Merge branch 'master' into feat-hyprland-submap-icon-handling

This commit is contained in:
Alexis Rouillard
2026-07-04 00:32:12 +02:00
committed by GitHub
230 changed files with 8980 additions and 1559 deletions
+14 -6
View File
@@ -36,9 +36,15 @@ auto waybar::modules::Backlight::update() -> void {
if (best->get_powered()) {
event_box_.show();
const uint8_t percent =
best->get_max() == 0 ? 100 : round(best->get_actual() * 100.0f / best->get_max());
const uint8_t percent_exp =
best->get_max() == 0
? 100
: roundf(powf((float)best->get_actual() / best->get_max(), 1.0f / 2.718f) * 100);
// Get the state and apply state-specific format if available
auto state = getState(percent);
std::string current_format = format_;
@@ -49,8 +55,10 @@ auto waybar::modules::Backlight::update() -> void {
}
}
std::string desc = fmt::format(fmt::runtime(current_format), fmt::arg("percent", percent),
fmt::arg("icon", getIcon(percent)));
std::string desc =
fmt::format(fmt::runtime(current_format), fmt::arg("percent", percent),
fmt::arg("percent_exp", percent_exp), fmt::arg("icon", getIcon(percent)),
fmt::arg("icon_exp", getIcon(percent_exp)));
label_.set_markup(desc);
if (tooltipEnabled()) {
std::string tooltip_format;
@@ -58,11 +66,11 @@ auto waybar::modules::Backlight::update() -> void {
tooltip_format = config_["tooltip-format"].asString();
}
if (!tooltip_format.empty()) {
label_.set_tooltip_text(fmt::format(fmt::runtime(tooltip_format),
fmt::arg("percent", percent),
fmt::arg("icon", getIcon(percent))));
label_.set_tooltip_markup(fmt::format(fmt::runtime(tooltip_format),
fmt::arg("percent", percent),
fmt::arg("icon", getIcon(percent))));
} else {
label_.set_tooltip_text(desc);
label_.set_tooltip_markup(desc);
}
}
} else {
+127 -73
View File
@@ -2,6 +2,9 @@
#include <algorithm>
#include <cctype>
#include <cmath>
#include <cstdio>
#include <string>
#include "util/command.hpp"
#if defined(__FreeBSD__)
@@ -33,6 +36,11 @@ waybar::modules::Battery::Battery(const std::string& id, const Bar& bar, const J
}
udev_monitor_enable_receiving(mon_.get());
if (config_["smooth-power"].isBool()) {
smoothPowerEnable_ = config_["smooth-power"].asBool();
if (smoothPowerEnable_ && config_["smooth-power-time-constant"].isNumeric())
time_constant_s_ = std::max(1.0, config_["smooth-power-time-constant"].asDouble());
}
if (config_["weighted-average"].isBool()) weightedAverage_ = config_["weighted-average"].asBool();
#endif
spdlog::debug("battery: worker interval is {}", interval_.count());
@@ -117,17 +125,16 @@ void waybar::modules::Battery::refreshBatteries() {
if (((bat_defined && dir_name == config_["bat"].asString()) || !bat_defined) &&
(fs::exists(node.path() / "capacity") || fs::exists(node.path() / "charge_now")) &&
fs::exists(node.path() / "uevent") &&
(fs::exists(node.path() / "status") || bat_compatibility) &&
fs::exists(node.path() / "type")) {
(fs::exists(node.path() / "status") || bat_compatibility)) {
std::string type;
std::ifstream(node.path() / "type") >> type;
if (!type.compare("Battery")) {
if (std::ifstream{node.path() / "type"} >> type && !type.compare("Battery")) {
// Ignore non-system power supplies unless explicitly requested
if (!bat_defined && fs::exists(node.path() / "scope")) {
if (!bat_defined) {
std::string scope;
std::ifstream(node.path() / "scope") >> scope;
if (g_ascii_strcasecmp(scope.data(), "device") == 0) {
// for hotplug-in device, access it is always unstable because you may remove the
// device anytime so just allow failure happen and do nothing
if (std::ifstream{node.path() / "scope"} >> scope &&
g_ascii_strcasecmp(scope.data(), "device") == 0) {
continue;
}
}
@@ -139,7 +146,9 @@ void waybar::modules::Battery::refreshBatteries() {
auto event_path = (node.path() / "uevent");
auto wd = inotify_add_watch(battery_watch_fd_, event_path.c_str(), IN_ACCESS);
if (wd < 0) {
throw std::runtime_error("Could not watch events for " + node.path().string());
spdlog::warn("Could not watch events for {} (device may have been removed)",
node.path().string());
continue;
}
batteries_[node.path()] = wd;
}
@@ -152,7 +161,7 @@ void waybar::modules::Battery::refreshBatteries() {
}
}
} catch (fs::filesystem_error& e) {
throw std::runtime_error(e.what());
spdlog::warn("Battery directory tracking failed: {}", e.what());
}
if (warnFirstTime_ && batteries_.empty()) {
if (config_["bat"].isString()) {
@@ -273,11 +282,11 @@ waybar::modules::Battery::getInfos() {
auto bat = item.first;
std::string _status;
/* Check for adapter status if battery is not available */
if (!std::ifstream(bat / "status")) {
std::getline(std::ifstream(adapter_ / "status"), _status);
} else {
std::getline(std::ifstream(bat / "status"), _status);
{
std::ifstream f{bat / "status"};
if (!std::getline(f, _status)) {
std::getline(std::ifstream(adapter_ / "status"), _status);
}
}
// Some battery will report current and charge in μA/μAh.
@@ -286,64 +295,74 @@ waybar::modules::Battery::getInfos() {
uint32_t current_now = 0;
int32_t _current_now_int = 0;
bool current_now_exists = false;
if (fs::exists(bat / "current_now")) {
current_now_exists = true;
std::ifstream(bat / "current_now") >> _current_now_int;
} else if (fs::exists(bat / "current_avg")) {
current_now_exists = true;
std::ifstream(bat / "current_avg") >> _current_now_int;
if (std::ifstream current_now_f{bat / "current_now"}) {
if (current_now_f >> _current_now_int) {
current_now_exists = true;
}
} else if (std::ifstream current_avg_f{bat / "current_avg"}) {
if (current_avg_f >> _current_now_int) {
current_now_exists = true;
}
}
// Documentation ABI allows a negative value when discharging, positive
// value when charging.
current_now = std::abs(_current_now_int);
if (fs::exists(bat / "time_to_empty_now")) {
time_to_empty_now_exists = true;
std::ifstream(bat / "time_to_empty_now") >> time_to_empty_now;
if (std::ifstream f{bat / "time_to_empty_now"}) {
if (f >> time_to_empty_now) {
time_to_empty_now_exists = true;
}
}
if (fs::exists(bat / "time_to_full_now")) {
time_to_full_now_exists = true;
std::ifstream(bat / "time_to_full_now") >> time_to_full_now;
if (std::ifstream f{bat / "time_to_full_now"}) {
if (f >> time_to_full_now) {
time_to_full_now_exists = true;
}
}
uint32_t voltage_now = 0;
bool voltage_now_exists = false;
if (fs::exists(bat / "voltage_now")) {
voltage_now_exists = true;
std::ifstream(bat / "voltage_now") >> voltage_now;
} else if (fs::exists(bat / "voltage_avg")) {
voltage_now_exists = true;
std::ifstream(bat / "voltage_avg") >> voltage_now;
if (std::ifstream voltage_now_f{bat / "voltage_now"}) {
if (voltage_now_f >> voltage_now) {
voltage_now_exists = true;
}
} else if (std::ifstream voltage_avg_f{bat / "voltage_avg"}) {
if (voltage_avg_f >> voltage_now) {
voltage_now_exists = true;
}
}
uint32_t charge_full = 0;
bool charge_full_exists = false;
if (fs::exists(bat / "charge_full")) {
charge_full_exists = true;
std::ifstream(bat / "charge_full") >> charge_full;
if (std::ifstream f{bat / "charge_full"}) {
if (f >> charge_full) {
charge_full_exists = true;
}
}
uint32_t charge_full_design = 0;
bool charge_full_design_exists = false;
if (fs::exists(bat / "charge_full_design")) {
charge_full_design_exists = true;
std::ifstream(bat / "charge_full_design") >> charge_full_design;
if (std::ifstream f{bat / "charge_full_design"}) {
if (f >> charge_full_design) {
charge_full_design_exists = true;
}
}
uint32_t charge_now = 0;
bool charge_now_exists = false;
if (fs::exists(bat / "charge_now")) {
charge_now_exists = true;
std::ifstream(bat / "charge_now") >> charge_now;
if (std::ifstream f{bat / "charge_now"}) {
if (f >> charge_now) {
charge_now_exists = true;
}
}
uint32_t power_now = 0;
int32_t _power_now_int = 0;
bool power_now_exists = false;
if (fs::exists(bat / "power_now")) {
power_now_exists = true;
std::ifstream(bat / "power_now") >> _power_now_int;
if (std::ifstream f{bat / "power_now"}) {
if (f >> _power_now_int) {
power_now_exists = true;
}
}
// Some drivers (example: Qualcomm) exposes use a negative value when
// discharging, positive value when charging.
@@ -351,28 +370,31 @@ waybar::modules::Battery::getInfos() {
uint32_t energy_now = 0;
bool energy_now_exists = false;
if (fs::exists(bat / "energy_now")) {
energy_now_exists = true;
std::ifstream(bat / "energy_now") >> energy_now;
if (std::ifstream f{bat / "energy_now"}) {
if (f >> energy_now) {
energy_now_exists = true;
}
}
uint32_t energy_full = 0;
bool energy_full_exists = false;
if (fs::exists(bat / "energy_full")) {
energy_full_exists = true;
std::ifstream(bat / "energy_full") >> energy_full;
if (std::ifstream f{bat / "energy_full"}) {
if (f >> energy_full) {
energy_full_exists = true;
}
}
uint32_t energy_full_design = 0;
bool energy_full_design_exists = false;
if (fs::exists(bat / "energy_full_design")) {
energy_full_design_exists = true;
std::ifstream(bat / "energy_full_design") >> energy_full_design;
if (std::ifstream f{bat / "energy_full_design"}) {
if (f >> energy_full_design) {
energy_full_design_exists = true;
}
}
uint16_t cycleCount = 0;
if (fs::exists(bat / "cycle_count")) {
std::ifstream(bat / "cycle_count") >> cycleCount;
if (std::ifstream f{bat / "cycle_count"}) {
f >> cycleCount;
}
if (charge_full_design >= largestDesignCapacity) {
largestDesignCapacity = charge_full_design;
@@ -402,9 +424,10 @@ waybar::modules::Battery::getInfos() {
} else if (energy_now_exists && energy_full_exists && energy_full != 0) {
capacity_exists = true;
capacity = 100 * (uint64_t)energy_now / (uint64_t)energy_full;
} else if (fs::exists(bat / "capacity")) {
capacity_exists = true;
std::ifstream(bat / "capacity") >> capacity;
} else if (std::ifstream f{bat / "capacity"}) {
if (f >> capacity) {
capacity_exists = true;
}
}
if (!voltage_now_exists) {
@@ -562,11 +585,31 @@ waybar::modules::Battery::getInfos() {
if (online && current_status != "Discharging") status = "Plugged";
}
if (total_energy_exists && total_power_exists && total_power != 0) {
if (!smoothPowerEnable_) {
smooth_power_ = total_power;
} else {
if (status != old_status_raw_) {
smooth_power_ = total_power;
last_t_ = std::chrono::steady_clock::now();
} else {
std::chrono::steady_clock::time_point now = std::chrono::steady_clock::now();
double dt_s =
std::chrono::duration_cast<std::chrono::duration<double> >(now - last_t_).count();
smooth_power_ = smooth_power_ + ((1 - std::exp(-dt_s / time_constant_s_)) *
(total_power - smooth_power_));
last_t_ = now;
}
old_status_raw_ = status;
}
}
float time_remaining{0.0f};
if (status == "Discharging" && time_to_empty_now_exists) {
if (time_to_empty_now != 0) time_remaining = (float)time_to_empty_now / 3600.0f;
} else if (status == "Discharging" && total_power_exists && total_energy_exists) {
if (total_power != 0) time_remaining = (float)total_energy / total_power;
if (smooth_power_ != 0) time_remaining = (float)total_energy / smooth_power_;
} else if (status == "Charging" && time_to_full_now_exists) {
if (time_to_full_now_exists && (time_to_full_now != 0))
time_remaining = -(float)time_to_full_now / 3600.0f;
@@ -584,11 +627,12 @@ waybar::modules::Battery::getInfos() {
float calculated_capacity{0.0f};
if (total_capacity_exists) {
if (total_capacity > 0.0f)
if (total_capacity > 0.0f) {
calculated_capacity = (float)total_capacity / batteries_.size();
else if (total_energy_full_exists && total_energy_exists) {
if (total_energy_full > 0.0f)
} else if (total_energy_full_exists && total_energy_exists) {
if (total_energy_full > 0.0f) {
calculated_capacity = ((float)total_energy * 100.0f / (float)total_energy_full);
}
}
}
@@ -685,13 +729,20 @@ auto waybar::modules::Battery::update() -> void {
if (status == "Unknown") {
status = getAdapterStatus(capacity);
}
auto state = getState(capacity, true);
bool adapter_online = false;
if (!adapter_.empty()) {
std::ifstream(adapter_ / "online") >> adapter_online;
}
if (config_["full-at-plugged"].asBool() && status == "Full" && adapter_online) {
status = "Plugged";
}
auto status_pretty = status;
puts(status.c_str());
// Transform to lowercase and replace space with dash
std::ranges::transform(status.begin(), status.end(), status.begin(),
[](char ch) { return ch == ' ' ? '-' : std::tolower(ch); });
auto format = format_;
auto state = getState(capacity, true);
processEvents(state, status, capacity);
setBarClass(state);
auto time_remaining_formatted = formatTimeRemaining(time_remaining);
@@ -790,16 +841,19 @@ void waybar::modules::Battery::processEvents(std::string& state, std::string& st
if (!events.isObject() || events.empty()) {
return;
}
std::string event_name = fmt::format("on-{}-{}", status == "discharging" ? status : "charging",
state.empty() ? std::to_string(capacity) : state);
auto exec = [](Json::Value const& event) {
if (!event.isString()) return;
if (auto command = event.asString(); !command.empty()) {
util::command::exec(command, "");
}
};
std::string status_name = status == "discharging" ? "on-discharging" : "on-charging";
std::string event_name = status_name + '-' + (state.empty() ? std::to_string(capacity) : state);
if (last_event_ != event_name) {
spdlog::debug("battery: triggering event {}", event_name);
if (events[event_name].isString()) {
std::string exec = events[event_name].asString();
// Execute the command if it is not empty
if (!exec.empty()) {
util::command::exec(exec, "");
}
exec(events[event_name]);
if (!last_event_.empty() && last_event_[3] != event_name[3]) {
exec(events[status_name]);
}
last_event_ = event_name;
}
+168 -10
View File
@@ -83,6 +83,68 @@ auto getUcharProperty(GDBusProxy* proxy, const char* property_name) -> unsigned
return 0;
}
auto isChildPath(const std::string& child, const std::string& parent) -> bool {
return child.starts_with(parent);
}
auto readBatteryCharacteristicValue(GDBusProxy* proxy_char) -> std::optional<unsigned char> {
GVariantBuilder builder;
g_variant_builder_init(&builder, G_VARIANT_TYPE("a{sv}"));
GError* error = nullptr;
GVariant* gvar =
g_dbus_proxy_call_sync(proxy_char, "ReadValue", g_variant_new("(a{sv})", &builder),
G_DBUS_CALL_FLAGS_NONE, -1, nullptr, &error);
if (error != nullptr) {
g_error_free(error);
return std::nullopt;
}
if (gvar == nullptr) {
return std::nullopt;
}
GVariant* value_array = g_variant_get_child_value(gvar, 0);
gsize n_elements;
const auto* data = static_cast<const guchar*>(
g_variant_get_fixed_array(value_array, &n_elements, sizeof(guchar)));
std::optional<unsigned char> result;
if (data != nullptr && n_elements > 0) {
result = data[0];
}
g_variant_unref(value_array);
g_variant_unref(gvar);
return result;
}
auto hasUserDescriptionDescriptor(GList* objects, const std::string& char_path,
const std::string& user_description_uuid) -> bool {
for (GList* n = objects; n != nullptr; n = n->next) {
GDBusObject* desc_object = G_DBUS_OBJECT(n->data);
std::string desc_path = g_dbus_object_get_object_path(desc_object);
if (!isChildPath(desc_path, char_path)) {
continue;
}
GDBusProxy* proxy_desc =
G_DBUS_PROXY(g_dbus_object_get_interface(desc_object, "org.bluez.GattDescriptor1"));
if (proxy_desc == nullptr) {
continue;
}
auto desc_uuid = getOptionalStringProperty(proxy_desc, "UUID");
g_object_unref(proxy_desc);
if (desc_uuid.has_value() &&
desc_uuid.value().find(user_description_uuid) != std::string::npos) {
return true;
}
}
return false;
}
} // namespace
waybar::modules::Bluetooth::Bluetooth(const std::string& id, const Json::Value& config)
@@ -111,13 +173,16 @@ waybar::modules::Bluetooth::Bluetooth(const std::string& id, const Json::Value&
findConnectedDevices(cur_controller_->path, connected_devices_);
}
g_signal_connect(manager_.get(), "object-added", G_CALLBACK(onObjectAdded), this);
g_signal_connect(manager_.get(), "object-removed", G_CALLBACK(onObjectRemoved), this);
g_signal_connect(manager_.get(), "interface-proxy-properties-changed",
G_CALLBACK(onInterfaceProxyPropertiesChanged), this);
g_signal_connect(manager_.get(), "interface-added", G_CALLBACK(onInterfaceAddedOrRemoved), this);
g_signal_connect(manager_.get(), "interface-removed", G_CALLBACK(onInterfaceAddedOrRemoved),
this);
if (manager_) {
g_signal_connect(manager_.get(), "object-added", G_CALLBACK(onObjectAdded), this);
g_signal_connect(manager_.get(), "object-removed", G_CALLBACK(onObjectRemoved), this);
g_signal_connect(manager_.get(), "interface-proxy-properties-changed",
G_CALLBACK(onInterfaceProxyPropertiesChanged), this);
g_signal_connect(manager_.get(), "interface-added", G_CALLBACK(onInterfaceAddedOrRemoved),
this);
g_signal_connect(manager_.get(), "interface-removed", G_CALLBACK(onInterfaceAddedOrRemoved),
this);
}
#ifdef WANT_RFKILL
rfkill_.on_update.connect(sigc::hide(sigc::mem_fun(*this, &Bluetooth::update)));
@@ -229,8 +294,9 @@ auto waybar::modules::Bluetooth::update() -> void {
fmt::arg("device_address", cur_focussed_device_.address),
fmt::arg("device_address_type", cur_focussed_device_.address_type),
fmt::arg("device_alias", cur_focussed_device_.alias), fmt::arg("icon", icon_label),
fmt::arg("device_battery_percentage",
cur_focussed_device_.battery_percentage.value_or(0))));
fmt::arg("device_battery_percentage", cur_focussed_device_.battery_percentage.value_or(0)),
fmt::arg("device_battery_percentage_peripheral",
cur_focussed_device_.battery_percentage_peripheral.value_or(0))));
}
if (tooltipEnabled()) {
@@ -255,7 +321,9 @@ auto waybar::modules::Bluetooth::update() -> void {
fmt::runtime(enumerate_format), fmt::arg("device_address", dev.address),
fmt::arg("device_address_type", dev.address_type),
fmt::arg("device_alias", dev.alias), fmt::arg("icon", enumerate_icon),
fmt::arg("device_battery_percentage", dev.battery_percentage.value_or(0)));
fmt::arg("device_battery_percentage", dev.battery_percentage.value_or(0)),
fmt::arg("device_battery_percentage_peripheral",
dev.battery_percentage_peripheral.value_or(0)));
}
}
device_enumerate_ = ss.str();
@@ -275,6 +343,8 @@ auto waybar::modules::Bluetooth::update() -> void {
fmt::arg("device_address_type", cur_focussed_device_.address_type),
fmt::arg("device_alias", cur_focussed_device_.alias), fmt::arg("icon", icon_tooltip),
fmt::arg("device_battery_percentage", cur_focussed_device_.battery_percentage.value_or(0)),
fmt::arg("device_battery_percentage_peripheral",
cur_focussed_device_.battery_percentage_peripheral.value_or(0)),
fmt::arg("device_enumerate", device_enumerate_)));
}
@@ -395,6 +465,85 @@ auto waybar::modules::Bluetooth::getDeviceBatteryPercentage(GDBusObject* object)
return std::nullopt;
}
auto waybar::modules::Bluetooth::getDeviceGattBatteryLevels(
GDBusObject* device_object, std::optional<unsigned char>& central_battery,
std::optional<unsigned char>& peripheral_battery) -> void {
const std::string BATTERY_SERVICE_UUID = "0000180f-0000-1000-8000-00805f9b34fb";
const std::string BATTERY_LEVEL_UUID = "00002a19-0000-1000-8000-00805f9b34fb";
const std::string USER_DESCRIPTION_UUID = "00002901-0000-1000-8000-00805f9b34fb";
GList* objects = g_dbus_object_manager_get_objects(manager_.get());
std::string device_path = g_dbus_object_get_object_path(device_object);
for (GList* l = objects; l != nullptr; l = l->next) {
GDBusObject* service_object = G_DBUS_OBJECT(l->data);
std::string service_path = g_dbus_object_get_object_path(service_object);
if (!isChildPath(service_path, device_path)) {
continue;
}
GDBusProxy* proxy_service =
G_DBUS_PROXY(g_dbus_object_get_interface(service_object, "org.bluez.GattService1"));
if (proxy_service == nullptr) {
continue;
}
auto service_uuid = getOptionalStringProperty(proxy_service, "UUID");
g_object_unref(proxy_service);
if (!service_uuid.has_value() ||
service_uuid.value().find(BATTERY_SERVICE_UUID) == std::string::npos) {
continue;
}
processBatteryServiceCharacteristics(objects, service_path, BATTERY_LEVEL_UUID,
USER_DESCRIPTION_UUID, central_battery,
peripheral_battery);
}
g_list_free_full(objects, g_object_unref);
}
auto waybar::modules::Bluetooth::processBatteryServiceCharacteristics(
GList* objects, const std::string& service_path, const std::string& battery_level_uuid,
const std::string& user_description_uuid, std::optional<unsigned char>& central_battery,
std::optional<unsigned char>& peripheral_battery) -> void {
for (GList* m = objects; m != nullptr; m = m->next) {
GDBusObject* char_object = G_DBUS_OBJECT(m->data);
std::string char_path = g_dbus_object_get_object_path(char_object);
if (!isChildPath(char_path, service_path)) {
continue;
}
GDBusProxy* proxy_char =
G_DBUS_PROXY(g_dbus_object_get_interface(char_object, "org.bluez.GattCharacteristic1"));
if (proxy_char == nullptr) {
continue;
}
auto char_uuid = getOptionalStringProperty(proxy_char, "UUID");
if (!char_uuid.has_value() || char_uuid.value().find(battery_level_uuid) == std::string::npos) {
g_object_unref(proxy_char);
continue;
}
auto battery_value = readBatteryCharacteristicValue(proxy_char);
g_object_unref(proxy_char);
if (!battery_value.has_value()) {
continue;
}
if (hasUserDescriptionDescriptor(objects, char_path, user_description_uuid)) {
peripheral_battery = battery_value.value();
} else {
central_battery = battery_value.value();
}
}
}
auto waybar::modules::Bluetooth::getDeviceProperties(GDBusObject* object, DeviceInfo& device_info)
-> bool {
GDBusProxy* proxy_device = G_DBUS_PROXY(g_dbus_object_get_interface(object, "org.bluez.Device1"));
@@ -415,6 +564,8 @@ auto waybar::modules::Bluetooth::getDeviceProperties(GDBusObject* object, Device
g_object_unref(proxy_device);
device_info.battery_percentage = getDeviceBatteryPercentage(object);
getDeviceGattBatteryLevels(object, device_info.battery_percentage,
device_info.battery_percentage_peripheral);
return true;
}
@@ -446,6 +597,10 @@ auto waybar::modules::Bluetooth::getControllerProperties(GDBusObject* object,
auto waybar::modules::Bluetooth::findCurController() -> std::optional<ControllerInfo> {
std::optional<ControllerInfo> controller_info;
if (!manager_) {
return controller_info;
}
GList* objects = g_dbus_object_manager_get_objects(manager_.get());
for (GList* l = objects; l != NULL; l = l->next) {
GDBusObject* object = G_DBUS_OBJECT(l->data);
@@ -465,6 +620,9 @@ auto waybar::modules::Bluetooth::findCurController() -> std::optional<Controller
auto waybar::modules::Bluetooth::findConnectedDevices(const std::string& cur_controller_path,
std::vector<DeviceInfo>& connected_devices)
-> void {
if (!manager_) {
return;
}
GList* objects = g_dbus_object_manager_get_objects(manager_.get());
for (GList* l = objects; l != NULL; l = l->next) {
GDBusObject* object = G_DBUS_OBJECT(l->data);
+1 -1
View File
@@ -26,6 +26,7 @@ void waybar::modules::cava::Cava::pause_resume() { backend_->doPauseResume(); }
auto waybar::modules::cava::Cava::onUpdate(const std::string& input) -> void {
Glib::signal_idle().connect_once([this, input]() {
if (silence_) {
silence_ = false;
label_.get_style_context()->remove_class("silent");
if (!label_.get_style_context()->has_class("updated"))
label_.get_style_context()->add_class("updated");
@@ -38,7 +39,6 @@ auto waybar::modules::cava::Cava::onUpdate(const std::string& input) -> void {
label_.show();
ALabel::update();
});
silence_ = false;
}
auto waybar::modules::cava::Cava::onSilence() -> void {
+1 -1
View File
@@ -218,7 +218,7 @@ void waybar::modules::cava::CavaBackend::loadConfig() {
prm_.input = ::cava::input_method_by_name(config_["method"].asString().c_str());
if (config_["source"].isString()) {
if (prm_.audio_source) free(prm_.audio_source);
prm_.audio_source = config_["source"].asString().data();
prm_.audio_source = strdup(config_["source"].asString().c_str());
}
if (config_["sample_rate"].isNumeric()) prm_.samplerate = config_["sample_rate"].asLargestInt();
if (config_["sample_bits"].isInt()) prm_.samplebits = config_["sample_bits"].asInt();
+2 -1
View File
@@ -35,7 +35,7 @@ CFFI::CFFI(const std::string& name, const std::string& id, const Json::Value& co
throw std::runtime_error{std::string{"Missing wbcffi_init function: "} + dlerror()};
}
hooks_.deinit = reinterpret_cast<DenitFn*>(dlsym(handle, "wbcffi_deinit"));
if (!hooks_.init) {
if (!hooks_.deinit) {
throw std::runtime_error{std::string{"Missing wbcffi_deinit function: "} + dlerror()};
}
// Optional functions
@@ -71,6 +71,7 @@ CFFI::CFFI(const std::string& name, const std::string& id, const Json::Value& co
// Prepare config_entries array
std::vector<ffi::wbcffi_config_entry> config_entries;
config_entries.reserve(keys.size());
for (size_t i = 0; i < keys.size(); i++) {
config_entries.push_back({keys[i].c_str(), config_entries_stringstor[i].c_str()});
}
+64 -1
View File
@@ -9,6 +9,7 @@
#include <regex>
#include <sstream>
#include "util/command.hpp"
#include "util/ustring_clen.hpp"
#ifdef HAVE_LANGINFO_1STDAY
@@ -187,6 +188,45 @@ auto waybar::modules::Clock::update() -> void {
}
m_tlpText_ = fmt_lib::vformat(m_locale_, m_tlpText_, fmt_lib::make_format_args(now));
// Pango doesn't support CSS classes but to continue using it while staying
// backwards compatible this approach uses post-posting to replace fake
// classes with attributes Pango does understand.
//
// The benefit of this approach is anyone using the original styling choices
// can continue doing that and folks can optionally opt into using classes.
//
// It's also forwards compatible to where if this implemention ever changes
// to support proper classes anyone using them will continue to work.
auto context = label_.get_style_context();
static const std::vector<std::pair<std::string, std::string>> calendar_class_map = {
{"calendar-today", "class='today'"},
{"calendar-days", "class='days'"},
{"calendar-weeks", "class='weeks'"},
{"calendar-weekdays", "class='weekdays'"},
{"calendar-months", "class='months'"}};
for (const auto& [css_class, search_str] : calendar_class_map) {
try {
context->add_class(css_class);
const Gdk::RGBA color = context->get_color();
context->remove_class(css_class);
const std::string replace_str = fmt::format(
"color='#{:02x}{:02x}{:02x}'", static_cast<int>(color.get_red() * 255),
static_cast<int>(color.get_green() * 255), static_cast<int>(color.get_blue() * 255));
m_tlpText_ = std::regex_replace(m_tlpText_, std::regex(search_str), replace_str);
} catch (const Glib::Error& e) {
spdlog::warn("Clock: Failed to fetch CSS color for {}: {}", css_class, e.what().raw());
continue;
} catch (...) {
// Catch-all for any other weirdness.
continue;
}
}
m_tooltip_->set_markup(m_tlpText_);
label_.trigger_tooltip_query();
}
@@ -402,8 +442,13 @@ auto waybar::modules::Clock::get_calendar(const year_month_day& today, const yea
data = g_utf8_find_next_char(data, end);
}
}
// Note: the stream's default fill character is already a space (L' ' on
// libstdc++'s wide FormatStream, ' ' on libc++'s narrow one), so no
// std::setfill is needed. Passing std::setfill(' ')/std::setfill(L' ')
// here is not portable because the fill char type must match the
// FormatStream's char type, which differs between standard libraries.
os << Glib::ustring::format(
(cldWPos_ != WS::LEFT || line == 0) ? std::left : std::right, std::setfill(L' '),
(cldWPos_ != WS::LEFT || line == 0) ? std::left : std::right,
std::setw(cldMonColLen_ + ((line < 2) ? cldWnLen_ - wideCharCount : 0)),
calendarLine);
@@ -472,6 +517,8 @@ auto waybar::modules::Clock::local_zone() -> const time_zone* {
auto waybar::modules::Clock::doAction(const std::string& name) -> void {
if (actionMap_[name]) {
(this->*actionMap_[name])();
} else if (auto key = name.substr(0, name.find(" ")); actionWithArgsMap_[key]) {
(this->*actionWithArgsMap_[key])(name);
} else
spdlog::error("Clock. Unsupported action \"{0}\"", name);
}
@@ -498,6 +545,10 @@ void waybar::modules::Clock::tz_down() {
if (tzSize == 1) return;
tzCurrIdx_ = (tzCurrIdx_ == 0) ? tzSize - 1 : tzCurrIdx_ - 1;
}
void waybar::modules::Clock::action_exec(const std::string& action) {
auto cmd = action.substr(strlen("exec "));
pid_children_.push_back(util::command::forkExec(cmd));
}
#ifdef HAVE_LANGINFO_1STDAY
template <auto fn>
@@ -509,6 +560,18 @@ using deleting_unique_ptr = std::unique_ptr<T, deleter_from_fn<fn>>;
// Computations done similarly to Linux cal utility.
