345 lines
12 KiB
C++
345 lines
12 KiB
C++
#include "modules/battery.hpp"
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#include "drawtypes/animation.hpp"
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#include "drawtypes/label.hpp"
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#include "drawtypes/progressbar.hpp"
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#include "drawtypes/ramp.hpp"
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#include "utils/file.hpp"
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#include "utils/math.hpp"
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#include "modules/meta/base.inl"
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POLYBAR_NS
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namespace modules {
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template class module<battery_module>;
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/**
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* Bootstrap module by setting up required components
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*/
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battery_module::battery_module(const bar_settings& bar, string name_)
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: inotify_module<battery_module>(bar, move(name_)) {
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auto battery = m_conf.get<string>(name(), "battery", "BAT0");
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auto adapter = m_conf.get<string>(name(), "adapter", "ADP1");
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auto path_adapter = string_util::replace(PATH_ADAPTER, "%adapter%", adapter) + "/";
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auto path_battery = string_util::replace(PATH_BATTERY, "%battery%", battery) + "/";
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if (!file_util::exists(path_adapter + "online")) {
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throw module_error("The file '" + path_adapter + "online' does not exist");
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}
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m_valuepath[battery_module::value::ADAPTER] = path_adapter + "online";
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if (!file_util::exists(path_battery + "voltage_now")) {
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throw module_error("The file '" + path_battery + "voltage_now' does not exist");
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}
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m_valuepath[battery_module::value::VOLTAGE] = path_battery + "voltage_now";
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for (auto&& file : vector<string>{"charge", "energy"}) {
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if (file_util::exists(path_battery + file + "_now")) {
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m_valuepath[battery_module::value::CAPACITY] = path_battery + file + "_now";
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}
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if (file_util::exists(path_battery + file + "_full")) {
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m_valuepath[battery_module::value::CAPACITY_MAX] = path_battery + file + "_full";
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}
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}
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if (m_valuepath[battery_module::value::CAPACITY].empty()) {
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throw module_error("The file '" + path_battery + "[charge|energy]_now' does not exist");
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}
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if (m_valuepath[battery_module::value::CAPACITY_MAX].empty()) {
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throw module_error("The file '" + path_battery + "[charge|energy]_full' does not exist");
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}
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for (auto&& file : vector<string>{"current", "power"}) {
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if (file_util::exists(path_battery + file + "_now")) {
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m_valuepath[battery_module::value::RATE] = path_battery + file + "_now";
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}
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}
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if (m_valuepath[battery_module::value::RATE].empty()) {
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throw module_error("The file '" + path_battery + "[current|power]_now' does not exist");
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}
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m_fullat = m_conf.get<int>(name(), "full-at", 100);
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m_interval = chrono::duration<double>{m_conf.get<float>(name(), "poll-interval", 5.0f)};
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m_lastpoll = chrono::system_clock::now();
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// Load state and capacity level
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m_percentage = current_percentage();
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m_state = current_state();
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// Add formats and elements
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m_formatter->add(FORMAT_CHARGING, TAG_LABEL_CHARGING,
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{TAG_BAR_CAPACITY, TAG_RAMP_CAPACITY, TAG_ANIMATION_CHARGING, TAG_LABEL_CHARGING});
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m_formatter->add(
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FORMAT_DISCHARGING, TAG_LABEL_DISCHARGING, {TAG_BAR_CAPACITY, TAG_RAMP_CAPACITY, TAG_LABEL_DISCHARGING});
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m_formatter->add(FORMAT_FULL, TAG_LABEL_FULL, {TAG_BAR_CAPACITY, TAG_RAMP_CAPACITY, TAG_LABEL_FULL});
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if (m_formatter->has(TAG_ANIMATION_CHARGING, FORMAT_CHARGING)) {
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m_animation_charging = load_animation(m_conf, name(), TAG_ANIMATION_CHARGING);
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}
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if (m_formatter->has(TAG_BAR_CAPACITY)) {
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m_bar_capacity = load_progressbar(m_bar, m_conf, name(), TAG_BAR_CAPACITY);
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}
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if (m_formatter->has(TAG_RAMP_CAPACITY)) {
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m_ramp_capacity = load_ramp(m_conf, name(), TAG_RAMP_CAPACITY);
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}
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if (m_formatter->has(TAG_LABEL_CHARGING, FORMAT_CHARGING)) {
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m_label_charging = load_optional_label(m_conf, name(), TAG_LABEL_CHARGING, "%percentage%");
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}
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if (m_formatter->has(TAG_LABEL_DISCHARGING, FORMAT_DISCHARGING)) {
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m_label_discharging = load_optional_label(m_conf, name(), TAG_LABEL_DISCHARGING, "%percentage%");
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}
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if (m_formatter->has(TAG_LABEL_FULL, FORMAT_FULL)) {
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m_label_full = load_optional_label(m_conf, name(), TAG_LABEL_FULL, "%percentage%");
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}
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// Create inotify watches
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watch(m_valuepath[battery_module::value::CAPACITY], IN_ACCESS);
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watch(m_valuepath[battery_module::value::ADAPTER], IN_ACCESS);
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// Setup time if token is used
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if ((m_label_charging && m_label_charging->has_token("%time%")) || (m_label_discharging && m_label_discharging->has_token("%time%"))) {
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if (!m_bar.locale.empty()) {
