526f8cf339
This splits healthd code into 2 pieces as described below. charger - statically linked executable in /sbin - responsible for charger-mode UI - battery/charger monitoring in recovery/charger-mode. healthd - dynamically linked (*mostly*) executable in /system/bin - responsible for battery / charger monitoring in Android - runs 'batteryproperties' service. Both currently use libhealthd STATIC HALs. However, this now paves way for the healthd (android) HAL to be a shared library that can be trebelized. text data bss dec hex filename 733356 15312 33864 782532 bf0c4 root/sbin/charger 55943 10392 192 66527 103df system/bin/healthd 789299 25704 34056 849059 cf4a3 (TOTALS) Test: Tested recovery, charge-only and android boot with new binaries with and without STATIC HAL. Change-Id: I80f94948dda44d466f172d234b3fcc9064ef2476 Signed-off-by: Sandeep Patil <sspatil@google.com>
304 lines
8.6 KiB
C++
304 lines
8.6 KiB
C++
/*
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* Copyright (C) 2013 The Android Open Source Project
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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 LOG_TAG "healthd-common"
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#define KLOG_LEVEL 6
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#include <healthd/healthd.h>
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#include <healthd/BatteryMonitor.h>
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#include <errno.h>
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#include <libgen.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <unistd.h>
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#include <batteryservice/BatteryService.h>
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#include <cutils/klog.h>
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#include <cutils/uevent.h>
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#include <sys/epoll.h>
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#include <sys/timerfd.h>
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#include <utils/Errors.h>
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using namespace android;
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#ifndef BOARD_PERIODIC_CHORES_INTERVAL_FAST
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// Periodic chores fast interval in seconds
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#define DEFAULT_PERIODIC_CHORES_INTERVAL_FAST (60 * 1)
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#else
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#define DEFAULT_PERIODIC_CHORES_INTERVAL_FAST (BOARD_PERIODIC_CHORES_INTERVAL_FAST)
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#endif
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#ifndef BOARD_PERIODIC_CHORES_INTERVAL_SLOW
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// Periodic chores fast interval in seconds
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#define DEFAULT_PERIODIC_CHORES_INTERVAL_SLOW (60 * 10)
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#else
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#define DEFAULT_PERIODIC_CHORES_INTERVAL_SLOW (BOARD_PERIODIC_CHORES_INTERVAL_SLOW)
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#endif
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static struct healthd_config healthd_config = {
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.periodic_chores_interval_fast = DEFAULT_PERIODIC_CHORES_INTERVAL_FAST,
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.periodic_chores_interval_slow = DEFAULT_PERIODIC_CHORES_INTERVAL_SLOW,
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.batteryStatusPath = String8(String8::kEmptyString),
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.batteryHealthPath = String8(String8::kEmptyString),
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.batteryPresentPath = String8(String8::kEmptyString),
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.batteryCapacityPath = String8(String8::kEmptyString),
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.batteryVoltagePath = String8(String8::kEmptyString),
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.batteryTemperaturePath = String8(String8::kEmptyString),
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.batteryTechnologyPath = String8(String8::kEmptyString),
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.batteryCurrentNowPath = String8(String8::kEmptyString),
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.batteryCurrentAvgPath = String8(String8::kEmptyString),
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.batteryChargeCounterPath = String8(String8::kEmptyString),
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.batteryFullChargePath = String8(String8::kEmptyString),
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.batteryCycleCountPath = String8(String8::kEmptyString),
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.energyCounter = NULL,
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.boot_min_cap = 0,
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.screen_on = NULL,
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};
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static int eventct;
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static int epollfd;
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#define POWER_SUPPLY_SUBSYSTEM "power_supply"
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// epoll_create() parameter is actually unused
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#define MAX_EPOLL_EVENTS 40
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static int uevent_fd;
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static int wakealarm_fd;
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// -1 for no epoll timeout
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static int awake_poll_interval = -1;
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static int wakealarm_wake_interval = DEFAULT_PERIODIC_CHORES_INTERVAL_FAST;
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static BatteryMonitor* gBatteryMonitor;
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struct healthd_mode_ops *healthd_mode_ops;
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int healthd_register_event(int fd, void (*handler)(uint32_t), EventWakeup wakeup) {
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struct epoll_event ev;
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ev.events = EPOLLIN;
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if (wakeup == EVENT_WAKEUP_FD)
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ev.events |= EPOLLWAKEUP;
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ev.data.ptr = (void *)handler;
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if (epoll_ctl(epollfd, EPOLL_CTL_ADD, fd, &ev) == -1) {
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KLOG_ERROR(LOG_TAG,
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"epoll_ctl failed; errno=%d\n", errno);
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return -1;
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}
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eventct++;
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return 0;
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}
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static void wakealarm_set_interval(int interval) {
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struct itimerspec itval;
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if (wakealarm_fd == -1)
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return;
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wakealarm_wake_interval = interval;
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if (interval == -1)
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interval = 0;
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itval.it_interval.tv_sec = interval;
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itval.it_interval.tv_nsec = 0;
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itval.it_value.tv_sec = interval;
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itval.it_value.tv_nsec = 0;
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if (timerfd_settime(wakealarm_fd, 0, &itval, NULL) == -1)
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KLOG_ERROR(LOG_TAG, "wakealarm_set_interval: timerfd_settime failed\n");
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}
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status_t healthd_get_property(int id, struct BatteryProperty *val) {
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return gBatteryMonitor->getProperty(id, val);
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}
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void healthd_battery_update(void) {
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// Fast wake interval when on charger (watch for overheat);
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// slow wake interval when on battery (watch for drained battery).