auto waybar::modules::Clock::first_day_of_week() -> weekday {
const auto firstdow = config_[kCldPlaceholder]["first-day-of-week"];
if (firstdow.isInt()) {
const int firstDay = firstdow.asInt();
if (!(firstDay >= 0 && firstDay <= 6)) {
spdlog::warn(
"Clock calender configuration first-day-of-week = {0} must be in range [0, 6]. Default "
"value is used instead",
firstDay);
} else {
return weekday{static_cast<unsigned>(firstDay)};
}
}
if (iso8601Calendar_) {
return Monday;
}
+28 -7
View File
@@ -26,9 +26,7 @@ auto waybar::modules::Cpu::update() -> void {
auto [load1, load5, load15] = Load::getLoad();
auto [cpu_usage, tooltip] = CpuUsage::getCpuUsage(prev_times_);
auto [max_frequency, min_frequency, avg_frequency] = CpuFrequency::getCpuFrequency();
if (tooltipEnabled()) {
label_.set_tooltip_text(tooltip);
}
auto format = format_;
auto total_usage = cpu_usage.empty() ? 0 : cpu_usage[0];
auto state = getState(total_usage);
@@ -43,19 +41,42 @@ auto waybar::modules::Cpu::update() -> void {
auto icons = std::vector<std::string>{state};
fmt::dynamic_format_arg_store<fmt::format_context> store;
store.push_back(fmt::arg("load", load1));
store.push_back(fmt::arg("load1", load1));
store.push_back(fmt::arg("load5", load5));
store.push_back(fmt::arg("load15", load15));
store.push_back(fmt::arg("usage", total_usage));
store.push_back(fmt::arg("icon", getIcon(total_usage, icons)));
store.push_back(fmt::arg("max_frequency", max_frequency));
store.push_back(fmt::arg("min_frequency", min_frequency));
store.push_back(fmt::arg("avg_frequency", avg_frequency));
std::vector<std::string> arg_names;
arg_names.reserve(cpu_usage.size() * 2);
std::string all_icons;
for (size_t i = 1; i < cpu_usage.size(); ++i) {
auto core_i = i - 1;
auto core_format = fmt::format("usage{}", core_i);
store.push_back(fmt::arg(core_format.c_str(), cpu_usage[i]));
auto icon_format = fmt::format("icon{}", core_i);
store.push_back(fmt::arg(icon_format.c_str(), getIcon(cpu_usage[i], icons)));
arg_names.push_back(fmt::format("usage{}", core_i));
store.push_back(fmt::arg(arg_names.back().c_str(), cpu_usage[i]));
auto core_icon = getIcon(cpu_usage[i], icons);
all_icons += core_icon;
arg_names.push_back(fmt::format("icon{}", core_i));
store.push_back(fmt::arg(arg_names.back().c_str(), core_icon));
}
store.push_back(fmt::arg("icons", all_icons));
label_.set_markup(fmt::vformat(format, store));
if (tooltipEnabled()) {
std::string tooltip_format;
if (!state.empty() && config_["tooltip-format-" + state].isString()) {
tooltip_format = config_["tooltip-format-" + state].asString();
} else if (config_["tooltip-format"].isString()) {
tooltip_format = config_["tooltip-format"].asString();
}
if (!tooltip_format.empty()) {
label_.set_tooltip_markup(fmt::vformat(tooltip_format, store));
} else {
label_.set_tooltip_markup(tooltip);
}
}
}
// Call parent update
+13 -6
View File
@@ -20,12 +20,7 @@ waybar::modules::CpuFrequency::CpuFrequency(const std::string& id, const Json::V
auto waybar::modules::CpuFrequency::update() -> void {
// TODO: as creating dynamic fmt::arg arrays is buggy we have to calc both
auto [max_frequency, min_frequency, avg_frequency] = CpuFrequency::getCpuFrequency();
if (tooltipEnabled()) {
auto tooltip =
fmt::format("Minimum frequency: {}\nAverage frequency: {}\nMaximum frequency: {}\n",
min_frequency, avg_frequency, max_frequency);
label_.set_tooltip_text(tooltip);
}
auto format = format_;
auto state = getState(avg_frequency);
if (!state.empty() && config_["format-" + state].isString()) {
@@ -43,6 +38,18 @@ auto waybar::modules::CpuFrequency::update() -> void {
store.push_back(fmt::arg("min_frequency", min_frequency));
store.push_back(fmt::arg("avg_frequency", avg_frequency));
label_.set_markup(fmt::vformat(format, store));
if (tooltipEnabled()) {
std::string tooltip;
if (config_["tooltip-format"].isString()) {
tooltip = config_["tooltip-format"].asString();
label_.set_tooltip_markup(fmt::vformat(tooltip, store));
} else {
tooltip = "Minimum frequency: {}\nAverage frequency: {}\nMaximum frequency: {}\n";
label_.set_tooltip_markup(
fmt::format(fmt::runtime(tooltip), min_frequency, avg_frequency, max_frequency));
}
}
}
// Call parent update
+9 -11
View File
@@ -23,23 +23,21 @@ std::vector<float> waybar::modules::CpuFrequency::parseCpuFrequencies() {
if (frequencies.size() <= 0) {
std::string cpufreq_dir = "/sys/devices/system/cpu/cpufreq";
if (std::filesystem::exists(cpufreq_dir)) {
try {
std::vector<std::string> frequency_files = {"/cpuinfo_min_freq", "/cpuinfo_max_freq"};
for (auto& p : std::filesystem::directory_iterator(cpufreq_dir)) {
for (auto freq_file : frequency_files) {
for (const auto& freq_file : frequency_files) {
std::string freq_file_path = p.path().string() + freq_file;
if (std::filesystem::exists(freq_file_path)) {
std::string freq_value;
std::ifstream freq(freq_file_path);
if (freq.is_open()) {
getline(freq, freq_value);
float frequency = std::strtol(freq_value.c_str(), nullptr, 10);
frequencies.push_back(frequency / 1000);
freq.close();
}
std::string freq_value;
std::ifstream freq(freq_file_path);
if (freq.is_open()) {
getline(freq, freq_value);
float frequency = std::strtol(freq_value.c_str(), nullptr, 10);
frequencies.push_back(frequency / 1000);
}
}
}
} catch (const std::filesystem::filesystem_error&) {
}
}
+47
View File
@@ -0,0 +1,47 @@
#include "modules/cpu_graph.hpp"
#include "modules/cpu_frequency.hpp"
#include "modules/cpu_usage.hpp"
#include "modules/load.hpp"
// In the 80000 version of fmt library authors decided to optimize imports
// and moved declarations required for fmt::dynamic_format_arg_store in new
// header fmt/args.h
#if (FMT_VERSION >= 80000)
#include <fmt/args.h>
#else
#include <fmt/core.h>
#endif
waybar::modules::CpuGraph::CpuGraph(const std::string& id, const Json::Value& config)
: AGraph(config, "cpu_graph", id, 5) {
thread_ = [this] {
dp.emit();
thread_.sleep_for(interval_);
};
}
auto waybar::modules::CpuGraph::update() -> void {
// TODO: as creating dynamic fmt::arg arrays is buggy we have to calc both
auto [cpu_usage, tooltip] = CpuUsage::getCpuUsage(prev_times_);
if (tooltipEnabled()) {
graph_.set_tooltip_text(tooltip);
}
auto total_usage = cpu_usage.empty() ? 0 : cpu_usage[0];
addValue(total_usage);
graph_.get_style_context()->remove_class(MODERATE_CLASS);
graph_.get_style_context()->remove_class(HIGH_CLASS);
graph_.get_style_context()->remove_class(INTENSIVE_CLASS);
if (total_usage > 90) {
graph_.get_style_context()->add_class(INTENSIVE_CLASS);
} else if (total_usage > 70) {
graph_.get_style_context()->add_class(HIGH_CLASS);
} else if (total_usage > 30) {
graph_.get_style_context()->add_class(MODERATE_CLASS);
}
// Call parent update
AGraph::update();
}
+24 -9
View File
@@ -20,9 +20,7 @@ waybar::modules::CpuUsage::CpuUsage(const std::string& id, const Json::Value& co
auto waybar::modules::CpuUsage::update() -> void {
// TODO: as creating dynamic fmt::arg arrays is buggy we have to calc both
auto [cpu_usage, tooltip] = CpuUsage::getCpuUsage(prev_times_);
if (tooltipEnabled()) {
label_.set_tooltip_text(tooltip);
}
auto format = format_;
auto total_usage = cpu_usage.empty() ? 0 : cpu_usage[0];
auto state = getState(total_usage);
@@ -38,14 +36,29 @@ auto waybar::modules::CpuUsage::update() -> void {
fmt::dynamic_format_arg_store<fmt::format_context> store;
store.push_back(fmt::arg("usage", total_usage));
store.push_back(fmt::arg("icon", getIcon(total_usage, icons)));
std::vector<std::string> arg_names;
arg_names.reserve(cpu_usage.size() * 2);
std::string all_icons;
for (size_t i = 1; i < cpu_usage.size(); ++i) {
auto core_i = i - 1;
auto core_format = fmt::format("usage{}", core_i);
store.push_back(fmt::arg(core_format.c_str(), cpu_usage[i]));
auto icon_format = fmt::format("icon{}", core_i);
store.push_back(fmt::arg(icon_format.c_str(), getIcon(cpu_usage[i], icons)));
arg_names.push_back(fmt::format("usage{}", core_i));
store.push_back(fmt::arg(arg_names.back().c_str(), cpu_usage[i]));
auto core_icon = getIcon(cpu_usage[i], icons);
all_icons += core_icon;
arg_names.push_back(fmt::format("icon{}", core_i));
store.push_back(fmt::arg(arg_names.back().c_str(), core_icon));
}
store.push_back(fmt::arg("icons", all_icons));
label_.set_markup(fmt::vformat(format, store));
if (tooltipEnabled()) {
if (config_["tooltip-format"].isString()) {
tooltip = config_["tooltip-format"].asString();
label_.set_tooltip_markup(fmt::vformat(tooltip, store));
} else {
label_.set_tooltip_markup(tooltip);
}
}
}
// Call parent update
@@ -71,7 +84,8 @@ std::tuple<std::vector<uint16_t>, std::string> waybar::modules::CpuUsage::getCpu
auto [prev_idle, prev_total] = prev_times[0];
const float delta_idle = curr_idle - prev_idle;
const float delta_total = curr_total - prev_total;
uint16_t tmp = 100 * (1 - delta_idle / delta_total);
uint16_t tmp =
(delta_total > 0) ? static_cast<uint16_t>(100 * (1 - delta_idle / delta_total)) : 0;
tooltip = fmt::format("Total: {}%\nCores: (pending)", tmp);
usage.push_back(tmp);
} else {
@@ -93,7 +107,8 @@ std::tuple<std::vector<uint16_t>, std::string> waybar::modules::CpuUsage::getCpu
}
const float delta_idle = curr_idle - prev_idle;
const float delta_total = curr_total - prev_total;
uint16_t tmp = 100 * (1 - delta_idle / delta_total);
uint16_t tmp =
(delta_total > 0) ? static_cast<uint16_t>(100 * (1 - delta_idle / delta_total)) : 0;
if (i == 0) {
tooltip = fmt::format("Total: {}%", tmp);
} else {
+47 -9
View File
@@ -2,11 +2,13 @@
#include <spdlog/spdlog.h>
#include <utility>
#include "util/scope_guard.hpp"
waybar::modules::Custom::Custom(const std::string& name, const std::string& id,
const Json::Value& config, const std::string& output_name)
: ALabel(config, "custom-" + name, id, "{}"),
: AIconLabel(config, "custom-" + name, id, "{}"),
name_(name),
output_name_(output_name),
id_(id),
@@ -26,6 +28,15 @@ waybar::modules::Custom::Custom(const std::string& name, const std::string& id,
} else if (config_["exec"].isString()) {
continuousWorker();
}
if (config_["image-path"].isString()) {
image_path_ = config_["image-path"].asString();
}
if (config_["image-name"].isString()) {
image_name_ = config_["image-name"].asString();
}
if (config["icon-size"].isUInt()) {
app_icon_size_ = config["icon-size"].asUInt();
}
}
waybar::modules::Custom::~Custom() {
@@ -37,6 +48,11 @@ waybar::modules::Custom::~Custom() {
}
void waybar::modules::Custom::delayWorker() {
if (!config_["exec"].isString() && !config_["exec-if"].isString()) {
dp.emit();
return;
}
thread_ = [this] {
for (int i : this->pid_children_) {
int status;
@@ -136,9 +152,11 @@ void waybar::modules::Custom::waitingWorker() {
}
void waybar::modules::Custom::refresh(int sig) {
#ifdef SIGRTMIN
if (config_["signal"].isInt() && sig == SIGRTMIN + config_["signal"].asInt()) {
thread_.wake_up();
}
#endif
}
void waybar::modules::Custom::handleEvent() {
@@ -175,21 +193,28 @@ auto waybar::modules::Custom::update() -> void {
auto str = fmt::format(fmt::runtime(format_), fmt::arg("text", text_), fmt::arg("alt", alt_),
fmt::arg("icon", getIcon(percentage_, alt_)),
fmt::arg("percentage", percentage_));
if ((config_["hide-empty-text"].asBool() && text_.empty()) || str.empty()) {
if ((config_["hide-empty-text"].asBool() && text_.empty()) ||
(str.empty() && image_path_.empty() && image_name_.empty())) {
event_box_.hide();
} else {
label_.set_markup(str);
if (tooltipEnabled()) {
std::string tooltip_markup;
if (tooltip_format_enabled_) {
auto tooltip = config_["tooltip-format"].asString();
tooltip = fmt::format(
fmt::runtime(tooltip), fmt::arg("text", text_), fmt::arg("alt", alt_),
fmt::arg("icon", getIcon(percentage_, alt_)), fmt::arg("percentage", percentage_));
label_.set_tooltip_markup(tooltip);
tooltip_markup = fmt::format(fmt::runtime(tooltip), fmt::arg("text", text_),
fmt::arg("tooltip", tooltip_), fmt::arg("alt", alt_),
fmt::arg("icon", getIcon(percentage_, alt_)),
fmt::arg("percentage", percentage_));
} else if (text_ == tooltip_) {
label_.set_tooltip_markup(str);
tooltip_markup = str;
} else {
label_.set_tooltip_markup(tooltip_);
tooltip_markup = tooltip_;
}
if (last_tooltip_markup_ != tooltip_markup) {
label_.set_tooltip_markup(tooltip_markup);
last_tooltip_markup_ = std::move(tooltip_markup);
}
}
auto style = label_.get_style_context();
@@ -204,7 +229,19 @@ auto waybar::modules::Custom::update() -> void {
style->add_class("flat");
style->add_class("text-button");
style->add_class(MODULE_CLASS);
auto image_style = image_.get_style_context();
image_style->add_class("image-button");
event_box_.show();
if (!image_path_.empty()) {
auto pixbuf = Gdk::Pixbuf::create_from_file(image_path_, app_icon_size_, app_icon_size_);
image_.set(pixbuf);
} else if (!image_name_.empty()) {
image_.set_from_icon_name(image_name_, Gtk::ICON_SIZE_INVALID);
image_.set_pixel_size(app_icon_size_);
}
image_.set_visible(!image_name_.empty() || !image_path_.empty());
label_.set_visible(!str.empty());
}
} catch (const fmt::format_error& e) {
if (std::strcmp(e.what(), "cannot switch from manual to automatic argument indexing") != 0)
@@ -216,7 +253,7 @@ auto waybar::modules::Custom::update() -> void {
}
}
// Call parent update
ALabel::update();
AIconLabel::update();
}
void waybar::modules::Custom::parseOutputRaw() {
@@ -282,6 +319,7 @@ void waybar::modules::Custom::parseOutputJson() {
class_.push_back(c.asString());
}
}
if (!parsed["percentage"].asString().empty() && parsed["percentage"].isNumeric()) {
percentage_ = (int)lround(parsed["percentage"].asFloat());
} else {
+281
View File
@@ -0,0 +1,281 @@
#include "modules/custom_graph.hpp"
#include <spdlog/spdlog.h>
#include "util/scope_guard.hpp"
waybar::modules::CustomGraph::CustomGraph(const std::string& name, const std::string& id,
const Json::Value& config, const std::string& output_name)
: AGraph(config, "custom-graph-" + name, id),
name_(name),
output_name_(output_name),
id_(id),
tooltip_format_enabled_{config_["tooltip-format"].isString()},
percentage_(0),
fp_(nullptr),
pid_(-1) {
if (config.isNull()) {
spdlog::warn("There is no configuration for 'custom-graph/{}', element will be hidden", name);
}
dp.emit();
if (!config_["signal"].empty() && config_["interval"].empty() &&
config_["restart-interval"].empty()) {
waitingWorker();
} else if (interval_.count() > 0) {
delayWorker();
} else if (config_["exec"].isString()) {
continuousWorker();
}
}
waybar::modules::CustomGraph::~CustomGraph() {
if (pid_ != -1) {
killpg(pid_, SIGTERM);
waitpid(pid_, NULL, 0);
pid_ = -1;
}
}
void waybar::modules::CustomGraph::delayWorker() {
thread_ = [this] {
for (int i : this->pid_children_) {
int status;
waitpid(i, &status, 0);
}
this->pid_children_.clear();
bool can_update = true;
if (config_["exec-if"].isString()) {
output_ = util::command::execNoRead(config_["exec-if"].asString());
if (output_.exit_code != 0) {
can_update = false;
dp.emit();
}
}
if (can_update) {
if (config_["exec"].isString()) {
output_ = util::command::exec(config_["exec"].asString(), output_name_);
}
dp.emit();
}
thread_.sleep_for(interval_);
};
}
void waybar::modules::CustomGraph::continuousWorker() {
auto cmd = config_["exec"].asString();
pid_ = -1;
fp_ = util::command::open(cmd, pid_, output_name_);
if (!fp_) {
throw std::runtime_error("Unable to open " + cmd);
}
thread_ = [this, cmd] {
char* buff = nullptr;
waybar::util::ScopeGuard buff_deleter([&buff]() {
if (buff) {
free(buff);
}
});
size_t len = 0;
if (getline(&buff, &len, fp_) == -1) {
int exit_code = 1;
if (fp_) {
exit_code = WEXITSTATUS(util::command::close(fp_, pid_));
fp_ = nullptr;
}
if (exit_code != 0) {
output_ = {exit_code, ""};
dp.emit();
spdlog::error("{} stopped unexpectedly, is it endless?", name_);
}
if (config_["restart-interval"].isUInt()) {
pid_ = -1;
thread_.sleep_for(std::chrono::seconds(config_["restart-interval"].asUInt()));
fp_ = util::command::open(cmd, pid_, output_name_);
if (!fp_) {
throw std::runtime_error("Unable to open " + cmd);
}
} else {
thread_.stop();
return;
}
} else {
std::string output = buff;
// Remove last newline
if (!output.empty() && output[output.length() - 1] == '\n') {
output.erase(output.length() - 1);
}
output_ = {0, output};
dp.emit();
}
};
}
void waybar::modules::CustomGraph::waitingWorker() {
thread_ = [this] {
bool can_update = true;
if (config_["exec-if"].isString()) {
output_ = util::command::execNoRead(config_["exec-if"].asString());
if (output_.exit_code != 0) {
can_update = false;
dp.emit();
}
}
if (can_update) {
if (config_["exec"].isString()) {
output_ = util::command::exec(config_["exec"].asString(), output_name_);
}
dp.emit();
}
thread_.sleep();
};
}
void waybar::modules::CustomGraph::refresh(int sig) {
if (sig == SIGRTMIN + config_["signal"].asInt()) {
thread_.wake_up();
}
}
void waybar::modules::CustomGraph::handleEvent() {
if (!config_["exec-on-event"].isBool() || config_["exec-on-event"].asBool()) {
thread_.wake_up();
}
}
bool waybar::modules::CustomGraph::handleScroll(GdkEventScroll* e) {
auto ret = AGraph::handleScroll(e);
handleEvent();
return ret;
}
bool waybar::modules::CustomGraph::handleToggle(GdkEventButton* const& e) {
auto ret = AGraph::handleToggle(e);
handleEvent();
return ret;
}
auto waybar::modules::CustomGraph::update() -> void {
// Hide label if output is empty
if ((config_["exec"].isString() || config_["exec-if"].isString()) &&
(output_.out.empty() || output_.exit_code != 0)) {
event_box_.hide();
} else {
if (config_["return-type"].asString() == "json") {
parseOutputJson();
} else {
parseOutputRaw();
}
try {
addValue(percentage_);
if (tooltipEnabled()) {
if (tooltip_format_enabled_) {
auto tooltip = config_["tooltip-format"].asString();
tooltip = fmt::format(fmt::runtime(tooltip), fmt::arg("text", text_),
fmt::arg("alt", alt_), fmt::arg("percentage", percentage_));
graph_.set_tooltip_markup(tooltip);
} else {
if (graph_.get_tooltip_markup() != tooltip_) {
graph_.set_tooltip_markup(tooltip_);
}
}
}
auto style = graph_.get_style_context();
auto classes = style->list_classes();
for (auto const& c : classes) {
if (c == id_) continue;
style->remove_class(c);
}
for (auto const& c : class_) {
style->add_class(c);
}
style->add_class("flat");
style->add_class(MODULE_CLASS);
event_box_.show();
} catch (const fmt::format_error& e) {
if (std::strcmp(e.what(), "cannot switch from manual to automatic argument indexing") != 0)
throw;
throw fmt::format_error(
"mixing manual and automatic argument indexing is no longer supported; "
"try replacing \"{}\" with \"{text}\" in your format specifier");
}
}
// Call parent update
AGraph::update();
}
void waybar::modules::CustomGraph::parseOutputRaw() {
std::istringstream output(output_.out);
std::string line;
int i = 0;
while (getline(output, line)) {
Glib::ustring validated_line = line;
if (!validated_line.validate()) {
validated_line = validated_line.make_valid();
}
if (i == 0) {
if (config_["escape"].isBool() && config_["escape"].asBool()) {
text_ = Glib::Markup::escape_text(validated_line);
tooltip_ = Glib::Markup::escape_text(validated_line);
} else {
text_ = validated_line;
tooltip_ = validated_line;
}
class_.clear();
} else if (i == 1) {
if (config_["escape"].isBool() && config_["escape"].asBool()) {
tooltip_ = Glib::Markup::escape_text(validated_line);
} else {
tooltip_ = validated_line;
}
} else if (i == 2) {
class_.push_back(validated_line);
} else {
break;
}
i++;
}
}
void waybar::modules::CustomGraph::parseOutputJson() {
std::istringstream output(output_.out);
std::string line;
class_.clear();
while (getline(output, line)) {
auto parsed = parser_.parse(line);
if (config_["escape"].isBool() && config_["escape"].asBool()) {
text_ = Glib::Markup::escape_text(parsed["text"].asString());
} else {
text_ = parsed["text"].asString();
}
if (config_["escape"].isBool() && config_["escape"].asBool()) {
alt_ = Glib::Markup::escape_text(parsed["alt"].asString());
} else {
alt_ = parsed["alt"].asString();
}
if (config_["escape"].isBool() && config_["escape"].asBool()) {
tooltip_ = Glib::Markup::escape_text(parsed["tooltip"].asString());
} else {
tooltip_ = parsed["tooltip"].asString();
}
if (parsed["class"].isString()) {
class_.push_back(parsed["class"].asString());
} else if (parsed["class"].isArray()) {
for (auto const& c : parsed["class"]) {
class_.push_back(c.asString());
}
}
if (!parsed["percentage"].asString().empty() && parsed["percentage"].isNumeric()) {
percentage_ = (int)lround(parsed["percentage"].asFloat());
} else {
percentage_ = 0;
}
break;
}
}
+113 -64
View File
@@ -1,15 +1,32 @@
#include "modules/disk.hpp"
#include <spdlog/spdlog.h>
using namespace waybar::util;
waybar::modules::Disk::Disk(const std::string& id, const Json::Value& config)
: ALabel(config, "disk", id, "{}%", 30), path_("/") {
: ALabel(config, "disk", id, "{}%", 30), header_(""), paths_(), separator_(" ") {
thread_ = [this] {
dp.emit();
thread_.sleep_for(interval_);
};
if (config["path"].isString()) {
path_ = config["path"].asString();
if (config["header"].isString()) {
header_ = config["header"].asString();
}
if (config["path"].isString() && !config["paths"].isArray()) {
spdlog::warn("Disk: path is deprecated use paths instead!");
paths_.push_back(config["path"].asString());
}
if (config["paths"].isArray()) {
for (const auto& path : config["paths"]) {
paths_.push_back(path.asString());
}
}
if (!config["path"].isString() && !config["paths"].isArray()) {
paths_.emplace_back("/");
}
if (config["separator"].isString()) {
separator_ = config["separator"].asString();
}
if (config["unit"].isString()) {
unit_ = config["unit"].asString();
@@ -17,82 +34,114 @@ waybar::modules::Disk::Disk(const std::string& id, const Json::Value& config)
}
auto waybar::modules::Disk::update() -> void {
struct statvfs /* {
unsigned long f_bsize; // filesystem block size
unsigned long f_frsize; // fragment size
fsblkcnt_t f_blocks; // size of fs in f_frsize units
fsblkcnt_t f_bfree; // # free blocks
fsblkcnt_t f_bavail; // # free blocks for unprivileged users
fsfilcnt_t f_files; // # inodes
fsfilcnt_t f_ffree; // # free inodes
fsfilcnt_t f_favail; // # free inodes for unprivileged users
unsigned long f_fsid; // filesystem ID
unsigned long f_flag; // mount flags
unsigned long f_namemax; // maximum filename length
}; */
stats;
int err = statvfs(path_.c_str(), &stats);
std::string tooltip_label;
std::string label = header_;
/* Conky options
fs_bar - Bar that shows how much space is used
fs_free - Free space on a file system
fs_free_perc - Free percentage of space
fs_size - File system size
fs_used - File system used space
*/
bool had_valid_disk = false;
if (err != 0) {
event_box_.hide();
return;
}
for (size_t i = 0; i < paths_.size(); ++i) {
const auto& path = paths_[i];
float specific_free, specific_used, specific_total, divisor;
struct statvfs /* {
unsigned long f_bsize; // filesystem block size
unsigned long f_frsize; // fragment size
fsblkcnt_t f_blocks; // size of fs in f_frsize units
fsblkcnt_t f_bfree; // # free blocks
fsblkcnt_t f_bavail; // # free blocks for unprivileged users
fsfilcnt_t f_files; // # inodes
fsfilcnt_t f_ffree; // # free inodes
fsfilcnt_t f_favail; // # free inodes for unprivileged users
unsigned long f_fsid; // filesystem ID
unsigned long f_flag; // mount flags
unsigned long f_namemax; // maximum filename length
}; */
stats;
divisor = calc_specific_divisor(unit_);
specific_free = (stats.f_bavail * stats.f_frsize) / divisor;
specific_used = ((stats.f_blocks - stats.f_bfree) * stats.f_frsize) / divisor;
specific_total = (stats.f_blocks * stats.f_frsize) / divisor;
int err = statvfs(path.c_str(), &stats);
auto free = pow_format(stats.f_bavail * stats.f_frsize, "B", true);
auto used = pow_format((stats.f_blocks - stats.f_bfree) * stats.f_frsize, "B", true);
auto total = pow_format(stats.f_blocks * stats.f_frsize, "B", true);
auto percentage_used = (stats.f_blocks - stats.f_bfree) * 100 / stats.f_blocks;
/* Conky options
fs_bar - Bar that shows how much space is used
fs_free - Free space on a file system
fs_free_perc - Free percentage of space
fs_size - File system size
fs_used - File system used space
*/
auto format = format_;
auto state = getState(percentage_used);
if (!state.empty() && config_["format-" + state].isString()) {
format = config_["format-" + state].asString();
}
if (err != 0 || stats.f_blocks == 0) {
spdlog::warn("Disk: statvfs failed for path '{}' (errno={})", path, errno);
continue;
}
if (format.empty()) {
event_box_.hide();
} else {
event_box_.show();
label_.set_markup(fmt::format(
fmt::runtime(format), stats.f_bavail * 100 / stats.f_blocks, fmt::arg("free", free),
fmt::arg("percentage_free", stats.f_bavail * 100 / stats.f_blocks), fmt::arg("used", used),
fmt::arg("percentage_used", percentage_used), fmt::arg("total", total),
fmt::arg("path", path_), fmt::arg("specific_free", specific_free),
fmt::arg("specific_used", specific_used), fmt::arg("specific_total", specific_total)));
}
float specific_free, specific_used, specific_total, divisor;
divisor = calc_specific_divisor(unit_);
specific_free = (stats.f_bavail * stats.f_frsize) / divisor;
specific_used = ((stats.f_blocks - stats.f_bfree) * stats.f_frsize) / divisor;
specific_total = (stats.f_blocks * stats.f_frsize) / divisor;
auto free = pow_format(stats.f_bavail * stats.f_frsize, "B", true);
auto used = pow_format((stats.f_blocks - stats.f_bfree) * stats.f_frsize, "B", true);
auto total = pow_format(stats.f_blocks * stats.f_frsize, "B", true);
auto percentage_used = (stats.f_blocks - stats.f_bfree) * 100 / stats.f_blocks;
std::string disk_format = format_;
auto state = getState(percentage_used);
if (!state.empty() && config_["format-" + state].isString()) {
disk_format = config_["format-" + state].asString();
}
if (!disk_format.empty()) {
if (had_valid_disk) {
label += separator_;
}
label += fmt::format(
fmt::runtime(disk_format), stats.f_bavail * 100 / stats.f_blocks, fmt::arg("free", free),
fmt::arg("percentage_free", stats.f_bavail * 100 / stats.f_blocks),
fmt::arg("used", used), fmt::arg("percentage_used", percentage_used),
fmt::arg("total", total), fmt::arg("path", path),
fmt::arg("specific_free", specific_free), fmt::arg("specific_used", specific_used),
fmt::arg("specific_total", specific_total));
}
if (tooltipEnabled()) {
std::string tooltip_format = "{used} used out of {total} on {path} ({percentage_used}%)";
if (config_["tooltip-format"].isString()) {
tooltip_format = config_["tooltip-format"].asString();
}
label_.set_tooltip_text(fmt::format(
fmt::runtime(tooltip_format), stats.f_bavail * 100 / stats.f_blocks, fmt::arg("free", free),
fmt::arg("percentage_free", stats.f_bavail * 100 / stats.f_blocks), fmt::arg("used", used),
fmt::arg("percentage_used", percentage_used), fmt::arg("total", total),
fmt::arg("path", path_), fmt::arg("specific_free", specific_free),
fmt::arg("specific_used", specific_used), fmt::arg("specific_total", specific_total)));
if (!tooltip_format.empty()) {
if (had_valid_disk) {
tooltip_label += "\n";
}
tooltip_label += fmt::format(
fmt::runtime(tooltip_format), stats.f_bavail * 100 / stats.f_blocks,
fmt::arg("free", free),
fmt::arg("percentage_free", stats.f_bavail * 100 / stats.f_blocks),
fmt::arg("used", used), fmt::arg("percentage_used", percentage_used),
fmt::arg("total", total), fmt::arg("path", path),
fmt::arg("specific_free", specific_free), fmt::arg("specific_used", specific_used),
fmt::arg("specific_total", specific_total));
}
had_valid_disk = true;
}
if (had_valid_disk) {
event_box_.show();
} else {
event_box_.hide();
}
label_.set_markup(label);
if (tooltipEnabled() && !tooltip_label.empty()) {
label_.set_tooltip_markup(tooltip_label);
}
// Call parent update
ALabel::update();
}
float waybar::modules::Disk::calc_specific_divisor(std::string divisor) {
float waybar::modules::Disk::calc_specific_divisor(const std::string& divisor) {
if (divisor == "kB") {
return 1000.0;
} else if (divisor == "kiB") {
@@ -109,7 +158,7 @@ float waybar::modules::Disk::calc_specific_divisor(std::string divisor) {
return 1000.0 * 1000.0 * 1000.0 * 1000.0;
} else if (divisor == "TiB") {
return 1024.0 * 1024.0 * 1024.0 * 1024.0;
} else { // default to Bytes if it is anything that we don't recongnise
} else { // default to Bytes if it is anything that we don't recognise
return 1.0;
}
}
}
+44 -6
View File
@@ -26,7 +26,7 @@ static void toggle_visibility(void* data, zdwl_ipc_output_v2* zdwl_output_v2) {
}
static void active(void* data, zdwl_ipc_output_v2* zdwl_output_v2, uint32_t active) {
// Intentionally empty
static_cast<Tags*>(data)->handle_active_output(zdwl_output_v2, active);
}
static void set_tag(void* data, zdwl_ipc_output_v2* zdwl_output_v2, uint32_t tag, uint32_t state,
@@ -71,16 +71,31 @@ static const zdwl_ipc_output_v2_listener output_status_listener_impl{
static void handle_global(void* data, struct wl_registry* registry, uint32_t name,
const char* interface, uint32_t version) {
if (std::strcmp(interface, zdwl_ipc_manager_v2_interface.name) == 0) {
static_cast<Tags*>(data)->status_manager_ = static_cast<struct zdwl_ipc_manager_v2*>(
(zdwl_ipc_manager_v2*)wl_registry_bind(registry, name, &zdwl_ipc_manager_v2_interface, 1));
auto* self = static_cast<Tags*>(data);
if (self->status_manager_) {
zdwl_ipc_manager_v2_destroy(self->status_manager_);
self->status_manager_ = nullptr;
}
self->status_manager_ = static_cast<struct zdwl_ipc_manager_v2*>(
wl_registry_bind(registry, name, &zdwl_ipc_manager_v2_interface, 1));
}
if (std::strcmp(interface, wl_seat_interface.name) == 0) {
auto* self = static_cast<Tags*>(data);
if (self->seat_) {
wl_seat_destroy(self->seat_);
self->seat_ = nullptr;
}
version = std::min<uint32_t>(version, 1);
static_cast<Tags*>(data)->seat_ =
self->seat_ =
static_cast<struct wl_seat*>(wl_registry_bind(registry, name, &wl_seat_interface, version));
}
}
static void handle_global_remove(void* data, struct wl_registry* registry, uint32_t name) {
/* Ignore event */
}
@@ -94,7 +109,11 @@ Tags::Tags(const std::string& id, const waybar::Bar& bar, const Json::Value& con
seat_{nullptr},
bar_(bar),
box_{bar.orientation, 0},
hide_vacant_(false),
output_status_{nullptr} {
if (config_["hide-vacant"].asBool()) {
hide_vacant_ = config_["hide-vacant"].asBool();
}
struct wl_display* display = Client::inst()->wl_display;
struct wl_registry* registry = wl_display_get_registry(display);
@@ -147,7 +166,7 @@ Tags::Tags(const std::string& id, const waybar::Bar& bar, const Json::Value& con
i <<= 1;
}
struct wl_output* output = gdk_wayland_monitor_get_wl_output(bar_.output->monitor->gobj());
struct wl_output *output = gdk_wayland_monitor_get_wl_output(bar_.output->monitor->gobj());
output_status_ = zdwl_ipc_manager_v2_get_output(status_manager_, output);
zdwl_ipc_output_v2_add_listener(output_status_, &output_status_listener_impl, this);
@@ -179,6 +198,7 @@ bool Tags::handle_button_press(GdkEventButton* event_button, uint32_t tag) {
}
void Tags::handle_view_tags(uint32_t tag, uint32_t state, uint32_t clients, uint32_t focused) {
if (tag >= buttons_.size()) return;
// First clear all occupied state
auto& button = buttons_[tag];
if (clients) {
@@ -204,6 +224,24 @@ void Tags::handle_view_tags(uint32_t tag, uint32_t state, uint32_t clients, uint
} else {
button.get_style_context()->remove_class("urgent");
}
if (hide_vacant_ && !clients && !(state & TAG_ACTIVE)) {
button.set_visible(false);
} else {
button.set_visible(true);
}
}
void Tags::handle_active_output(zdwl_ipc_output_v2* zdwl_output_v2, uint32_t active) {
if (output_status_ == zdwl_output_v2) {
for (size_t i = 0; i < buttons_.size(); ++i) {
if (active == 0) {
buttons_[i].get_style_context()->remove_class("output");
} else {
buttons_[i].get_style_context()->add_class("output");
}
}
}
}
} /* namespace waybar::modules::dwl */
+28 -3
View File
@@ -19,7 +19,7 @@ static void toggle_visibility(void* data, zdwl_ipc_output_v2* zdwl_output_v2) {
}
static void active(void* data, zdwl_ipc_output_v2* zdwl_output_v2, uint32_t active) {
// Intentionally empty
static_cast<Window*>(data)->handle_active(active);
}
static void set_tag(void* data, zdwl_ipc_output_v2* zdwl_output_v2, uint32_t tag, uint32_t state,
@@ -74,7 +74,17 @@ static const wl_registry_listener registry_listener_impl = {.global = handle_glo
.global_remove = handle_global_remove};
Window::Window(const std::string& id, const Bar& bar, const Json::Value& config)
: AAppIconLabel(config, "window", id, "{}", 0, true), bar_(bar) {
: AAppIconLabel(config, "window", id, "{}", 0, true),
bar_(bar),
active_(false),
hide_inactive_(false),
hide_empty_(false) {
if (config_["hide-inactive"].isBool()) {
hide_inactive_ = config["hide-inactive"].asBool();
}
if (config_["hide-empty"].isBool()) {
hide_empty_ = config["hide-empty"].asBool();
}
struct wl_display* display = Client::inst()->wl_display;
struct wl_registry* registry = wl_display_get_registry(display);
@@ -102,6 +112,8 @@ void Window::handle_title(const char* title) { title_ = Glib::Markup::escape_tex
void Window::handle_appid(const char* appid) { appid_ = Glib::Markup::escape_text(appid); }
void Window::handle_active(const uint32_t active) { active_ = active != 0; }
void Window::handle_layout_symbol(const char* layout_symbol) {
layout_symbol_ = Glib::Markup::escape_text(layout_symbol);
}
@@ -116,7 +128,20 @@ void Window::handle_frame() {
updateAppIconName(appid_, "");
updateAppIcon();
if (tooltipEnabled()) {
label_.set_tooltip_text(title_);
label_.set_tooltip_markup(title_);
}
if (hide_empty_ && title_.empty()) {
box_.set_visible(false);
} else {
if (active_) {
box_.get_style_context()->add_class("active");
box_.set_visible(true);
} else {
box_.get_style_context()->remove_class("active");
if (hide_inactive_) {
box_.set_visible(false);
}
}
}
}
+3 -1
View File
@@ -143,7 +143,9 @@ void WorkspaceManager::handle_finished() {
ext_manager_ = nullptr;
}
void WorkspaceManager::commit() const { ext_workspace_manager_v1_commit(ext_manager_); }
void WorkspaceManager::commit() const {
if (ext_manager_) ext_workspace_manager_v1_commit(ext_manager_);
}
void WorkspaceManager::update() {
spdlog::debug("[ext/workspaces]: Updating state");
+4 -4
View File
@@ -128,9 +128,9 @@ void Gamemode::getData() {
Glib::VariantContainerBase data = gamemode_proxy->call_sync("Get", parameters);
if (data && data.is_of_type(Glib::VariantType("(v)"))) {
Glib::VariantBase variant;
g_variant_get(data.gobj_copy(), "(v)", &variant);
g_variant_get(const_cast<GVariant*>(data.gobj()), "(v)", &variant);
if (variant && variant.is_of_type(Glib::VARIANT_TYPE_INT32)) {
g_variant_get(variant.gobj_copy(), "i", &gameCount);
g_variant_get(const_cast<GVariant*>(variant.gobj()), "i", &gameCount);
return;
}
}
@@ -158,7 +158,7 @@ void Gamemode::prepareForSleep_cb(const Glib::RefPtr<Gio::DBus::Connection>& con
const Glib::VariantContainerBase& parameters) {
if (parameters.is_of_type(Glib::VariantType("(b)"))) {
gboolean sleeping;
g_variant_get(parameters.gobj_copy(), "(b)", &sleeping);
g_variant_get(const_cast<GVariant*>(parameters.gobj()), "(b)", &sleeping);
if (!sleeping) {
getData();
dp.emit();
@@ -212,7 +212,7 @@ auto Gamemode::update() -> void {
// Tooltip
if (tooltip) {
std::string text = fmt::format(fmt::runtime(tooltip_format), fmt::arg("count", gameCount));
box_.set_tooltip_text(text);
box_.set_tooltip_markup(text);
}
// Label format
+181 -67
View File
@@ -9,44 +9,47 @@
#include <sys/un.h>
#include <unistd.h>
#include <array>
#include <cerrno>
#include <cstring>
#include <filesystem>
#include <optional>
#include <string>
#include "util/scoped_fd.hpp"
namespace waybar::modules::hyprland {
std::filesystem::path IPC::socketFolder_;
std::optional<bool> IPC::s_luaProtocolDetected_;
std::filesystem::path IPC::getSocketFolder(const char* instanceSig) {
static std::mutex folderMutex;
std::unique_lock lock(folderMutex);
// socket path, specified by EventManager of Hyprland
if (!socketFolder_.empty()) {
return socketFolder_;
if (socketFolder_.empty()) {
const char* xdgRuntimeDirEnv = std::getenv("XDG_RUNTIME_DIR");
std::filesystem::path xdgRuntimeDir;
// Only set path if env variable is set
if (xdgRuntimeDirEnv != nullptr) {
xdgRuntimeDir = std::filesystem::path(xdgRuntimeDirEnv);
}
if (!xdgRuntimeDir.empty() && std::filesystem::exists(xdgRuntimeDir / "hypr")) {
socketFolder_ = xdgRuntimeDir / "hypr";
} else {
spdlog::warn("$XDG_RUNTIME_DIR/hypr does not exist, falling back to /tmp/hypr");
socketFolder_ = std::filesystem::path("/tmp") / "hypr";
}
}
const char* xdgRuntimeDirEnv = std::getenv("XDG_RUNTIME_DIR");
std::filesystem::path xdgRuntimeDir;
// Only set path if env variable is set
if (xdgRuntimeDirEnv != nullptr) {
xdgRuntimeDir = std::filesystem::path(xdgRuntimeDirEnv);
}
if (!xdgRuntimeDir.empty() && std::filesystem::exists(xdgRuntimeDir / "hypr")) {
socketFolder_ = xdgRuntimeDir / "hypr";
} else {
spdlog::warn("$XDG_RUNTIME_DIR/hypr does not exist, falling back to /tmp/hypr");
socketFolder_ = std::filesystem::path("/tmp") / "hypr";
}
socketFolder_ = socketFolder_ / instanceSig;
return socketFolder_;
return socketFolder_ / instanceSig;
}
IPC::IPC() {
// will start IPC and relay events to parseIPC
ipcThread_ = std::thread([this]() { socketListener(); });
socketOwnerPid_ = getpid();
ipcThread_ = std::thread([this]() { socketListener(); });
}
IPC::~IPC() {
@@ -54,19 +57,20 @@ IPC::~IPC() {
// failed exec()) exits.
if (getpid() != socketOwnerPid_) return;
running_ = false;
running_.store(false, std::memory_order_relaxed);
spdlog::info("Hyprland IPC stopping...");
if (socketfd_ != -1) {
spdlog::trace("Shutting down socket");
if (shutdown(socketfd_, SHUT_RDWR) == -1) {
spdlog::error("Hyprland IPC: Couldn't shutdown socket");
}
spdlog::trace("Closing socket");
if (close(socketfd_) == -1) {
spdlog::error("Hyprland IPC: Couldn't close socket");
{
std::lock_guard<std::mutex> lock(socketMutex_);
if (socketfd_ != -1) {
spdlog::trace("Shutting down socket");
if (shutdown(socketfd_, SHUT_RDWR) == -1 && errno != ENOTCONN) {
spdlog::error("Hyprland IPC: Couldn't shutdown socket");
}
}
}
ipcThread_.join();
if (ipcThread_.joinable()) {
ipcThread_.join();
}
}
IPC& IPC::inst() {
@@ -85,10 +89,10 @@ void IPC::socketListener() {
spdlog::info("Hyprland IPC starting");
struct sockaddr_un addr;
socketfd_ = socket(AF_UNIX, SOCK_STREAM, 0);
struct sockaddr_un addr = {};
const int socketfd = socket(AF_UNIX, SOCK_STREAM, 0);
if (socketfd_ == -1) {
if (socketfd == -1) {
spdlog::error("Hyprland IPC: socketfd failed");
return;
}
@@ -96,44 +100,76 @@ void IPC::socketListener() {
addr.sun_family = AF_UNIX;
auto socketPath = IPC::getSocketFolder(his) / ".socket2.sock";
if (socketPath.native().size() >= sizeof(addr.sun_path)) {
spdlog::error("Hyprland IPC: Socket path is too long: {}", socketPath.string());
close(socketfd);
return;
}
strncpy(addr.sun_path, socketPath.c_str(), sizeof(addr.sun_path) - 1);
addr.sun_path[sizeof(addr.sun_path) - 1] = 0;
int l = sizeof(struct sockaddr_un);
if (connect(socketfd_, (struct sockaddr*)&addr, l) == -1) {
spdlog::error("Hyprland IPC: Unable to connect?");
if (connect(socketfd, (struct sockaddr*)&addr, l) == -1) {
spdlog::error("Hyprland IPC: Unable to connect? {}", std::strerror(errno));
close(socketfd);
return;
}
auto* file = fdopen(socketfd_, "r");
if (file == nullptr) {
spdlog::error("Hyprland IPC: Couldn't open file descriptor");
return;
{
std::lock_guard<std::mutex> lock(socketMutex_);
socketfd_ = socketfd;
}
while (running_) {
std::string pending;
while (running_.load(std::memory_order_relaxed)) {
std::array<char, 1024> buffer; // Hyprland socket2 events are max 1024 bytes
const ssize_t bytes_read = read(socketfd, buffer.data(), buffer.size());
auto* receivedCharPtr = fgets(buffer.data(), buffer.size(), file);
if (receivedCharPtr == nullptr) {
std::this_thread::sleep_for(std::chrono::milliseconds(1));
continue;
if (bytes_read == 0) {
if (running_.load(std::memory_order_relaxed)) {
spdlog::warn("Hyprland IPC: Socket closed by peer");
}
break;
}
std::string messageReceived(buffer.data());
messageReceived = messageReceived.substr(0, messageReceived.find_first_of('\n'));
spdlog::debug("hyprland IPC received {}", messageReceived);
try {
parseIPC(messageReceived);
} catch (std::exception& e) {
spdlog::warn("Failed to parse IPC message: {}, reason: {}", messageReceived, e.what());
} catch (...) {
throw;
if (bytes_read < 0) {
if (errno == EINTR) {
continue;
}
if (!running_.load(std::memory_order_relaxed)) {
break;
}
spdlog::error("Hyprland IPC: read failed: {}", std::strerror(errno));
break;
}
std::this_thread::sleep_for(std::chrono::milliseconds(1));
pending.append(buffer.data(), static_cast<std::size_t>(bytes_read));
for (auto newline_pos = pending.find('\n'); newline_pos != std::string::npos;
newline_pos = pending.find('\n')) {
std::string messageReceived = pending.substr(0, newline_pos);
pending.erase(0, newline_pos + 1);
if (messageReceived.empty()) {
continue;
}
spdlog::debug("hyprland IPC received {}", messageReceived);
try {
parseIPC(messageReceived);
} catch (std::exception& e) {
spdlog::warn("Failed to parse IPC message: {}, reason: {}", messageReceived, e.what());
} catch (...) {
throw;
}
}
}
{
std::lock_guard<std::mutex> lock(socketMutex_);
if (socketfd_ != -1) {
if (close(socketfd_) == -1) {
spdlog::error("Hyprland IPC: Couldn't close socket");
}
socketfd_ = -1;
}
}
spdlog::debug("Hyprland IPC stopped");
}
@@ -178,7 +214,7 @@ void IPC::unregisterForIPC(EventHandler* ev_handler) {
std::string IPC::getSocket1Reply(const std::string& rq) {
// basically hyprctl
const auto serverSocket = socket(AF_UNIX, SOCK_STREAM, 0);
util::ScopedFd serverSocket(socket(AF_UNIX, SOCK_STREAM, 0));
if (serverSocket < 0) {
throw std::runtime_error("Hyprland IPC: Couldn't open a socket (1)");
@@ -198,8 +234,10 @@ std::string IPC::getSocket1Reply(const std::string& rq) {
std::string socketPath = IPC::getSocketFolder(instanceSig) / ".socket.sock";
// Use snprintf to copy the socketPath string into serverAddress.sun_path
if (snprintf(serverAddress.sun_path, sizeof(serverAddress.sun_path), "%s", socketPath.c_str()) <
0) {
const auto socketPathLength =
snprintf(serverAddress.sun_path, sizeof(serverAddress.sun_path), "%s", socketPath.c_str());
if (socketPathLength < 0 ||
socketPathLength >= static_cast<int>(sizeof(serverAddress.sun_path))) {
throw std::runtime_error("Hyprland IPC: Couldn't copy socket path (6)");
}
@@ -208,28 +246,39 @@ std::string IPC::getSocket1Reply(const std::string& rq) {
throw std::runtime_error("Hyprland IPC: Couldn't connect to " + socketPath + ". (3)");
}
auto sizeWritten = write(serverSocket, rq.c_str(), rq.length());
std::size_t totalWritten = 0;
while (totalWritten < rq.length()) {
const auto sizeWritten =
write(serverSocket, rq.c_str() + totalWritten, rq.length() - totalWritten);
if (sizeWritten < 0) {
spdlog::error("Hyprland IPC: Couldn't write (4)");
return "";
if (sizeWritten < 0) {
if (errno == EINTR) {
continue;
}
spdlog::error("Hyprland IPC: Couldn't write (4)");
return "";
}
if (sizeWritten == 0) {
spdlog::error("Hyprland IPC: Socket write made no progress");
return "";
}
totalWritten += static_cast<std::size_t>(sizeWritten);
}
std::array<char, 8192> buffer = {0};
std::string response;
ssize_t sizeWritten = 0;
do {
sizeWritten = read(serverSocket, buffer.data(), 8192);
if (sizeWritten < 0) {
spdlog::error("Hyprland IPC: Couldn't read (5)");
close(serverSocket);
return "";
}
response.append(buffer.data(), sizeWritten);
} while (sizeWritten > 0);
close(serverSocket);
return response;
}
@@ -243,4 +292,69 @@ Json::Value IPC::getSocket1JsonReply(const std::string& rq) {
return parser_.parse(reply);
}
bool IPC::isLuaProtocol() {
if (s_luaProtocolDetected_.has_value()) {
return *s_luaProtocolDetected_;
}
// Probe: send a harmless old-style dispatch and check the error.