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setlocale(LC_TIME, m_bar.locale.c_str());
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}
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m_timeformat = m_conf.get<string>(name(), "time-format", "%H:%M:%S");
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}
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}
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/**
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* Dispatch the subthread used to update the
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* charging animation when the module is started
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*/
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void battery_module::start() {
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this->inotify_module::start();
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m_threads.emplace_back(thread(&battery_module::subthread, this));
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}
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/**
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* Release wake lock when stopping the module
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*/
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void battery_module::teardown() {
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wakeup();
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}
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/**
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* Idle between polling inotify watches for events.
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*
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* If the defined interval has been reached, trigger a manual
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* poll in case the inotify events aren't fired.
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*
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* This fallback is needed because some systems won't
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* report inotify events for files on sysfs.
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*/
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void battery_module::idle() {
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if (m_interval.count() > 0) {
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auto now = chrono::system_clock::now();
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if (chrono::duration_cast<decltype(m_interval)>(now - m_lastpoll) > m_interval) {
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m_lastpoll = now;
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m_log.info("%s: Polling values (inotify fallback)", name());
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file_util::get_contents(m_valuepath[battery_module::value::CAPACITY]);
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}
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}
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this->inotify_module::idle();
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}
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/**
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* Update values when tracked files have changed
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*/
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bool battery_module::on_event(inotify_event* event) {
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if (event != nullptr) {
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m_log.trace("%s: Inotify event reported for %s", name(), event->filename);
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}
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// Reset timer to avoid unnecessary polling
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m_lastpoll = chrono::system_clock::now();
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auto state = current_state();
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int percentage = m_percentage;
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if (state != battery_module::state::FULL) {
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percentage = current_percentage();
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}
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if (event != nullptr && state == m_state && percentage == m_percentage && m_unchanged--) {
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return false;
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}
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m_percentage = percentage;
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m_state = state;
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m_unchanged = SKIP_N_UNCHANGED;
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string time_remaining;
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if (m_state == battery_module::state::CHARGING && m_label_charging) {
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if (!m_timeformat.empty()) {
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time_remaining = current_time();
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}
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m_label_charging->reset_tokens();
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m_label_charging->replace_token("%percentage%", to_string(m_percentage) + "%");
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m_label_charging->replace_token("%time%", time_remaining);
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} else if (m_state == battery_module::state::DISCHARGING && m_label_discharging) {
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if (!m_timeformat.empty()) {
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time_remaining = current_time();
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}
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m_label_discharging->reset_tokens();
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m_label_discharging->replace_token("%percentage%", to_string(m_percentage) + "%");
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m_label_discharging->replace_token("%time%", time_remaining);
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} else if (m_state == battery_module::state::FULL && m_label_full) {
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m_label_full->reset_tokens();
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m_label_full->replace_token("%percentage%", to_string(m_percentage) + "%");
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}
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return true;
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}
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/**
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* Get the output format based on state
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*/
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string battery_module::get_format() const {
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if (m_state == battery_module::state::FULL) {
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return FORMAT_FULL;
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} else if (m_state == battery_module::state::CHARGING) {
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return FORMAT_CHARGING;
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} else {
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return FORMAT_DISCHARGING;
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}
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}
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/**
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* Generate the module output using defined drawtypes
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*/
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bool battery_module::build(builder* builder, const string& tag) const {
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if (tag == TAG_ANIMATION_CHARGING) {
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builder->node(m_animation_charging->get());
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} else if (tag == TAG_BAR_CAPACITY) {
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builder->node(m_bar_capacity->output(m_percentage));
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} else if (tag == TAG_RAMP_CAPACITY) {
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builder->node(m_ramp_capacity->get_by_percentage(m_percentage));
