |
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return 0; |
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} |
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struct sensors_module_t HAL_MODULE_INFO_SYM = { |
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common: { |
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tag: HARDWARE_MODULE_TAG, |
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version_major: 1, |
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version_minor: 0, |
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id: SENSORS_HARDWARE_MODULE_ID, |
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name: "Invensense module", |
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author: "Invensense Inc.", |
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methods: &sensors_module_methods, |
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dso: NULL, |
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reserved: {0} |
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}, |
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get_sensors_list: sensors__get_sensors_list, |
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set_operation_mode: sensors_set_operation_mode |
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}; |
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struct sensors_poll_context_t { |
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sensors_poll_device_1_t device; // must be first |
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sensors_poll_context_t(); |
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~sensors_poll_context_t(); |
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int activate(int handle, int enabled); |
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int setDelay(int handle, int64_t ns); |
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int pollEvents(sensors_event_t* data, int count); |
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int query(int what, int *value); |
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int batch(int handle, int flags, int64_t period_ns, int64_t timeout); |
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#if defined ANDROID_KITKAT || defined ANDROID_LOLLIPOP |
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int flush(int handle); |
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#endif |
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int64_t getTimestamp(); |
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private: |
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enum { |
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mpl = 0, |
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compass, |
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dmpOrient, |
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dmpSign, |
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dmpPed, |
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numSensorDrivers, |
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numFds, |
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}; |
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struct pollfd mPollFds[numFds]; |
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SensorBase *mSensor; |
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CompassSensor *mCompassSensor; |
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/* Significant Motion wakelock support */ |
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bool mSMDWakelockHeld; |
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}; |
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/******************************************************************************/ |
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sensors_poll_context_t::sensors_poll_context_t() { |
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VFUNC_LOG; |
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/* TODO: Handle external pressure sensor */ |
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mCompassSensor = new CompassSensor(); |
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MPLSensor *mplSensor = new MPLSensor(mCompassSensor); |
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/* No significant motion events pending yet */ |
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mSMDWakelockHeld = false; |
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/* For Vendor-defined Accel Calibration File Load |
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* Use the Following Constructor and Pass Your Load Cal File Function |
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* |
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* MPLSensor *mplSensor = new MPLSensor(mCompassSensor, AccelLoadConfig); |
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*/ |
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// Initialize pending flush queue |
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SIMPLEQ_INIT(&pending_flush_items_head); |
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// populate the sensor list |
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sensors = |
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mplSensor->populateSensorList(sSensorList, sizeof(sSensorList)); |
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mSensor = mplSensor; |
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mPollFds[mpl].fd = mSensor->getFd(); |
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mPollFds[mpl].events = POLLIN; |
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mPollFds[mpl].revents = 0; |
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mPollFds[compass].fd = mCompassSensor->getFd(); |
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mPollFds[compass].events = POLLIN; |
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mPollFds[compass].revents = 0; |
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mPollFds[dmpOrient].fd = ((MPLSensor*) mSensor)->getDmpOrientFd(); |
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mPollFds[dmpOrient].events = POLLPRI; |
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mPollFds[dmpOrient].revents = 0; |
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mPollFds[dmpSign].fd = ((MPLSensor*) mSensor)->getDmpSignificantMotionFd(); |
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mPollFds[dmpSign].events = POLLPRI; |
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mPollFds[dmpSign].revents = 0; |
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mPollFds[dmpPed].fd = ((MPLSensor*) mSensor)->getDmpPedometerFd(); |
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mPollFds[dmpPed].events = POLLPRI; |
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mPollFds[dmpPed].revents = 0; |
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} |
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sensors_poll_context_t::~sensors_poll_context_t() { |
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FUNC_LOG; |
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delete mSensor; |
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delete mCompassSensor; |
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for (int i = 0; i < numSensorDrivers; i++) { |
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close(mPollFds[i].fd); |
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} |
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} |
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int sensors_poll_context_t::activate(int handle, int enabled) { |
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FUNC_LOG; |
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int err; |
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err = mSensor->enable(handle, enabled); |
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return err; |
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} |
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int sensors_poll_context_t::setDelay(int handle, int64_t ns) |
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{ |
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FUNC_LOG; |
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return mSensor->setDelay(handle, ns); |
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} |
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int64_t sensors_poll_context_t::getTimestamp() |
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{ |
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return android::elapsedRealtimeNano(); |
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} |
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int sensors_poll_context_t::pollEvents(sensors_event_t *data, int count) |
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{ |
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VHANDLER_LOG; |
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int nbEvents = 0; |
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int nb, polltime = -1; |
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if (mSMDWakelockHeld) { |
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mSMDWakelockHeld = false; |
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release_wake_lock(smdWakelockStr); |
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} |
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struct handle_entry *handle_element; |