// In Lua-based Hyprland (>= 0.54) the error contains "hl.dispatch".
// In older versions it returns "ok" or a different error.
auto reply = getSocket1Reply("dispatch workspace __waybar_probe__");
bool luaProto = reply.find("hl.dispatch") != std::string::npos;
if (luaProto) {
spdlog::info("Hyprland IPC: detected Lua-based dispatch protocol (Hyprland >= 0.54)");
} else {
spdlog::info("Hyprland IPC: detected legacy dispatch protocol");
}
s_luaProtocolDetected_ = luaProto;
return luaProto;
}
std::string IPC::buildLuaDispatch(const std::string& dispatcher, const std::string& arg) {
// Map old-style dispatchers to the new Lua hl.dsp API.
//
// Old format: dispatch workspace 1
// New format: /dispatch hl.dsp.focus({ workspace = "1" })
//
// Old format: dispatch focusworkspaceoncurrentmonitor 2
// New format: /dispatch hl.dsp.focus({ workspace = "2", on_current_monitor = true })
//
// Old format: dispatch togglespecialworkspace name
// New format: /dispatch hl.dsp.workspace.toggle_special("name")
if (dispatcher == "workspace") {
return "/dispatch hl.dsp.focus({ workspace = \"" + arg + "\" })";
}
if (dispatcher == "focusworkspaceoncurrentmonitor") {
return "/dispatch hl.dsp.focus({ workspace = \"" + arg + "\", on_current_monitor = true })";
}
if (dispatcher == "togglespecialworkspace") {
if (arg.empty()) {
return "/dispatch hl.dsp.workspace.toggle_special()";
}
return "/dispatch hl.dsp.workspace.toggle_special(\"" + arg + "\")";
}
// Fallback for any other dispatcher: try the old format wrapped in dispatch().
// This may not work for all dispatchers, but it's a reasonable default.
spdlog::warn("Hyprland IPC: unknown dispatcher '{}' in Lua mode, attempting generic format",
dispatcher);
return "/dispatch hl.dsp." + dispatcher + "(\"" + arg + "\")";
}
std::string IPC::dispatch(const std::string& dispatcher, const std::string& arg) {
if (isLuaProtocol()) {
return getSocket1Reply(buildLuaDispatch(dispatcher, arg));
}
// Legacy format: "dispatch <dispatcher> <arg>"
std::string cmd = "dispatch " + dispatcher;
if (!arg.empty()) {
cmd += " " + arg;
}
return getSocket1Reply(cmd);
}
} // namespace waybar::modules::hyprland
+88 -9
View File
@@ -48,41 +48,110 @@ auto Language::update() -> void {
fmt::arg("shortDescription", layout_.short_description),
fmt::arg("variant", layout_.variant)));
}
spdlog::debug("hyprland language formatted layout name {}", layoutName);
std::string tooltipContent = std::string{};
bool tooltip_enabled = tooltipEnabled();
if (tooltip_enabled) {
if (config_.isMember("tooltip-format")) {
auto tooltip_format = config_["tooltip-format"].asString();
if (config_.isMember("tooltip-format-" + layout_.short_description + "-" + layout_.variant)) {
const auto propName = "tooltip-format-" + layout_.short_description + "-" + layout_.variant;
tooltipContent = fmt::format(fmt::runtime(tooltip_format), config_[propName].asString());
} else if (config_.isMember("tooltip-format-" + layout_.short_description)) {
const auto propName = "tooltip-format-" + layout_.short_description;
tooltipContent = fmt::format(fmt::runtime(tooltip_format), config_[propName].asString());
} else {
tooltipContent =
trim(fmt::format(fmt::runtime(tooltip_format), fmt::arg("long", layout_.full_name),
fmt::arg("short", layout_.short_name),
fmt::arg("shortDescription", layout_.short_description),
fmt::arg("variant", layout_.variant)));
}
} else {
// if no tooltip format is provided, use the same text as the module
tooltipContent = layoutName;
}
spdlog::debug("hyprland language formatted tooltip content {}", tooltipContent);
}
if (!format_.empty()) {
label_.show();
label_.set_markup(layoutName);
if (tooltip_enabled) {
label_.set_tooltip_markup(tooltipContent);
}
} else {
label_.hide();
}
// Tooltip support
if (tooltipEnabled()) {
std::string tooltipFormat;
if (config_["tooltip-format"].isString()) {
tooltipFormat = config_["tooltip-format"].asString();
} else {
tooltipFormat = "{long}";
}
auto tooltipText = trim(fmt::format(
fmt::runtime(tooltipFormat),
fmt::arg("long", layout_.full_name),
fmt::arg("short", layout_.short_name),
fmt::arg("shortDescription", layout_.short_description),
fmt::arg("variant", layout_.variant)));
label_.set_tooltip_text(tooltipText);
} else {
label_.set_tooltip_text("");
}
ALabel::update();
}
void Language::onEvent(const std::string& ev) {
std::lock_guard<std::mutex> lg(mutex_);
std::string kbName(begin(ev) + ev.find_last_of('>') + 1, begin(ev) + ev.find_first_of(','));
const auto payloadStart = ev.find(">>");
if (payloadStart == std::string::npos) {
spdlog::warn("hyprland language received malformed event: {}", ev);
return;
}
const auto payload = ev.substr(payloadStart + 2);
const auto kbSeparator = payload.find(',');
if (kbSeparator == std::string::npos) {
spdlog::warn("hyprland language received malformed event payload: {}", ev);
return;
}
// Last comma before variants parenthesis, eg:
// activelayout>>micro-star-int'l-co.,-ltd.-msi-gk50-elite-gaming-keyboard,English (US, intl.,
// with dead keys)
std::string beforeParenthesis;
auto parenthesisPos = ev.find_last_of('(');
auto parenthesisPos = payload.find_last_of('(');
if (parenthesisPos == std::string::npos) {
beforeParenthesis = ev;
beforeParenthesis = payload;
} else {
beforeParenthesis = std::string(begin(ev), begin(ev) + parenthesisPos);
beforeParenthesis = payload.substr(0, parenthesisPos);
}
auto layoutName = ev.substr(beforeParenthesis.find_last_of(',') + 1);
const auto layoutSeparator = beforeParenthesis.find_last_of(',');
if (layoutSeparator == std::string::npos) {
spdlog::warn("hyprland language received malformed layout payload: {}", ev);
return;
}
auto layoutName = payload.substr(layoutSeparator + 1);
if (config_.isMember("keyboard-name") && kbName != config_["keyboard-name"].asString())
return; // ignore
if (config_.isMember("keyboard-name")) {
const auto keyboardName = config_["keyboard-name"].asString();
// The keyboard name itself can contain commas, so match it as a full prefix
// (followed by the ',' separator) rather than comparing against the substring
// before the first comma, which would truncate such names and drop the event.
if (payload.size() <= keyboardName.size() || payload[keyboardName.size()] != ',' ||
payload.compare(0, keyboardName.size(), keyboardName) != 0)
return; // ignore
}
layoutName = waybar::util::sanitize_string(layoutName);
removeXkbLayoutCssClass();
layout_ = getLayout(layoutName);
addXkbLayoutCssClass();
spdlog::debug("hyprland language onevent with {}", layoutName);
@@ -104,6 +173,7 @@ void Language::initLanguage() {
searcher = waybar::util::sanitize_string(searcher);
layout_ = getLayout(searcher);
addXkbLayoutCssClass();
spdlog::debug("hyprland language initLanguage found {}", layout_.full_name);
@@ -113,6 +183,15 @@ void Language::initLanguage() {
}
}
auto Language::removeXkbLayoutCssClass() -> void {
label_.get_style_context()->remove_class(layout_.short_name);
spdlog::debug("hyprland language try to remove currently short_name css class {}", layout_.short_name);
}
auto Language::addXkbLayoutCssClass() -> void {
label_.get_style_context()->add_class(layout_.short_name);
spdlog::debug("hyprland language add new short_name css class {}", layout_.short_name);
}
auto Language::getLayout(const std::string& fullName) -> Layout {
auto* const context = rxkb_context_new(RXKB_CONTEXT_LOAD_EXOTIC_RULES);
rxkb_context_parse_default_ruleset(context);
+7 -2
View File
@@ -73,7 +73,7 @@ auto Submap::update() -> void {
label_.set_markup(
fmt::format(fmt::runtime(format_), fmt::arg("submap", submap_), fmt::arg("icon", icon_)));
if (tooltipEnabled()) {
label_.set_tooltip_text(submap_);
label_.set_tooltip_markup(submap_);
}
event_box_.show();
}
@@ -88,7 +88,12 @@ void Submap::onEvent(const std::string& ev) {
return;
}
auto submapName = ev.substr(ev.find_first_of('>') + 2);
const auto separator = ev.find(">>");
if (separator == std::string::npos) {
spdlog::warn("hyprland submap received malformed event: {}", ev);
return;
}
auto submapName = ev.substr(separator + 2);
submap_ = submapName;
+70 -70
View File
@@ -1,5 +1,6 @@
#include "modules/hyprland/window.hpp"
#include <fmt/format.h>
#include <glibmm/fileutils.h>
#include <glibmm/keyfile.h>
#include <glibmm/miscutils.h>
@@ -19,21 +20,19 @@ std::shared_mutex windowIpcSmtx;
Window::Window(const std::string& id, const Bar& bar, const Json::Value& config)
: AAppIconLabel(config, "window", id, "{title}", 0, true), bar_(bar), m_ipc(IPC::inst()) {
std::unique_lock<std::shared_mutex> windowIpcUniqueLock(windowIpcSmtx);
separateOutputs_ = config["separate-outputs"].asBool();
update();
// register for hyprland ipc
std::unique_lock<std::shared_mutex> windowIpcUniqueLock(windowIpcSmtx);
m_ipc.registerForIPC("activewindow", this);
m_ipc.registerForIPC("closewindow", this);
m_ipc.registerForIPC("movewindow", this);
m_ipc.registerForIPC("changefloatingmode", this);
m_ipc.registerForIPC("fullscreen", this);
windowIpcUniqueLock.unlock();
queryActiveWorkspace();
update();
dp.emit();
}
@@ -55,8 +54,15 @@ auto Window::update() -> void {
std::string label_text;
if (!format_.empty()) {
label_.show();
// If the focused window name is empty and fallback is configured, use fallback text
std::string displayTitle = windowName;
if (displayTitle.empty() && config_["fallback"].isString()) {
displayTitle = config_["fallback"].asString();
}
label_text = waybar::util::rewriteString(
fmt::format(fmt::runtime(format_), fmt::arg("title", windowName),
fmt::format(fmt::runtime(format_), fmt::arg("title", displayTitle),
fmt::arg("initialTitle", windowData_.initial_title),
fmt::arg("class", windowData_.class_name),
fmt::arg("initialClass", windowData_.initial_class_name)),
@@ -72,13 +78,13 @@ auto Window::update() -> void {
tooltip_format = config_["tooltip-format"].asString();
}
if (!tooltip_format.empty()) {
label_.set_tooltip_text(
label_.set_tooltip_markup(
fmt::format(fmt::runtime(tooltip_format), fmt::arg("title", windowName),
fmt::arg("initialTitle", windowData_.initial_title),
fmt::arg("class", windowData_.class_name),
fmt::arg("initialClass", windowData_.initial_class_name)));
} else if (!label_text.empty()) {
label_.set_tooltip_text(label_text);
label_.set_tooltip_markup(label_text);
}
}
@@ -110,21 +116,14 @@ auto Window::update() -> void {
AAppIconLabel::update();
}
auto Window::getActiveWorkspace() -> Workspace {
const auto workspace = IPC::inst().getSocket1JsonReply("activeworkspace");
if (workspace.isObject()) {
return Workspace::parse(workspace);
}
return {};
}
auto Window::getActiveWorkspace() -> Workspace { return getActiveWorkspace(""); }
auto Window::getActiveWorkspace(const std::string& monitorName) -> Workspace {
const auto monitors = IPC::inst().getSocket1JsonReply("monitors");
if (monitors.isArray()) {
auto monitor = std::ranges::find_if(
monitors, [&](Json::Value monitor) { return monitor["name"] == monitorName; });
auto monitor = std::ranges::find_if(monitors, [&](const Json::Value& monitor) {
return monitorName.empty() ? monitor["focused"].asBool() : monitor["name"] == monitorName;
});
if (monitor == std::end(monitors)) {
spdlog::warn("Monitor not found: {}", monitorName);
return Workspace{
@@ -134,12 +133,13 @@ auto Window::getActiveWorkspace(const std::string& monitorName) -> Workspace {
.last_window_title = "",
};
}
const int id = (*monitor)["activeWorkspace"]["id"].asInt();
const int special_id = (*monitor)["specialWorkspace"]["id"].asInt();
const int id = special_id != 0 ? special_id : (*monitor)["activeWorkspace"]["id"].asInt();
const auto workspaces = IPC::inst().getSocket1JsonReply("workspaces");
if (workspaces.isArray()) {
auto workspace = std::ranges::find_if(
workspaces, [&](Json::Value workspace) { return workspace["id"] == id; });
workspaces, [&](const Json::Value& workspace) { return workspace["id"] == id; });
if (workspace == std::end(workspaces)) {
spdlog::warn("No workspace with id {}", id);
return Workspace{
@@ -177,69 +177,69 @@ auto Window::WindowData::parse(const Json::Value& value) -> Window::WindowData {
}
void Window::queryActiveWorkspace() {
std::shared_lock<std::shared_mutex> windowIpcShareLock(windowIpcSmtx);
if (separateOutputs_) {
workspace_ = getActiveWorkspace(this->bar_.output->name);
} else {
workspace_ = getActiveWorkspace();
}
focused_ = false;
windowData_ = WindowData{};
allFloating_ = false;
swallowing_ = false;
fullscreen_ = false;
solo_ = false;
soloClass_.clear();
if (workspace_.windows <= 0) {
return;
}
const auto clients = m_ipc.getSocket1JsonReply("clients");
if (!clients.isArray()) {
return;
}
auto activeWindow = std::ranges::find_if(clients, [&](const Json::Value& window) {
return window["address"] == workspace_.last_window;
});
if (activeWindow == std::end(clients)) {
return;
}
focused_ = true;
if (workspace_.windows > 0) {
const auto clients = m_ipc.getSocket1JsonReply("clients");
if (clients.isArray()) {
auto activeWindow = std::ranges::find_if(
clients, [&](Json::Value window) { return window["address"] == workspace_.last_window; });
if (activeWindow == std::end(clients)) {
focused_ = false;
return;
}
windowData_ = WindowData::parse(*activeWindow);
updateAppIconName(windowData_.class_name, windowData_.initial_class_name);
std::vector<Json::Value> workspaceWindows;
std::ranges::copy_if(clients, std::back_inserter(workspaceWindows), [&](Json::Value window) {
windowData_ = WindowData::parse(*activeWindow);
updateAppIconName(windowData_.class_name, windowData_.initial_class_name);
std::vector<Json::Value> workspaceWindows;
std::ranges::copy_if(
clients, std::back_inserter(workspaceWindows), [&](const Json::Value& window) {
return window["workspace"]["id"] == workspace_.id && window["mapped"].asBool();
});
swallowing_ = std::ranges::any_of(workspaceWindows, [&](Json::Value window) {
return !window["swallowing"].isNull() && window["swallowing"].asString() != "0x0";
});
std::vector<Json::Value> visibleWindows;
std::ranges::copy_if(workspaceWindows, std::back_inserter(visibleWindows),
[&](Json::Value window) { return !window["hidden"].asBool(); });
solo_ = 1 == std::count_if(visibleWindows.begin(), visibleWindows.end(),
[&](Json::Value window) { return !window["floating"].asBool(); });
allFloating_ = std::ranges::all_of(
visibleWindows, [&](Json::Value window) { return window["floating"].asBool(); });
fullscreen_ = windowData_.fullscreen;
swallowing_ = std::ranges::any_of(workspaceWindows, [&](const Json::Value& window) {
return !window["swallowing"].isNull() && window["swallowing"].asString() != "0x0";
});
std::vector<Json::Value> visibleWindows;
std::ranges::copy_if(workspaceWindows, std::back_inserter(visibleWindows),
[&](const Json::Value& window) { return !window["hidden"].asBool(); });
solo_ = 1 == std::count_if(
visibleWindows.begin(), visibleWindows.end(),
[&](const Json::Value& window) { return !window["floating"].asBool(); });
allFloating_ = std::ranges::all_of(
visibleWindows, [&](const Json::Value& window) { return window["floating"].asBool(); });
fullscreen_ = windowData_.fullscreen;
// Fullscreen windows look like they are solo
if (fullscreen_) {
solo_ = true;
}
// Fullscreen windows look like they are solo
if (fullscreen_) {
solo_ = true;
}
if (solo_) {
soloClass_ = windowData_.class_name;
} else {
soloClass_ = "";
}
}
} else {
focused_ = false;
windowData_ = WindowData{};
allFloating_ = false;
swallowing_ = false;
fullscreen_ = false;
solo_ = false;
soloClass_ = "";
if (solo_) {
soloClass_ = windowData_.class_name;
}
}
void Window::onEvent(const std::string& ev) {
dp.emit();
}
void Window::onEvent(const std::string& ev) { dp.emit(); }
void Window::setClass(const std::string& classname, bool enable) {
if (enable) {
+5 -7
View File
@@ -38,7 +38,7 @@ WindowCount::~WindowCount() {
auto WindowCount::update() -> void {
std::lock_guard<std::mutex> lg(mutex_);
queryActiveWorkspace();
std::string format = config_["format"].asString();
@@ -58,7 +58,7 @@ auto WindowCount::update() -> void {
} else if (!format.empty()) {
label_.set_markup(fmt::format(fmt::runtime(format), workspace_.windows));
} else {
label_.set_text(fmt::format("{}", workspace_.windows));
label_.set_markup(fmt::format("{}", workspace_.windows));
}
label_.show();
@@ -79,7 +79,7 @@ auto WindowCount::getActiveWorkspace(const std::string& monitorName) -> Workspac
const auto monitors = m_ipc.getSocket1JsonReply("monitors");
if (monitors.isArray()) {
auto monitor = std::ranges::find_if(
monitors, [&](Json::Value monitor) { return monitor["name"] == monitorName; });
monitors, [&](const Json::Value& monitor) { return monitor["name"] == monitorName; });
if (monitor == std::end(monitors)) {
spdlog::warn("Monitor not found: {}", monitorName);
return Workspace{
@@ -93,7 +93,7 @@ auto WindowCount::getActiveWorkspace(const std::string& monitorName) -> Workspac
const auto workspaces = m_ipc.getSocket1JsonReply("workspaces");
if (workspaces.isArray()) {
auto workspace = std::ranges::find_if(
workspaces, [&](Json::Value workspace) { return workspace["id"] == id; });
workspaces, [&](const Json::Value& workspace) { return workspace["id"] == id; });
if (workspace == std::end(workspaces)) {
spdlog::warn("No workspace with id {}", id);
return Workspace{
@@ -125,9 +125,7 @@ void WindowCount::queryActiveWorkspace() {
}
}
void WindowCount::onEvent(const std::string& ev) {
dp.emit();
}
void WindowCount::onEvent(const std::string& ev) { dp.emit(); }
void WindowCount::setClass(const std::string& classname, bool enable) {
if (enable) {
@@ -19,7 +19,7 @@ WindowCreationPayload::WindowCreationPayload(Json::Value const& client_data)
clearWorkspaceName();
}
WindowCreationPayload::WindowCreationPayload(std::string workspace_name,
WindowCreationPayload::WindowCreationPayload(const std::string& workspace_name,
WindowAddress window_address, WindowRepr window_repr)
: m_window(std::move(window_repr)),
m_windowAddress(std::move(window_address)),
@@ -28,9 +28,10 @@ WindowCreationPayload::WindowCreationPayload(std::string workspace_name,
clearWorkspaceName();
}
WindowCreationPayload::WindowCreationPayload(std::string workspace_name,
WindowAddress window_address, std::string window_class,
std::string window_title, bool is_active)
WindowCreationPayload::WindowCreationPayload(const std::string& workspace_name,
WindowAddress window_address,
const std::string& window_class,
const std::string& window_title, bool is_active)
: m_window(std::make_pair(std::move(window_class), std::move(window_title))),
m_windowAddress(std::move(window_address)),
m_workspaceName(std::move(workspace_name)),
+272 -30
View File
@@ -1,6 +1,9 @@
#include <glibmm/main.h>
#include <json/value.h>
#include <spdlog/spdlog.h>
#include <algorithm>
#include <cctype>
#include <memory>
#include <string>
#include <utility>
@@ -9,6 +12,33 @@
#include "util/command.hpp"
#include "util/icon_loader.hpp"
namespace {
constexpr std::string_view kCssClassPrefix = "ws-";
// Convert a workspace name to a valid CSS class name.
// Lowercases, replaces non-alphanumeric runs with single hyphens,
// and prefixes digit-leading names (CSS classes can't start with a digit).
std::string sanitizeCssClass(const std::string& name) {
std::string result;
result.reserve(name.size() + kCssClassPrefix.size());
for (auto c : name) {
auto uc = static_cast<unsigned char>(c);
if (std::isalnum(uc)) {
result += static_cast<char>(std::tolower(uc));
} else if (!result.empty() && result.back() != '-') {
result += '-';
}
}
if (!result.empty() && result.back() == '-') {
result.pop_back();
}
if (!result.empty() && std::isdigit(static_cast<unsigned char>(result.front()))) {
result.insert(0, kCssClassPrefix);
}
return result;
}
} // namespace
namespace waybar::modules::hyprland {
Workspace::Workspace(const Json::Value& workspace_data, Workspaces& workspace_manager,
@@ -30,6 +60,11 @@ Workspace::Workspace(const Json::Value& workspace_data, Workspaces& workspace_ma
}
m_button.add_events(Gdk::BUTTON_PRESS_MASK);
m_button.add_events(Gdk::ENTER_NOTIFY_MASK | Gdk::LEAVE_NOTIFY_MASK);
m_button.signal_enter_notify_event().connect(sigc::mem_fun(*this, &Workspace::handleEnter));
m_button.signal_leave_notify_event().connect(sigc::mem_fun(*this, &Workspace::handleLeave));
m_button.signal_button_press_event().connect(sigc::mem_fun(*this, &Workspace::handleClicked),
false);
@@ -45,6 +80,12 @@ Workspace::Workspace(const Json::Value& workspace_data, Workspaces& workspace_ma
initializeWindowMap(clients_data);
}
Workspace::~Workspace() {
// Disconnect the hover-check timeout so it can't fire on this destroyed
// instance (Workspaces are removed at runtime while a check may be armed).
stopHoverCheck();
}
void addOrRemoveClass(const Glib::RefPtr<Gtk::StyleContext>& context, bool condition,
const std::string& class_name) {
if (condition) {
@@ -66,25 +107,119 @@ std::optional<WindowRepr> Workspace::closeWindow(WindowAddress const& addr) {
return std::nullopt;
}
bool Workspace::pointerInsideButton() {
auto display = Gdk::Display::get_default();
if (!display) {
return false;
}
auto seat = display->get_default_seat();
if (!seat) {
return false;
}
auto pointer = seat->get_pointer();
if (!pointer) {
return false;
}
Glib::RefPtr<Gdk::Screen> screen;
int pointerRootX = 0;
int pointerRootY = 0;
pointer->get_position(screen, pointerRootX, pointerRootY);
Gtk::Widget* toplevel = m_button.get_toplevel();
if (toplevel == nullptr || !toplevel->get_window()) {
return false;
}
int buttonX = 0;
int buttonY = 0;
if (!m_button.translate_coordinates(*toplevel, 0, 0, buttonX, buttonY)) {
return false;
}
int windowRootX = 0;
int windowRootY = 0;
toplevel->get_window()->get_root_origin(windowRootX, windowRootY);
const auto allocation = m_button.get_allocation();
const int buttonRootX = windowRootX + buttonX;
const int buttonRootY = windowRootY + buttonY;
const int buttonWidth = allocation.get_width();
const int buttonHeight = allocation.get_height();
return pointerRootX >= buttonRootX && pointerRootY >= buttonRootY &&
pointerRootX < buttonRootX + buttonWidth && pointerRootY < buttonRootY + buttonHeight;
}
bool Workspace::syncHoverClass() {
auto styleContext = m_button.get_style_context();
if (pointerInsideButton()) {
styleContext->add_class("workspace-hover");
return true;
}
styleContext->remove_class("workspace-hover");
stopHoverCheck();
return false;
}
void Workspace::startHoverCheck() {
if (m_hoverCheckConnection.connected()) {
return;
}
m_hoverCheckConnection =
Glib::signal_timeout().connect(sigc::mem_fun(*this, &Workspace::syncHoverClass), 50);
}
void Workspace::stopHoverCheck() {
if (m_hoverCheckConnection.connected()) {
m_hoverCheckConnection.disconnect();
}
}
bool Workspace::handleEnter(GdkEventCrossing* /*event*/) {
m_button.get_style_context()->add_class("workspace-hover");
startHoverCheck();
return false;
}
bool Workspace::handleLeave(GdkEventCrossing* /*event*/) {
/*
* Do not remove immediately.
* Workspace taskbar children can fire misleading leave events while the
* pointer is still visually inside the workspace button.
*
* The polling check will remove the class once the pointer really leaves.
*/
startHoverCheck();
return false;
}
bool Workspace::handleClicked(GdkEventButton* bt) const {
if (bt->type == GDK_BUTTON_PRESS) {
try {
if (id() > 0) { // normal
if (m_workspaceManager.moveToMonitor()) {
m_ipc.getSocket1Reply("dispatch focusworkspaceoncurrentmonitor " + std::to_string(id()));
IPC::dispatch("focusworkspaceoncurrentmonitor", std::to_string(id()));
} else {
m_ipc.getSocket1Reply("dispatch workspace " + std::to_string(id()));
IPC::dispatch("workspace", std::to_string(id()));
}
} else if (!isSpecial()) { // named (this includes persistent)
if (m_workspaceManager.moveToMonitor()) {
m_ipc.getSocket1Reply("dispatch focusworkspaceoncurrentmonitor name:" + name());
IPC::dispatch("focusworkspaceoncurrentmonitor", "name:" + name());
} else {
m_ipc.getSocket1Reply("dispatch workspace name:" + name());
IPC::dispatch("workspace", "name:" + name());
}
} else if (id() != -99) { // named special
m_ipc.getSocket1Reply("dispatch togglespecialworkspace " + name());
IPC::dispatch("togglespecialworkspace", name());
} else { // special
m_ipc.getSocket1Reply("dispatch togglespecialworkspace");
IPC::dispatch("togglespecialworkspace", "");
}
return true;
} catch (const std::exception& e) {
@@ -96,7 +231,7 @@ bool Workspace::handleClicked(GdkEventButton* bt) const {
void Workspace::initializeWindowMap(const Json::Value& clients_data) {
m_windowMap.clear();
for (auto client : clients_data) {
for (const auto& client : clients_data) {
if (client["workspace"]["id"].asInt() == id()) {
insertWindow({client});
}
@@ -115,7 +250,10 @@ void Workspace::setActiveWindow(WindowAddress const& addr) {
}
auto activeWindowPos = m_workspaceManager.activeWindowPosition();
if (activeIdx.has_value() && activeWindowPos != Workspaces::ActiveWindowPosition::NONE) {
const bool has_active_window =
activeIdx.has_value() && activeWindowPos != Workspaces::ActiveWindowPosition::NONE;
if (has_active_window) {
auto window = std::move(m_windowMap[*activeIdx]);
m_windowMap.erase(m_windowMap.begin() + *activeIdx);
if (activeWindowPos == Workspaces::ActiveWindowPosition::FIRST) {
@@ -130,7 +268,9 @@ void Workspace::insertWindow(WindowCreationPayload create_window_payload) {
if (!create_window_payload.isEmpty(m_workspaceManager)) {
auto repr = create_window_payload.repr(m_workspaceManager);
if (!repr.empty() || m_workspaceManager.enableTaskbar()) {
const bool should_display = !repr.empty() || m_workspaceManager.enableTaskbar();
if (should_display) {
auto addr = create_window_payload.getAddress();
auto it = std::ranges::find_if(
m_windowMap, [&addr](const auto& window) { return window.address == addr; });
@@ -142,7 +282,7 @@ void Workspace::insertWindow(WindowCreationPayload create_window_payload) {
}
}
}
};
}
bool Workspace::onWindowOpened(WindowCreationPayload const& create_window_payload) {
if (create_window_payload.getWorkspaceName() == name()) {
@@ -155,13 +295,34 @@ bool Workspace::onWindowOpened(WindowCreationPayload const& create_window_payloa
std::string& Workspace::selectIcon(std::map<std::string, std::string>& icons_map) {
spdlog::trace("Selecting icon for workspace {}", name());
if (isUrgent()) {
auto urgentNamedIconIt = icons_map.find("urgent:" + name());
if (urgentNamedIconIt != icons_map.end()) {
return urgentNamedIconIt->second;
}
auto urgentIconIt = icons_map.find("urgent");
if (urgentIconIt != icons_map.end()) {
return urgentIconIt->second;
}
}
if (isActive() && isSpecial()) {
auto activeIconIt = icons_map.find("active:" + name());
if (activeIconIt != icons_map.end()) {
return activeIconIt->second;
}
auto namedIconIt = icons_map.find(name());
if (namedIconIt != icons_map.end()) {
return namedIconIt->second;
}
}
if (isActive()) {
auto activeNamedIconIt = icons_map.find("active:" + name());
if (activeNamedIconIt != icons_map.end()) {
return activeNamedIconIt->second;
}
auto activeIconIt = icons_map.find("active");
if (activeIconIt != icons_map.end()) {
return activeIconIt->second;
@@ -169,6 +330,11 @@ std::string& Workspace::selectIcon(std::map<std::string, std::string>& icons_map
}
if (isSpecial()) {
auto specialNamedIconIt = icons_map.find("special:" + name());
if (specialNamedIconIt != icons_map.end()) {
return specialNamedIconIt->second;
}
auto specialIconIt = icons_map.find("special");
if (specialIconIt != icons_map.end()) {
return specialIconIt->second;
@@ -215,6 +381,15 @@ void Workspace::update(const std::string& workspace_icon) {
return;
}
// clang-format off
if (this->m_workspaceManager.hideActive() && \
this->isActive() && \
!this->isPersistent() && \
!this->isSpecial()) {
// clang-format on
m_button.hide();
return;
}
// clang-format off
if (this->m_workspaceManager.activeOnly() && \
!this->isActive() && \
!this->isPersistent() && \
@@ -234,26 +409,79 @@ void Workspace::update(const std::string& workspace_icon) {
auto styleContext = m_button.get_style_context();
addOrRemoveClass(styleContext, isActive(), "active");
addOrRemoveClass(styleContext, isSpecial(), "special");
addOrRemoveClass(styleContext, isSpecial(), name());
addOrRemoveClass(styleContext, isEmpty(), "empty");
addOrRemoveClass(styleContext, isPersistent(), "persistent");
addOrRemoveClass(styleContext, isUrgent(), "urgent");
addOrRemoveClass(styleContext, isVisible(), "visible");
addOrRemoveClass(styleContext, m_workspaceManager.getBarOutput() == output(), "hosting-monitor");
// Add workspace name as CSS class for per-workspace styling
if (!m_prevNameClass.empty()) {
styleContext->remove_class(m_prevNameClass);
m_prevNameClass.clear();
}
auto nameClass = sanitizeCssClass(name());
if (!nameClass.empty()) {
styleContext->add_class(nameClass);
m_prevNameClass = nameClass;
}
std::string windows;
// Optimization: The {windows} substitution string is only possible if the taskbar is disabled, no
// need to compute this if enableTaskbar() is true
if (!m_workspaceManager.enableTaskbar()) {
auto windowSeparator = m_workspaceManager.getWindowSeparator();
auto groupThreshold = m_workspaceManager.windowRewriteGroupThreshold();
bool isNotFirst = false;
auto end_it = m_workspaceManager.maxWindows() == 0
? m_windowMap.end()
: m_windowMap.begin() + m_workspaceManager.maxWindows();
for (const auto& window_repr : m_windowMap) {
if (isNotFirst) {
windows.append(windowSeparator);
if (groupThreshold > 0) {
// Build ordered counts of each unique icon (including singular ones when threshold set to 1)
std::vector<std::pair<std::string, int>> iconCounts;
for (auto it = m_windowMap.begin(); it != end_it; ++it) {
const auto& window_repr = *it;
auto found = std::ranges::find_if(
iconCounts, [&](const auto& p) { return p.first == window_repr.repr_rewrite; });
if (found != iconCounts.end()) {
found->second++;
} else {
iconCounts.emplace_back(window_repr.repr_rewrite, 1);
}
}
// Format the group string
auto groupFormat = m_workspaceManager.getWindowRewriteGroupFormat();
bool isNotFirst = false;
for (const auto& [icon, count] : iconCounts) {
if (count >= groupThreshold) {
if (isNotFirst) windows.append(windowSeparator);
isNotFirst = true;
try {
windows.append(fmt::format(fmt::runtime(groupFormat), fmt::arg("icon", icon),
fmt::arg("count", count)));
} catch (const fmt::format_error& e) {
spdlog::warn("Formatting window-rewrite-group-format error: {}", e.what());
windows.append(icon);
}
} else {
for (int i = 0; i < count; ++i) {
if (isNotFirst) windows.append(windowSeparator);
isNotFirst = true;
windows.append(icon);
}
}
}
} else {
// Not grouping icons
bool isNotFirst = false;
for (auto it = m_windowMap.begin(); it != end_it; ++it) {
if (isNotFirst) windows.append(windowSeparator);
isNotFirst = true;
windows.append(it->repr_rewrite);
}
isNotFirst = true;
windows.append(window_repr.repr_rewrite);
}
}
@@ -270,7 +498,9 @@ void Workspace::update(const std::string& workspace_icon) {
bool Workspace::isEmpty() const {
auto ignore_list = m_workspaceManager.getIgnoredWindows();
if (ignore_list.empty()) {
const bool no_ignore_rules = ignore_list.empty();
if (no_ignore_rules) {
return m_windows == 0;
}
// If there are windows but they are all ignored, consider the workspace empty
@@ -300,16 +530,18 @@ void Workspace::updateTaskbar(const std::string& workspace_icon) {
}
auto window_box = Gtk::make_managed<Gtk::Box>(Gtk::ORIENTATION_HORIZONTAL);
window_box->set_tooltip_text(window_repr.window_title);
window_box->get_style_context()->add_class("taskbar-window");
window_box->set_tooltip_markup(window_repr.window_title);
auto button = Gtk::manage(new Gtk::Button());
button->set_relief(Gtk::RELIEF_NONE);
button->add(*window_box);
button->get_style_context()->add_class("taskbar-window");
if (window_repr.isActive) {
window_box->get_style_context()->add_class("active");
button->get_style_context()->add_class("active");
}
auto event_box = Gtk::manage(new Gtk::EventBox());
event_box->add(*window_box);
if (m_workspaceManager.onClickWindow() != "") {
event_box->signal_button_press_event().connect(
sigc::bind(sigc::mem_fun(*this, &Workspace::handleClick), window_repr.address));
button->signal_button_press_event().connect(
sigc::bind(sigc::mem_fun(*this, &Workspace::handleClick), window_repr.address), false);
}
auto text_before = fmt::format(fmt::runtime(m_workspaceManager.taskbarFormatBefore()),
@@ -334,22 +566,32 @@ void Workspace::updateTaskbar(const std::string& workspace_icon) {
window_box->pack_start(*window_label_after, true, true);
}
m_content.pack_start(*event_box, true, false);
event_box->show_all();
m_content.pack_start(*button, true, false);
button->show_all();
};
if (m_workspaceManager.taskbarReverseDirection()) {
for (auto it = m_windowMap.rbegin(); it != m_windowMap.rend(); ++it) {
auto rend_it = m_workspaceManager.maxWindows() == 0
? m_windowMap.rend()
: m_windowMap.rbegin() + m_workspaceManager.maxWindows();
for (auto it = m_windowMap.rbegin(); it != rend_it; ++it) {
processWindow(*it);
}
} else {
for (const auto& window_repr : m_windowMap) {
processWindow(window_repr);
auto end_it = m_workspaceManager.maxWindows() == 0
? m_windowMap.end()
: m_windowMap.begin() + m_workspaceManager.maxWindows();
for (auto it = m_windowMap.begin(); it != end_it; ++it) {
processWindow(*it);
}
}
auto formatAfter = m_workspaceManager.formatAfter();
if (!formatAfter.empty()) {
const bool has_format_after = !formatAfter.empty();
if (has_format_after) {
m_labelAfter.set_markup(fmt::format(fmt::runtime(formatAfter), fmt::arg("id", id()),
fmt::arg("name", name()),
fmt::arg("icon", workspace_icon)));
+112 -21
View File
@@ -34,6 +34,9 @@ Workspaces::Workspaces(const std::string& id, const Bar& bar, const Json::Value&
}
Workspaces::~Workspaces() {
if (m_scrollEventConnection_.connected()) {
m_scrollEventConnection_.disconnect();
}
m_ipc.unregisterForIPC(this);
// wait for possible event handler to finish
std::lock_guard<std::mutex> lg(m_mutex);
@@ -43,6 +46,18 @@ void Workspaces::init() {
m_activeWorkspaceId = m_ipc.getSocket1JsonReply("activeworkspace")["id"].asInt();
initializeWorkspaces();
if (m_scrollEventConnection_.connected()) {
m_scrollEventConnection_.disconnect();
}
bool hasScrollConfig = config_["on-scroll-up"].isString() || config_["on-scroll-down"].isString();
if (barScroll() || hasScrollConfig) {
auto& window = const_cast<Bar&>(m_bar).window;
window.add_events(Gdk::SCROLL_MASK | Gdk::SMOOTH_SCROLL_MASK);
m_scrollEventConnection_ =
window.signal_scroll_event().connect(sigc::mem_fun(*this, &Workspaces::handleScroll));
}
dp.emit();
}
@@ -148,7 +163,8 @@ void Workspaces::extendOrphans(int workspaceId, Json::Value const& clientsJson)
}
}
std::string Workspaces::getRewrite(std::string window_class, std::string window_title) {
std::string Workspaces::getRewrite(const std::string& window_class,
const std::string& window_title) {
std::string windowReprKey;
if (windowRewriteConfigUsesTitle()) {