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} else if (tag == TAG_LABEL_CHARGING) {
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builder->node(m_label_charging);
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} else if (tag == TAG_LABEL_DISCHARGING) {
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builder->node(m_label_discharging);
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} else if (tag == TAG_LABEL_FULL) {
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builder->node(m_label_full);
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} else {
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return false;
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}
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return true;
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}
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/**
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* Get the current battery state
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*/
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battery_module::state battery_module::current_state() {
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auto adapter_status = file_util::get_contents(m_valuepath[battery_module::value::ADAPTER]);
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if (adapter_status.empty()) {
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return battery_module::state::DISCHARGING;
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} else if (adapter_status[0] == '0') {
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return battery_module::state::DISCHARGING;
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} else if (adapter_status[0] != '1') {
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return battery_module::state::DISCHARGING;
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} else if (m_percentage < m_fullat) {
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return battery_module::state::CHARGING;
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} else {
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return battery_module::state::FULL;
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}
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}
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/**
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* Get the current capacity level
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*/
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int battery_module::current_percentage() {
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auto capacity_now =
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std::strtoul(file_util::get_contents(m_valuepath[battery_module::value::CAPACITY]).c_str(), nullptr, 10);
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auto capacity_max =
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std::strtoul(file_util::get_contents(m_valuepath[battery_module::value::CAPACITY_MAX]).c_str(), nullptr, 10);
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auto percentage = math_util::percentage(capacity_now, 0UL, capacity_max);
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return percentage < m_fullat ? percentage : 100;
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}
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/**
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* Get estimate of remaining time until fully dis-/charged
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*/
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string battery_module::current_time() {
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if (m_state == battery_module::state::FULL) {
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return "";
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}
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int rate{atoi(file_util::get_contents(m_valuepath[battery_module::value::RATE]).c_str()) / 1000};
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int volt{atoi(file_util::get_contents(m_valuepath[battery_module::value::VOLTAGE]).c_str()) / 1000};
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int now{atoi(file_util::get_contents(m_valuepath[battery_module::value::CAPACITY]).c_str()) / 1000};
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int max{atoi(file_util::get_contents(m_valuepath[battery_module::value::CAPACITY_MAX]).c_str()) / 1000};
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int cap{0};
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if (m_state == battery_module::state::CHARGING) {
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cap = max - now;
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} else if (m_state == battery_module::state::DISCHARGING) {
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cap = now;
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}
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struct tm t {
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0, 0, 0, 0, 0, 0, 0, 0, 0, 0, nullptr
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};
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if (rate && volt && cap) {
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cap = cap * 1000 / volt;
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rate = rate * 1000 / volt;
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if (!rate) {
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rate = -1;
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}
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chrono::seconds sec{3600 * cap / rate};
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m_log.trace("%s: sec=%d %d%% cap=%lu rate=%lu volt=%lu", name(), sec.count(), static_cast<int>(m_percentage), cap,
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rate, volt);
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if (sec.count() > 0) {
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t.tm_hour = chrono::duration_cast<chrono::hours>(sec).count();
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sec -= chrono::seconds{3600 * t.tm_hour};
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t.tm_min = chrono::duration_cast<chrono::minutes>(sec).count();
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sec -= chrono::seconds{60 * t.tm_min};
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t.tm_sec = chrono::duration_cast<chrono::seconds>(sec).count();
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}
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}
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char buffer[256]{0};
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strftime(buffer, sizeof(buffer), m_timeformat.c_str(), &t);
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return {buffer};
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}
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/**
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* Subthread runner that emit update events
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* to refresh <animation-charging> in case it is used.
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*/
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void battery_module::subthread() {
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chrono::duration<double> dur = 1s;
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if (m_animation_charging) {
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dur = chrono::duration<double>(float(m_animation_charging->framerate()) / 1000.0f);
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}
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while (running()) {
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for (int i = 0; running() && i < dur.count(); ++i) {
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if (m_state == battery_module::state::CHARGING) {
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broadcast();
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}
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sleep(dur);
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}
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}
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m_log.trace("%s: End of subthread", name());
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}
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}
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POLYBAR_NS_END
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