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pthread_mutex_lock(&flush_handles_mutex); |
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if (!SIMPLEQ_EMPTY(&pending_flush_items_head)) { |
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sensors_event_t flushCompleteEvent; |
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flushCompleteEvent.type = SENSOR_TYPE_META_DATA; |
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flushCompleteEvent.sensor = 0; |
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handle_element = SIMPLEQ_FIRST(&pending_flush_items_head); |
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flushCompleteEvent.meta_data.sensor = handle_element->handle; |
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SIMPLEQ_REMOVE_HEAD(&pending_flush_items_head, entries); |
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free(handle_element); |
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memcpy(data, (void *) &flushCompleteEvent, sizeof(flushCompleteEvent)); |
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LOGI_IF(1, "pollEvents() Returning fake flush event completion for handle %d", |
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flushCompleteEvent.meta_data.sensor); |
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pthread_mutex_unlock(&flush_handles_mutex); |
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return 1; |
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} |
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pthread_mutex_unlock(&flush_handles_mutex); |
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polltime = ((MPLSensor*) mSensor)->getStepCountPollTime(); |
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// look for new events |
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nb = poll(mPollFds, numSensorDrivers, polltime); |
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LOGI_IF(0, "poll nb=%d, count=%d, pt=%d ts=%lld", nb, count, polltime, getTimestamp()); |
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if (nb == 0 && count > 0) { |
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/* to see if any step counter events */ |
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if(((MPLSensor*) mSensor)->hasStepCountPendingEvents() == true) { |
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nb = ((MPLSensor*) mSensor)->readDmpPedometerEvents( |
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data, count, ID_SC, 0); |
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LOGI_IF(SensorBase::HANDLER_DATA, "sensors_mpl:readStepCount() - " |
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"nb=%d, count=%d, nbEvents=%d, data->timestamp=%lld, ", |
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nb, count, nbEvents, data->timestamp); |
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if (nb > 0) { |
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count -= nb; |
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nbEvents += nb; |
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data += nb; |
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} |
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} |
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} else while (nb > 0) { |
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for (int i = 0; count && i < numSensorDrivers; i++) { |
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if (mPollFds[i].revents & (POLLIN | POLLPRI)) { |
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nb = 0; |
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if (i == mpl) { |
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((MPLSensor*) mSensor)->buildMpuEvent(); |
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mPollFds[i].revents = 0; |
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} else if (i == compass) { |
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((MPLSensor*) mSensor)->buildCompassEvent(); |
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mPollFds[i].revents = 0; |
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} else if (i == dmpOrient) { |
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nb = ((MPLSensor*)mSensor)-> |
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readDmpOrientEvents(data, count); |
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mPollFds[dmpOrient].revents= 0; |
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if (isDmpScreenAutoRotationEnabled() && nb > 0) { |
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count -= nb; |
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nbEvents += nb; |
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data += nb; |
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} |
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} else if (i == dmpSign) { |
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nb = ((MPLSensor*) mSensor)-> |
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readDmpSignificantMotionEvents(data, count); |
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mPollFds[i].revents = 0; |
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if (nb) { |
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if (!mSMDWakelockHeld) { |
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/* Hold wakelock until Sensor Services reads event */ |
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acquire_wake_lock(PARTIAL_WAKE_LOCK, smdWakelockStr); |
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LOGI_IF(1, "HAL: grabbed %s wakelock", smdWakelockStr); |
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mSMDWakelockHeld = true; |
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} |
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count -= nb; |
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nbEvents += nb; |
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data += nb; |
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} |
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} else if (i == dmpPed) { |
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nb = ((MPLSensor*) mSensor)->readDmpPedometerEvents( |
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data, count, ID_P, 0); |
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mPollFds[i].revents = 0; |
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count -= nb; |
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nbEvents += nb; |
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data += nb; |
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} |
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if(nb == 0) { |
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nb = ((MPLSensor*) mSensor)->readEvents(data, count); |
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LOGI_IF(0, "sensors_mpl:readEvents() - " |
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"i=%d, nb=%d, count=%d, nbEvents=%d, " |
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"data->timestamp=%lld, data->data[0]=%f,", |
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i, nb, count, nbEvents, data->timestamp, |
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data->data[0]); |
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if (nb > 0) { |
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count -= nb; |
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nbEvents += nb; |
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data += nb; |
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} |
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} |
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} |
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} |
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/* to see if any step counter events */ |
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if(((MPLSensor*) mSensor)->hasStepCountPendingEvents() == true) { |
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nb = 0; |
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nb = ((MPLSensor*) mSensor)->readDmpPedometerEvents( |
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data, count, ID_SC, 0); |
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LOGI_IF(SensorBase::HANDLER_DATA, "sensors_mpl:readStepCount() - " |
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"nb=%d, count=%d, nbEvents=%d, data->timestamp=%lld, ", |
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nb, count, nbEvents, data->timestamp); |
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if (nb > 0) { |
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count -= nb; |
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nbEvents += nb; |
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data += nb; |
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} |
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} |
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if (count > 0) { |
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// We still have room for more events, try an immediate poll for more data |
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nb = poll(mPollFds, numSensorDrivers, 0); |
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} else { |
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nb = 0; |
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} |
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} |