windowReprKey = fmt::format("class<{}> title<{}>", window_class, window_title);
@@ -189,7 +205,7 @@ void Workspaces::initializeWorkspaces() {
auto const workspacesJson = m_ipc.getSocket1JsonReply("workspaces");
auto const clientsJson = m_ipc.getSocket1JsonReply("clients");
for (Json::Value workspaceJson : workspacesJson) {
for (const auto& workspaceJson : workspacesJson) {
std::string workspaceName = workspaceJson["name"].asString();
if ((allOutputs() || m_bar.output->name == workspaceJson["monitor"].asString()) &&
(!workspaceName.starts_with("special") || showSpecial()) &&
@@ -263,7 +279,7 @@ void Workspaces::loadPersistentWorkspacesFromConfig(Json::Value const& clientsJs
// key is the workspace and value is array of monitors to create on
for (const Json::Value& monitor : value) {
if (monitor.isString() && monitor.asString() == currentMonitor) {
persistentWorkspacesToCreate.emplace_back(currentMonitor);
persistentWorkspacesToCreate.emplace_back(key);
break;
}
}
@@ -311,6 +327,10 @@ void Workspaces::loadPersistentWorkspacesFromWorkspaceRules(const Json::Value& c
// 2. the rule's monitor is the current monitor
// 3. no monitor is specified in the rule => assume it needs to be persistent on every monitor
if (allOutputs() || m_bar.output->name == monitor || monitor.empty()) {
// => skip ignore-workspaces even if its a persistent
if(isWorkspaceIgnored(workspace)) {
continue;
}
// => persistent workspace should be shown on this monitor
auto workspaceData = createMonitorWorkspaceData(workspace, m_bar.output->name);
workspaceData["persistent-rule"] = true;
@@ -324,8 +344,13 @@ void Workspaces::loadPersistentWorkspacesFromWorkspaceRules(const Json::Value& c
void Workspaces::onEvent(const std::string& ev) {
std::lock_guard<std::mutex> lock(m_mutex);
std::string eventName(begin(ev), begin(ev) + ev.find_first_of('>'));
std::string payload = ev.substr(eventName.size() + 2);
const auto separator = ev.find(">>");
if (separator == std::string::npos) {
spdlog::warn("Malformed Hyprland workspace event: {}", ev);
return;
}
std::string eventName = ev.substr(0, separator);
std::string payload = ev.substr(separator + 2);
if (eventName == "workspacev2") {
onWorkspaceActivated(payload);
@@ -393,7 +418,7 @@ void Workspaces::onWorkspaceCreated(std::string const& payload, Json::Value cons
auto const workspaceRules = m_ipc.getSocket1JsonReply("workspacerules");
auto const workspacesJson = m_ipc.getSocket1JsonReply("workspaces");
for (Json::Value workspaceJson : workspacesJson) {
for (auto workspaceJson : workspacesJson) {
const auto currentId = workspaceJson["id"].asInt();
if (currentId == *workspaceId) {
std::string workspaceName = workspaceJson["name"].asString();
@@ -488,19 +513,21 @@ void Workspaces::onMonitorFocused(std::string const& payload) {
void Workspaces::onWindowOpened(std::string const& payload) {
spdlog::trace("Window opened: {}", payload);
updateWindowCount();
size_t lastCommaIdx = 0;
size_t nextCommaIdx = payload.find(',');
std::string windowAddress = payload.substr(lastCommaIdx, nextCommaIdx - lastCommaIdx);
const auto firstComma = payload.find(',');
const auto secondComma =
firstComma == std::string::npos ? std::string::npos : payload.find(',', firstComma + 1);
const auto thirdComma =
secondComma == std::string::npos ? std::string::npos : payload.find(',', secondComma + 1);
if (firstComma == std::string::npos || secondComma == std::string::npos ||
thirdComma == std::string::npos) {
spdlog::warn("Malformed Hyprland openwindow payload: {}", payload);
return;
}
lastCommaIdx = nextCommaIdx;
nextCommaIdx = payload.find(',', nextCommaIdx + 1);
std::string workspaceName = payload.substr(lastCommaIdx + 1, nextCommaIdx - lastCommaIdx - 1);
lastCommaIdx = nextCommaIdx;
nextCommaIdx = payload.find(',', nextCommaIdx + 1);
std::string windowClass = payload.substr(lastCommaIdx + 1, nextCommaIdx - lastCommaIdx - 1);
std::string windowTitle = payload.substr(nextCommaIdx + 1, payload.length() - nextCommaIdx);
std::string windowAddress = payload.substr(0, firstComma);
std::string workspaceName = payload.substr(firstComma + 1, secondComma - firstComma - 1);
std::string windowClass = payload.substr(secondComma + 1, thirdComma - secondComma - 1);
std::string windowTitle = payload.substr(thirdComma + 1);
bool isActive = m_currentActiveWindowAddress == windowAddress;
m_windowsToCreate.emplace_back(workspaceName, windowAddress, windowClass, windowTitle, isActive);
@@ -635,13 +662,26 @@ auto Workspaces::parseConfig(const Json::Value& config) -> void {
populateBoolConfig(config, "special-visible-only", m_specialVisibleOnly);
populateBoolConfig(config, "persistent-only", m_persistentOnly);
populateBoolConfig(config, "active-only", m_activeOnly);
populateBoolConfig(config, "hide-active", m_hideActive);
populateBoolConfig(config, "move-to-monitor", m_moveToMonitor);
populateBoolConfig(config, "enable-bar-scroll", m_barScroll);
m_persistentWorkspaceConfig = config.get("persistent-workspaces", Json::Value());
populateSortByConfig(config);
populateIgnoreWorkspacesConfig(config);
populateFormatWindowSeparatorConfig(config);
const auto& groupThreshold = config["window-rewrite-group-threshold"];
if (groupThreshold.isInt()) {
m_windowRewriteGroupThreshold = groupThreshold.asInt();
}
const auto& groupFormat = config["window-rewrite-group-format"];
if (groupFormat.isString()) {
m_windowRewriteGroupFormat = groupFormat.asString();
}
populateWindowRewriteConfig(config);
populateMaxWindowsConfig(config);
if (withWindows) {
populateWorkspaceTaskbarConfig(config);
@@ -723,6 +763,15 @@ auto Workspaces::populateWindowRewriteConfig(const Json::Value& config) -> void
[this](std::string& window_rule) { return windowRewritePriorityFunction(window_rule); });
}
auto Workspaces::populateMaxWindowsConfig(const Json::Value& config) -> void {
if (config["max-windows"].isInt()) {
m_maxWindows = config["max-windows"].asInt();
if (m_maxWindows < 0) {
m_maxWindows = 0;
}
}
}
auto Workspaces::populateWorkspaceTaskbarConfig(const Json::Value& config) -> void {
const auto& workspaceTaskbar = config["workspace-taskbar"];
if (!workspaceTaskbar.isObject()) {
@@ -993,10 +1042,12 @@ void Workspaces::sortWorkspaces() {
void Workspaces::setUrgentWorkspace(std::string const& windowaddress) {
const Json::Value clientsJson = m_ipc.getSocket1JsonReply("clients");
const std::string normalizedAddress =
windowaddress.starts_with("0x") ? windowaddress : fmt::format("0x{}", windowaddress);
int workspaceId = -1;
for (Json::Value clientJson : clientsJson) {
if (clientJson["address"].asString().ends_with(windowaddress)) {
for (const auto& clientJson : clientsJson) {
if (clientJson["address"].asString() == normalizedAddress) {
workspaceId = clientJson["workspace"]["id"].asInt();
break;
}
@@ -1125,7 +1176,11 @@ std::string Workspaces::makePayload(Args const&... args) {
}
std::pair<std::string, std::string> Workspaces::splitDoublePayload(std::string const& payload) {
const std::string part1 = payload.substr(0, payload.find(','));
const auto separator = payload.find(',');
if (separator == std::string::npos) {
throw std::invalid_argument("Expected a two-part Hyprland payload");
}
const std::string part1 = payload.substr(0, separator);
const std::string part2 = payload.substr(part1.size() + 1);
return {part1, part2};
}
@@ -1134,6 +1189,9 @@ std::tuple<std::string, std::string, std::string> Workspaces::splitTriplePayload
std::string const& payload) {
const size_t firstComma = payload.find(',');
const size_t secondComma = payload.find(',', firstComma + 1);
if (firstComma == std::string::npos || secondComma == std::string::npos) {
throw std::invalid_argument("Expected a three-part Hyprland payload");
}
const std::string part1 = payload.substr(0, firstComma);
const std::string part2 = payload.substr(firstComma + 1, secondComma - (firstComma + 1));
@@ -1151,4 +1209,37 @@ std::optional<int> Workspaces::parseWorkspaceId(std::string const& workspaceIdSt
}
}
bool Workspaces::handleScroll(GdkEventScroll* e) {
// Ignore emulated scroll events on window
if (gdk_event_get_pointer_emulated((GdkEvent*)e)) {
return false;
}
// Check for custom scroll commands first; delegate to base class
if (config_["on-scroll-up"].isString() || config_["on-scroll-down"].isString()) {
return AModule::handleScroll(e);
}
auto dir = AModule::getScrollDir(e);
if (dir == SCROLL_DIR::NONE) {
return true;
}
if (dir == SCROLL_DIR::DOWN || dir == SCROLL_DIR::RIGHT) {
if (allOutputs()) {
IPC::dispatch("workspace", "e+1");
} else {
IPC::dispatch("workspace", "m+1");
}
} else if (dir == SCROLL_DIR::UP || dir == SCROLL_DIR::LEFT) {
if (allOutputs()) {
IPC::dispatch("workspace", "e-1");
} else {
IPC::dispatch("workspace", "m-1");
}
}
return true;
}
} // namespace waybar::modules::hyprland
+148 -15
View File
@@ -1,5 +1,6 @@
#include "modules/idle_inhibitor.hpp"
#include "ext-idle-notify-v1-client-protocol.h"
#include "idle-inhibit-unstable-v1-client-protocol.h"
#include "util/command.hpp"
@@ -11,11 +12,24 @@ waybar::modules::IdleInhibitor::IdleInhibitor(const std::string& id, const Bar&
: ALabel(config, "idle_inhibitor", id, "{status}", 0, false, true),
bar_(bar),
idle_inhibitor_(nullptr),
pid_(-1) {
idle_notification_(nullptr),
idle_timeout_ms_(0),
pid_(-1),
wait_for_activity_(false) {
if (waybar::Client::inst()->idle_inhibit_manager == nullptr) {
throw std::runtime_error("idle-inhibit not available");
}
// Read the wait-for-activity config option
if (config_["wait-for-activity"].isBool()) {
wait_for_activity_ = config_["wait-for-activity"].asBool();
// Check if ext-idle-notify protocol is available when wait-for-activity is enabled
if (wait_for_activity_ && waybar::Client::inst()->idle_notifier == nullptr) {
throw std::runtime_error("wait-for-activity requires ext-idle-notify-v1 protocol support");
}
}
if (waybar::modules::IdleInhibitor::modules.empty() && config_["start-activated"].isBool() &&
config_["start-activated"].asBool() != status) {
toggleStatus();
@@ -32,6 +46,8 @@ waybar::modules::IdleInhibitor::IdleInhibitor(const std::string& id, const Bar&
}
waybar::modules::IdleInhibitor::~IdleInhibitor() {
teardownIdleNotification();
if (idle_inhibitor_ != nullptr) {
zwp_idle_inhibitor_v1_destroy(idle_inhibitor_);
idle_inhibitor_ = nullptr;
@@ -77,6 +93,17 @@ auto waybar::modules::IdleInhibitor::update() -> void {
ALabel::update();
}
auto waybar::modules::IdleInhibitor::refresh(int sig) -> void {
if (config_["signal"].isInt() && sig == SIGRTMIN + config_["signal"].asInt()) {
toggleStatus();
// Make all other idle inhibitor modules update
for (auto const& module : waybar::modules::IdleInhibitor::modules) {
module->update();
}
}
}
void waybar::modules::IdleInhibitor::toggleStatus() {
status = !status;
@@ -88,21 +115,34 @@ void waybar::modules::IdleInhibitor::toggleStatus() {
if (status && config_["timeout"].isNumeric()) {
auto timeoutMins = config_["timeout"].asDouble();
int timeoutSecs = timeoutMins * 60;
idle_timeout_ms_ = timeoutSecs * 1000;
timeout_ = Glib::signal_timeout().connect_seconds(
[]() {
/* intentionally not tied to a module instance lifetime
* as the output with `this` can be disconnected
*/
spdlog::info("deactivating idle_inhibitor by timeout");
status = false;
for (auto const& module : waybar::modules::IdleInhibitor::modules) {
module->update();
}
/* disconnect */
return false;
},
timeoutSecs);
// If wait-for-activity is enabled, set up idle notification
if (wait_for_activity_) {
spdlog::debug("idle_inhibitor: wait-for-activity enabled, timeout: {} ms", idle_timeout_ms_);
// Tear down any existing notification first to ensure fresh setup
teardownIdleNotification();
setupIdleNotification();
} else {
// Original behavior: simple timeout
timeout_ = Glib::signal_timeout().connect_seconds(
[]() {
/* intentionally not tied to a module instance lifetime
* as the output with `this` can be disconnected
*/
spdlog::info("deactivating idle_inhibitor by timeout");
status = false;
for (auto const& module : waybar::modules::IdleInhibitor::modules) {
module->update();
}
/* disconnect */
return false;
},
timeoutSecs);
}
} else {
// When deactivated, tear down idle notification
teardownIdleNotification();
}
}
@@ -121,3 +161,96 @@ bool waybar::modules::IdleInhibitor::handleToggle(GdkEventButton* const& e) {
ALabel::handleToggle(e);
return true;
}
void waybar::modules::IdleInhibitor::handleIdled(void* data,
ext_idle_notification_v1* /*notification*/) {
spdlog::info("deactivating idle_inhibitor due to user inactivity");
status = false;
// Clean up the notification since we're deactivating
auto* self = static_cast<IdleInhibitor*>(data);
if (self != nullptr) {
self->teardownIdleNotification();
}
for (auto const& module : waybar::modules::IdleInhibitor::modules) {
module->update();
}
}
void waybar::modules::IdleInhibitor::handleResumed(void* data,
ext_idle_notification_v1* /*notification*/) {
// User became active again - notification will continue monitoring
spdlog::debug("user activity detected, idle_inhibitor still active");
}
void waybar::modules::IdleInhibitor::setupIdleNotification() {
spdlog::debug("idle_inhibitor: setting up idle notification");
// Clean up any existing notification first
if (idle_notification_ != nullptr) {
spdlog::debug("idle_inhibitor: cleaning up existing notification before setup");
teardownIdleNotification();
}
auto* client = waybar::Client::inst();
if (client->idle_notifier == nullptr) {
spdlog::error("ext-idle-notify protocol not available");
return;
}
// Get the wayland seat from the display
auto* gdk_seat = gdk_display_get_default_seat(client->gdk_display->gobj());
if (gdk_seat == nullptr) {
spdlog::error("failed to get default seat");
return;
}
auto* wl_seat = gdk_wayland_seat_get_wl_seat(gdk_seat);
// Check protocol version to determine which function to use
uint32_t version =
wl_proxy_get_version(reinterpret_cast<struct wl_proxy*>(client->idle_notifier));
spdlog::debug("idle_inhibitor: creating notification with timeout {} ms (protocol version {})",
idle_timeout_ms_, version);
if (version >= 2) {
// Version 2+: Use get_input_idle_notification which ignores idle inhibitors
// This allows us to detect actual user inactivity even while the inhibitor is active
spdlog::debug("idle_inhibitor: using get_input_idle_notification (ignores inhibitors)");
idle_notification_ = ext_idle_notifier_v1_get_input_idle_notification(
client->idle_notifier, idle_timeout_ms_, wl_seat);
} else {
// Version 1: Fall back to get_idle_notification
// WARNING: This respects idle inhibitors, so it won't fire while inhibitor is active
spdlog::warn(
"idle_inhibitor: ext-idle-notifier-v1 version {} doesn't support "
"get_input_idle_notification, "
"wait-for-activity may not work correctly",
version);
idle_notification_ = ext_idle_notifier_v1_get_idle_notification(client->idle_notifier,
idle_timeout_ms_, wl_seat);
}
if (idle_notification_ == nullptr) {
spdlog::error("idle_inhibitor: failed to create idle notification");
return;
}
static const struct ext_idle_notification_v1_listener idle_notification_listener = {
.idled = &IdleInhibitor::handleIdled,
.resumed = &IdleInhibitor::handleResumed,
};
ext_idle_notification_v1_add_listener(idle_notification_, &idle_notification_listener, this);
wl_display_roundtrip(client->wl_display);
spdlog::debug("idle_inhibitor: idle notification setup complete");
}
void waybar::modules::IdleInhibitor::teardownIdleNotification() {
if (idle_notification_ != nullptr) {
spdlog::debug("idle_inhibitor: tearing down idle notification");
ext_idle_notification_v1_destroy(idle_notification_);
idle_notification_ = nullptr;
}
}
+29 -14
View File
@@ -1,5 +1,7 @@
#include "modules/image.hpp"
#include <config.hpp>
waybar::modules::Image::Image(const std::string& id, const Json::Value& config)
: AModule(config, "image", id), box_(Gtk::ORIENTATION_HORIZONTAL, 0) {
box_.pack_start(image_);
@@ -14,20 +16,32 @@ waybar::modules::Image::Image(const std::string& id, const Json::Value& config)
size_ = config["size"].asInt();
interval_ = config_["interval"] == "once"
? std::chrono::milliseconds::max()
: std::chrono::milliseconds(std::max(
1L, // Minimum 1ms due to millisecond precision
static_cast<long>(
(config_["interval"].isNumeric() ? config_["interval"].asDouble() : 0) *
1000)));
const auto once = std::chrono::milliseconds::max();
if (!config_.isMember("interval") || config_["interval"].isNull() ||
config_["interval"] == "once") {
interval_ = once;
} else if (config_["interval"].isNumeric()) {
const auto interval_seconds = config_["interval"].asDouble();
if (interval_seconds <= 0) {
interval_ = once;
} else {
interval_ =
std::chrono::milliseconds(std::max(1L, // Minimum 1ms due to millisecond precision
static_cast<long>(interval_seconds * 1000)));
}
} else {
interval_ = once;
}
if (size_ == 0) {
size_ = 16;
}
if (interval_.count() == 0) {
interval_ = std::chrono::milliseconds::max();
if (config_["path"].isString()) {
auto result = Config::tryExpandPath(config_["path"].asString(), "");
path_ = result.empty() ? "" : result.front();
} else {
path_.clear();
}
delayWorker();
@@ -41,19 +55,20 @@ void waybar::modules::Image::delayWorker() {
}
void waybar::modules::Image::refresh(int sig) {
#ifdef SIGRTMIN
if (config_["signal"].isInt() && sig == SIGRTMIN + config_["signal"].asInt()) {
thread_.wake_up();
}
#endif
}
auto waybar::modules::Image::update() -> void {
if (config_["path"].isString()) {
path_ = config_["path"].asString();
} else if (config_["exec"].isString()) {
if (config_["exec"].isString()) {
output_ = util::command::exec(config_["exec"].asString(), "");
parseOutputRaw();
} else {
path_ = "";
// expand path if "~" or "$HOME" is present in original path
auto result = Config::tryExpandPath(path_, "");
path_ = result.empty() ? "" : result.front();
}
if (Glib::file_test(path_, Glib::FILE_TEST_EXISTS)) {
+3 -2
View File
@@ -85,7 +85,8 @@ auto getInhibitors(const Json::Value& config) -> std::string {
if (config["what"].isArray()) {
inhibitors = checkInhibitor(config["what"][0].asString());
for (decltype(config["what"].size()) i = 1; i < config["what"].size(); ++i) {
inhibitors += ":" + checkInhibitor(config["what"][i].asString());
inhibitors.append(":");
inhibitors.append(checkInhibitor(config["what"][i].asString()));
}
return inhibitors;
}
@@ -123,7 +124,7 @@ auto Inhibitor::update() -> void {
label_.get_style_context()->add_class(status_text);
if (tooltipEnabled()) {
label_.set_tooltip_text(status_text);
label_.set_tooltip_markup(status_text);
}
return ALabel::update();
+5 -2
View File
@@ -53,7 +53,7 @@ std::string JACK::JACKState() {
auto JACK::update() -> void {
std::string format;
std::string state = JACKState();
float latency = 1000 * (float)bufsize_ / (float)samplerate_;
float latency = samplerate_ > 0 ? 1000.0f * (float)bufsize_ / (float)samplerate_ : 0.0f;
if (label_.get_style_context()->has_class("xrun")) {
label_.get_style_context()->remove_class("xrun");
@@ -80,7 +80,7 @@ auto JACK::update() -> void {
if (tooltipEnabled()) {
std::string tooltip_format = "{bufsize}/{samplerate} {latency}ms";
if (config_["tooltip-format"].isString()) tooltip_format = config_["tooltip-format"].asString();
label_.set_tooltip_text(fmt::format(
label_.set_tooltip_markup(fmt::format(
fmt::runtime(tooltip_format), fmt::arg("load", std::round(load_)),
fmt::arg("bufsize", bufsize_), fmt::arg("samplerate", samplerate_),
fmt::arg("latency", fmt::format("{:.2f}", latency)), fmt::arg("xruns", xruns_)));
@@ -91,16 +91,19 @@ auto JACK::update() -> void {
}
int JACK::bufSize(jack_nframes_t size) {
std::lock_guard<std::mutex> lock(mutex_);
bufsize_ = size;
return 0;
}
int JACK::sampleRate(jack_nframes_t rate) {
std::lock_guard<std::mutex> lock(mutex_);
samplerate_ = rate;
return 0;
}
int JACK::xrun() {
std::lock_guard<std::mutex> lock(mutex_);
xruns_ += 1;
state_ = "xrun";
return 0;
+85 -15
View File
@@ -78,6 +78,53 @@ auto supportsLockStates(const libevdev* dev) -> bool {
libevdev_has_event_code(dev, EV_LED, LED_SCROLLL);
}
auto isCommonFormatIcons(const Json::Value& config) -> bool {
return config["format-icons"].isObject() && (config["format-icons"]["locked"].isString() ||
config["format-icons"]["unlocked"].isString());
}
auto keyStateToIcons(const Json::Value& config)
-> std::unordered_map<std::string, std::vector<std::string>> {
std::unordered_map<std::string, std::vector<std::string>> key_icon_states;
std::vector<std::string> default_icons = {"unlocked", "locked"};
if (isCommonFormatIcons(config)) {
std::vector<std::string> icons = {
config["format-icons"]["unlocked"].isString()
? config["format-icons"]["unlocked"].asString()
: "unlocked",
config["format-icons"]["locked"].isString() ? config["format-icons"]["locked"].asString()
: "locked",
};
key_icon_states["Lock"] = icons;
return key_icon_states;
}
bool found_any = false;
for (const auto& key : std::vector<std::string>{"numlock", "capslock", "scrolllock"}) {
std::string map_key = key.substr(0, key.length() - 4);
map_key[0] = std::toupper(map_key[0]);
if (config["format-icons"].isObject() && config["format-icons"][key].isObject()) {
std::string unlocked = config["format-icons"][key]["unlocked"].isString()
? config["format-icons"][key]["unlocked"].asString()
: "unlocked";
std::string locked = config["format-icons"][key]["locked"].isString()
? config["format-icons"][key]["locked"].asString()
: "locked";
key_icon_states[map_key] = {unlocked, locked};
found_any = true;
}
}
if (!found_any) {
key_icon_states["Num"] = default_icons;
key_icon_states["Caps"] = default_icons;
key_icon_states["Scroll"] = default_icons;
}
return key_icon_states;
}
waybar::modules::KeyboardState::KeyboardState(const std::string& id, const Bar& bar,
const Json::Value& config)
: AModule(config, "keyboard-state", id, false, !config["disable-scroll"].asBool()),
@@ -98,12 +145,7 @@ waybar::modules::KeyboardState::KeyboardState(const std::string& id, const Bar&
: "{name} {icon}"),
interval_(
std::chrono::seconds(config_["interval"].isUInt() ? config_["interval"].asUInt() : 1)),
icon_locked_(config_["format-icons"]["locked"].isString()
? config_["format-icons"]["locked"].asString()
: "locked"),
icon_unlocked_(config_["format-icons"]["unlocked"].isString()
? config_["format-icons"]["unlocked"].asString()
: "unlocked"),
key_icon_states_(keyStateToIcons(config_)),
devices_path_("/dev/input/"),
libinput_(nullptr),
libinput_devices_({}) {
@@ -232,9 +274,12 @@ waybar::modules::KeyboardState::KeyboardState(const std::string& id, const Bar&
}
tryAddDevice(dev_path);
} else if (event->mask & IN_DELETE) {
std::lock_guard<std::mutex> lock(devices_mutex_);
auto it = libinput_devices_.find(dev_path);
if (it != libinput_devices_.end()) {
spdlog::info("Keyboard {} has been removed.", dev_path);
libinput_path_remove_device(it->second);
libinput_device_unref(it->second);
libinput_devices_.erase(it);
}
}
@@ -245,6 +290,7 @@ waybar::modules::KeyboardState::KeyboardState(const std::string& id, const Bar&
}
waybar::modules::KeyboardState::~KeyboardState() {
std::lock_guard<std::mutex> lock(devices_mutex_);
for (const auto& [_, dev_ptr] : libinput_devices_) {
libinput_path_remove_device(dev_ptr);
}
@@ -256,11 +302,17 @@ auto waybar::modules::KeyboardState::update() -> void {
try {
std::string dev_path;
if (config_["device-path"].isString() &&
libinput_devices_.find(config_["device-path"].asString()) != libinput_devices_.end()) {
dev_path = config_["device-path"].asString();
} else {
dev_path = libinput_devices_.begin()->first;
{
std::lock_guard<std::mutex> lock(devices_mutex_);
if (libinput_devices_.empty()) {
return;
}
if (config_["device-path"].isString() &&
libinput_devices_.find(config_["device-path"].asString()) != libinput_devices_.end()) {
dev_path = config_["device-path"].asString();
} else {
dev_path = libinput_devices_.begin()->first;
}
}
int fd = openFile(dev_path, O_NONBLOCK | O_CLOEXEC | O_RDONLY);
auto dev = openDevice(fd);
@@ -280,7 +332,7 @@ auto waybar::modules::KeyboardState::update() -> void {
bool state;
Gtk::Label& label;
const std::string& format;
const char* name;
const std::string name;
} label_states[] = {
{(bool)numl, numlock_label_, numlock_format_, "Num"},
{(bool)capsl, capslock_label_, capslock_format_, "Caps"},
@@ -288,8 +340,21 @@ auto waybar::modules::KeyboardState::update() -> void {
};
for (auto& label_state : label_states) {
std::string text;
std::string map_key = isCommonFormatIcons(config_) ? "Lock" : label_state.name;
if (key_icon_states_.find(map_key) == key_icon_states_.end()) {
spdlog::warn("keyboard-state: Missing icon configuration for '{}'", map_key);
continue;
}
auto& icons = key_icon_states_[map_key];
if (icons.size() < 2) {
spdlog::warn("keyboard-state: Invalid icon vector size for '{}'", map_key);
continue;
}
text = fmt::format(fmt::runtime(label_state.format),
fmt::arg("icon", label_state.state ? icon_locked_ : icon_unlocked_),
fmt::arg("icon", label_state.state ? icons[1] : icons[0]),
fmt::arg("name", label_state.name));
label_state.label.set_markup(text);
if (label_state.state) {
@@ -308,10 +373,15 @@ auto waybar::modules ::KeyboardState::tryAddDevice(const std::string& dev_path)
auto dev = openDevice(fd);
if (supportsLockStates(dev)) {
spdlog::info("Found device {} at '{}'", libevdev_get_name(dev), dev_path);
std::lock_guard<std::mutex> lock(devices_mutex_);
if (libinput_devices_.find(dev_path) == libinput_devices_.end()) {
auto device = libinput_path_add_device(libinput_, dev_path.c_str());
libinput_device_ref(device);
libinput_devices_[dev_path] = device;
if (device) {
libinput_device_ref(device);
libinput_devices_[dev_path] = device;
} else {
spdlog::warn("keyboard-state: Failed to add device to libinput: {}", dev_path);
}
}
}
libevdev_free(dev);
+1 -1
View File
@@ -22,7 +22,7 @@ auto waybar::modules::Load::update() -> void {
auto [load1, load5, load15] = Load::getLoad();
if (tooltipEnabled()) {
auto tooltip = fmt::format("Load 1: {}\nLoad 5: {}\nLoad 15: {}", load1, load5, load15);
label_.set_tooltip_text(tooltip);
label_.set_tooltip_markup(tooltip);
}
auto format = format_;
auto state = getState(load1);
+317
View File
@@ -0,0 +1,317 @@
#include "modules/mango/backend.hpp"
#include <fcntl.h>
#include <poll.h>
#include <spdlog/spdlog.h>
#include <sys/poll.h>
#include <sys/socket.h>
#include <sys/un.h>
#include <unistd.h>
#include <sstream>
#include <thread>
#include <vector>
#include "util/scoped_fd.hpp"
namespace waybar::modules::mango {
int IPC::connectToSocket() {
const char* socket_path = getenv("MANGO_INSTANCE_SIGNATURE");
if (!socket_path) {
throw std::runtime_error("Mango IPC: MANGO_INSTANCE_SIGNATURE not set");
}
struct sockaddr_un addr;
util::ScopedFd fd(socket(AF_UNIX, SOCK_STREAM, 0));
if (fd == -1) throw std::runtime_error("socket() failed");
addr.sun_family = AF_UNIX;
strncpy(addr.sun_path, socket_path, sizeof(addr.sun_path) - 1);
addr.sun_path[sizeof(addr.sun_path) - 1] = 0;
if (connect(fd, (struct sockaddr*)&addr, sizeof(addr)) == -1) {
throw std::runtime_error("connect() failed");
}
return fd.release();
}
Json::Value IPC::sendCommand(const std::string& cmd) {
util::ScopedFd fd(IPC::connectToSocket());
std::string full_cmd = cmd + "\n";
ssize_t total_written = 0;
while (total_written < (ssize_t)full_cmd.size()) {
ssize_t res = write(fd, full_cmd.c_str() + total_written, full_cmd.size() - total_written);
if (res < 0) {
if (errno == EINTR) continue;
throw std::runtime_error("Failed to write command");
}
total_written += res;
}
char buf[4096];
std::string response;
while (true) {
ssize_t n = read(fd, buf, sizeof(buf) - 1);
if (n <= 0) {
if (n == 0) break;
if (errno == EINTR || errno == EAGAIN || errno == EWOULDBLOCK) continue;
throw std::runtime_error("Read error");
}
buf[n] = '\0';
response += buf;
if (response.find('\n') != std::string::npos) break;
}
Json::Value root;
std::istringstream iss(response);
Json::CharReaderBuilder builder;
std::string errors;
if (!Json::parseFromStream(builder, iss, &root, &errors)) {
throw std::runtime_error("JSON parse error: " + errors);
}
return root;
}
Json::Value IPC::send(const Json::Value& request) {
if (!request.isMember("command")) {
throw std::runtime_error("Mango IPC: request must have 'command' field");
}
return sendCommand(request["command"].asString());
}
void IPC::sendAsync(const Json::Value& request) {
if (!request.isMember("command")) {
spdlog::error("Mango IPC: request must have 'command' field");
return;
}
std::string cmd = request["command"].asString();
std::thread([cmd]() {
try {
IPC::sendCommand(cmd);
} catch (const std::exception& e) {
spdlog::error("IPC async send failed: {}", e.what());
}
}).detach();
}
IPC::IPC() : sockfd_(-1), active_client_(Json::nullValue) { startIPC(); }
IPC::~IPC() {
if (sockfd_ != -1) close(sockfd_);
if (ipc_thread_.joinable()) ipc_thread_.join();
}
void IPC::startIPC() {
sockfd_ = IPC::connectToSocket();
ipc_thread_ = std::thread([this]() {
spdlog::info("Mango IPC thread started");
struct pollfd pfd;
pfd.fd = sockfd_;
pfd.events = POLLIN;
const std::vector<std::string> subs = {"watch all-monitors"};
for (const auto& cmd : subs) {
if (write(sockfd_, cmd.c_str(), cmd.size()) != (ssize_t)cmd.size() ||
write(sockfd_, "\n", 1) != 1) {
spdlog::error("Failed to subscribe to {}", cmd);
return;
}
}
char buf[4096];
std::string buffer;
while (true) {
int ret = poll(&pfd, 1, 1000);
if (ret == 0) continue;
if (ret < 0) {
if (errno == EINTR) continue;
spdlog::error("IPC poll error: {}", strerror(errno));
break;
}
if (pfd.revents & (POLLERR | POLLHUP | POLLNVAL)) {
spdlog::info("Mango IPC socket closed or invalid");
break;
}
if (pfd.revents & POLLIN) {
ssize_t n = read(sockfd_, buf, sizeof(buf));
if (n == 0) {
spdlog::info("Mango IPC connection closed");
break;
}
if (n < 0) {
if (errno == EINTR) continue;
spdlog::error("IPC read error: {}", strerror(errno));
break;
}
buffer.append(buf, n);
size_t pos;
while ((pos = buffer.find('\n')) != std::string::npos) {
std::string line = buffer.substr(0, pos);
buffer.erase(0, pos + 1);
if (line.empty()) continue;
try {
parseIPC(line);
} catch (const std::exception& e) {
spdlog::warn("Failed to parse IPC line: {} - {}", line, e.what());
}
}
}
}
});
}
void IPC::parseIPC(const std::string& line) {
Json::Value root;
Json::CharReaderBuilder builder;
std::string errors;
std::istringstream iss(line);
if (!Json::parseFromStream(builder, iss, &root, &errors)) {
throw std::runtime_error("JSON parse error: " + errors);
}
if (root.isMember("monitors") && root["monitors"].isArray()) {
for (const auto& mon : root["monitors"]) {
handleMonitorUpdate(mon);
}
Json::Value active_monitor;
for (const auto& mon : root["monitors"]) {
if (mon["active"].asBool()) {
active_monitor = mon;
break;
}
}
if (!active_monitor.isNull()) {
const auto& active_client = active_monitor["active_client"];
updateFocusingClient(active_client);
if (active_monitor.isMember("keyboardlayout")) {
updateKeyboardLayout(active_monitor["keyboardlayout"].asString());
}
if (active_monitor.isMember("keymode")) {
std::lock_guard<std::mutex> lock(data_mutex_);
keymode_ = active_monitor["keymode"].asString();
}
}
std::vector<EventHandler*> handlers_to_notify;
{
std::lock_guard<std::mutex> lock(callback_mutex_);
for (auto& [ev, handler] : callbacks_) {
if (ev == "monitor") {
handlers_to_notify.push_back(handler);
}
}
}
for (auto* handler : handlers_to_notify) {
handler->onEvent(root);
}
return;
}
spdlog::debug("Unhandled IPC message: {}", line);
}
std::unordered_map<std::string, Json::Value> IPC::getMonitors() const {
std::lock_guard<std::mutex> lock(data_mutex_);
return monitors_;
}
IPC& IPC::getInstance() {
static IPC instance;
return instance;
}
Json::Value IPC::getMonitor(const std::string& name) {
std::lock_guard<std::mutex> lock(data_mutex_);
auto it = monitors_.find(name);
if (it != monitors_.end()) {
return it->second;
}
return Json::nullValue;
}
std::string IPC::getKeyboardLayout() const {
std::lock_guard<std::mutex> lock(data_mutex_);
return keyboard_layout_;
}
std::string IPC::getKeymode() const {
std::lock_guard<std::mutex> lock(data_mutex_);
return keymode_;
}
Json::Value IPC::getActiveClientForMonitor(const std::string& name) const {
std::lock_guard<std::mutex> lock(data_mutex_);
auto it = monitors_.find(name);
if (it != monitors_.end() && it->second.isMember("active_client")) {
return it->second["active_client"];
}
return Json::nullValue;
}
std::string IPC::getLayoutSymbolForMonitor(const std::string& name) const {
std::lock_guard<std::mutex> lock(data_mutex_);
auto it = monitors_.find(name);
if (it != monitors_.end() && it->second.isMember("layout_symbol")) {
return it->second["layout_symbol"].asString();
}
return {};
}
void IPC::handleMonitorUpdate(const Json::Value& mon) {
std::lock_guard<std::mutex> lock(data_mutex_);
monitors_[mon["name"].asString()] = mon;
}
void IPC::updateFocusingClient(const Json::Value& client) {
{
std::lock_guard<std::mutex> lock(data_mutex_);
active_client_ = client;
if (client.isNull() || !client.isObject() || client["id"].isNull()) {
focusing_client_id_ = 0;
} else {
focusing_client_id_ = client["id"].asUInt64();
clients_[focusing_client_id_] = client;
}
}
}
void IPC::updateKeyboardLayout(const std::string& layout) {
{
std::lock_guard<std::mutex> lock(data_mutex_);
keyboard_layout_ = layout;
}
}
void IPC::registerForIPC(const std::string& ev, EventHandler* handler) {
if (!handler) return;
std::lock_guard<std::mutex> lock(callback_mutex_);
callbacks_.emplace_back(ev, handler);
}
void IPC::unregisterForIPC(EventHandler* handler) {
if (!handler) return;
std::lock_guard<std::mutex> lock(callback_mutex_);
for (auto it = callbacks_.begin(); it != callbacks_.end();) {
if (it->second == handler)
it = callbacks_.erase(it);
else
++it;
}
}
} // namespace waybar::modules::mango
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#include "modules/mango/keymode.hpp"
#include <spdlog/spdlog.h>
namespace waybar::modules::mango {
Keymode::Keymode(const std::string& id, const Bar& bar, const Json::Value& config)
: ALabel(config, "keymode", id, "{}", 0, false), bar_(bar) {
IPC::getInstance().registerForIPC("monitor", this);
dp.emit();
}
Keymode::~Keymode() { IPC::getInstance().unregisterForIPC(this); }
void Keymode::onEvent(const Json::Value& ev) { dp.emit(); }
void Keymode::doUpdate() {
std::lock_guard<std::mutex> lock(mutex_);
std::string current = IPC::getInstance().getKeymode();
// if keymode is empty, hide the label
if (current.empty()) {
label_.hide();
last_keymode_.clear();
return;
}
// if keymode is the same as last time, skip style changes
if (current != last_keymode_) {
if (!last_keymode_.empty()) label_.get_style_context()->remove_class(last_keymode_);
label_.get_style_context()->add_class(current);
last_keymode_ = current;
}
// support config's format-keymode custom format (such as format-default, format-resize, etc.)