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int new_wake_interval = gBatteryMonitor->update() ?
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healthd_config.periodic_chores_interval_fast :
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healthd_config.periodic_chores_interval_slow;
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if (new_wake_interval != wakealarm_wake_interval)
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wakealarm_set_interval(new_wake_interval);
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// During awake periods poll at fast rate. If wake alarm is set at fast
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// rate then just use the alarm; if wake alarm is set at slow rate then
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// poll at fast rate while awake and let alarm wake up at slow rate when
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// asleep.
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if (healthd_config.periodic_chores_interval_fast == -1)
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awake_poll_interval = -1;
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else
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awake_poll_interval =
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new_wake_interval == healthd_config.periodic_chores_interval_fast ?
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-1 : healthd_config.periodic_chores_interval_fast * 1000;
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}
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void healthd_dump_battery_state(int fd) {
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gBatteryMonitor->dumpState(fd);
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fsync(fd);
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}
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static void periodic_chores() {
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healthd_battery_update();
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}
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#define UEVENT_MSG_LEN 2048
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static void uevent_event(uint32_t /*epevents*/) {
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char msg[UEVENT_MSG_LEN+2];
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char *cp;
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int n;
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n = uevent_kernel_multicast_recv(uevent_fd, msg, UEVENT_MSG_LEN);
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if (n <= 0)
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return;
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if (n >= UEVENT_MSG_LEN) /* overflow -- discard */
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return;
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msg[n] = '\0';
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msg[n+1] = '\0';
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cp = msg;
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while (*cp) {
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if (!strcmp(cp, "SUBSYSTEM=" POWER_SUPPLY_SUBSYSTEM)) {
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healthd_battery_update();
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break;
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}
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/* advance to after the next \0 */
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while (*cp++)
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;
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}
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}
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static void uevent_init(void) {
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uevent_fd = uevent_open_socket(64*1024, true);
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if (uevent_fd < 0) {
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KLOG_ERROR(LOG_TAG, "uevent_init: uevent_open_socket failed\n");
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return;
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}
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fcntl(uevent_fd, F_SETFL, O_NONBLOCK);
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if (healthd_register_event(uevent_fd, uevent_event, EVENT_WAKEUP_FD))
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KLOG_ERROR(LOG_TAG,
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"register for uevent events failed\n");
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}
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static void wakealarm_event(uint32_t /*epevents*/) {
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unsigned long long wakeups;
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if (read(wakealarm_fd, &wakeups, sizeof(wakeups)) == -1) {
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KLOG_ERROR(LOG_TAG, "wakealarm_event: read wakealarm fd failed\n");
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return;
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}
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periodic_chores();
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}
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static void wakealarm_init(void) {
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wakealarm_fd = timerfd_create(CLOCK_BOOTTIME_ALARM, TFD_NONBLOCK);
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if (wakealarm_fd == -1) {
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KLOG_ERROR(LOG_TAG, "wakealarm_init: timerfd_create failed\n");
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return;
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}
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if (healthd_register_event(wakealarm_fd, wakealarm_event, EVENT_WAKEUP_FD))
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KLOG_ERROR(LOG_TAG,
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"Registration of wakealarm event failed\n");
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wakealarm_set_interval(healthd_config.periodic_chores_interval_fast);
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}
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static void healthd_mainloop(void) {
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int nevents = 0;
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while (1) {
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struct epoll_event events[eventct];
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int timeout = awake_poll_interval;
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int mode_timeout;
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/* Don't wait for first timer timeout to run periodic chores */
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if (!nevents)
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periodic_chores();
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healthd_mode_ops->heartbeat();
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mode_timeout = healthd_mode_ops->preparetowait();
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if (timeout < 0 || (mode_timeout > 0 && mode_timeout < timeout))
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timeout = mode_timeout;
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nevents = epoll_wait(epollfd, events, eventct, timeout);
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if (nevents == -1) {
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if (errno == EINTR)
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continue;
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KLOG_ERROR(LOG_TAG, "healthd_mainloop: epoll_wait failed\n");
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break;
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}
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for (int n = 0; n < nevents; ++n) {
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if (events[n].data.ptr)
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(*(void (*)(int))events[n].data.ptr)(events[n].events);
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}
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}
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return;
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}
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static int healthd_init() {
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epollfd = epoll_create(MAX_EPOLL_EVENTS);
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if (epollfd == -1) {
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KLOG_ERROR(LOG_TAG,
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"epoll_create failed; errno=%d\n",
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errno);
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return -1;
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}
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healthd_board_init(&healthd_config);
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healthd_mode_ops->init(&healthd_config);
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wakealarm_init();
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uevent_init();
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gBatteryMonitor = new BatteryMonitor();
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gBatteryMonitor->init(&healthd_config);
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return 0;
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}
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int healthd_main() {
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int ret;
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klog_set_level(KLOG_LEVEL);
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if (!healthd_mode_ops) {
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KLOG_ERROR("healthd ops not set, exiting\n");
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exit(1);
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}
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ret = healthd_init();
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if (ret) {
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KLOG_ERROR("Initialization failed, exiting\n");
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exit(2);
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}
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healthd_mainloop();
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KLOG_ERROR("Main loop terminated, exiting\n");
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return 3;
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}
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