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return nbEvents; |
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} |
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int sensors_poll_context_t::query(int what, int* value) |
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{ |
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FUNC_LOG; |
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return mSensor->query(what, value); |
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} |
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int sensors_poll_context_t::batch(int handle, int flags, int64_t period_ns, |
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int64_t timeout) |
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{ |
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FUNC_LOG; |
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return mSensor->batch(handle, flags, period_ns, timeout); |
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} |
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#if defined ANDROID_KITKAT || defined ANDROID_LOLLIPOP |
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void inv_pending_flush(int handle) { |
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struct handle_entry *the_entry; |
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pthread_mutex_lock(&flush_handles_mutex); |
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the_entry = (struct handle_entry*) malloc(sizeof(struct handle_entry)); |
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if (the_entry != NULL) { |
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LOGI_IF(0, "Inserting %d into pending list", handle); |
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the_entry->handle = handle; |
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SIMPLEQ_INSERT_TAIL(&pending_flush_items_head, the_entry, entries); |
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} else { |
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LOGE("ERROR malloc'ing space for pending handler flush entry"); |
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} |
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pthread_mutex_unlock(&flush_handles_mutex); |
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} |
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int sensors_poll_context_t::flush(int handle) |
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{ |
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FUNC_LOG; |
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return mSensor->flush(handle); |
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} |
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#endif |
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/******************************************************************************/ |
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static int poll__close(struct hw_device_t *dev) |
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{ |
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FUNC_LOG; |
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sensors_poll_context_t *ctx = (sensors_poll_context_t *)dev; |
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if (ctx) { |
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delete ctx; |
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} |
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return 0; |
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} |
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static int poll__activate(struct sensors_poll_device_t *dev, |
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int handle, int enabled) |
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{ |
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sensors_poll_context_t *ctx = (sensors_poll_context_t *)dev; |
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return ctx->activate(handle, enabled); |
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} |
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static int poll__setDelay(struct sensors_poll_device_t *dev, |
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int handle, int64_t ns) |
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{ |
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sensors_poll_context_t *ctx = (sensors_poll_context_t *)dev; |
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int s= ctx->setDelay(handle, ns); |
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return s; |
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} |
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static int poll__poll(struct sensors_poll_device_t *dev, |
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sensors_event_t* data, int count) |
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{ |
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sensors_poll_context_t *ctx = (sensors_poll_context_t *)dev; |
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return ctx->pollEvents(data, count); |
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} |
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static int poll__query(struct sensors_poll_device_1 *dev, |
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int what, int *value) |
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{ |
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sensors_poll_context_t *ctx = (sensors_poll_context_t *)dev; |
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return ctx->query(what, value); |
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} |
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static int poll__batch(struct sensors_poll_device_1 *dev, |
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int handle, int flags, int64_t period_ns, int64_t timeout) |
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{ |
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sensors_poll_context_t *ctx = (sensors_poll_context_t *)dev; |
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return ctx->batch(handle, flags, period_ns, timeout); |
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} |
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#if defined ANDROID_KITKAT || defined ANDROID_LOLLIPOP |
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static int poll__flush(struct sensors_poll_device_1 *dev, |
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int handle) |
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{ |
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sensors_poll_context_t *ctx = (sensors_poll_context_t *)dev; |
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int status = ctx->flush(handle); |
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if (handle == SENSORS_STEP_COUNTER_HANDLE) { |
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LOGI_IF(0, "creating flush completion event for handle %d", handle); |
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inv_pending_flush(handle); |
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return 0; |
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} |
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return status; |
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} |
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#endif |
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/******************************************************************************/ |
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/** Open a new instance of a sensor device using name */ |
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static int open_sensors(const struct hw_module_t* module, const char* id, |
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struct hw_device_t** device) |
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{ |
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FUNC_LOG; |
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int status = -EINVAL; |
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sensors_poll_context_t *dev = new sensors_poll_context_t(); |
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memset(&dev->device, 0, sizeof(sensors_poll_device_1)); |
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dev->device.common.tag = HARDWARE_DEVICE_TAG; |
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dev->device.common.version = SENSORS_DEVICE_API_VERSION_1_3; |
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dev->device.flush = poll__flush; |
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dev->device.common.module = const_cast<hw_module_t*>(module); |
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dev->device.common.close = poll__close; |
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dev->device.activate = poll__activate; |
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dev->device.setDelay = poll__setDelay; |
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dev->device.poll = poll__poll; |
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dev->device.batch = poll__batch; |
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*device = &dev->device.common; |
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status = 0; |
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return status; |
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}
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