std::string text;
std::string format_key = "format-" + current;
if (config_.isMember(format_key)) {
text = fmt::format(fmt::runtime(config_[format_key].asString()), fmt::arg("mode", current));
} else {
text = fmt::format(fmt::runtime(format_), fmt::arg("mode", current));
}
if (!text.empty()) {
label_.show();
label_.set_markup(text);
} else {
label_.hide();
}
}
void Keymode::update() {
doUpdate();
ALabel::update();
}
} // namespace waybar::modules::mango
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#include "modules/mango/language.hpp"
#include <spdlog/spdlog.h>
#include <xkbcommon/xkbcommon.h>
#include <xkbcommon/xkbregistry.h>
#include "util/string.hpp"
namespace waybar::modules::mango {
Language::Language(const std::string& id, const Bar& bar, const Json::Value& config)
: ALabel(config, "language", id, "{}", 0, false), bar_(bar), rxkb_ctx_(nullptr) {
rxkb_ctx_ = rxkb_context_new(RXKB_CONTEXT_LOAD_EXOTIC_RULES);
if (rxkb_ctx_) {
rxkb_context_parse_default_ruleset(rxkb_ctx_);
}
IPC::getInstance().registerForIPC("monitor", this);
updateFromIPC();
dp.emit();
}
Language::~Language() {
IPC::getInstance().unregisterForIPC(this);
if (rxkb_ctx_) rxkb_context_unref(rxkb_ctx_);
}
void Language::updateFromIPC() {
std::lock_guard<std::mutex> lock(mutex_);
std::string layout = IPC::getInstance().getKeyboardLayout();
layouts_.clear();
if (!layout.empty()) {
Layout l = getLayout(layout);
layouts_.push_back(l);
current_idx_ = 0;
} else {
current_idx_ = 0;
}
}
void Language::doUpdate() {
std::lock_guard<std::mutex> lock(mutex_);
if (layouts_.empty() || current_idx_ >= layouts_.size()) {
label_.hide();
return;
}
const auto& layout = layouts_[current_idx_];
if (!last_short_name_.empty()) label_.get_style_context()->remove_class(last_short_name_);
if (!layout.short_name.empty()) {
label_.get_style_context()->add_class(layout.short_name);
last_short_name_ = layout.short_name;
}
std::string layoutName;
std::string variant_key = "format-" + layout.short_description + "-" + layout.variant;
if (!layout.variant.empty() && config_.isMember(variant_key)) {
layoutName =
fmt::format(fmt::runtime(config_[variant_key].asString()),
fmt::arg("long", layout.full_name), fmt::arg("short", layout.short_name),
fmt::arg("shortDescription", layout.short_description),
fmt::arg("variant", layout.variant));
} else if (config_.isMember("format-" + layout.short_description)) {
std::string key = "format-" + layout.short_description;
layoutName =
fmt::format(fmt::runtime(config_[key].asString()), fmt::arg("long", layout.full_name),
fmt::arg("short", layout.short_name),
fmt::arg("shortDescription", layout.short_description),
fmt::arg("variant", layout.variant));
} else {
layoutName = fmt::format(fmt::runtime(format_), fmt::arg("long", layout.full_name),
fmt::arg("short", layout.short_name),
fmt::arg("shortDescription", layout.short_description),
fmt::arg("variant", layout.variant));
}
if (!layoutName.empty()) {
label_.show();
label_.set_markup(layoutName);
} else {
label_.hide();
}
}
void Language::update() {
updateFromIPC();
doUpdate();
ALabel::update();
}
void Language::onEvent(const Json::Value& ev) {
updateFromIPC();
dp.emit();
}
Language::Layout Language::getLayout(const std::string& fullName) {
if (rxkb_ctx_) {
rxkb_layout* layout = rxkb_layout_first(rxkb_ctx_);
while (layout != nullptr) {
std::string desc = rxkb_layout_get_description(layout);
if (desc == fullName) {
std::string short_name = rxkb_layout_get_name(layout);
const char* variant_ptr = rxkb_layout_get_variant(layout);
std::string variant = variant_ptr ? variant_ptr : "";
const char* brief_ptr = rxkb_layout_get_brief(layout);
std::string short_description = brief_ptr ? brief_ptr : "";
if (short_description.empty()) {
short_description = short_name;
}
short_description = short_name;
Layout info{desc, short_name, variant, short_description};
return info;
}
layout = rxkb_layout_next(layout);
}
}
spdlog::warn("mango language: rxkb failed to find layout '{}', using string parsing fallback",
fullName);
Layout l;
l.full_name = fullName;
l.variant = "";
size_t paren_start = fullName.find('(');
size_t paren_end = fullName.find(')');
if (paren_start != std::string::npos && paren_end != std::string::npos &&
paren_end > paren_start) {
l.short_name = fullName.substr(paren_start + 1, paren_end - paren_start - 1);
} else if (fullName.length() >= 2) {
l.short_name = fullName.substr(0, 2);
} else {
l.short_name = fullName;
}
std::transform(l.short_name.begin(), l.short_name.end(), l.short_name.begin(),
[](unsigned char c) { return std::tolower(c); });
l.short_description = l.short_name;
return l;
}
} // namespace waybar::modules::mango
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#include "modules/mango/layout.hpp"
#include <spdlog/spdlog.h>
namespace waybar::modules::mango {
Layout::Layout(const std::string& id, const Bar& bar, const Json::Value& config)
: ALabel(config, "layout", id, "{}", 0, false), bar_(bar) {
IPC::getInstance().registerForIPC("monitor", this);
dp.emit();
}
Layout::~Layout() { IPC::getInstance().unregisterForIPC(this); }
void Layout::onEvent(const Json::Value& ev) { dp.emit(); }
void Layout::doUpdate() {
std::lock_guard<std::mutex> lock(mutex_);
std::string symbol = IPC::getInstance().getLayoutSymbolForMonitor(bar_.output->name);
if (symbol.empty()) {
label_.hide();
last_symbol_.clear();
return;
}
if (symbol != last_symbol_) {
if (!last_symbol_.empty()) label_.get_style_context()->remove_class(last_symbol_);
label_.get_style_context()->add_class(symbol);
last_symbol_ = symbol;
}
std::string text;
std::string format_key = "format-" + symbol;
if (config_.isMember(format_key)) {
text = fmt::format(fmt::runtime(config_[format_key].asString()), fmt::arg("symbol", symbol));
} else {
text = fmt::format(fmt::runtime(format_), fmt::arg("symbol", symbol));
}
if (!text.empty()) {
label_.show();
label_.set_markup(text);
} else {
label_.hide();
}
}
void Layout::update() {
doUpdate();
ALabel::update();
}
} // namespace waybar::modules::mango
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#include "modules/mango/window.hpp"
#include <spdlog/spdlog.h>
#include "util/rewrite_string.hpp"
#include "util/sanitize_str.hpp"
namespace waybar::modules::mango {
Window::Window(const std::string& id, const Bar& bar, const Json::Value& config)
: AAppIconLabel(config, "window", id, "{title}", 0, true), bar_(bar) {
IPC::getInstance().registerForIPC("monitor", this);
dp.emit();
}
Window::~Window() { IPC::getInstance().unregisterForIPC(this); }
void Window::onEvent(const Json::Value& ev) { dp.emit(); }
void Window::doUpdate() {
std::lock_guard<std::mutex> lock(mutex_);
const Json::Value& client = IPC::getInstance().getActiveClientForMonitor(bar_.output->name);
// judge whether to hide: active_client is null or title field is null
if (client.isNull() || !client.isObject() || client["title"].isNull()) {
event_box_.hide();
label_.hide();
updateAppIconName("", "");
setClass("empty", true);
if (!oldAppId_.empty()) setClass(oldAppId_, false);
oldAppId_.clear();
return;
}
// if we have a valid client, show the label and update content
event_box_.show();
label_.show();
setClass("empty", false);
std::string title = client["title"].asString();
std::string appid = client["appid"].asString();
std::string sanitized_title = waybar::util::sanitize_string(title);
std::string sanitized_appid = waybar::util::sanitize_string(appid);
label_.set_markup(waybar::util::rewriteString(
fmt::format(fmt::runtime(format_), fmt::arg("title", sanitized_title),
fmt::arg("app_id", sanitized_appid)),
config_["rewrite"]));
updateAppIconName(appid, "");
if (tooltipEnabled()) label_.set_tooltip_markup(title);
// Solo judgment
bool solo = false;
if (client.isMember("tags") && client["tags"].isArray() && client["tags"].size() == 1) {
int tag_idx = client["tags"][0].asInt();
const auto& monitors = IPC::getInstance().getMonitors();
auto mon_it = monitors.find(client["monitor"].asString());
if (mon_it != monitors.end()) {
const auto& tags = mon_it->second["tags"];
for (const auto& tag : tags) {
if (tag["index"].asInt() == tag_idx) {
solo = (tag["client_count"].asInt() == 1);
break;
}
}
}
}
setClass("solo", solo);
if (!appid.empty()) setClass(appid, solo);
if (oldAppId_ != appid) {
if (!oldAppId_.empty()) setClass(oldAppId_, false);
oldAppId_ = appid;
}
}
void Window::update() {
doUpdate();
AAppIconLabel::update();
}
void Window::setClass(const std::string& className, bool enable) {
auto style_context = event_box_.get_style_context();
if (enable) {
if (!style_context->has_class(className)) style_context->add_class(className);
} else {
style_context->remove_class(className);
}
}
} // namespace waybar::modules::mango
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#include "modules/mango/workspaces.hpp"
#include <spdlog/spdlog.h>
#include <algorithm>
namespace waybar::modules::mango {
Workspaces::Workspaces(const std::string& id, const Bar& bar, const Json::Value& config)
: AModule(config, "workspaces", id, false, false), bar_(bar), box_(bar.orientation, 0) {
box_.set_name("workspaces");
if (!id.empty()) box_.get_style_context()->add_class(id);
box_.get_style_context()->add_class(MODULE_CLASS);
event_box_.add(box_);
if (config_["on-click"].isString()) on_click_left_ = config_["on-click"].asString();
if (config_["on-click-middle"].isString())
on_click_middle_ = config_["on-click-middle"].asString();
if (config_["on-click-right"].isString()) on_click_right_ = config_["on-click-right"].asString();
overview_button_ = new Gtk::Button("OVERVIEW");
overview_button_->set_relief(Gtk::RELIEF_NONE);
box_.pack_start(*overview_button_, false, false, 0);
if (!on_click_left_.empty() || !on_click_middle_.empty() || !on_click_right_.empty()) {
overview_button_->add_events(Gdk::BUTTON_PRESS_MASK);
overview_button_->signal_button_press_event().connect(
[this](GdkEventButton* event) -> bool { return handleButtonClick(event, 0, true); }, false);
}
IPC::getInstance().registerForIPC("monitor", this);
dp.emit();
}
Workspaces::~Workspaces() {
IPC::getInstance().unregisterForIPC(this);
if (overview_button_) {
box_.remove(*overview_button_);
delete overview_button_;
overview_button_ = nullptr;
}
for (auto& [idx, btn] : buttons_) {
box_.remove(btn);
}
buttons_.clear();
}
void Workspaces::onEvent(const Json::Value& ev) { dp.emit(); }
void Workspaces::doUpdate() {
Json::Value monitor = IPC::getInstance().getMonitor(bar_.output->name);
if (monitor.isNull()) return;
const auto& tags = monitor["tags"];
bool overview_mode = false;
if (monitor.isMember("active_tags") && monitor["active_tags"].isArray()) {
const auto& active_tags = monitor["active_tags"];
if (active_tags.size() == 1 && active_tags[0].asInt() == 0) {
overview_mode = true;
}
}
for (auto& [idx, btn] : buttons_) {
btn.hide();
}
if (overview_mode) {
overview_button_->show();
auto style = overview_button_->get_style_context();
style->add_class("overview");
if (monitor["active"].asBool())
style->add_class("current_output");
else
style->remove_class("current_output");
std::string label =
config_["overview-label"].isString() ? config_["overview-label"].asString() : "OVERVIEW";
if (!config_["disable-markup"].asBool()) {
if (auto gtk_label = dynamic_cast<Gtk::Label*>(overview_button_->get_child())) {
gtk_label->set_markup(label);
}
} else {
overview_button_->set_label(label);
}
} else {
overview_button_->hide();
for (auto btn_it = buttons_.begin(); btn_it != buttons_.end();) {
uint64_t id = btn_it->first;
bool found = std::any_of(tags.begin(), tags.end(), [id](const Json::Value& tag) {
return tag["index"].asUInt64() == id;
});
if (!found) {
box_.remove(btn_it->second);
btn_it = buttons_.erase(btn_it);
} else {
++btn_it;
}
}
for (const auto& tag : tags) {
uint64_t idx = tag["index"].asUInt64();
auto btn_it = buttons_.find(idx);
Gtk::Button& button = (btn_it == buttons_.end()) ? addButton(idx) : btn_it->second;
updateButtonState(button, tag, monitor);
}
std::vector<uint64_t> indices;
for (const auto& tag : tags) indices.push_back(tag["index"].asUInt64());
std::sort(indices.begin(), indices.end());
int pos = 0;
for (uint64_t idx : indices) {
box_.reorder_child(buttons_[idx], pos + 1);
pos++;
}
}
}
void Workspaces::update() {
doUpdate();
AModule::update();
}
Gtk::Button& Workspaces::addButton(uint64_t idx) {
auto [it, _] = buttons_.emplace(idx, std::to_string(idx));
auto& button = it->second;
box_.pack_start(button, false, false, 0);
button.set_relief(Gtk::RELIEF_NONE);
if (!on_click_left_.empty() || !on_click_middle_.empty() || !on_click_right_.empty()) {
button.add_events(Gdk::BUTTON_PRESS_MASK);
button.signal_button_press_event().connect(
[this, idx](GdkEventButton* event) -> bool { return handleButtonClick(event, idx, false); },
false);
}
button.show_all();
return button;
}
void Workspaces::updateButtonState(Gtk::Button& button, const Json::Value& tag,
const Json::Value& monitor) {
auto style = button.get_style_context();
bool active = tag["is_active"].asBool();
bool urgent = tag["is_urgent"].asBool();
bool empty = (tag["client_count"].asInt() == 0);
if (active)
style->add_class("active");
else
style->remove_class("active");
if (urgent)
style->add_class("urgent");
else
style->remove_class("urgent");
if (empty)
style->add_class("empty");
else
style->remove_class("empty");
if (monitor["active"].asBool())
style->add_class("current_output");
else
style->remove_class("current_output");
uint64_t idx = tag["index"].asUInt64();
std::string name = std::to_string(idx);
if (config_["format"].isString()) {
name = fmt::format(fmt::runtime(config_["format"].asString()),
fmt::arg("icon", getIcon(name, tag)), fmt::arg("value", name),
fmt::arg("index", idx), fmt::arg("output", monitor["name"].asString()));
}
if (!config_["disable-markup"].asBool()) {
if (auto gtk_label = dynamic_cast<Gtk::Label*>(button.get_child())) {
gtk_label->set_markup(name);
}
} else {
button.set_label(name);
}
if (config_["current-only"].asBool()) {
if (active)
button.show();
else
button.hide();
} else if (config_["hide-empty"].asBool() && empty && !active) {
button.hide();
} else {
button.show();
}
}
std::string Workspaces::getIcon(const std::string& value, const Json::Value& tag) {
const auto& icons = config_["format-icons"];
if (!icons) return value;
if (tag["is_urgent"].asBool() && icons["urgent"]) return icons["urgent"].asString();
if (tag["is_active"].asBool() && icons["active"]) return icons["active"].asString();
if (tag["client_count"].asInt() == 0 && icons["empty"]) return icons["empty"].asString();
std::string idx = std::to_string(tag["index"].asUInt());
if (icons[idx]) return icons[idx].asString();
if (icons["default"]) return icons["default"].asString();
return value;
}
bool Workspaces::handleButtonClick(GdkEventButton* event, uint64_t idx, bool isOverview) {
std::string action;
if (event->button == 1)
action = on_click_left_;
else if (event->button == 2)
action = on_click_middle_;
else if (event->button == 3)
action = on_click_right_;
if (action.empty()) return true;
try {
std::string cmd;
if (isOverview) {
if (action == "activate")
cmd = "dispatch overview";
else if (action == "toggle")
cmd = "dispatch toggleoverview";
} else {
if (action == "activate")
cmd = "dispatch view," + std::to_string(idx);
else if (action == "toggle")
cmd = "dispatch toggleview," + std::to_string(idx);
}
if (!cmd.empty()) {
Json::Value req;
req["command"] = cmd;
IPC::sendAsync(req);
}
} catch (const std::exception& e) {
spdlog::error("Error sending IPC command: {}", e.what());
}
return true;
}
} // namespace waybar::modules::mango
+43 -21
View File
@@ -1,11 +1,32 @@
#include "modules/memory.hpp"
namespace {
const std::unordered_map<std::string, float> kUnits = {
{"kB", 1.000},
{"kiB", 1.024},
{"MB", 1.000 * 1000.0},
{"MiB", 1.024 * 1024.0},
{"GB", 1.000 * 1000.0 * 1000.0},
{"GiB", 1.024 * 1024.0 * 1024.0},
{"TB", 1.000 * 1000.0 * 1000.0 * 1000.0},
{"TiB", 1.024 * 1024.0 * 1024.0 * 1024.0}
};
}
waybar::modules::Memory::Memory(const std::string& id, const Json::Value& config)
: ALabel(config, "memory", id, "{}%", 30) {
thread_ = [this] {
dp.emit();
thread_.sleep_for(interval_);
};
if (config["unit"].isString()) {
unit_ = config["unit"].asString();
if (!kUnits.contains(unit_)) {
unit_ = "GiB";
}
} else {
unit_ = "GiB";
}
}
auto waybar::modules::Memory::update() -> void {
@@ -13,15 +34,15 @@ auto waybar::modules::Memory::update() -> void {
unsigned long memtotal = meminfo_["MemTotal"];
unsigned long swaptotal = 0;
if (meminfo_.count("SwapTotal")) {
if (meminfo_.contains("SwapTotal")) {
swaptotal = meminfo_["SwapTotal"];
}
unsigned long memfree;
unsigned long swapfree = 0;
if (meminfo_.count("SwapFree")) {
if (meminfo_.contains("SwapFree")) {
swapfree = meminfo_["SwapFree"];
}
if (meminfo_.count("MemAvailable")) {
if (meminfo_.contains("MemAvailable")) {
// New kernels (3.4+) have an accurate available memory field.
memfree = meminfo_["MemAvailable"] + meminfo_["zfs_size"];
} else {
@@ -31,18 +52,19 @@ auto waybar::modules::Memory::update() -> void {
}
if (memtotal > 0 && memfree >= 0) {
float total_ram_gigabytes =
0.01 * round(memtotal / 10485.76); // 100*10485.76 = 2^20 = 1024^2 = GiB/KiB
float total_swap_gigabytes = 0.01 * round(swaptotal / 10485.76);
int used_ram_percentage = 100 * (memtotal - memfree) / memtotal;
int used_swap_percentage = 0;
if (swaptotal) {
if ((bool) swaptotal) {
used_swap_percentage = 100 * (swaptotal - swapfree) / swaptotal;
}
float used_ram_gigabytes = 0.01 * round((memtotal - memfree) / 10485.76);
float used_swap_gigabytes = 0.01 * round((swaptotal - swapfree) / 10485.76);
float available_ram_gigabytes = 0.01 * round(memfree / 10485.76);
float available_swap_gigabytes = 0.01 * round(swapfree / 10485.76);
float divisor = kUnits.at(unit_);
float total_ram = memtotal / divisor;
float total_swap = swaptotal / divisor;
float used_ram = (memtotal - memfree) / divisor;
float used_swap = (swaptotal - swapfree) / divisor;
float available_ram = memfree / divisor;
float available_swap = swapfree / divisor;
auto format = format_;
auto state = getState(used_ram_percentage);
@@ -58,27 +80,27 @@ auto waybar::modules::Memory::update() -> void {
label_.set_markup(fmt::format(
fmt::runtime(format), used_ram_percentage,
fmt::arg("icon", getIcon(used_ram_percentage, icons)),
fmt::arg("total", total_ram_gigabytes), fmt::arg("swapTotal", total_swap_gigabytes),
fmt::arg("total", total_ram), fmt::arg("swapTotal", total_swap),
fmt::arg("percentage", used_ram_percentage),
fmt::arg("swapState", swaptotal == 0 ? "Off" : "On"),
fmt::arg("swapPercentage", used_swap_percentage), fmt::arg("used", used_ram_gigabytes),
fmt::arg("swapUsed", used_swap_gigabytes), fmt::arg("avail", available_ram_gigabytes),
fmt::arg("swapAvail", available_swap_gigabytes)));
fmt::arg("swapPercentage", used_swap_percentage), fmt::arg("used", used_ram),
fmt::arg("swapUsed", used_swap), fmt::arg("avail", available_ram),
fmt::arg("swapAvail", available_swap)));
}
if (tooltipEnabled()) {
if (config_["tooltip-format"].isString()) {
auto tooltip_format = config_["tooltip-format"].asString();
label_.set_tooltip_text(fmt::format(
label_.set_tooltip_markup(fmt::format(
fmt::runtime(tooltip_format), used_ram_percentage,
fmt::arg("total", total_ram_gigabytes), fmt::arg("swapTotal", total_swap_gigabytes),
fmt::arg("total", total_ram), fmt::arg("swapTotal", total_swap),
fmt::arg("percentage", used_ram_percentage),
fmt::arg("swapState", swaptotal == 0 ? "Off" : "On"),
fmt::arg("swapPercentage", used_swap_percentage), fmt::arg("used", used_ram_gigabytes),
fmt::arg("swapUsed", used_swap_gigabytes), fmt::arg("avail", available_ram_gigabytes),
fmt::arg("swapAvail", available_swap_gigabytes)));
fmt::arg("swapPercentage", used_swap_percentage), fmt::arg("used", used_ram),
fmt::arg("swapUsed", used_swap), fmt::arg("avail", available_ram),
fmt::arg("swapAvail", available_swap)));
} else {
label_.set_tooltip_text(fmt::format("{:.{}f}GiB used", used_ram_gigabytes, 1));
label_.set_tooltip_markup(fmt::format("{:.{}f}{} used", used_ram, 1, unit_));
}
}
} else {
+60 -41
View File
@@ -6,6 +6,7 @@
#include <system_error>
#include <util/sanitize_str.hpp>
#include <util/utf8_string.hpp>
using namespace waybar::util;
#include "modules/mpd/state.hpp"
@@ -22,9 +23,12 @@ waybar::modules::MPD::MPD(const std::string& id, const Json::Value& config)
port_(config_["port"].isUInt() ? config["port"].asUInt() : 0),
password_(config_["password"].empty() ? "" : config_["password"].asString()),
timeout_(config_["timeout"].isUInt() ? config_["timeout"].asUInt() * 1'000 : 30'000),
playing_interval_(config_["playing-interval"].isUInt() ? config_["playing-interval"].asUInt()
: 1'000),
connection_(nullptr, &mpd_connection_free),
status_(nullptr, &mpd_status_free),
song_(nullptr, &mpd_song_free) {
song_(nullptr, &mpd_song_free),
ellipsis_(config_["ellipsis"].isString() ? config_["ellipsis"].asString() : "\u2026") {
if (!config_["port"].isNull() && !config_["port"].isUInt()) {
spdlog::warn("{}: `port` configuration should be an unsigned int", module_name_);
}
@@ -33,6 +37,10 @@ waybar::modules::MPD::MPD(const std::string& id, const Json::Value& config)
spdlog::warn("{}: `timeout` configuration should be an unsigned int", module_name_);
}
if (!config_["playing-interval"].isNull() && !config_["playing-interval"].isUInt()) {
spdlog::warn("{}: `playing-interval` configuration should be an unsigned int", module_name_);
}
if (!config["server"].isNull()) {
if (!config_["server"].isString()) {
spdlog::warn("{}:`server` configuration should be a string", module_name_);
@@ -51,21 +59,6 @@ auto waybar::modules::MPD::update() -> void {
ALabel::update();
}
void waybar::modules::MPD::queryMPD() {
if (connection_ != nullptr) {
spdlog::trace("{}: fetching state information", module_name_);
try {
fetchState();
spdlog::trace("{}: fetch complete", module_name_);
} catch (std::exception const& e) {
spdlog::error("{}: {}", module_name_, e.what());
state_ = MPD_STATE_UNKNOWN;
}
dp.emit();
}
}
std::string waybar::modules::MPD::getTag(mpd_tag_type type, unsigned idx) const {
std::string result =
config_["unknown-tag"].isString() ? config_["unknown-tag"].asString() : "N/A";
@@ -98,7 +91,7 @@ void waybar::modules::MPD::setLabel() {
? config_["format-disconnected"].asString()
: "disconnected";
if (format.empty()) {
label_.set_markup(format);
setLabelMarkup(format);
label_.show();
} else {
label_.hide();
@@ -110,22 +103,22 @@ void waybar::modules::MPD::setLabel() {
? config_["tooltip-format-disconnected"].asString()
: "MPD (disconnected)";
// Nothing to format
label_.set_tooltip_text(tooltip_format);
setTooltipMarkup(tooltip_format);
}
return;
}
label_.get_style_context()->remove_class("disconnected");
auto format = format_;
Glib::ustring artist, album_artist, album, title;
std::string date, filename, uri;
int song_pos = 0, queue_length = 0, volume = 0;
std::chrono::seconds elapsedTime, totalTime;
std::string stateIcon = "";
bool no_song = song_.get() == nullptr;
if (stopped() || no_song) {
if (no_song) spdlog::warn("Bug in mpd: no current song but state is not stopped.");
bool is_stopped = stopped();
if (is_stopped || no_song) {
if (no_song && !is_stopped) spdlog::warn("mpd: no current song while state is not stopped");
format =
config_["format-stopped"].isString() ? config_["format-stopped"].asString() : "stopped";
label_.get_style_context()->add_class("stopped");
@@ -137,18 +130,15 @@ void waybar::modules::MPD::setLabel() {
label_.get_style_context()->add_class("playing");
label_.get_style_context()->remove_class("paused");
} else if (paused()) {
format = config_["format-paused"].isString() ? config_["format-paused"].asString()
: config_["format"].asString();
if (config_["format-paused"].isString()) {
format = config_["format-paused"].asString();
}
label_.get_style_context()->add_class("paused");
label_.get_style_context()->remove_class("playing");
}
stateIcon = getStateIcon();
artist = sanitize_string(getTag(MPD_TAG_ARTIST));
album_artist = sanitize_string(getTag(MPD_TAG_ALBUM_ARTIST));
album = sanitize_string(getTag(MPD_TAG_ALBUM));
title = sanitize_string(getTag(MPD_TAG_TITLE));
date = sanitize_string(getTag(MPD_TAG_DATE));
filename = sanitize_string(getFilename());
uri = mpd_song_get_uri(song_.get());
@@ -170,17 +160,12 @@ void waybar::modules::MPD::setLabel() {
std::string repeatIcon = getOptionIcon("repeat", repeatActivated);
bool singleActivated = mpd_status_get_single(status_.get());
std::string singleIcon = getOptionIcon("single", singleActivated);
if (config_["artist-len"].isInt()) artist = artist.substr(0, config_["artist-len"].asInt());
if (config_["album-artist-len"].isInt())
album_artist = album_artist.substr(0, config_["album-artist-len"].asInt());
if (config_["album-len"].isInt()) album = album.substr(0, config_["album-len"].asInt());
if (config_["title-len"].isInt()) title = title.substr(0, config_["title-len"].asInt());
try {
auto text = fmt::format(
fmt::runtime(format), fmt::arg("artist", artist.raw()),
fmt::arg("albumArtist", album_artist.raw()), fmt::arg("album", album.raw()),
fmt::arg("title", title.raw()), fmt::arg("date", date), fmt::arg("volume", volume),
fmt::runtime(format), fmt::arg("artist", getArtistStr(true)),
fmt::arg("albumArtist", getAlbumArtistStr(true)), fmt::arg("album", getAlbumStr(true)),
fmt::arg("title", getTitleStr(true)), fmt::arg("date", date), fmt::arg("volume", volume),
fmt::arg("elapsedTime", elapsedTime), fmt::arg("totalTime", totalTime),
fmt::arg("songPosition", song_pos), fmt::arg("queueLength", queue_length),
fmt::arg("stateIcon", stateIcon), fmt::arg("consumeIcon", consumeIcon),
@@ -190,7 +175,7 @@ void waybar::modules::MPD::setLabel() {
label_.hide();
} else {
label_.show();
label_.set_markup(text);
setLabelMarkup(text);
}
} catch (fmt::format_error const& e) {
spdlog::warn("mpd: format error: {}", e.what());
@@ -202,15 +187,15 @@ void waybar::modules::MPD::setLabel() {
: "MPD (connected)";
try {
auto tooltip_text = fmt::format(
fmt::runtime(tooltip_format), fmt::arg("artist", artist.raw()),
fmt::arg("albumArtist", album_artist.raw()), fmt::arg("album", album.raw()),
fmt::arg("title", title.raw()), fmt::arg("date", date), fmt::arg("volume", volume),
fmt::runtime(tooltip_format), fmt::arg("artist", getArtistStr(false)),
fmt::arg("albumArtist", getAlbumArtistStr(false)), fmt::arg("album", getAlbumStr(false)),
fmt::arg("title", getTitleStr(false)), fmt::arg("date", date), fmt::arg("volume", volume),
fmt::arg("elapsedTime", elapsedTime), fmt::arg("totalTime", totalTime),
fmt::arg("songPosition", song_pos), fmt::arg("queueLength", queue_length),
fmt::arg("stateIcon", stateIcon), fmt::arg("consumeIcon", consumeIcon),
fmt::arg("randomIcon", randomIcon), fmt::arg("repeatIcon", repeatIcon),
fmt::arg("singleIcon", singleIcon), fmt::arg("filename", filename), fmt::arg("uri", uri));
label_.set_tooltip_text(tooltip_text);
setTooltipMarkup(tooltip_text);
} catch (fmt::format_error const& e) {
spdlog::warn("mpd: format error (tooltip): {}", e.what());
}
@@ -239,7 +224,8 @@ std::string waybar::modules::MPD::getStateIcon() const {
}
}
std::string waybar::modules::MPD::getOptionIcon(std::string optionName, bool activated) const {
std::string waybar::modules::MPD::getOptionIcon(const std::string& optionName,
bool activated) const {
if (!config_[optionName + "-icons"].isObject()) {
return "";
}
@@ -256,6 +242,38 @@ std::string waybar::modules::MPD::getOptionIcon(std::string optionName, bool act
}
}
std::string waybar::modules::MPD::getArtistStr(bool truncated) const {
std::string artist = getTag(MPD_TAG_ARTIST);
if (truncated && config_["artist-len"].isInt()) {
waybar::util::utf8_truncate(artist, ellipsis_, config_["artist-len"].asInt());
}
return sanitize_string(artist);
}
std::string waybar::modules::MPD::getAlbumArtistStr(bool truncated) const {
std::string album_artist = getTag(MPD_TAG_ALBUM_ARTIST);
if (truncated && config_["album-artist-len"].isInt()) {
waybar::util::utf8_truncate(album_artist, ellipsis_, config_["album-artist-len"].asInt());
}
return sanitize_string(album_artist);
}
std::string waybar::modules::MPD::getAlbumStr(bool truncated) const {
std::string album = getTag(MPD_TAG_ALBUM);
if (truncated && config_["album-len"].isInt()) {
waybar::util::utf8_truncate(album, ellipsis_, config_["album-len"].asInt());
}
return sanitize_string(album);
}
std::string waybar::modules::MPD::getTitleStr(bool truncated) const {
std::string title = getTag(MPD_TAG_TITLE);
if (truncated && config_["title-len"].isInt()) {
waybar::util::utf8_truncate(title, ellipsis_, config_["title-len"].asInt());
}
return sanitize_string(title);
}
static bool isServerUnavailable(const std::error_code& ec) {
if (ec.category() == std::system_category()) {
switch (ec.value()) {
@@ -323,6 +341,7 @@ void waybar::modules::MPD::checkErrors(mpd_connection* conn) {
case MPD_ERROR_SYSTEM:
if (auto ec = mpd_connection_get_system_error(conn); ec != 0) {
mpd_connection_clear_error(conn);
connection_.reset();
throw std::system_error(ec, std::system_category());
}
G_GNUC_FALLTHROUGH;
+108 -35
View File
@@ -19,39 +19,37 @@ auto format_as(enum mpd_idle val) {
namespace waybar::modules::detail {
#define IDLE_RUN_NOIDLE_AND_CMD(...) \
if (idle_connection_.connected()) { \
idle_connection_.disconnect(); \
auto conn = ctx_->connection().get(); \
if (!mpd_run_noidle(conn)) { \
if (mpd_connection_get_error(conn) != MPD_ERROR_SUCCESS) { \
spdlog::error("mpd: Idle: failed to unregister for IDLE events"); \
ctx_->checkErrors(conn); \
} \
} \
__VA_ARGS__; \
#define RUN_NOIDLE_AND_CMD(STATE, ...) \
if (idle_connection_.connected()) { \
idle_connection_.disconnect(); \
auto conn = ctx_->connection().get(); \
if (!mpd_run_noidle(conn)) { \
if (mpd_connection_get_error(conn) != MPD_ERROR_SUCCESS) { \
spdlog::error("mpd: STATE: failed to unregister for IDLE events"); \
ctx_->checkErrors(conn); \
} \
} \
__VA_ARGS__; \
}
void Idle::play() {
IDLE_RUN_NOIDLE_AND_CMD(mpd_run_play(conn));
RUN_NOIDLE_AND_CMD(Idle, mpd_run_play(conn));
ctx_->setState(std::make_unique<Playing>(ctx_));
}
void Idle::pause() {
IDLE_RUN_NOIDLE_AND_CMD(mpd_run_pause(conn, true));
RUN_NOIDLE_AND_CMD(Idle, mpd_run_pause(conn, true));
ctx_->setState(std::make_unique<Paused>(ctx_));
}
void Idle::stop() {
IDLE_RUN_NOIDLE_AND_CMD(mpd_run_stop(conn));
RUN_NOIDLE_AND_CMD(Idle, mpd_run_stop(conn));
ctx_->setState(std::make_unique<Stopped>(ctx_));
}
#undef IDLE_RUN_NOIDLE_AND_CMD
void Idle::update() noexcept {
// This is intentionally blank.
}
@@ -97,19 +95,16 @@ bool Idle::on_io(Glib::IOCondition const&) {
}
ctx_->fetchState();
ctx_->emit();
mpd_state state = ctx_->state();
if (state == MPD_STATE_STOP) {
ctx_->emit();
ctx_->setState(std::make_unique<Stopped>(ctx_));
} else if (state == MPD_STATE_PLAY) {
ctx_->emit();
ctx_->setState(std::make_unique<Playing>(ctx_));
} else if (state == MPD_STATE_PAUSE) {
ctx_->emit();
ctx_->setState(std::make_unique<Paused>(ctx_));
} else {
ctx_->emit();
// self transition
ctx_->setState(std::make_unique<Idle>(ctx_));
}
@@ -118,15 +113,46 @@ bool Idle::on_io(Glib::IOCondition const&) {
}
void Playing::entry() noexcept {
sigc::slot<bool> timer_slot = sigc::mem_fun(*this, &Playing::on_timer);
timer_connection_ = Glib::signal_timeout().connect_seconds(timer_slot, 1);
spdlog::debug("mpd: Playing: enabled 1 second periodic timer.");
timer();
idle();
spdlog::debug("mpd: Playing: enabled {}ms periodic timer.", ctx_->playing_interval());
}
void Playing::exit() noexcept {
if (idle_connection_.connected()) {
idle_connection_.disconnect();
spdlog::debug("mpd: Playing: unwatching FD");
}
if (timer_connection_.connected()) {
timer_connection_.disconnect();
spdlog::debug("mpd: Playing: disabled 1 second periodic timer.");
spdlog::debug("mpd: Playing: disabled {}ms periodic timer.", ctx_->playing_interval());
}
}
void Playing::timer() noexcept {
if (timer_connection_.connected()) {
timer_connection_.disconnect();
}
sigc::slot<bool> timer_slot = sigc::mem_fun(*this, &Playing::on_timer);
timer_connection_ = Glib::signal_timeout().connect(timer_slot, ctx_->playing_interval());
}
void Playing::idle() noexcept {
auto conn = ctx_->connection().get();
assert(conn != nullptr);
if (!mpd_send_idle_mask(
conn, static_cast<mpd_idle>(MPD_IDLE_PLAYER | MPD_IDLE_OPTIONS | MPD_IDLE_QUEUE))) {
ctx_->checkErrors(conn);
spdlog::error("mpd: Playing: failed to register for IDLE events");
} else if (!idle_connection_.connected()) {
spdlog::trace("mpd: Playing: watching FD");
sigc::slot<bool, Glib::IOCondition const&> idle_slot = sigc::mem_fun(*this, &Playing::on_io);
idle_connection_ =
Glib::signal_io().connect(idle_slot, mpd_connection_get_fd(conn),
Glib::IO_IN | Glib::IO_PRI | Glib::IO_ERR | Glib::IO_HUP);
}
}
@@ -141,9 +167,12 @@ bool Playing::on_timer() {
return false;
}
RUN_NOIDLE_AND_CMD(Playing);
ctx_->fetchState();
if (!ctx_->is_playing()) {
ctx_->emit();
if (ctx_->is_paused()) {
ctx_->setState(std::make_unique<Paused>(ctx_));
} else {
@@ -152,8 +181,51 @@ bool Playing::on_timer() {
return false;
}
ctx_->queryMPD();
ctx_->emit();
idle();
} catch (std::exception const& e) {
spdlog::warn("mpd: Playing: error: {}", e.what());
ctx_->setState(std::make_unique<Disconnected>(ctx_));
return false;
}
return true;
}
bool Playing::on_io(Glib::IOCondition const&) {
auto conn = ctx_->connection().get();
// callback should do this:
enum mpd_idle events = mpd_recv_idle(conn, /* ignore_timeout?= */ false);
spdlog::debug("mpd: Playing: recv_idle events -> {}", events);
mpd_response_finish(conn);
try {
ctx_->checkErrors(conn);
ctx_->fetchState();
if (!ctx_->is_playing()) {
ctx_->emit();
if (ctx_->is_paused()) {
ctx_->setState(std::make_unique<Paused>(ctx_));
} else {
ctx_->setState(std::make_unique<Stopped>(ctx_));
}
return false;
}
ctx_->emit();
if (!mpd_send_idle_mask(
conn, static_cast<mpd_idle>(MPD_IDLE_PLAYER | MPD_IDLE_OPTIONS | MPD_IDLE_QUEUE))) {
ctx_->checkErrors(conn);
spdlog::error("mpd: Playing: failed to register for IDLE events");
}
// Defer the next timer
timer();
} catch (std::exception const& e) {
spdlog::warn("mpd: Playing: error: {}", e.what());
ctx_->setState(std::make_unique<Disconnected>(ctx_));
@@ -164,21 +236,23 @@ bool Playing::on_timer() {
}
void Playing::stop() {
if (timer_connection_.connected()) {
timer_connection_.disconnect();
RUN_NOIDLE_AND_CMD(
Playing, if (timer_connection_.connected()) {
timer_connection_.disconnect();
mpd_run_stop(ctx_->connection().get());
}
mpd_run_stop(ctx_->connection().get());
});
ctx_->setState(std::make_unique<Stopped>(ctx_));
}
void Playing::pause() {
if (timer_connection_.connected()) {
timer_connection_.disconnect();
RUN_NOIDLE_AND_CMD(
Playing, if (timer_connection_.connected()) {
timer_connection_.disconnect();
mpd_run_pause(ctx_->connection().get(), true);
}
mpd_run_pause(ctx_->connection().get(), true);
});
ctx_->setState(std::make_unique<Paused>(ctx_));
}
@@ -212,7 +286,6 @@ bool Paused::on_timer() {
}
ctx_->fetchState();
ctx_->emit();
if (ctx_->is_paused()) {
@@ -283,7 +356,6 @@ bool Stopped::on_timer() {
}
ctx_->fetchState();
ctx_->emit();
if (ctx_->is_stopped()) {
@@ -387,4 +459,5 @@ bool Disconnected::on_timer() {
void Disconnected::update() noexcept { ctx_->do_update(); }
#undef RUN_NOIDLE_AND_CMD
} // namespace waybar::modules::detail
+114 -90
View File
@@ -7,6 +7,7 @@
#include <string>
#include "util/scope_guard.hpp"
#include "util/utf8_string.hpp"
extern "C" {
#include <playerctl/playerctl.h>
@@ -30,6 +31,7 @@ Mpris::Mpris(const std::string& id, const Json::Value& config)
dynamic_separator_(" - "),
truncate_hours_(true),
tooltip_len_limits_(false),
prefer_album_artist_(false),
// this character is used in Gnome so it's fine to use it here
ellipsis_("\u2026"),
player_("playerctld"),
@@ -67,6 +69,9 @@ Mpris::Mpris(const std::string& id, const Json::Value& config)
if (config_["enable-tooltip-len-limits"].isBool()) {
tooltip_len_limits_ = config["enable-tooltip-len-limits"].asBool();
}
if (config_["prefer-album-artist"].isBool()) {
prefer_album_artist_ = config["prefer-album-artist"].asBool();
}
}
if (config["artist-len"].isUInt()) {
@@ -109,6 +114,7 @@ Mpris::Mpris(const std::string& id, const Json::Value& config)
player_ = config_["player"].asString();
}
if (config_["ignored-players"].isArray()) {
ignored_players_.reserve(config_["ignored-players"].size());
for (const auto& item : config_["ignored-players"]) {
if (item.isString()) {
ignored_players_.push_back(item.asString());
@@ -117,7 +123,7 @@ Mpris::Mpris(const std::string& id, const Json::Value& config)
}
GError* error = nullptr;
waybar::util::ScopeGuard error_deleter([error]() {
waybar::util::ScopeGuard error_deleter([&error]() {
if (error) {
g_error_free(error);
}
@@ -161,8 +167,7 @@ Mpris::Mpris(const std::string& id, const Json::Value& config)
if (player) {
g_object_connect(player, "signal::play", G_CALLBACK(onPlayerPlay), this, "signal::pause",
G_CALLBACK(onPlayerPause), this, "signal::stop", G_CALLBACK(onPlayerStop),
this, "signal::stop", G_CALLBACK(onPlayerStop), this, "signal::metadata",
G_CALLBACK(onPlayerMetadata), this, NULL);
this, "signal::metadata", G_CALLBACK(onPlayerMetadata), this, NULL);
}
// allow setting an interval count that triggers periodic refreshes
@@ -178,8 +183,17 @@ Mpris::Mpris(const std::string& id, const Json::Value& config)
}
Mpris::~Mpris() {
if (manager != nullptr) g_object_unref(manager);
if (player != nullptr) g_object_unref(player);
if (manager != nullptr) {
g_signal_handlers_disconnect_by_data(manager, this);
}
if (player != nullptr) {
g_signal_handlers_disconnect_by_data(player, this);
}
if (last_active_player_ != nullptr && last_active_player_ != player) {
g_object_unref(last_active_player_);
}
g_clear_object(&manager);
g_clear_object(&player);
}
auto Mpris::getIconFromJson(const Json::Value& icons, const std::string& key) -> std::string {
@@ -193,69 +207,28 @@ auto Mpris::getIconFromJson(const Json::Value& icons, const std::string& key) ->
// Wide characters count as two, zero-width characters count as zero
// Modifies str in-place (unless width = std::string::npos)
// Returns the total width of the string pre-truncating
size_t utf8_truncate(std::string& str, size_t width = std::string::npos) {
if (str.length() == 0) return 0;
const gchar* trunc_end = nullptr;
size_t total_width = 0;
for (gchar *data = str.data(), *end = data + str.size(); data != nullptr;) {
gunichar c = g_utf8_get_char_validated(data, end - data);
if (c == -1U || c == -2U) {
// invalid unicode, treat string as ascii
if (width != std::string::npos && str.length() > width) str.resize(width);
return str.length();
} else if (g_unichar_iswide(c)) {
total_width += 2;
} else if (!g_unichar_iszerowidth(c) && c != 0xAD) { // neither zero-width nor soft hyphen
total_width += 1;
}
data = g_utf8_find_next_char(data, end);
if (width != std::string::npos && total_width <= width && !g_unichar_isspace(c))
trunc_end = data;
}
if (trunc_end) str.resize(trunc_end - str.data());
return total_width;
}
size_t utf8_width(const std::string& str) { return utf8_truncate(const_cast<std::string&>(str)); }
void truncate(std::string& s, const std::string& ellipsis, size_t max_len) {
if (max_len == 0) {
s.resize(0);
return;
}
size_t len = utf8_truncate(s, max_len);
if (len > max_len) {
size_t ellipsis_len = utf8_width(ellipsis);
if (max_len >= ellipsis_len) {
if (ellipsis_len) utf8_truncate(s, max_len - ellipsis_len);
s += ellipsis;
} else {
s.resize(0);
}
}
}
auto Mpris::getArtistStr(const PlayerInfo& info, bool truncated) -> std::string {
auto artist = info.artist.value_or(std::string());
if (truncated && artist_len_ >= 0) truncate(artist, ellipsis_, artist_len_);
if (prefer_album_artist_) {
auto album_artist = info.album_artist.value_or(std::string());
if (!album_artist.empty()) {
artist = album_artist;
}
}
if (truncated && artist_len_ >= 0) waybar::util::utf8_truncate(artist, ellipsis_, artist_len_);
return artist;
}
auto Mpris::getAlbumStr(const PlayerInfo& info, bool truncated) -> std::string {
auto album = info.album.value_or(std::string());
if (truncated && album_len_ >= 0) truncate(album, ellipsis_, album_len_);
if (truncated && album_len_ >= 0) waybar::util::utf8_truncate(album, ellipsis_, album_len_);
return album;
}
auto Mpris::getTitleStr(const PlayerInfo& info, bool truncated) -> std::string {
auto title = info.title.value_or(std::string());
if (truncated && title_len_ >= 0) truncate(title, ellipsis_, title_len_);
if (truncated && title_len_ >= 0) waybar::util::utf8_truncate(title, ellipsis_, title_len_);
return title;
}
@@ -283,9 +256,9 @@ auto Mpris::getDynamicStr(const PlayerInfo& info, bool truncated, bool html) ->
// keep position format same as length format
auto position = getPositionStr(info, truncated && truncate_hours_ && length.length() < 6);
size_t artistLen = utf8_width(artist);
size_t albumLen = utf8_width(album);
size_t titleLen = utf8_width(title);
size_t artistLen = waybar::util::utf8_width(artist);
size_t albumLen = waybar::util::utf8_width(album);
size_t titleLen = waybar::util::utf8_width(title);
size_t lengthLen = length.length();
size_t posLen = position.length();
@@ -304,7 +277,7 @@ auto Mpris::getDynamicStr(const PlayerInfo& info, bool truncated, bool html) ->
// Since the first element doesn't present a separator and we don't know a priori which one
// it will be, we add a "virtual separatorLen" to the dynamicLen, since we are adding the
// separatorLen to all the other lengths.
size_t separatorLen = utf8_width(dynamic_separator_);
size_t separatorLen = waybar::util::utf8_width(dynamic_separator_);
size_t dynamicLen = dynamic_len_ + separatorLen;
if (showArtist) artistLen += separatorLen;
if (showAlbum) albumLen += separatorLen;
@@ -410,11 +383,14 @@ auto Mpris::onPlayerNameAppeared(PlayerctlPlayerManager* manager, PlayerctlPlaye
return;
}
if (mpris->player != nullptr) {
g_signal_handlers_disconnect_by_data(mpris->player, mpris);
g_clear_object(&mpris->player);
}
mpris->player = playerctl_player_new_from_name(player_name, nullptr);
g_object_connect(mpris->player, "signal::play", G_CALLBACK(onPlayerPlay), mpris, "signal::pause",
G_CALLBACK(onPlayerPause), mpris, "signal::stop", G_CALLBACK(onPlayerStop),
mpris, "signal::stop", G_CALLBACK(onPlayerStop), mpris, "signal::metadata",
G_CALLBACK(onPlayerMetadata), mpris, NULL);
mpris, "signal::metadata", G_CALLBACK(onPlayerMetadata), mpris, NULL);
mpris->dp.emit();
}
@@ -458,10 +434,7 @@ auto Mpris::onPlayerStop(PlayerctlPlayer* player, gpointer data) -> void {
if (!mpris) return;
spdlog::debug("mpris: player-stop callback");
// hide widget
mpris->event_box_.set_visible(false);
// update widget
// update widget (update() handles visibility)
mpris->dp.emit();
}
@@ -480,7 +453,7 @@ auto Mpris::getPlayerInfo() -> std::optional<PlayerInfo> {
}
GError* error = nullptr;
waybar::util::ScopeGuard error_deleter([error]() {
waybar::util::ScopeGuard error_deleter([&error]() {
if (error) {
g_error_free(error);
}
@@ -488,7 +461,12 @@ auto Mpris::getPlayerInfo() -> std::optional<PlayerInfo> {
char* player_status = nullptr;
auto player_playback_status = PLAYERCTL_PLAYBACK_STATUS_STOPPED;
g_object_get(player, "status", &player_status, "playback-status", &player_playback_status, NULL);
// Clean up previous fallback player
if (last_active_player_ && last_active_player_ != player) {
g_object_unref(last_active_player_);
last_active_player_ = nullptr;
}
std::string player_name = player_;
if (player_name == "playerctld") {
@@ -498,19 +476,52 @@ auto Mpris::getPlayerInfo() -> std::optional<PlayerInfo> {
}
// > get the list of players [..] in order of activity
// https://github.com/altdesktop/playerctl/blob/b19a71cb9dba635df68d271bd2b3f6a99336a223/playerctl/playerctl-common.c#L248-L249
players = g_list_first(players);
if (players)
player_name = static_cast<PlayerctlPlayerName*>(players->data)->name;
else
return std::nullopt; // no players found, hide the widget
}
if (std::any_of(ignored_players_.begin(), ignored_players_.end(),
[&](const std::string& pn) { return player_name == pn; })) {
PlayerctlPlayer* first_valid_player = nullptr;
std::string first_valid_name;
for (auto* p = g_list_first(players); p != nullptr; p = p->next) {
auto* pn = static_cast<PlayerctlPlayerName*>(p->data);
std::string name = pn->name;
if (std::any_of(ignored_players_.begin(), ignored_players_.end(),
[&](const std::string& ignored) { return name == ignored; })) {
spdlog::warn("mpris[{}]: ignoring player update", name);
continue;
}
auto* tmp = playerctl_player_new_from_name(pn, &error);
if (error || !tmp) continue;
if (!first_valid_player) {
first_valid_player = tmp;
first_valid_name = name;
}
PlayerctlPlaybackStatus status;
g_object_get(tmp, "playback-status", &status, NULL);
if (status == PLAYERCTL_PLAYBACK_STATUS_PLAYING) {
if (tmp != first_valid_player) g_object_unref(first_valid_player);
last_active_player_ = tmp;
player_name = name;
break;
}
if (tmp != first_valid_player) g_object_unref(tmp);
}
if (!last_active_player_) {
if (!first_valid_player) return std::nullopt;
last_active_player_ = first_valid_player;
player_name = first_valid_name;
}
} else if (std::any_of(ignored_players_.begin(), ignored_players_.end(),
[&](const std::string& pn) { return player_name == pn; })) {
spdlog::warn("mpris[{}]: ignoring player update", player_name);
return std::nullopt;
} else {
last_active_player_ = player;
}
g_object_get(last_active_player_, "status", &player_status, "playback-status",
&player_playback_status, NULL);
if (!player_status) {
spdlog::error("mpris: failed to get player status");
return std::nullopt;
}
// make status lowercase
player_status[0] = std::tolower(player_status[0]);
@@ -520,32 +531,41 @@ auto Mpris::getPlayerInfo() -> std::optional<PlayerInfo> {
.status_string = player_status,
.artist = std::nullopt,
.album = std::nullopt,
.album_artist = std::nullopt,
.title = std::nullopt,
.length = std::nullopt,
};
if (auto* artist_ = playerctl_player_get_artist(player, &error)) {
if (auto* artist_ = playerctl_player_get_artist(last_active_player_, &error)) {
spdlog::debug("mpris[{}]: artist = {}", info.name, artist_);
info.artist = artist_;
g_free(artist_);
}
if (error) goto errorexit;
if (auto* album_ = playerctl_player_get_album(player, &error)) {
if (auto* album_artist_ =
playerctl_player_print_metadata_prop(player, "xesam:albumArtist", &error)) {
spdlog::debug("mpris[{}]: albumArtist = {}", info.name, album_artist_);
info.album_artist = album_artist_;
g_free(album_artist_);
}
if (auto* album_ = playerctl_player_get_album(last_active_player_, &error)) {
spdlog::debug("mpris[{}]: album = {}", info.name, album_);
info.album = album_;
g_free(album_);
}
if (error) goto errorexit;
if (auto* title_ = playerctl_player_get_title(player, &error)) {
if (auto* title_ = playerctl_player_get_title(last_active_player_, &error)) {
spdlog::debug("mpris[{}]: title = {}", info.name, title_);
info.title = title_;
g_free(title_);
}
if (error) goto errorexit;
if (auto* length_ = playerctl_player_print_metadata_prop(player, "mpris:length", &error)) {
if (auto* length_ =
playerctl_player_print_metadata_prop(last_active_player_, "mpris:length", &error)) {
spdlog::debug("mpris[{}]: mpris:length = {}", info.name, length_);
auto len = std::chrono::microseconds(std::strtol(length_, nullptr, 10));
auto len_h = std::chrono::duration_cast<std::chrono::hours>(len);
@@ -557,7 +577,7 @@ auto Mpris::getPlayerInfo() -> std::optional<PlayerInfo> {
if (error) goto errorexit;
{
auto position_ = playerctl_player_get_position(player, &error);
auto position_ = playerctl_player_get_position(last_active_player_, &error);
if (error) {
// it's fine to have an error here because not all players report a position
g_error_free(error);
@@ -609,12 +629,13 @@ bool Mpris::handleToggle(GdkEventButton* const& e) {
});
// Command pattern: encapsulate each button's action
auto* target = last_active_player_ ? last_active_player_ : player;
const ButtonAction actions[] = {
{1, "on-click", [&]() { playerctl_player_play_pause(player, &error); }},
{2, "on-click-middle", [&]() { playerctl_player_previous(player, &error); }},
{3, "on-click-right", [&]() { playerctl_player_next(player, &error); }},
{8, "on-click-backward", [&]() { playerctl_player_previous(player, &error); }},
{9, "on-click-forward", [&]() { playerctl_player_next(player, &error); }},
{1, "on-click", [&]() { playerctl_player_play_pause(target, &error); }},
{2, "on-click-middle", [&]() { playerctl_player_previous(target, &error); }},
{3, "on-click-right", [&]() { playerctl_player_next(target, &error); }},
{8, "on-click-backward", [&]() { playerctl_player_previous(target, &error); }},
{9, "on-click-forward", [&]() { playerctl_player_next(target, &error); }},
};
for (const auto& action : actions) {
@@ -726,15 +747,18 @@ auto Mpris::update() -> void {
auto tooltip_text = fmt::format(
fmt::runtime(tooltipstr), fmt::arg("player", info.name),
fmt::arg("status", info.status_string),
fmt::arg("artist", getArtistStr(info, tooltip_len_limits_)),
fmt::arg("title", getTitleStr(info, tooltip_len_limits_)),
fmt::arg("album", getAlbumStr(info, tooltip_len_limits_)),
fmt::arg("artist",
std::string(Glib::Markup::escape_text(getArtistStr(info, tooltip_len_limits_)))),
fmt::arg("title",
std::string(Glib::Markup::escape_text(getTitleStr(info, tooltip_len_limits_)))),
fmt::arg("album",
std::string(Glib::Markup::escape_text(getAlbumStr(info, tooltip_len_limits_)))),
fmt::arg("length", tooltipLength), fmt::arg("position", tooltipPosition),
fmt::arg("dynamic", getDynamicStr(info, tooltip_len_limits_, false)),
fmt::arg("player_icon", getIconFromJson(config_["player-icons"], info.name)),
fmt::arg("status_icon", getIconFromJson(config_["status-icons"], info.status_string)));
label_.set_tooltip_text(tooltip_text);
label_.set_tooltip_markup(tooltip_text);
} catch (fmt::format_error const& e) {
spdlog::warn("mpris: format error (tooltip): {}", e.what());
}
+114 -58
View File
@@ -45,7 +45,8 @@ waybar::modules::Network::readBandwidthUsage() {
std::istringstream iss(line);
std::string ifacename;
iss >> ifacename; // ifacename contains "eth0:"
iss >> ifacename; // ifacename contains "eth0:"
if (ifacename.empty()) continue;
ifacename.pop_back(); // remove trailing ':'
if (ifacename != ifname_) {
continue;
@@ -104,6 +105,7 @@ waybar::modules::Network::Network(const std::string& id, const Json::Value& conf
bandwidth_down_total_ = 0;
bandwidth_up_total_ = 0;
}
bandwidth_last_sample_time_ = std::chrono::steady_clock::now();
if (!config_["interface"].isString()) {
// "interface" isn't configured, then try to guess the external
@@ -276,34 +278,63 @@ const std::string waybar::modules::Network::getNetworkState() const {
auto waybar::modules::Network::update() -> void {
std::lock_guard<std::mutex> lock(mutex_);
std::string tooltip_format;
auto now = std::chrono::steady_clock::now();
auto elapsed_seconds = std::chrono::duration<double>(now - bandwidth_last_sample_time_).count();
auto bandwidth = readBandwidthUsage();
auto bandwidth_down = 0ull;
auto bandwidth_up = 0ull;
if (bandwidth.has_value()) {
auto down_octets = (*bandwidth).first;
auto up_octets = (*bandwidth).second;
bandwidth_down = down_octets - bandwidth_down_total_;
bandwidth_down_total_ = down_octets;
// Only recalculate bandwidth when enough time has elapsed since the last
// sample. Event-driven dp.emit() calls (link/addr/route changes) can
// trigger update() between timer intervals, which would consume the byte
// delta prematurely and show near-zero bandwidth.
auto min_elapsed = std::chrono::duration<double>(interval_).count() * 0.5;
if (elapsed_seconds >= min_elapsed) {
if (elapsed_seconds <= 0.0) {
elapsed_seconds = std::chrono::duration<double>(interval_).count();
}
bandwidth_last_sample_time_ = now;
bandwidth_up = up_octets - bandwidth_up_total_;
bandwidth_up_total_ = up_octets;
auto bandwidth = readBandwidthUsage();
if (bandwidth.has_value()) {
auto down_octets = (*bandwidth).first;
auto up_octets = (*bandwidth).second;
bandwidth_down = down_octets - bandwidth_down_total_;
bandwidth_down_total_ = down_octets;
bandwidth_up = up_octets - bandwidth_up_total_;
bandwidth_up_total_ = up_octets;
bandwidth_down_prev_ = bandwidth_down;
bandwidth_up_prev_ = bandwidth_up;
}
} else {
bandwidth_down = bandwidth_down_prev_;
bandwidth_up = bandwidth_up_prev_;
elapsed_seconds = std::chrono::duration<double>(interval_).count();
}
auto threshold_state = getState(signal_strength_);
if (!alt_) {
auto state = getNetworkState();
if (!state_.empty() && label_.get_style_context()->has_class(state_)) {
label_.get_style_context()->remove_class(state_);
}
if (config_["format-" + state].isString()) {
if (!threshold_state.empty() && config_["format-" + state + "-" + threshold_state].isString()) {
default_format_ = config_["format-" + state + "-" + threshold_state].asString();
} else if (config_["format-" + state].isString()) {
default_format_ = config_["format-" + state].asString();
} else if (config_["format"].isString()) {
default_format_ = config_["format"].asString();
} else {
default_format_ = DEFAULT_FORMAT;
}
if (config_["tooltip-format-" + state].isString()) {
if (!threshold_state.empty() &&
config_["tooltip-format-" + state + "-" + threshold_state].isString()) {
tooltip_format = config_["tooltip-format-" + state + "-" + threshold_state].asString();
} else if (config_["tooltip-format-" + state].isString()) {
tooltip_format = config_["tooltip-format-" + state].asString();
}
if (!label_.get_style_context()->has_class(state)) {
@@ -312,7 +343,6 @@ auto waybar::modules::Network::update() -> void {
format_ = default_format_;
state_ = state;
}
getState(signal_strength_);
std::string final_ipaddr_;
if (addr_pref_ == ip_addr_pref::IPV4) {
@@ -320,6 +350,7 @@ auto waybar::modules::Network::update() -> void {
} else if (addr_pref_ == ip_addr_pref::IPV6) {
final_ipaddr_ = ipaddr6_;
} else if (addr_pref_ == ip_addr_pref::IPV4_6) {
final_ipaddr_.reserve(ipaddr_.length() + ipaddr6_.length() + 1);
final_ipaddr_ = ipaddr_;
final_ipaddr_ += '\n';
final_ipaddr_ += ipaddr6_;
@@ -333,23 +364,22 @@ auto waybar::modules::Network::update() -> void {
fmt::arg("ipaddr", final_ipaddr_), fmt::arg("gwaddr", gwaddr_), fmt::arg("cidr", cidr_),
fmt::arg("cidr6", cidr6_), fmt::arg("frequency", fmt::format("{:.1f}", frequency_)),
fmt::arg("icon", getIcon(signal_strength_, state_)),
fmt::arg("bandwidthDownBits",
pow_format(bandwidth_down * 8ull / (interval_.count() / 1000.0), "b/s")),
fmt::arg("bandwidthUpBits",
pow_format(bandwidth_up * 8ull / (interval_.count() / 1000.0), "b/s")),
fmt::arg(
"bandwidthTotalBits",
pow_format((bandwidth_up + bandwidth_down) * 8ull / (interval_.count() / 1000.0), "b/s")),
fmt::arg("bandwidthDownOctets",
pow_format(bandwidth_down / (interval_.count() / 1000.0), "o/s")),
fmt::arg("bandwidthUpOctets", pow_format(bandwidth_up / (interval_.count() / 1000.0), "o/s")),
fmt::arg("bandwidthDownBits", pow_format(bandwidth_down * 8ull / elapsed_seconds, "b/s")),
fmt::arg("bandwidthUpBits", pow_format(bandwidth_up * 8ull / elapsed_seconds, "b/s")),
fmt::arg("bandwidthTotalBits",
pow_format((bandwidth_up + bandwidth_down) * 8ull / elapsed_seconds, "b/s")),
fmt::arg("bandwidthDownOctets", pow_format(bandwidth_down / elapsed_seconds, "o/s")),
fmt::arg("bandwidthUpOctets", pow_format(bandwidth_up / elapsed_seconds, "o/s")),
fmt::arg("bandwidthTotalOctets",
pow_format((bandwidth_up + bandwidth_down) / (interval_.count() / 1000.0), "o/s")),
fmt::arg("bandwidthDownBytes",
pow_format(bandwidth_down / (interval_.count() / 1000.0), "B/s")),
fmt::arg("bandwidthUpBytes", pow_format(bandwidth_up / (interval_.count() / 1000.0), "B/s")),
pow_format((bandwidth_up + bandwidth_down) / elapsed_seconds, "o/s")),
fmt::arg("bandwidthDownBytes", pow_format(bandwidth_down / elapsed_seconds, "B/s")),
fmt::arg("bandwidthUpBytes", pow_format(bandwidth_up / elapsed_seconds, "B/s")),
fmt::arg("bandwidthDownBytesCompact",
pow_format(bandwidth_down / elapsed_seconds, "B", false, 2)),
fmt::arg("bandwidthUpBytesCompact",
pow_format(bandwidth_up / elapsed_seconds, "B", false, 2)),
fmt::arg("bandwidthTotalBytes",
pow_format((bandwidth_up + bandwidth_down) / (interval_.count() / 1000.0), "B/s")));
pow_format((bandwidth_up + bandwidth_down) / elapsed_seconds, "B/s")));
if (text.compare(label_.get_label()) != 0) {
label_.set_markup(text);
if (text.empty()) {
@@ -371,19 +401,22 @@ auto waybar::modules::Network::update() -> void {
fmt::arg("ipaddr", final_ipaddr_), fmt::arg("gwaddr", gwaddr_), fmt::arg("cidr", cidr_),
fmt::arg("cidr6", cidr6_), fmt::arg("frequency", fmt::format("{:.1f}", frequency_)),
fmt::arg("icon", getIcon(signal_strength_, state_)),
fmt::arg("bandwidthDownBits",
pow_format(bandwidth_down * 8ull / interval_.count(), "b/s")),
fmt::arg("bandwidthUpBits", pow_format(bandwidth_up * 8ull / interval_.count(), "b/s")),
fmt::arg("bandwidthDownBits", pow_format(bandwidth_down * 8ull / elapsed_seconds, "b/s")),
fmt::arg("bandwidthUpBits", pow_format(bandwidth_up * 8ull / elapsed_seconds, "b/s")),
fmt::arg("bandwidthTotalBits",
pow_format((bandwidth_up + bandwidth_down) * 8ull / interval_.count(), "b/s")),
fmt::arg("bandwidthDownOctets", pow_format(bandwidth_down / interval_.count(), "o/s")),
fmt::arg("bandwidthUpOctets", pow_format(bandwidth_up / interval_.count(), "o/s")),
pow_format((bandwidth_up + bandwidth_down) * 8ull / elapsed_seconds, "b/s")),
fmt::arg("bandwidthDownOctets", pow_format(bandwidth_down / elapsed_seconds, "o/s")),
fmt::arg("bandwidthUpOctets", pow_format(bandwidth_up / elapsed_seconds, "o/s")),
fmt::arg("bandwidthTotalOctets",
pow_format((bandwidth_up + bandwidth_down) / interval_.count(), "o/s")),
fmt::arg("bandwidthDownBytes", pow_format(bandwidth_down / interval_.count(), "B/s")),
fmt::arg("bandwidthUpBytes", pow_format(bandwidth_up / interval_.count(), "B/s")),
pow_format((bandwidth_up + bandwidth_down) / elapsed_seconds, "o/s")),
fmt::arg("bandwidthDownBytes", pow_format(bandwidth_down / elapsed_seconds, "B/s")),
fmt::arg("bandwidthUpBytes", pow_format(bandwidth_up / elapsed_seconds, "B/s")),
fmt::arg("bandwidthDownBytesCompact",
pow_format(bandwidth_down / elapsed_seconds, "B", false, 2)),
fmt::arg("bandwidthUpBytesCompact",
pow_format(bandwidth_up / elapsed_seconds, "B", false, 2)),
fmt::arg("bandwidthTotalBytes",
pow_format((bandwidth_up + bandwidth_down) / interval_.count(), "B/s")));
pow_format((bandwidth_up + bandwidth_down) / elapsed_seconds, "B/s")));
if (label_.get_tooltip_text() != tooltip_text) {
label_.set_tooltip_markup(tooltip_text);
}
@@ -625,18 +658,31 @@ int waybar::modules::Network::handleEvents(struct nl_msg* msg, void* data) {
case IFA_LOCAL:
char ipaddr[INET6_ADDRSTRLEN];
if (!is_del_event) {
bool addr_changed = false;
std::string changed_ipaddr;
int changed_cidr = 0;
if ((net->addr_pref_ == ip_addr_pref::IPV4 ||
net->addr_pref_ == ip_addr_pref::IPV4_6) &&
net->cidr_ == 0 && ifa->ifa_family == AF_INET) {
net->ipaddr_ =
inet_ntop(ifa->ifa_family, RTA_DATA(ifa_rta), ipaddr, sizeof(ipaddr));
net->cidr_ = ifa->ifa_prefixlen;
if (inet_ntop(ifa->ifa_family, RTA_DATA(ifa_rta), ipaddr, sizeof(ipaddr)) !=
nullptr) {
net->ipaddr_ = ipaddr;
net->cidr_ = ifa->ifa_prefixlen;
addr_changed = true;
changed_ipaddr = net->ipaddr_;
changed_cidr = net->cidr_;
}
} else if ((net->addr_pref_ == ip_addr_pref::IPV6 ||
net->addr_pref_ == ip_addr_pref::IPV4_6) &&
net->cidr6_ == 0 && ifa->ifa_family == AF_INET6) {
net->ipaddr6_ =
inet_ntop(ifa->ifa_family, RTA_DATA(ifa_rta), ipaddr, sizeof(ipaddr));
net->cidr6_ = ifa->ifa_prefixlen;
if (inet_ntop(ifa->ifa_family, RTA_DATA(ifa_rta), ipaddr, sizeof(ipaddr)) !=
nullptr) {
net->ipaddr6_ = ipaddr;
net->cidr6_ = ifa->ifa_prefixlen;
addr_changed = true;
changed_ipaddr = net->ipaddr6_;
changed_cidr = net->cidr6_;
}
}
switch (ifa->ifa_family) {
@@ -656,14 +702,20 @@ int waybar::modules::Network::handleEvents(struct nl_msg* msg, void* data) {
net->netmask6_ = inet_ntop(ifa->ifa_family, &netmask6, ipaddr, sizeof(ipaddr));
}
}
spdlog::debug("network: {}, new addr {}/{}", net->ifname_, net->ipaddr_, net->cidr_);
if (addr_changed) {
spdlog::debug("network: {}, new addr {}/{}", net->ifname_, changed_ipaddr,
changed_cidr);
}
} else {
net->ipaddr_.clear();
net->ipaddr6_.clear();
net->cidr_ = 0;
net->cidr6_ = 0;
net->netmask_.clear();
net->netmask6_.clear();
if (ifa->ifa_family == AF_INET) {
net->ipaddr_.clear();
net->cidr_ = 0;
net->netmask_.clear();
} else if (ifa->ifa_family == AF_INET6) {
net->ipaddr6_.clear();
net->cidr6_ = 0;
net->netmask6_.clear();
}
spdlog::debug("network: {} addr deleted {}/{}", net->ifname_,
inet_ntop(ifa->ifa_family, RTA_DATA(ifa_rta), ipaddr, sizeof(ipaddr)),
ifa->ifa_prefixlen);
@@ -718,16 +770,20 @@ int waybar::modules::Network::handleEvents(struct nl_msg* msg, void* data) {
/* The destination address.
* Should be either missing, or maybe all 0s. Accept both.
*/
const uint32_t nr_zeroes = (family == AF_INET) ? 4 : 16;
unsigned char c = 0;
size_t dstlen = RTA_PAYLOAD(attr);
if (dstlen != nr_zeroes) {
break;
auto* dest = (const unsigned char*)RTA_DATA(attr);
size_t dest_size = RTA_PAYLOAD(attr);
for (size_t i = 0; i < dest_size; ++i) {
if (dest[i] != 0) {
has_destination = true;
break;
}
}
for (uint32_t i = 0; i < dstlen; i += 1) {
c |= *((unsigned char*)RTA_DATA(attr) + i);
if (rtm->rtm_dst_len != 0) {
// We have found a destination like 0.0.0.0/24, this is not a
// default gateway route.
has_destination = true;
}
has_destination = (c == 0);
break;
}
case RTA_OIF:
+21 -16
View File
@@ -17,19 +17,21 @@
#include "giomm/dataoutputstream.h"
#include "giomm/unixinputstream.h"
#include "giomm/unixoutputstream.h"
#include "util/scoped_fd.hpp"
namespace waybar::modules::niri {
IPC::IPC() { startIPC(); }
int IPC::connectToSocket() {
const char* socket_path = getenv("NIRI_SOCKET");
if (socket_path == nullptr) {
spdlog::warn("Niri is not running, niri IPC will not be available.");
return -1;
throw std::runtime_error("Niri IPC: NIRI_SOCKET was not set! (Is Niri running?)");
}
struct sockaddr_un addr;
int socketfd = socket(AF_UNIX, SOCK_STREAM, 0);
util::ScopedFd socketfd(socket(AF_UNIX, SOCK_STREAM, 0));
if (socketfd == -1) {
throw std::runtime_error("socketfd failed");
@@ -44,26 +46,18 @@ int IPC::connectToSocket() {
int l = sizeof(struct sockaddr_un);
if (connect(socketfd, (struct sockaddr*)&addr, l) == -1) {
close(socketfd);
throw std::runtime_error("unable to connect");
}
return socketfd;
return socketfd.release();
}
void IPC::startIPC() {
// will start IPC and relay events to parseIPC
std::thread([&]() {
int socketfd;
try {
socketfd = connectToSocket();
} catch (std::exception& e) {
spdlog::error("Niri IPC: failed to start, reason: {}", e.what());
return;
}
if (socketfd == -1) return;
int socketfd = connectToSocket();
std::thread([this, socketfd]() {
spdlog::info("Niri IPC starting");
auto unix_istream = Gio::UnixInputStream::create(socketfd, true);
@@ -202,6 +196,18 @@ void IPC::parseIPC(const std::string& line) {
for (auto& win : windows_) {
win["is_focused"] = focused && win["id"].asUInt64() == id;
}
} else if (const auto &payload = ev["WindowLayoutsChanged"]) {
const auto &values = payload["changes"];
for (const auto &changed : values) {
const auto id = changed[0].asUInt64();
const auto &change = changed[1];
for (auto &win : windows_) {
if (win["id"].asUInt64() == id) {
win["layout"] = change;
break;
}
}
}
}
}
@@ -241,8 +247,7 @@ void IPC::unregisterForIPC(EventHandler* ev_handler) {
}
Json::Value IPC::send(const Json::Value& request) {
int socketfd = connectToSocket();
if (socketfd == -1) throw std::runtime_error("Niri is not running");
util::ScopedFd socketfd(connectToSocket());
auto unix_istream = Gio::UnixInputStream::create(socketfd, true);
auto unix_ostream = Gio::UnixOutputStream::create(socketfd, false);
+2 -1
View File
@@ -32,6 +32,7 @@ void Language::updateFromIPC() {
auto ipcLock = gIPC->lockData();
layouts_.clear();
layouts_.reserve(gIPC->keyboardLayoutNames().size());
for (const auto& fullName : gIPC->keyboardLayoutNames()) layouts_.push_back(getLayout(fullName));
current_idx_ = gIPC->keyboardLayoutCurrent();
@@ -84,7 +85,7 @@ void Language::doUpdate() {
spdlog::debug("niri language formatted layout name {}", layoutName);
if (!format_.empty()) {
if (!layoutName.empty()) {
label_.show();
label_.set_markup(layoutName);
} else {
+19 -3
View File
@@ -17,6 +17,7 @@ Window::Window(const std::string& id, const Bar& bar, const Json::Value& config)
gIPC->registerForIPC("WindowOpenedOrChanged", this);
gIPC->registerForIPC("WindowClosed", this);
gIPC->registerForIPC("WindowFocusChanged", this);
gIPC->registerForIPC("WindowLayoutsChanged", this);
dp.emit();
}
@@ -54,20 +55,30 @@ void Window::doUpdate() {
if (it != windows.cend()) {
const auto& window = *it;
auto max_col = -1;
for (const auto &win : windows) {
if (win["workspace_id"].asUInt64() != window["workspace_id"].asUInt64()) {
continue;
}
const auto col = win["layout"]["pos_in_scrolling_layout"][0].asInt64();
if (col > max_col) max_col = col;
}
const auto title = window["title"].asString();
const auto appId = window["app_id"].asString();
const auto col = window["layout"]["pos_in_scrolling_layout"][0].asInt64();
const auto sanitizedTitle = waybar::util::sanitize_string(title);
const auto sanitizedAppId = waybar::util::sanitize_string(appId);
label_.show();
label_.set_markup(waybar::util::rewriteString(
fmt::format(fmt::runtime(format_), fmt::arg("title", sanitizedTitle),
fmt::arg("app_id", sanitizedAppId)),
fmt::arg("app_id", sanitizedAppId), fmt::arg("col", col),
fmt::arg("max_col", max_col)),
config_["rewrite"]));
updateAppIconName(appId, "");
if (tooltipEnabled()) label_.set_tooltip_text(title);
if (tooltipEnabled()) label_.set_tooltip_markup(title);
const auto id = window["id"].asUInt64();
const auto workspaceId = window["workspace_id"].asUInt64();
@@ -82,7 +93,12 @@ void Window::doUpdate() {
oldAppId_ = appId;
}
} else {
label_.hide();
label_.show();
label_.set_markup(waybar::util::rewriteString(
fmt::format(fmt::runtime(format_), fmt::arg("title", ""),
fmt::arg("app_id", "")),
config_["rewrite"]));
updateAppIconName("", "");
setClass("solo", false);
if (!oldAppId_.empty()) setClass(oldAppId_, false);
+141 -9
View File
@@ -4,10 +4,34 @@
#include <gtkmm/label.h>
#include <spdlog/spdlog.h>
#include <algorithm>
#include <cctype>
namespace waybar::modules::niri {
Workspaces::Workspaces(const std::string& id, const Bar& bar, const Json::Value& config)
: AModule(config, "workspaces", id, false, false), bar_(bar), box_(bar.orientation, 0) {
const auto config_sort_by_number = config_["sort-by-number"];
if (config_sort_by_number.isBool()) {
spdlog::warn("[niri/workspaces]: Prefer sort-by-id instead of sort-by-number");
sort_by_id_ = config_sort_by_number.asBool();
}
const auto config_sort_by_id = config_["sort-by-id"];
if (config_sort_by_id.isBool()) {
sort_by_id_ = config_sort_by_id.asBool();
}
const auto config_sort_by_name = config_["sort-by-name"];
if (config_sort_by_name.isBool()) {
sort_by_name_ = config_sort_by_name.asBool();
}
const auto config_sort_by_coordinates = config_["sort-by-coordinates"];
if (config_sort_by_coordinates.isBool()) {
sort_by_coordinates_ = config_sort_by_coordinates.asBool();
}
box_.set_name("workspaces");
if (!id.empty()) {
box_.get_style_context()->add_class(id);
@@ -22,6 +46,12 @@ Workspaces::Workspaces(const std::string& id, const Bar& bar, const Json::Value&
gIPC->registerForIPC("WorkspaceActiveWindowChanged", this);
gIPC->registerForIPC("WorkspaceUrgencyChanged", this);
if (config["enable-bar-scroll"].asBool()) {
auto& window = const_cast<Bar&>(bar_).window;
window.add_events(Gdk::SCROLL_MASK | Gdk::SMOOTH_SCROLL_MASK);
window.signal_scroll_event().connect(sigc::mem_fun(*this, &Workspaces::handleScroll));
}
dp.emit();
}
@@ -41,6 +71,8 @@ void Workspaces::doUpdate() {
return ws["output"].asString() == bar_.output->name;
});
sortWorkspaces(my_workspaces);
// Remove buttons for removed workspaces.
for (auto it = buttons_.begin(); it != buttons_.end();) {
auto ws = std::find_if(my_workspaces.begin(), my_workspaces.end(),
@@ -97,13 +129,15 @@ void Workspaces::doUpdate() {
if (config_["format"].isString()) {
auto format = config_["format"].asString();
name = fmt::format(fmt::runtime(format), fmt::arg("icon", getIcon(name, ws)),
fmt::arg("value", name), fmt::arg("name", ws["name"].asString()),
fmt::arg("index", ws["idx"].asUInt()),
fmt::arg("output", ws["output"].asString()));
name = fmt::format(
fmt::runtime(format), fmt::arg("icon", getIcon(name, ws)), fmt::arg("value", name),
fmt::arg("name", ws["name"].asString()), fmt::arg("index", ws["idx"].asUInt()),
fmt::arg("output", ws["output"].asString()), fmt::arg("total", my_workspaces.size()));
}
if (!config_["disable-markup"].asBool()) {
static_cast<Gtk::Label*>(button.get_children()[0])->set_markup(name);
auto* child = gtk_bin_get_child(GTK_BIN(button.gobj()));
if (child != nullptr && GTK_IS_LABEL(child))
gtk_label_set_markup(GTK_LABEL(child), name.c_str());
} else {
button.set_label(name);
}
@@ -114,6 +148,11 @@ void Workspaces::doUpdate() {
button.show();
else
button.hide();
} else if (config_["hide-empty"].asBool()) {
if (ws["active_window_id"].isNull() && !ws["is_focused"].asBool())
button.hide();
else
button.show();
} else {
button.show();
}
@@ -123,8 +162,7 @@ void Workspaces::doUpdate() {
for (auto it = my_workspaces.cbegin(); it != my_workspaces.cend(); ++it) {
const auto& ws = *it;
auto pos = ws["idx"].asUInt() - 1;
if (alloutputs) pos = it - my_workspaces.cbegin();
const auto pos = static_cast<int>(std::distance(my_workspaces.cbegin(), it));
auto& button = buttons_[ws["id"].asUInt64()];
box_.reorder_child(button, pos);
@@ -174,11 +212,11 @@ std::string Workspaces::getIcon(const std::string& value, const Json::Value& ws)
if (ws["is_urgent"].asBool() && icons["urgent"]) return icons["urgent"].asString();
if (ws["active_window_id"].isNull() && icons["empty"]) return icons["empty"].asString();
if (ws["is_active"].asBool() && icons["active"]) return icons["active"].asString();
if (ws["is_focused"].asBool() && icons["focused"]) return icons["focused"].asString();
if (ws["is_active"].asBool() && icons["active"]) return icons["active"].asString();
if (ws["active_window_id"].isNull() && icons["empty"]) return icons["empty"].asString();
if (ws["name"]) {
const auto& name = ws["name"].asString();
@@ -193,4 +231,98 @@ std::string Workspaces::getIcon(const std::string& value, const Json::Value& ws)
return value;
}
bool Workspaces::handleScroll(GdkEventScroll* e) {
if (gdk_event_get_pointer_emulated((GdkEvent*)e) != 0) {
/**
* Ignore emulated scroll events on window
*/
return false;
}
auto dir = AModule::getScrollDir(e);
if (dir == SCROLL_DIR::NONE) {
return true;
}
try {
Json::Value request(Json::objectValue);
auto& action = (request["Action"] = Json::Value(Json::objectValue));
std::string action_name;
if (dir == SCROLL_DIR::DOWN || dir == SCROLL_DIR::RIGHT) {
action_name = "FocusWorkspaceDown";
} else if (dir == SCROLL_DIR::UP || dir == SCROLL_DIR::LEFT) {
action_name = "FocusWorkspaceUp";
} else {
return true;
}
action[action_name] = Json::Value(Json::objectValue);
IPC::send(request);
} catch (const std::exception& e) {
spdlog::error("Workspaces: {}", e.what());
return false;
}
return true;
}
void Workspaces::sortWorkspaces(std::vector<Json::Value>& workspaces) const {
auto get_name = [](const Json::Value& ws) -> std::string {
if (ws["name"]) return ws["name"].asString();
return std::to_string(ws["idx"].asUInt());
};
auto is_numeric = [](const std::string& value) {
return !value.empty() &&
std::all_of(value.begin(), value.end(), [](unsigned char c) { return std::isdigit(c); });
};
const bool names_are_numeric =
std::all_of(workspaces.begin(), workspaces.end(),
[&](const auto& ws) { return is_numeric(get_name(ws)); });
auto compare_numeric_strings = [](const std::string& a, const std::string& b) {
if (a.size() != b.size()) return a.size() < b.size();
return a < b;
};
std::sort(workspaces.begin(), workspaces.end(), [&](const auto& a, const auto& b) {
if (sort_by_id_) {
return a["id"].asUInt64() < b["id"].asUInt64();
}
if (sort_by_name_) {
const auto a_name = get_name(a);
const auto b_name = get_name(b);
if (a_name == b_name) return a["id"].asUInt64() < b["id"].asUInt64();
if (names_are_numeric) return compare_numeric_strings(a_name, b_name);
return a_name < b_name;
}
if (sort_by_coordinates_) {
const auto& a_output = a["output"].asString();
const auto& b_output = b["output"].asString();
if (a_output == b_output) {
const auto a_idx = a["idx"].asUInt();
const auto b_idx = b["idx"].asUInt();
if (a_idx == b_idx) return a["id"].asUInt64() < b["id"].asUInt64();
return a_idx < b_idx;
}
return a_output < b_output;
}
// Default to sorting by workspace index on each output.
const auto& a_output = a["output"].asString();
const auto& b_output = b["output"].asString();
const auto a_idx = a["idx"].asUInt();
const auto b_idx = b["idx"].asUInt();
if (a_output == b_output) return a_idx < b_idx;
return a_output < b_output;
});
}
} // namespace waybar::modules::niri
+47 -3
View File
@@ -12,7 +12,8 @@ PowerProfilesDaemon::PowerProfilesDaemon(const std::string& id, const Json::Valu
if (config_["tooltip-format"].isString()) {
tooltipFormat_ = config_["tooltip-format"].asString();
} else {
tooltipFormat_ = "Power profile: {profile}\nDriver: {driver}";
tooltipFormat_ =
"Power profile: {profile}\nCPU driver: {cpu_driver}\nPlatform driver: {platform_driver}";
}
// Fasten your seatbelt, we're up for quite a ride. The rest of the
// init is performed asynchronously. There's 2 callbacks involved.
@@ -95,15 +96,51 @@ void PowerProfilesDaemon::populateInitState() {
powerProfilesProxy_->get_cached_property(profilesVariant, "Profiles");
for (auto& variantDict : profilesVariant.get()) {
Glib::ustring name;
// Legacy single `Driver` property, still exposed by older
// power-profiles-daemon versions.
Glib::ustring driver;
Glib::ustring cpuDriver;
Glib::ustring platformDriver;
if (auto p = variantDict.find("Profile"); p != variantDict.end()) {
name = p->second.get();
}
if (auto d = variantDict.find("Driver"); d != variantDict.end()) {
driver = d->second.get();
}
if (auto cd = variantDict.find("CpuDriver"); cd != variantDict.end()) {
cpuDriver = cd->second.get();
}
if (auto pd = variantDict.find("PlatformDriver"); pd != variantDict.end()) {
platformDriver = pd->second.get();
}
// Recent power-profiles-daemon versions split the single `Driver`
// property into `CpuDriver` and `PlatformDriver`. When talking to an
// older daemon that only exposes `Driver`, fall back to it so the new
// {cpu_driver}/{platform_driver} placeholders still resolve.
if (cpuDriver.empty()) {
cpuDriver = driver;
}
if (platformDriver.empty()) {
platformDriver = driver;
}
// Conversely, keep the legacy {driver} placeholder working against a
// recent daemon that no longer exposes `Driver` by deriving it from
// the CPU driver.
if (driver.empty()) {
driver = cpuDriver;
}
if (driver.empty()) {
driver = "Unavailable";
cpuDriver = "Unavailable";
platformDriver = "Unavailable";
spdlog::warn("Cannot find power profiles daemon driver.");
}
if (!name.empty()) {
availableProfiles_.emplace_back(std::move(name), std::move(driver));
availableProfiles_.emplace_back(std::move(name), std::move(driver), std::move(cpuDriver),
std::move(platformDriver));
} else {
spdlog::error(
"Power profiles daemon: power-profiles-daemon sent us an empty power profile name. "
@@ -153,11 +190,14 @@ auto PowerProfilesDaemon::update() -> void {
// Set label
fmt::dynamic_format_arg_store<fmt::format_context> store;
store.push_back(fmt::arg("profile", profile.name));
// Legacy placeholder, kept for backward compatibility with existing configs.
store.push_back(fmt::arg("driver", profile.driver));
store.push_back(fmt::arg("cpu_driver", profile.cpuDriver));
store.push_back(fmt::arg("platform_driver", profile.platformDriver));
store.push_back(fmt::arg("icon", getIcon(0, profile.name)));
label_.set_markup(fmt::vformat(format_, store));
if (tooltipEnabled()) {
label_.set_tooltip_text(fmt::vformat(tooltipFormat_, store));
label_.set_tooltip_markup(fmt::vformat(tooltipFormat_, store));
}
// Set CSS class
@@ -176,6 +216,10 @@ auto PowerProfilesDaemon::update() -> void {
bool PowerProfilesDaemon::handleToggle(GdkEventButton* const& e) {
if (e->type == GdkEventType::GDK_BUTTON_PRESS && connected_) {
if (availableProfiles_.empty()) return true;
if (activeProfile_ == availableProfiles_.end()) {
activeProfile_ = availableProfiles_.begin();
}
if (e->button == 1) /* left click */ {
activeProfile_++;
if (activeProfile_ == availableProfiles_.end()) {
+2 -3
View File
@@ -71,6 +71,7 @@ Privacy::Privacy(const std::string& id, const Json::Value& config, Gtk::Orientat
auto* item = Gtk::make_managed<PrivacyItem>(module, nodeType, nodePtr, orientation, pos,
iconSize, transition_duration);
box_.add(*item);
modules_.push_back(item);
}
}
@@ -148,9 +149,7 @@ auto Privacy::update() -> void {
bool useAudioOut = false;
mutex_.lock();
for (Gtk::Widget* widget : box_.get_children()) {
auto* module = dynamic_cast<PrivacyItem*>(widget);
if (module == nullptr) continue;
for (PrivacyItem* module : modules_) {
switch (module->privacy_type) {
case util::PipewireBackend::PRIVACY_NODE_TYPE_VIDEO_INPUT:
setScreenshare = true;
+7 -2
View File
@@ -7,6 +7,11 @@ waybar::modules::Pulseaudio::Pulseaudio(const std::string& id, const Json::Value
backend = util::AudioBackend::getInstance([this] { this->dp.emit(); });
backend->setIgnoredSinks(config_["ignored-sinks"]);
backend->setSinkMapping(config_["sink-mapping"]);
if (config_["target"].isString() && config_["target"].asString() == "source") {
target = util::PulseaudioTarget::Source;
}
}
bool waybar::modules::Pulseaudio::handleScroll(GdkEventScroll* e) {
@@ -33,7 +38,7 @@ bool waybar::modules::Pulseaudio::handleScroll(GdkEventScroll* e) {
? util::ChangeType::Increase
: util::ChangeType::Decrease;
backend->changeVolume(change_type, step, max_volume);
backend->changeVolume(change_type, step, max_volume, target);
return true;
}
@@ -138,7 +143,7 @@ auto waybar::modules::Pulseaudio::update() -> void {
fmt::arg("source_volume", source_volume), fmt::arg("source_desc", source_desc),
fmt::arg("icon", getIcon(sink_volume, getPulseIcon()))));
} else {
label_.set_tooltip_text(sink_desc);
label_.set_tooltip_markup(sink_desc);
}
}
+33 -54
View File
@@ -6,77 +6,56 @@ PulseaudioSlider::PulseaudioSlider(const std::string& id, const Json::Value& con
: ASlider(config, "pulseaudio-slider", id) {
backend = util::AudioBackend::getInstance([this] { this->dp.emit(); });
backend->setIgnoredSinks(config_["ignored-sinks"]);
backend->setSinkMapping(config_["sink-mapping"]);
if (config_["target"].isString()) {
std::string target = config_["target"].asString();
if (target == "sink") {
this->target = PulseaudioSliderTarget::Sink;
this->target = util::PulseaudioTarget::Sink;
} else if (target == "source") {
this->target = PulseaudioSliderTarget::Source;
this->target = util::PulseaudioTarget::Source;
}
}
if (config_["zero-on-mute"].isBool()) {
zero_on_mute = config_["zero-on-mute"].asBool();
}
if (config_["unmute-on-volume-change"].isBool()) {
unmute_on_volume_change = config_["unmute-on-volume-change"].asBool();
}
}
void PulseaudioSlider::update() {
switch (target) {
case PulseaudioSliderTarget::Sink:
if (backend->getSinkMuted()) {
scale_.set_value(min_);
} else {
scale_.set_value(backend->getSinkVolume());
}
break;
uint16_t display_value = backend->getVolume(target);
bool is_muted = backend->getMuted(target);
case PulseaudioSliderTarget::Source:
if (backend->getSourceMuted()) {
scale_.set_value(min_);
} else {
scale_.set_value(backend->getSourceVolume());
}
break;
if (is_muted) {
if (zero_on_mute) {
display_value = min_;
}
if (!previously_muted) {
scale_.get_style_context()->add_class("muted");
}
} else if (previously_muted) {
scale_.get_style_context()->remove_class("muted");
}
scale_.set_value(display_value);
previously_muted = is_muted;
}
void PulseaudioSlider::onValueChanged() {
bool is_mute = false;
uint16_t slider_value = scale_.get_value();
switch (target) {
case PulseaudioSliderTarget::Sink:
if (backend->getSinkMuted()) {
is_mute = true;
}
break;
case PulseaudioSliderTarget::Source:
if (backend->getSourceMuted()) {
is_mute = true;
}
break;
}
uint16_t volume = scale_.get_value();
if (is_mute) {
// Avoid setting sink/source to volume 0 if the user muted if via another mean.
if (volume == 0) {
return;
}
// If the sink/source is mute, but the user clicked the slider, unmute it!
else {
switch (target) {
case PulseaudioSliderTarget::Sink:
backend->toggleSinkMute(false);
break;
case PulseaudioSliderTarget::Source:
backend->toggleSourceMute(false);
break;
}
// Avoid setting sink/source to volume 0 if the user muted it via other means.
if (!backend->getMuted(target) || slider_value != 0) {
if (unmute_on_volume_change) {
backend->unmute(target);
}
backend->changeVolume(slider_value, min_, max_, target);
}
backend->changeVolume(volume, min_, max_);
}
} // namespace waybar::modules
} // namespace waybar::modules
+1
View File
@@ -118,6 +118,7 @@ Layout::Layout(const std::string& id, const waybar::Bar& bar, const Json::Value&
if (!seat_) {
spdlog::error("wl_seat not advertised");
return;
}
label_.hide();
+1
View File
@@ -77,6 +77,7 @@ Mode::Mode(const std::string& id, const waybar::Bar& bar, const Json::Value& con
if (!seat_) {
spdlog::error("wl_seat not advertised");
return;
}
label_.hide();
+63 -3
View File
@@ -33,6 +33,33 @@ static const zriver_output_status_v1_listener output_status_listener_impl{
.urgent_tags = listen_urgent_tags,
};
static void listen_focused_output(void* data, struct zriver_seat_status_v1* zriver_seat_status_v1,
struct wl_output* output) {
static_cast<Tags*>(data)->handle_focused_output(output);
}
static void listen_unfocused_output(void* data, struct zriver_seat_status_v1* zriver_seat_status_v1,
struct wl_output* output) {
static_cast<Tags*>(data)->handle_unfocused_output(output);
}
static void listen_focused_view(void* data, struct zriver_seat_status_v1* zriver_seat_status_v1,
const char* title) {
// This module doesn't care
}
static void listen_mode(void* data, struct zriver_seat_status_v1* zriver_seat_status_v1,
const char* mode) {
// This module doesn't care
}
static const zriver_seat_status_v1_listener seat_status_listener_impl{
.focused_output = listen_focused_output,
.unfocused_output = listen_unfocused_output,
.focused_view = listen_focused_view,
.mode = listen_mode,
};
static void listen_command_success(void* data,
struct zriver_command_callback_v1* zriver_command_callback_v1,
const char* output) {
@@ -87,8 +114,10 @@ Tags::Tags(const std::string& id, const waybar::Bar& bar, const Json::Value& con
control_{nullptr},
seat_{nullptr},
bar_(bar),
output_{nullptr},
box_{bar.orientation, 0},
output_status_{nullptr} {
output_status_{nullptr},
seat_status_{nullptr} {
struct wl_display* display = Client::inst()->wl_display;
struct wl_registry* registry = wl_display_get_registry(display);
wl_registry_add_listener(registry, &registry_listener_impl, this);
@@ -101,12 +130,19 @@ Tags::Tags(const std::string& id, const waybar::Bar& bar, const Json::Value& con
if (!control_) {
spdlog::error("river_control_v1 not advertised");
return;
}
if (!seat_) {
spdlog::error("wl_seat not advertised");
return;
}
// Store the output this module belongs to; the river_output_status and
// river_seat_status objects (and their listeners) are created lazily in
// handle_show() to avoid leaking objects without listeners here.
output_ = gdk_wayland_monitor_get_wl_output(bar_.output->monitor->gobj());
box_.set_name("tags");
if (!id.empty()) {
box_.get_style_context()->add_class(id);
@@ -147,6 +183,7 @@ Tags::Tags(const std::string& id, const waybar::Bar& bar, const Json::Value& con
button.signal_button_press_event().connect(
sigc::bind(sigc::mem_fun(*this, &Tags::handle_button_press), (1 << tag)));
}
button.get_style_context()->add_class("tag-" + std::to_string(tag + 1));
button.show();
}
@@ -158,6 +195,10 @@ Tags::~Tags() {
zriver_output_status_v1_destroy(output_status_);
}
if (seat_status_) {
zriver_seat_status_v1_destroy(seat_status_);
}
if (control_) {
zriver_control_v1_destroy(control_);
}
@@ -168,10 +209,13 @@ Tags::~Tags() {
}
void Tags::handle_show() {
struct wl_output* output = gdk_wayland_monitor_get_wl_output(bar_.output->monitor->gobj());
output_status_ = zriver_status_manager_v1_get_river_output_status(status_manager_, output);
if (!status_manager_) return;
output_status_ = zriver_status_manager_v1_get_river_output_status(status_manager_, output_);
zriver_output_status_v1_add_listener(output_status_, &output_status_listener_impl, this);
seat_status_ = zriver_status_manager_v1_get_river_seat_status(status_manager_, seat_);
zriver_seat_status_v1_add_listener(seat_status_, &seat_status_listener_impl, this);
zriver_status_manager_v1_destroy(status_manager_);
status_manager_ = nullptr;
}
@@ -263,4 +307,20 @@ void Tags::handle_urgent_tags(uint32_t tags) {
}
}
void Tags::handle_focused_output(struct wl_output* output) {
if (output_ == output) {
for (size_t i = 0; i < buttons_.size(); ++i) {
buttons_[i].get_style_context()->add_class("output");
}
}
}
void Tags::handle_unfocused_output(struct wl_output* output) {
if (output_ == output) {
for (size_t i = 0; i < buttons_.size(); ++i) {
buttons_[i].get_style_context()->remove_class("output");
}
}
}
} /* namespace waybar::modules::river */
+1
View File
@@ -78,6 +78,7 @@ Window::Window(const std::string& id, const waybar::Bar& bar, const Json::Value&
if (!seat_) {
spdlog::error("wl_seat not advertised");
return;
}
label_.hide(); // hide the label until populated
+2 -2
View File
@@ -25,9 +25,9 @@ auto waybar::modules::Clock::update() -> void {
if (config_["tooltip-format"].isString()) {
auto tooltip_format = config_["tooltip-format"].asString();
auto tooltip_text = fmt::format(fmt::runtime(tooltip_format), localtime);
label_.set_tooltip_text(tooltip_text);
label_.set_tooltip_markup(tooltip_text);
} else {
label_.set_tooltip_text(text);
label_.set_tooltip_markup(text);
}
}
// Call parent update
+3 -1
View File
@@ -102,7 +102,9 @@ Sndio::~Sndio() { sioctl_close(hdl_); }
auto Sndio::update() -> void {
auto format = format_;
unsigned int vol = 100. * static_cast<double>(volume_) / static_cast<double>(maxval_);
unsigned int vol = (maxval_ > 0) ? static_cast<unsigned int>(100. * static_cast<double>(volume_) /
static_cast<double>(maxval_))
: 0;
if (volume_ == 0) {
label_.get_style_context()->add_class("muted");
+130 -11
View File
@@ -6,9 +6,14 @@
namespace waybar::modules::SNI {
static const unsigned RETRY_DELAY_MS = 200;
static const unsigned MAX_RETRIES = 10;
Host::Host(const std::size_t id, const Json::Value& config, const Bar& bar,
const std::vector<std::string>& ignore_list,
const std::function<void(std::unique_ptr<Item>&)>& on_add,
const std::function<void(std::unique_ptr<Item>&)>& on_remove)
const std::function<void(std::unique_ptr<Item>&)>& on_remove,
const std::function<void()>& on_update)
: bus_name_("org.kde.StatusNotifierHost-" + std::to_string(getpid()) + "-" +
std::to_string(id)),
object_path_("/StatusNotifierHost/" + std::to_string(id)),
@@ -16,10 +21,13 @@ Host::Host(const std::size_t id, const Json::Value& config, const Bar& bar,
sigc::mem_fun(*this, &Host::busAcquired))),
config_(config),
bar_(bar),
ignore_list_(ignore_list),
on_add_(on_add),
on_remove_(on_remove) {}
on_remove_(on_remove),
on_update_(on_update) {}
Host::~Host() {
retry_connection_.disconnect();
if (bus_name_id_ > 0) {
Gio::DBus::unown_name(bus_name_id_);
bus_name_id_ = 0;
@@ -33,6 +41,42 @@ Host::~Host() {
g_clear_object(&watcher_);
}
void Host::checkIgnoreList(const std::vector<std::string>& ignore_list,
const std::function<void(std::unique_ptr<Item>&)>& on_remove) {
spdlog::debug("Host::checkIgnoreList - checking {} items against {} patterns", items_.size(),
ignore_list.size());
for (auto it = items_.begin(); it != items_.end();) {
auto& item = *it;
spdlog::debug(" Checking item: bus_name='{}', category='{}', icon_name='{}', title='{}'",
item->bus_name, item->category, item->icon_name, item->title);
bool should_remove = false;
for (const auto& ignored : ignore_list) {
if (item->bus_name.find(ignored) != std::string::npos ||
item->category.find(ignored) != std::string::npos ||
item->icon_name.find(ignored) != std::string::npos ||
item->id.find(ignored) != std::string::npos ||
item->title.find(ignored) != std::string::npos) {
spdlog::info(
"Host: Ignoring item bus_name='{}', category='{}', icon_name='{}', title='{}' - "
"matched pattern '{}'",
item->bus_name, item->category, item->icon_name, item->title, ignored);
on_remove(item);
should_remove = true;
break;
}
}
if (should_remove) {
it = items_.erase(it);
} else {
++it;
}
}
}
void Host::busAcquired(const Glib::RefPtr<Gio::DBus::Connection>& conn, Glib::ustring name) {
watcher_id_ = Gio::DBus::watch_name(conn, "org.kde.StatusNotifierWatcher",
sigc::mem_fun(*this, &Host::nameAppeared),
@@ -51,15 +95,17 @@ void Host::nameAppeared(const Glib::RefPtr<Gio::DBus::Connection>& conn, const G
}
void Host::nameVanished(const Glib::RefPtr<Gio::DBus::Connection>& conn, const Glib::ustring name) {
retry_connection_.disconnect();
retry_count_ = 0;
g_cancellable_cancel(cancellable_);
g_clear_object(&cancellable_);
g_clear_object(&watcher_);
items_.clear();
clearItems();
}
void Host::proxyReady(GObject* src, GAsyncResult* res, gpointer data) {
GError* error = nullptr;
waybar::util::ScopeGuard error_deleter([error]() {
waybar::util::ScopeGuard error_deleter([&error]() {
if (error != nullptr) {
g_error_free(error);
}
@@ -70,18 +116,38 @@ void Host::proxyReady(GObject* src, GAsyncResult* res, gpointer data) {
return;
}
auto host = static_cast<SNI::Host*>(data);
host->watcher_ = watcher;
if (error != nullptr) {
spdlog::error("Host: {}", error->message);
g_clear_object(&host->cancellable_);
if (host->retry_count_ >= MAX_RETRIES) {
spdlog::warn("Host: giving up on watcher proxy creation after {} retries",
host->retry_count_);
return;
}
host->retry_count_ += 1;
// Store the timeout connection so it is disconnected in ~Host, avoiding a
// use-after-free if the Host is destroyed before the retry fires.
host->retry_connection_ = Glib::signal_timeout().connect(
[host]() {
if (host->watcher_ != nullptr) {
return false;
}
auto conn = Gio::DBus::Connection::get_sync(Gio::DBus::BusType::BUS_TYPE_SESSION);
host->nameAppeared(conn, "org.kde.StatusNotifierWatcher", "");
return false;
},
RETRY_DELAY_MS);
return;
}
host->retry_count_ = 0;
host->watcher_ = watcher;
sn_watcher_call_register_host(host->watcher_, host->object_path_.c_str(), host->cancellable_,
&Host::registerHost, data);
}
void Host::registerHost(GObject* src, GAsyncResult* res, gpointer data) {
GError* error = nullptr;
waybar::util::ScopeGuard error_deleter([error]() {
waybar::util::ScopeGuard error_deleter([&error]() {
if (error != nullptr) {
g_error_free(error);
}
@@ -100,7 +166,9 @@ void Host::registerHost(GObject* src, GAsyncResult* res, gpointer data) {
g_signal_connect(host->watcher_, "item-unregistered", G_CALLBACK(&Host::itemUnregistered), data);
auto items = sn_watcher_dup_registered_items(host->watcher_);
if (items != nullptr) {
spdlog::info("Host: Found {} pre-registered SNI items", g_strv_length(items));
for (uint32_t i = 0; items[i] != nullptr; i += 1) {
spdlog::info("Host: Processing pre-registered item: {}", items[i]);
host->addRegisteredItem(items[i]);
}
}
@@ -109,7 +177,10 @@ void Host::registerHost(GObject* src, GAsyncResult* res, gpointer data) {
void Host::itemRegistered(SnWatcher* watcher, const gchar* service, gpointer data) {
auto host = static_cast<SNI::Host*>(data);
spdlog::info("Host::itemRegistered called with service: {}", service);
host->addRegisteredItem(service);
// host->checkIgnoreList(host->ignore_list_, std::bind(&Host::itemUnregistered, host,
// std::placeholders::_1, std::placeholders::_2, data));
}
void Host::itemUnregistered(SnWatcher* watcher, const gchar* service, gpointer data) {
@@ -117,13 +188,50 @@ void Host::itemUnregistered(SnWatcher* watcher, const gchar* service, gpointer d
auto [bus_name, object_path] = host->getBusNameAndObjectPath(service);
for (auto it = host->items_.begin(); it != host->items_.end(); ++it) {
if ((*it)->bus_name == bus_name && (*it)->object_path == object_path) {
host->on_remove_(*it);
host->items_.erase(it);
host->removeItem(it);
break;
}
}
}
void Host::itemReady(Item& item) {
auto it = std::find_if(items_.begin(), items_.end(),
[&item](const auto& candidate) { return candidate.get() == &item; });
if (it != items_.end() && (*it)->isReady()) {
on_add_(*it);
}
}
void Host::itemInvalidated(Item& item) {
auto it = std::find_if(items_.begin(), items_.end(),
[&item](const auto& candidate) { return candidate.get() == &item; });
if (it != items_.end()) {
removeItem(it);
}
}
void Host::removeItem(std::vector<std::unique_ptr<Item>>::iterator it) {
if ((*it)->isReady()) {
on_remove_(*it);
}
items_.erase(it);
}
void Host::clearItems() {
bool removed_ready_item = false;
for (auto& item : items_) {
if (item->isReady()) {
on_remove_(item);
removed_ready_item = true;
}
}
bool had_items = !items_.empty();
items_.clear();
if (had_items && !removed_ready_item) {
on_update_();
}
}
std::tuple<std::string, std::string> Host::getBusNameAndObjectPath(const std::string service) {
auto it = service.find('/');
if (it != std::string::npos) {
@@ -132,15 +240,26 @@ std::tuple<std::string, std::string> Host::getBusNameAndObjectPath(const std::st
return {service, "/StatusNotifierItem"};
}
void Host::addRegisteredItem(std::string service) {
void Host::addRegisteredItem(const std::string& service) {
// Check service string directly before parsing
for (const auto& ignored : ignore_list_) {
if (service.find(ignored) != std::string::npos) {
spdlog::info("Host: Ignoring service '{}' - matched pattern '{}'", service, ignored);
return;
}
}
std::string bus_name, object_path;
std::tie(bus_name, object_path) = getBusNameAndObjectPath(service);
spdlog::debug("SNI item registered: bus_name={}, object_path={}, full_service={}", bus_name,
object_path, service);
auto it = std::find_if(items_.begin(), items_.end(), [&bus_name, &object_path](const auto& item) {
return bus_name == item->bus_name && object_path == item->object_path;
});
if (it == items_.end()) {
items_.emplace_back(new Item(bus_name, object_path, config_, bar_));
on_add_(items_.back());
spdlog::debug("Adding SNI item: {}", bus_name);
items_.emplace_back(std::make_unique<Item>(
bus_name, object_path, config_, bar_, [this](Item& item) { itemReady(item); },
[this](Item& item) { itemInvalidated(item); }, on_update_));
}
}
+154 -50
View File
@@ -5,6 +5,7 @@
#include <gtkmm/tooltip.h>
#include <spdlog/spdlog.h>
#include <algorithm>
#include <filesystem>
#include <fstream>
#include <map>
@@ -37,13 +38,18 @@ namespace waybar::modules::SNI {
static const Glib::ustring SNI_INTERFACE_NAME = sn_item_interface_info()->name;
static const unsigned UPDATE_DEBOUNCE_TIME = 10;
Item::Item(const std::string& bn, const std::string& op, const Json::Value& config, const Bar& bar)
Item::Item(const std::string& bn, const std::string& op, const Json::Value& config, const Bar& bar,
const std::function<void(Item&)>& on_ready,
const std::function<void(Item&)>& on_invalidate, const std::function<void()>& on_updated)
: bus_name(bn),
object_path(op),
icon_size(16),
effective_icon_size(0),
icon_theme(Gtk::IconTheme::create()),
bar_(bar) {
bar_(bar),
on_ready_(on_ready),
on_invalidate_(on_invalidate),
on_updated_(on_updated) {
if (config["icon-size"].isUInt()) {
icon_size = config["icon-size"].asUInt();
}
@@ -85,6 +91,8 @@ Item::~Item() {
}
}
bool Item::isReady() const { return ready_; }
bool Item::handleMouseEnter(GdkEventCrossing* const& e) {
event_box.set_state_flags(Gtk::StateFlags::STATE_FLAG_PRELIGHT);
return false;
@@ -112,14 +120,18 @@ void Item::proxyReady(Glib::RefPtr<Gio::AsyncResult>& result) {
if (this->id.empty() || this->category.empty()) {
spdlog::error("Invalid Status Notifier Item: {}, {}", bus_name, object_path);
invalidate();
return;
}
this->updateImage();
setReady();
} catch (const Glib::Error& err) {
spdlog::error("Failed to create DBus Proxy for {} {}: {}", bus_name, object_path, err.what());
invalidate();
} catch (const std::exception& err) {
spdlog::error("Failed to create DBus Proxy for {} {}: {}", bus_name, object_path, err.what());
invalidate();
}
}
@@ -178,17 +190,25 @@ void Item::setProperty(const Glib::ustring& name, Glib::VariantBase& value) {
} else if (name == "Status") {
setStatus(get_variant<Glib::ustring>(value));
} else if (name == "IconName") {
icon_name = get_variant<std::string>(value);
if (has_custom_icon_) {
spdlog::trace("Item '{}': ignoring IconName update, custom icon is set", id);
} else {
icon_name = get_variant<std::string>(value);
}
} else if (name == "IconPixmap") {
icon_pixmap = this->extractPixBuf(value.gobj());
if (has_custom_icon_) {
spdlog::trace("Item '{}': ignoring IconPixmap update, custom icon is set", id);
} else {
icon_pixmap = this->extractPixBuf(value.gobj());
}
} else if (name == "OverlayIconName") {
overlay_icon_name = get_variant<std::string>(value);
} else if (name == "OverlayIconPixmap") {
// TODO: overlay_icon_pixmap
overlay_icon_pixmap = extractPixBuf(value.gobj());
} else if (name == "AttentionIconName") {
attention_icon_name = get_variant<std::string>(value);
} else if (name == "AttentionIconPixmap") {
// TODO: attention_icon_pixmap
attention_icon_pixmap = extractPixBuf(value.gobj());
} else if (name == "AttentionMovieName") {
attention_movie_name = get_variant<std::string>(value);
} else if (name == "ToolTip") {
@@ -217,18 +237,35 @@ void Item::setProperty(const Glib::ustring& name, Glib::VariantBase& value) {
}
void Item::setStatus(const Glib::ustring& value) {
Glib::ustring lower = value.lowercase();
event_box.set_visible(show_passive_ || lower.compare("passive") != 0);
status_ = value.lowercase();
event_box.set_visible(show_passive_ || status_.compare("passive") != 0);
auto style = event_box.get_style_context();
for (const auto& class_name : style->list_classes()) {
style->remove_class(class_name);
}
if (lower.compare("needsattention") == 0) {
auto css_class = status_;
if (css_class.compare("needsattention") == 0) {
// convert status to dash-case for CSS
lower = "needs-attention";
css_class = "needs-attention";
}
style->add_class(lower);
style->add_class(css_class);
on_updated_();
}
void Item::setReady() {
if (ready_) {
return;
}
ready_ = true;
on_ready_(*this);
}
void Item::invalidate() {
if (ready_) {
ready_ = false;
}
on_invalidate_(*this);
}
void Item::setCustomIcon(const std::string& id) {
@@ -241,11 +278,13 @@ void Item::setCustomIcon(const std::string& id) {
Glib::RefPtr<Gdk::Pixbuf> custom_pixbuf = Gdk::Pixbuf::create_from_file(custom_icon);
icon_name = ""; // icon_name has priority over pixmap
icon_pixmap = custom_pixbuf;
has_custom_icon_ = true;
} catch (const Glib::Error& e) {
spdlog::error("Failed to load custom icon {}: {}", custom_icon, e.what());
}
} else { // if file doesn't exist it's most likely an icon_name
icon_name = custom_icon;
has_custom_icon_ = true;
}
}
}
@@ -287,8 +326,8 @@ void Item::processUpdatedProperties(Glib::RefPtr<Gio::AsyncResult>& _result) {
static const std::map<std::string_view, std::set<std::string_view>> signal2props = {
{"NewTitle", {"Title"}},
{"NewIcon", {"IconName", "IconPixmap"}},
// {"NewAttentionIcon", {"AttentionIconName", "AttentionIconPixmap", "AttentionMovieName"}},
// {"NewOverlayIcon", {"OverlayIconName", "OverlayIconPixmap"}},
{"NewAttentionIcon", {"AttentionIconName", "AttentionIconPixmap", "AttentionMovieName"}},
{"NewOverlayIcon", {"OverlayIconName", "OverlayIconPixmap"}},
{"NewIconThemePath", {"IconThemePath"}},
{"NewToolTip", {"ToolTip"}},
{"NewStatus", {"Status"}},
@@ -336,11 +375,20 @@ Glib::RefPtr<Gdk::Pixbuf> Item::extractPixBuf(GVariant* variant) {
if (array != nullptr) {
g_free(array);
}
#if GLIB_MAJOR_VERSION >= 2 && GLIB_MINOR_VERSION >= 68
array = static_cast<guchar*>(g_memdup2(data, size));
#else
array = static_cast<guchar*>(g_memdup(data, size));
#endif
// We must allocate our own array because the data from GVariant is read-only
// and we need to modify it to convert ARGB to RGBA.
array = static_cast<guchar*>(g_malloc(size));
// Copy and convert ARGB to RGBA in one pass to avoid g_memdup2 overhead
const guchar* src = static_cast<const guchar*>(data);
for (gsize i = 0; i < size; i += 4) {
guchar alpha = src[i];
array[i] = src[i + 1];
array[i + 1] = src[i + 2];
array[i + 2] = src[i + 3];
array[i + 3] = alpha;
}
lwidth = width;
lheight = height;
}
@@ -349,14 +397,6 @@ Glib::RefPtr<Gdk::Pixbuf> Item::extractPixBuf(GVariant* variant) {
}
g_variant_iter_free(it);
if (array != nullptr) {
/* argb to rgba */
for (uint32_t i = 0; i < 4U * lwidth * lheight; i += 4) {
guchar alpha = array[i];
array[i] = array[i + 1];
array[i + 1] = array[i + 2];
array[i + 2] = array[i + 3];
array[i + 3] = alpha;
}
return Gdk::Pixbuf::create_from_data(array, Gdk::Colorspace::COLORSPACE_RGB, true, 8, lwidth,
lheight, 4 * lwidth, &pixbuf_data_deleter);
}
@@ -365,47 +405,36 @@ Glib::RefPtr<Gdk::Pixbuf> Item::extractPixBuf(GVariant* variant) {
void Item::updateImage() {
auto pixbuf = getIconPixbuf();
if (!pixbuf) return;
auto scaled_icon_size = getScaledIconSize();
// If the loaded icon is not square, assume that the icon height should match the
// requested icon size, but the width is allowed to be different. As such, if the
// height of the image does not match the requested icon size, resize the icon such that
// the aspect ratio is maintained, but the height matches the requested icon size.
if (pixbuf->get_height() != scaled_icon_size) {
if (pixbuf->get_height() > 0 && pixbuf->get_height() != scaled_icon_size) {
int width = scaled_icon_size * pixbuf->get_width() / pixbuf->get_height();
pixbuf = pixbuf->scale_simple(width, scaled_icon_size, Gdk::InterpType::INTERP_BILINEAR);
}
pixbuf = overlayPixbufs(pixbuf, getOverlayIconPixbuf());
auto surface =
Gdk::Cairo::create_surface_from_pixbuf(pixbuf, image.get_scale_factor(), image.get_window());
image.set(surface);
}
Glib::RefPtr<Gdk::Pixbuf> Item::getIconPixbuf() {
if (!icon_name.empty()) {
try {
std::ifstream temp(icon_name);
if (temp.is_open()) {
return Gdk::Pixbuf::create_from_file(icon_name);
}
} catch (Glib::Error& e) {
// Ignore because we want to also try different methods of getting an icon.
//
// But a warning is logged, as the file apparently exists, but there was
// a failure in creating a pixbuf out of it.
spdlog::warn("Item '{}': {}", id, static_cast<std::string>(e.what()));
}
try {
// Will throw if it can not find an icon.
return getIconByName(icon_name, getScaledIconSize());
} catch (Glib::Error& e) {
spdlog::trace("Item '{}': {}", id, static_cast<std::string>(e.what()));
if (status_ == "needsattention") {
if (auto attention_pixbuf = getAttentionIconPixbuf()) {
return attention_pixbuf;
}
}
// Return the pixmap only if an icon for the given name could not be found.
if (auto pixbuf = loadIconFromNameOrFile(icon_name, true)) {
return pixbuf;
}
if (icon_pixmap) {
return icon_pixmap;
}
@@ -420,9 +449,78 @@ Glib::RefPtr<Gdk::Pixbuf> Item::getIconPixbuf() {
return getIconByName("image-missing", getScaledIconSize());
}
Glib::RefPtr<Gdk::Pixbuf> Item::getIconByName(const std::string& name, int request_size) {
icon_theme->rescan_if_needed();
Glib::RefPtr<Gdk::Pixbuf> Item::getAttentionIconPixbuf() {
if (auto pixbuf = loadIconFromNameOrFile(attention_icon_name, false)) {
return pixbuf;
}
if (auto pixbuf = loadIconFromNameOrFile(attention_movie_name, false)) {
return pixbuf;
}
return attention_icon_pixmap;
}
Glib::RefPtr<Gdk::Pixbuf> Item::getOverlayIconPixbuf() {
if (auto pixbuf = loadIconFromNameOrFile(overlay_icon_name, false)) {
return pixbuf;
}
return overlay_icon_pixmap;
}
Glib::RefPtr<Gdk::Pixbuf> Item::loadIconFromNameOrFile(const std::string& name, bool log_failure) {
if (name.empty()) {
return {};
}
try {
std::ifstream temp(name);
if (temp.is_open()) {
return Gdk::Pixbuf::create_from_file(name);
}
} catch (const Glib::Error& e) {
if (log_failure) {
spdlog::warn("Item '{}': {}", id, static_cast<std::string>(e.what()));
}
}
try {
return getIconByName(name, getScaledIconSize());
} catch (const Glib::Error& e) {
if (log_failure) {
spdlog::trace("Item '{}': {}", id, static_cast<std::string>(e.what()));
}
}
return {};
}
Glib::RefPtr<Gdk::Pixbuf> Item::overlayPixbufs(const Glib::RefPtr<Gdk::Pixbuf>& base,
const Glib::RefPtr<Gdk::Pixbuf>& overlay) {
if (!base || !overlay) {
return base;
}
auto composed = base->copy();
if (!composed) {
return base;
}
int overlay_target_size =
std::max(1, std::min(composed->get_width(), composed->get_height()) / 2);
auto scaled_overlay = overlay->scale_simple(overlay_target_size, overlay_target_size,
Gdk::InterpType::INTERP_BILINEAR);
if (!scaled_overlay) {
return composed;
}
int dest_x = std::max(0, composed->get_width() - scaled_overlay->get_width());
int dest_y = std::max(0, composed->get_height() - scaled_overlay->get_height());
scaled_overlay->composite(composed, dest_x, dest_y, scaled_overlay->get_width(),
scaled_overlay->get_height(), dest_x, dest_y, 1.0, 1.0,
Gdk::InterpType::INTERP_BILINEAR, 255);
return composed;
}
Glib::RefPtr<Gdk::Pixbuf> Item::getIconByName(const std::string& name, int request_size) {
if (!icon_theme_path.empty()) {
auto icon_info = icon_theme->lookup_icon(name.c_str(), request_size,
Gtk::IconLookupFlags::ICON_LOOKUP_FORCE_SIZE);
@@ -464,6 +562,9 @@ void Item::makeMenu() {
}
bool Item::handleClick(GdkEventButton* const& ev) {
if (!proxy_) {
return false;
}
auto parameters = Glib::VariantContainerBase::create_tuple(
{Glib::Variant<int>::create(ev->x_root + bar_.x_global),
Glib::Variant<int>::create(ev->y_root + bar_.y_global)});
@@ -491,6 +592,9 @@ bool Item::handleClick(GdkEventButton* const& ev) {
}
bool Item::handleScroll(GdkEventScroll* const& ev) {
if (!proxy_) {
return false;
}
int dx = 0, dy = 0;
switch (ev->direction) {
case GDK_SCROLL_UP:
+44 -14
View File
@@ -8,12 +8,31 @@
namespace waybar::modules::SNI {
std::vector<std::string> Tray::parseIgnoreList(const Json::Value& config) {
std::vector<std::string> ignore_list;
if (config["ignore-list"].isArray()) {
spdlog::info("Tray: Found ignore-list with {} items", config["ignore-list"].size());
for (const auto& item : config["ignore-list"]) {
if (item.isString()) {
ignore_list.push_back(item.asString());
spdlog::info("Tray: Adding to ignore list: {}", item.asString());
}
}
} else {
spdlog::info("Tray: No ignore-list configured");
}
return ignore_list;
}
Tray::Tray(const std::string& id, const Bar& bar, const Json::Value& config)
: AModule(config, "tray", id),
box_(bar.orientation, 0),
watcher_(SNI::Watcher::getInstance()),
host_(nb_hosts_, config, bar, std::bind(&Tray::onAdd, this, std::placeholders::_1),
std::bind(&Tray::onRemove, this, std::placeholders::_1)) {
ignore_list_(parseIgnoreList(config)),
host_(nb_hosts_, config, bar, ignore_list_,
std::bind(&Tray::onAdd, this, std::placeholders::_1),
std::bind(&Tray::onRemove, this, std::placeholders::_1),
std::bind(&Tray::queueUpdate, this)) {
box_.set_name("tray");
event_box_.add(box_);
if (!id.empty()) {
@@ -23,9 +42,6 @@ Tray::Tray(const std::string& id, const Bar& bar, const Json::Value& config)
if (config_["spacing"].isUInt()) {
box_.set_spacing(config_["spacing"].asUInt());
}
if (config["show-passive-items"].isBool()) {
show_passive_ = config["show-passive-items"].asBool();
}
nb_hosts_ += 1;
if (config_["icons"].isObject()) {
IconManager::instance().setIconsConfig(config_["icons"]);
@@ -33,12 +49,28 @@ Tray::Tray(const std::string& id, const Bar& bar, const Json::Value& config)
dp.emit();
}
void Tray::checkIgnoreList(std::unique_ptr<Item>* item_ptr) {
// Delegate to Host's checkIgnoreList method
host_.checkIgnoreList(ignore_list_, std::bind(&Tray::onRemove, this, std::placeholders::_1));
}
void Tray::queueUpdate() { dp.emit(); }
void Tray::onAdd(std::unique_ptr<Item>& item) {
spdlog::info("Tray::onAdd - item bus_name='{}', category='{}', icon_name='{}', title='{}'",
item->bus_name, item->category, item->icon_name, item->title);
if (config_["reverse-direction"].isBool() && config_["reverse-direction"].asBool()) {
box_.pack_end(item->event_box);
} else {
box_.pack_start(item->event_box);
}
spdlog::debug("Tray::onAdd deferred check - checking ignore list");
host_.checkIgnoreList(ignore_list_, std::bind(&Tray::onRemove, this, std::placeholders::_1));
item->event_box.signal_show().connect([this] { dp.emit(); });
item->event_box.signal_hide().connect([this] { dp.emit(); });
dp.emit();
}
@@ -48,17 +80,15 @@ void Tray::onRemove(std::unique_ptr<Item>& item) {
}
auto Tray::update() -> void {
// Show tray only when items are available
std::vector<Gtk::Widget*> children = box_.get_children();
if (show_passive_) {
event_box_.set_visible(!children.empty());
} else {
event_box_.set_visible(!std::all_of(children.begin(), children.end(), [](Gtk::Widget* child) {
return child->get_style_context()->has_class("passive");
}));
// Check if any items should be ignored now that properties have loaded
if (!ignore_list_.empty()) {
spdlog::debug("Tray::update() - checking ignore list");
host_.checkIgnoreList(ignore_list_, std::bind(&Tray::onRemove, this, std::placeholders::_1));
}
// Call parent update
std::vector<Gtk::Widget*> children = box_.get_children();
event_box_.set_visible(std::any_of(children.begin(), children.end(),
[](Gtk::Widget* child) { return child->get_visible(); }));
AModule::update();
}
+6 -5
View File
@@ -31,7 +31,7 @@ Watcher::~Watcher() {
void Watcher::busAcquired(const Glib::RefPtr<Gio::DBus::Connection>& conn, Glib::ustring name) {
GError* error = nullptr;
waybar::util::ScopeGuard error_deleter([error]() {
waybar::util::ScopeGuard error_deleter([&error]() {
if (error) {
g_error_free(error);
}
@@ -69,7 +69,7 @@ gboolean Watcher::handleRegisterHost(Watcher* obj, GDBusMethodInvocation* invoca
if (watch != nullptr) {
g_warning("Status Notifier Host with bus name '%s' and object path '%s' is already registered",
bus_name, object_path);
sn_watcher_complete_register_item(obj->watcher_, invocation);
sn_watcher_complete_register_host(obj->watcher_, invocation);
return TRUE;
}
watch = gfWatchNew(GF_WATCH_TYPE_HOST, service, bus_name, object_path, obj);
@@ -98,8 +98,8 @@ gboolean Watcher::handleRegisterItem(Watcher* obj, GDBusMethodInvocation* invoca
}
auto watch = gfWatchFind(obj->items_, bus_name, object_path);
if (watch != nullptr) {
g_warning("Status Notifier Item with bus name '%s' and object path '%s' is already registered",
bus_name, object_path);
spdlog::debug("Ignoring duplicate Status Notifier Item registration for '{}' at '{}'", bus_name,
object_path);
sn_watcher_complete_register_item(obj->watcher_, invocation);
return TRUE;
}
@@ -158,7 +158,7 @@ void Watcher::nameVanished(GDBusConnection* connection, const char* name, gpoint
watch->watcher->hosts_ = g_slist_remove(watch->watcher->hosts_, watch);
if (watch->watcher->hosts_ == nullptr) {
sn_watcher_set_is_host_registered(watch->watcher->watcher_, FALSE);
sn_watcher_emit_host_registered(watch->watcher->watcher_);
sn_watcher_emit_host_unregistered(watch->watcher->watcher_);
}
} else if (watch->type == GF_WATCH_TYPE_ITEM) {
watch->watcher->items_ = g_slist_remove(watch->watcher->items_, watch);
@@ -167,6 +167,7 @@ void Watcher::nameVanished(GDBusConnection* connection, const char* name, gpoint
sn_watcher_emit_item_unregistered(watch->watcher->watcher_, tmp);
g_free(tmp);
}
gfWatchFree(watch);
}
void Watcher::updateRegisteredItems(SnWatcher* obj) {
+1 -1
View File
@@ -60,7 +60,7 @@ BarIpcClient::BarIpcClient(waybar::Bar& bar) : bar_{bar} {
});
}
bool BarIpcClient::isModuleEnabled(std::string name) {
bool BarIpcClient::isModuleEnabled(const std::string& name) {
for (const auto& section : {"modules-left", "modules-center", "modules-right"}) {
if (const auto& modules = bar_.config.get(section, {}); modules.isArray()) {
for (const auto& module : modules) {
+103 -59
View File
@@ -2,15 +2,48 @@
#include <fcntl.h>
#include <spdlog/spdlog.h>
#include <sys/socket.h>
#include <sys/types.h>
#include <sys/un.h>
#include <unistd.h>
#include <cerrno>
#include <cstdio>
#include <cstdlib>
#include <cstring>
#include <limits>
#include <stdexcept>
#include <string_view>
#include <utility>
#include "modules/sway/ipc/ipc.hpp"
namespace waybar::modules::sway {
namespace {
void sendAll(int fd, const char* data, size_t size, const char* what) {
size_t total = 0;
while (total < size) {
const auto res = ::send(fd, data + total, size - total, 0);
if (res < 0) {
if (errno == EINTR || errno == EAGAIN) {
continue;
}
throw std::runtime_error(what);
}
if (res == 0) {
throw std::runtime_error(what);
}
total += static_cast<size_t>(res);
}
}
} // namespace
Ipc::Ipc() {
const std::string& socketPath = getSocketPath();
fd_ = open(socketPath);
fd_event_ = open(socketPath);
const std::string socketPath = getSocketPath();
fd_ = util::ScopedFd(open(socketPath));
fd_event_ = util::ScopedFd(open(socketPath));
}
Ipc::~Ipc() {
@@ -21,118 +54,129 @@ Ipc::~Ipc() {
if (write(fd_, "close-sway-ipc", 14) == -1) {
spdlog::error("Failed to close sway IPC");
}
close(fd_);
fd_ = -1;
}
if (fd_event_ > 0) {
if (write(fd_event_, "close-sway-ipc", 14) == -1) {
spdlog::error("Failed to close sway IPC event handler");
}
close(fd_event_);
fd_event_ = -1;
}
}
void Ipc::setWorker(std::function<void()>&& func) { thread_ = func; }
void Ipc::setWorker(std::function<void()>&& func) { thread_ = std::move(func); }
const std::string Ipc::getSocketPath() const {
std::string Ipc::getSocketPath() {
const char* env = getenv("SWAYSOCK");
if (env != nullptr) {
return std::string(env);
if (env != nullptr && env[0] != '\0') {
return {env};
}
FILE* in = popen("sway --get-socketpath 2>/dev/null", "r");
if (in == nullptr) {
throw std::runtime_error("Failed to get socket path");
}
std::string str;
{
std::string str_buf;
FILE* in;
char buf[512] = {0};
if ((in = popen("sway --get-socketpath 2>/dev/null", "r")) == nullptr) {
throw std::runtime_error("Failed to get socket path");
}
while (fgets(buf, sizeof(buf), in) != nullptr) {
str_buf.append(buf, sizeof(buf));
}
pclose(in);
str = str_buf;
if (str.empty()) {
throw std::runtime_error("Socket path is empty");
}
char buf[512] = {0};
while (fgets(buf, sizeof(buf), in) != nullptr) {
str.append(buf);
}
if (str.back() == '\n') {
if (pclose(in) == -1) {
throw std::runtime_error("Failed to get socket path");
}
if (str.ends_with('\n')) {
str.pop_back();
}
if (str.empty()) {
throw std::runtime_error("Socket path is empty");
}
return str;
}
int Ipc::open(const std::string& socketPath) const {
int32_t fd = socket(AF_UNIX, SOCK_STREAM, 0);
int Ipc::open(const std::string& socketPath) {
util::ScopedFd fd(socket(AF_UNIX, SOCK_STREAM, 0));
if (fd == -1) {
throw std::runtime_error("Unable to open Unix socket");
}
(void)fcntl(fd, F_SETFD, FD_CLOEXEC);
struct sockaddr_un addr;
memset(&addr, 0, sizeof(struct sockaddr_un));
addr.sun_family = AF_UNIX;
struct sockaddr_un addr{.sun_family = AF_UNIX};
strncpy(addr.sun_path, socketPath.c_str(), sizeof(addr.sun_path) - 1);
addr.sun_path[sizeof(addr.sun_path) - 1] = 0;
int l = sizeof(struct sockaddr_un);
if (::connect(fd, reinterpret_cast<struct sockaddr*>(&addr), l) == -1) {
if (::connect(fd, reinterpret_cast<struct sockaddr*>(&addr), sizeof addr) == -1) {
throw std::runtime_error("Unable to connect to Sway");
}
return fd;
return fd.release();
}
struct Ipc::ipc_response Ipc::recv(int fd) {
std::string header;
header.resize(ipc_header_size_);
auto data32 = reinterpret_cast<uint32_t*>(header.data() + ipc_magic_.size());
size_t total = 0;
size_t total = 0;
while (total < ipc_header_size_) {
auto res = ::recv(fd, header.data() + total, ipc_header_size_ - total, 0);
const ssize_t res = ::recv(fd, header.data() + total, ipc_header_size_ - total, 0);
if (fd_event_ == -1 || fd_ == -1) {
// IPC is closed so just return an empty response
return {0, 0, ""};
return {.size = 0, .type = 0, .payload = ""};
}
if (res <= 0) {
if (res < 0) {
if (errno == EINTR || errno == EAGAIN) {
continue;
}
throw std::runtime_error("Unable to receive IPC header");
}
total += res;
if (res == 0) {
throw std::runtime_error("Unable to receive IPC header");
}
total += static_cast<size_t>(res);
}
auto magic = std::string(header.data(), header.data() + ipc_magic_.size());
if (magic != ipc_magic_) {
if (std::string_view(header.data(), ipc_magic_.size()) != ipc_magic_) {
throw std::runtime_error("Invalid IPC magic");
}
total = 0;
uint32_t payload_size = 0;
uint32_t payload_type = 0;
memcpy(&payload_size, header.data() + ipc_magic_.size(), sizeof payload_size);
memcpy(&payload_type, header.data() + ipc_magic_.size() + sizeof payload_size,
sizeof payload_type);
std::string payload;
payload.resize(data32[0]);
while (total < data32[0]) {
auto res = ::recv(fd, payload.data() + total, data32[0] - total, 0);
payload.resize(payload_size);
total = 0;
while (total < payload_size) {
const ssize_t res = ::recv(fd, payload.data() + total, payload_size - total, 0);
if (res < 0) {
if (errno == EINTR || errno == EAGAIN) {
continue;
}
throw std::runtime_error("Unable to receive IPC payload");
}
total += res;
if (res == 0) {
throw std::runtime_error("Unable to receive IPC payload");
}
total += static_cast<size_t>(res);
}
return {data32[0], data32[1], &payload.front()};
return {.size = payload_size, .type = payload_type, .payload = std::move(payload)};
}
struct Ipc::ipc_response Ipc::send(int fd, uint32_t type, const std::string& payload) {
std::string header;
header.resize(ipc_header_size_);
auto data32 = reinterpret_cast<uint32_t*>(header.data() + ipc_magic_.size());
memcpy(header.data(), ipc_magic_.c_str(), ipc_magic_.size());
data32[0] = payload.size();
data32[1] = type;
memcpy(header.data(), ipc_magic_.data(), ipc_magic_.size());
if (payload.size() > std::numeric_limits<uint32_t>::max()) {
throw std::runtime_error("IPC payload is too large");
}
const auto payload_size = static_cast<uint32_t>(payload.size());
memcpy(header.data() + ipc_magic_.size(), &payload_size, sizeof payload_size);
memcpy(header.data() + ipc_magic_.size() + sizeof payload_size, &type, sizeof type);
sendAll(fd, header.data(), ipc_header_size_, "Unable to send IPC header");
sendAll(fd, payload.data(), payload.size(), "Unable to send IPC payload");
if (::send(fd, header.data(), ipc_header_size_, 0) == -1) {
throw std::runtime_error("Unable to send IPC header");
}
if (::send(fd, payload.c_str(), payload.size(), 0) == -1) {
throw std::runtime_error("Unable to send IPC payload");
}
return Ipc::recv(fd);
}
+43 -16
View File
@@ -54,21 +54,28 @@ void Language::onCmd(const struct Ipc::ipc_response& res) {
std::lock_guard<std::mutex> lock(mutex_);
auto payload = parser_.parse(res.payload);
std::vector<std::string> used_layouts;
// Display current layout of a device with a maximum count of layouts, expecting that all will
// be OK
// Union layout names across every keyboard input so hot-plugged devices contribute their
// layouts to the map. Track the device with the most layouts to seed the initially displayed
// layout, matching the previous behaviour at startup.
Json::ArrayIndex max_id = 0, max = 0;
for (Json::ArrayIndex i = 0; i < payload.size(); i++) {
auto size = payload[i][XKB_LAYOUT_NAMES_KEY].size();
if (size > max) {
max = size;
if (payload[i]["type"].asString() != "keyboard") continue;
const auto& names = payload[i][XKB_LAYOUT_NAMES_KEY];
if (names.size() > max) {
max = names.size();
max_id = i;
}
for (const auto& layout : names) {
const auto name = layout.asString();
if (std::find(used_layouts.begin(), used_layouts.end(), name) == used_layouts.end()) {
used_layouts.push_back(name);
}
}
}
for (const auto& layout : payload[max_id][XKB_LAYOUT_NAMES_KEY]) {
used_layouts.push_back(layout.asString());
}
// Rebuild from scratch so init_layouts_map's duplicate-suffix pass doesn't compound across
// refreshes (e.g. "us" -> "us1" -> "us11").
layouts_map_.clear();
init_layouts_map(used_layouts);
set_current_layout(payload[max_id][XKB_ACTIVE_LAYOUT_NAME_KEY].asString());
dp.emit();
@@ -82,13 +89,26 @@ void Language::onEvent(const struct Ipc::ipc_response& res) {
return;
}
bool refresh_inputs = false;
try {
std::lock_guard<std::mutex> lock(mutex_);
auto payload = parser_.parse(res.payload)["input"];
if (payload["type"].asString() == "keyboard") {
set_current_layout(payload[XKB_ACTIVE_LAYOUT_NAME_KEY].asString());
{
std::lock_guard<std::mutex> lock(mutex_);
auto root = parser_.parse(res.payload);
auto change = root["change"].asString();
auto payload = root["input"];
if (payload["type"].asString() == "keyboard") {
// A device was added or its keymap changed - the layout set may have grown, so refresh
// layouts_map_ via IPC_GET_INPUTS once we've released mutex_.
refresh_inputs = (change == "added" || change == "xkb_keymap");
set_current_layout(payload[XKB_ACTIVE_LAYOUT_NAME_KEY].asString());
}
dp.emit();
}
// sendCmd is synchronous: it blocks on the IPC reply and then emits signal_cmd on this same
// thread, which lands in onCmd and re-locks mutex_. Must call it with mutex_ released.
if (refresh_inputs) {
ipc_.sendCmd(IPC_GET_INPUTS);
}
dp.emit();
} catch (const std::exception& e) {
spdlog::error("Language: {}", e.what());
}
@@ -124,9 +144,16 @@ auto Language::update() -> void {
ALabel::update();
}
auto Language::set_current_layout(std::string current_layout) -> void {
auto Language::set_current_layout(const std::string& current_layout) -> void {
// Guard against unknown / empty layout names: transient virtual keyboards (e.g. wtype) and
// hot-plugged devices whose layouts haven't made it into the map yet would otherwise blank out
// layout_ via map::operator[]'s default-construct-on-miss.
auto it = layouts_map_.find(current_layout);
if (it == layouts_map_.end()) {
return;
}
label_.get_style_context()->remove_class(layout_.short_name);
layout_ = layouts_map_[current_layout];
layout_ = it->second;
label_.get_style_context()->add_class(layout_.short_name);
}
+1 -1
View File
@@ -44,7 +44,7 @@ auto Mode::update() -> void {
} else {
label_.set_markup(fmt::format(fmt::runtime(format_), mode_));
if (tooltipEnabled()) {
label_.set_tooltip_text(mode_);
label_.set_tooltip_markup(mode_);
}
event_box_.show();
}
+4 -4
View File
@@ -94,12 +94,12 @@ auto Window::update() -> void {
old_app_id_ = app_id_;
}
label_.set_markup(waybar::util::rewriteString(
setLabelMarkup(waybar::util::rewriteString(
fmt::format(fmt::runtime(format_), fmt::arg("title", window_), fmt::arg("app_id", app_id_),
fmt::arg("shell", shell_), fmt::arg("marks", marks_)),
config_["rewrite"]));
if (tooltipEnabled()) {
label_.set_tooltip_text(window_);
setTooltipMarkup(window_);
}
updateAppIcon();
@@ -184,9 +184,9 @@ std::tuple<std::string, std::string, std::string, std::string> getWindowInfo(
continue;
}
if (!marks.empty()) {
marks += ',';
marks.append(",");
}
marks += m.asString();
marks.append(m.asString());
}
}
return {app_id, app_class, shell, marks};
+92 -21
View File
@@ -10,7 +10,7 @@ namespace waybar::modules::sway {
// Helper function to assign a number to a workspace, just like sway. In fact
// this is taken quite verbatim from `sway/ipc-json.c`.
int Workspaces::convertWorkspaceNameToNum(std::string name) {
int Workspaces::convertWorkspaceNameToNum(const std::string& name) {
if (isdigit(name[0]) != 0) {
errno = 0;
char* endptr = nullptr;
@@ -69,6 +69,7 @@ Workspaces::Workspaces(const std::string& id, const Bar& bar, const Json::Value&
m_windowRewriteRules = waybar::util::RegexCollection(
windowRewrite, std::move(windowRewriteDefault), windowRewritePriorityFunction);
}
populateIgnoreWorkspacesConfig(config);
ipc_.subscribe(R"(["workspace"])");
ipc_.subscribe(R"(["window"])");
ipc_.signal_event.connect(sigc::mem_fun(*this, &Workspaces::onEvent));
@@ -97,6 +98,36 @@ void Workspaces::onEvent(const struct Ipc::ipc_response& res) {
}
}
auto Workspaces::populateIgnoreWorkspacesConfig(const Json::Value& config) -> void {
auto ignoreWorkspaces = config["ignore-workspaces"];
if (ignoreWorkspaces.isArray()) {
for (const auto& workspaceRegex : ignoreWorkspaces) {
if (workspaceRegex.isString()) {
std::string ruleString = workspaceRegex.asString();
try {
const std::regex rule{ruleString, std::regex_constants::icase};
m_ignoreWorkspaces.emplace_back(rule);
} catch (const std::regex_error& e) {
spdlog::error("Invalid rule {}: {}", ruleString, e.what());
}
} else {
spdlog::error("Not a string: '{}'", workspaceRegex);
}
}
}
}
bool Workspaces::isWorkspaceIgnored(std::string const& name) {
for (auto& rule : m_ignoreWorkspaces) {
if (std::regex_match(name, rule)) {
return true;
break;
}
}
return false;
}
void Workspaces::onCmd(const struct Ipc::ipc_response& res) {
if (res.type == IPC_GET_TREE) {
try {
@@ -118,8 +149,9 @@ void Workspaces::onCmd(const struct Ipc::ipc_response& res) {
});
for (auto& output : outputs) {
std::copy(output["nodes"].begin(), output["nodes"].end(),
std::back_inserter(workspaces_));
std::copy_if(
output["nodes"].begin(), output["nodes"].end(), std::back_inserter(workspaces_),
[&](const auto& node) { return !(isWorkspaceIgnored(node["name"].asString())); });
std::copy(output["floating_nodes"].begin(), output["floating_nodes"].end(),
std::back_inserter(workspaces_));
}
@@ -143,7 +175,8 @@ void Workspaces::onCmd(const struct Ipc::ipc_response& res) {
if (p_w.isArray() && !p_w.empty()) {
// Adding to target outputs
for (const Json::Value& output : p_w) {
if (output.asString() == bar_.output->name) {
auto output_name = output.asString();
if (output_name == bar_.output->name || output_name == bar_.output->identifier) {
Json::Value v;
v["name"] = p_w_name;
v["target_output"] = bar_.output->name;
@@ -229,7 +262,10 @@ bool Workspaces::filterButtons() {
auto ws = std::find_if(workspaces_.begin(), workspaces_.end(),
[it](const auto& node) { return node["name"].asString() == it->first; });
if (ws == workspaces_.end() ||
(!config_["all-outputs"].asBool() && (*ws)["output"].asString() != bar_.output->name)) {
((*ws).isMember("target_output") ? (*ws)["target_output"].asString() != bar_.output->name &&
(*ws)["target_output"].asString() != ""
: !config_["all-outputs"].asBool() &&
(*ws)["output"].asString() != bar_.output->name)) {
it = buttons_.erase(it);
needReorder = true;
} else {
@@ -321,6 +357,18 @@ auto Workspaces::update() -> void {
button.get_style_context()->remove_class("empty");
}
if ((*it)["output"].isString()) {
// Simply attempt to remove all output classes every time to reset output classes. This works
// even if a class has not been previously added to the style context.
for (const auto &oclass : config_["output-classes"]) {
button.get_style_context()->remove_class(oclass.asString());
}
// If output-classes contains a class for output associated with current workspace button, add
// the class to its style context.
std::string output_name = (*it)["output"].asString();
if (config_["output-classes"].isMember(output_name) &&
config_["output-classes"][output_name].isString()) {
button.get_style_context()->add_class(config_["output-classes"][output_name].asString());
}
if (((*it)["output"].asString()) == bar_.output->name) {
button.get_style_context()->add_class("current_output");
} else {
@@ -329,24 +377,44 @@ auto Workspaces::update() -> void {
} else {
button.get_style_context()->remove_class("current_output");
}
std::string output = (*it)["name"].asString();
std::string full_name;
if (!config_["disable-markup"].asBool()) {
full_name = g_markup_escape_text((*it)["name"].asString().c_str(), -1);
} else {
full_name = (*it)["name"].asString();
}
std::string windows = "";
if (config_["window-rewrite"].isObject()) {
updateWindows((*it), windows);
}
auto index = (*it)["num"].asInt();
if (config_["format"].isString()) {
auto format = config_["format"].asString();
output = fmt::format(
fmt::runtime(format), fmt::arg("icon", getIcon(output, *it)), fmt::arg("value", output),
fmt::arg("name", trimWorkspaceName(output)), fmt::arg("index", (*it)["num"].asString()),
fmt::arg("windows",
windows.substr(0, windows.length() - m_formatWindowSeparator.length())),
fmt::arg("output", (*it)["output"].asString()));
std::string format;
if (config_["format-for-negative-index"].isString() && index < 0) {
format = config_["format-for-negative-index"].asString();
} else {
format = config_["format"].asString();
}
auto name = trimWorkspaceName(full_name);
auto output = (*it)["output"].asString();
auto icon = getIcon(full_name, *it);
auto separated_windows =
windows.substr(0, windows.length() - m_formatWindowSeparator.length());
full_name =
fmt::format(fmt::runtime(format), fmt::arg("index", index), fmt::arg("name", name),
fmt::arg("value", full_name), fmt::arg("output", output),
fmt::arg("icon", icon), fmt::arg("windows", separated_windows));
}
if (!config_["disable-markup"].asBool()) {
static_cast<Gtk::Label*>(button.get_children()[0])->set_markup(output);
static_cast<Gtk::Label*>(button.get_children()[0])->set_markup(full_name);
} else {
button.set_label(output);
button.set_label(full_name);
}
onButtonReady(*it, button);
}
@@ -369,11 +437,14 @@ Gtk::Button& Workspaces::addButton(const Json::Value& node) {
node["name"].asString(), node["target_output"].asString(),
"--no-auto-back-and-forth", node["name"].asString()));
} else {
ipc_.sendCmd(IPC_COMMAND, fmt::format("workspace {} \"{}\"",
config_["disable-auto-back-and-forth"].asBool()
? "--no-auto-back-and-forth"
: "",
node["name"].asString()));
std::string flag = config_["disable-auto-back-and-forth"].asBool()
? "--no-auto-back-and-forth"
: "";
if (node["num"].asInt() >= 0) {
ipc_.sendCmd(IPC_COMMAND, fmt::format(workspace_switch_number_cmd_, flag, node["num"].asInt()));
} else {
ipc_.sendCmd(IPC_COMMAND, fmt::format(workspace_switch_cmd_, flag, node["name"].asString()));
}
}
} catch (const std::exception& e) {
spdlog::error("Workspaces: {}", e.what());
@@ -487,7 +558,7 @@ std::string Workspaces::getCycleWorkspace(std::vector<Json::Value>::iterator it,
return (*it)["name"].asString();
}
std::string Workspaces::trimWorkspaceName(std::string name) {
std::string Workspaces::trimWorkspaceName(const std::string& name) {
std::size_t found = name.find(':');
if (found != std::string::npos) {
return name.substr(found + 1);
+193 -49
View File
@@ -1,10 +1,15 @@
#include "modules/systemd_failed_units.hpp"
#include <fmt/format.h>
#include <giomm/dbusproxy.h>
#include <glibmm/markup.h>
#include <glibmm/variant.h>
#include <spdlog/spdlog.h>
#include <cstdint>
#include <exception>
#include <stdexcept>
#include <tuple>
static const unsigned UPDATE_DEBOUNCE_TIME_MS = 1000;
@@ -12,56 +17,86 @@ namespace waybar::modules {
SystemdFailedUnits::SystemdFailedUnits(const std::string& id, const Json::Value& config)
: ALabel(config, "systemd-failed-units", id, "{nr_failed} failed", 1),
hide_on_ok(true),
update_pending(false),
nr_failed_system(0),
nr_failed_user(0),
nr_failed(0),
last_status() {
hide_on_ok_(true),
tooltip_format_(
"System: {system_state}\nUser: {user_state}\nFailed units ({nr_failed}):\n"
"{failed_units_list}"),
tooltip_format_ok_("System: {system_state}\nUser: {user_state}"),
tooltip_unit_format_("{name}: {description}"),
update_pending_(false),
nr_failed_system_(0),
nr_failed_user_(0),
nr_failed_(0),
last_status_() {
if (config["hide-on-ok"].isBool()) {
hide_on_ok = config["hide-on-ok"].asBool();
hide_on_ok_ = config["hide-on-ok"].asBool();
}
if (config["format-ok"].isString()) {
format_ok = config["format-ok"].asString();
format_ok_ = config["format-ok"].asString();
} else {
format_ok = format_;
format_ok_ = format_;
}
if (config["tooltip-format"].isString()) {
tooltip_format_ = config["tooltip-format"].asString();
}
if (config["tooltip-format-ok"].isString()) {
tooltip_format_ok_ = config["tooltip-format-ok"].asString();
}
if (config["tooltip-unit-format"].isString()) {
tooltip_unit_format_ = config["tooltip-unit-format"].asString();
}
/* Default to enable both "system" and "user". */
if (!config["system"].isBool() || config["system"].asBool()) {
system_proxy = Gio::DBus::Proxy::create_for_bus_sync(
system_props_proxy_ = Gio::DBus::Proxy::create_for_bus_sync(
Gio::DBus::BusType::BUS_TYPE_SYSTEM, "org.freedesktop.systemd1",
"/org/freedesktop/systemd1", "org.freedesktop.DBus.Properties");
if (!system_proxy) {
if (!system_props_proxy_) {
throw std::runtime_error("Unable to connect to systemwide systemd DBus!");
}
system_proxy->signal_signal().connect(sigc::mem_fun(*this, &SystemdFailedUnits::notify_cb));
system_props_proxy_->signal_signal().connect(
sigc::mem_fun(*this, &SystemdFailedUnits::notify_cb));
try {
system_manager_proxy_ = Gio::DBus::Proxy::create_for_bus_sync(
Gio::DBus::BusType::BUS_TYPE_SYSTEM, "org.freedesktop.systemd1",
"/org/freedesktop/systemd1", "org.freedesktop.systemd1.Manager");
} catch (const Glib::Error& e) {
spdlog::warn("Unable to connect to systemwide systemd Manager interface: {}",
e.what().c_str());
}
}
if (!config["user"].isBool() || config["user"].asBool()) {
user_proxy = Gio::DBus::Proxy::create_for_bus_sync(
user_props_proxy_ = Gio::DBus::Proxy::create_for_bus_sync(
Gio::DBus::BusType::BUS_TYPE_SESSION, "org.freedesktop.systemd1",
"/org/freedesktop/systemd1", "org.freedesktop.DBus.Properties");
if (!user_proxy) {
if (!user_props_proxy_) {
throw std::runtime_error("Unable to connect to user systemd DBus!");
}
user_proxy->signal_signal().connect(sigc::mem_fun(*this, &SystemdFailedUnits::notify_cb));
user_props_proxy_->signal_signal().connect(
sigc::mem_fun(*this, &SystemdFailedUnits::notify_cb));
try {
user_manager_proxy_ = Gio::DBus::Proxy::create_for_bus_sync(
Gio::DBus::BusType::BUS_TYPE_SESSION, "org.freedesktop.systemd1",
"/org/freedesktop/systemd1", "org.freedesktop.systemd1.Manager");
} catch (const Glib::Error& e) {
spdlog::warn("Unable to connect to user systemd Manager interface: {}", e.what().c_str());
}
}
if (!user_props_proxy_ && !system_props_proxy_)
throw std::runtime_error("Neither system nor user status is requested.");
updateData();
/* Always update for the first time. */
dp.emit();
}
SystemdFailedUnits::~SystemdFailedUnits() {
if (system_proxy) system_proxy.reset();
if (user_proxy) user_proxy.reset();
}
auto SystemdFailedUnits::notify_cb(const Glib::ustring& sender_name,
const Glib::ustring& signal_name,
const Glib::VariantContainerBase& arguments) -> void {
if (signal_name == "PropertiesChanged" && !update_pending) {
update_pending = true;
if (signal_name == "PropertiesChanged" && !update_pending_) {
update_pending_ = true;
/* The fail count may fluctuate due to restarting. */
Glib::signal_timeout().connect_once(sigc::mem_fun(*this, &SystemdFailedUnits::updateData),
UPDATE_DEBOUNCE_TIME_MS);
@@ -71,15 +106,15 @@ auto SystemdFailedUnits::notify_cb(const Glib::ustring& sender_name,
void SystemdFailedUnits::RequestSystemState() {
auto load = [](const char* kind, Glib::RefPtr<Gio::DBus::Proxy>& proxy) -> std::string {
try {
if (!proxy) return "unknown";
if (!proxy) return "ignored";
auto parameters = Glib::VariantContainerBase(
g_variant_new("(ss)", "org.freedesktop.systemd1.Manager", "SystemState"));
Glib::VariantContainerBase data = proxy->call_sync("Get", parameters);
if (data && data.is_of_type(Glib::VariantType("(v)"))) {
Glib::VariantBase variant;
g_variant_get(data.gobj_copy(), "(v)", &variant);
g_variant_get(const_cast<GVariant*>(data.gobj()), "(v)", &variant);
if (variant && variant.is_of_type(Glib::VARIANT_TYPE_STRING)) {
return g_variant_get_string(variant.gobj_copy(), NULL);
return g_variant_get_string(const_cast<GVariant*>(variant.gobj()), NULL);
}
}
} catch (Glib::Error& e) {
@@ -88,12 +123,14 @@ void SystemdFailedUnits::RequestSystemState() {
return "unknown";
};
system_state = load("systemwide", system_proxy);
user_state = load("user", user_proxy);
if (system_state == "running" && user_state == "running")
overall_state = "ok";
system_state_ = load("systemwide", system_props_proxy_);
user_state_ = load("user", user_props_proxy_);
if ((system_state_ == "running" || system_state_ == "ignored") &&
(user_state_ == "running" || user_state_ == "ignored"))
overall_state_ = "ok";
else
overall_state = "degraded";
overall_state_ = "degraded";
}
void SystemdFailedUnits::RequestFailedUnits() {
@@ -105,9 +142,9 @@ void SystemdFailedUnits::RequestFailedUnits() {
Glib::VariantContainerBase data = proxy->call_sync("Get", parameters);
if (data && data.is_of_type(Glib::VariantType("(v)"))) {
Glib::VariantBase variant;
g_variant_get(data.gobj_copy(), "(v)", &variant);
g_variant_get(const_cast<GVariant*>(data.gobj()), "(v)", &variant);
if (variant && variant.is_of_type(Glib::VARIANT_TYPE_UINT32)) {
return g_variant_get_uint32(variant.gobj_copy());
return g_variant_get_uint32(const_cast<GVariant*>(variant.gobj()));
}
}
} catch (Glib::Error& e) {
@@ -116,46 +153,153 @@ void SystemdFailedUnits::RequestFailedUnits() {
return 0;
};
nr_failed_system = load("systemwide", system_proxy);
nr_failed_user = load("user", user_proxy);
nr_failed = nr_failed_system + nr_failed_user;
nr_failed_system_ = load("systemwide", system_props_proxy_);
nr_failed_user_ = load("user", user_props_proxy_);
nr_failed_ = nr_failed_system_ + nr_failed_user_;
}
void SystemdFailedUnits::RequestFailedUnitsList() {
failed_units_.clear();
if (!tooltipEnabled() || nr_failed_ == 0) {
return;
}
if (system_manager_proxy_) {
auto units = LoadFailedUnitsList("systemwide", system_manager_proxy_, "system");
failed_units_.insert(failed_units_.end(), units.begin(), units.end());
}
if (user_manager_proxy_) {
auto units = LoadFailedUnitsList("user", user_manager_proxy_, "user");
failed_units_.insert(failed_units_.end(), units.begin(), units.end());
}
}
auto SystemdFailedUnits::LoadFailedUnitsList(const char* kind,
Glib::RefPtr<Gio::DBus::Proxy>& proxy,
const std::string& scope) -> std::vector<FailedUnit> {
// org.freedesktop.systemd1.Manager.ListUnits returns
// (name, description, load_state, active_state, sub_state, followed, unit_path, job_id,
// job_type, job_path).
using UnitRow = std::tuple<Glib::ustring, Glib::ustring, Glib::ustring, Glib::ustring,
Glib::ustring, Glib::ustring, Glib::DBusObjectPathString, guint32,
Glib::ustring, Glib::DBusObjectPathString>;
using ListUnitsReply = Glib::Variant<std::tuple<std::vector<UnitRow>>>;
std::vector<FailedUnit> units;
if (!proxy) {
return units;
}
try {
auto data = proxy->call_sync("ListUnits");
if (!data) return units;
if (!data.is_of_type(ListUnitsReply::variant_type())) {
spdlog::warn("Unexpected DBus signature for ListUnits: {}", data.get_type_string());
return units;
}
auto [rows] = Glib::VariantBase::cast_dynamic<ListUnitsReply>(data).get();
for (const auto& row : rows) {
const auto& name = std::get<0>(row);
const auto& description = std::get<1>(row);
const auto& load_state = std::get<2>(row);
const auto& active_state = std::get<3>(row);
const auto& sub_state = std::get<4>(row);
if (active_state == "failed" || sub_state == "failed") {
units.push_back({name, description, load_state, active_state, sub_state, scope});
}
}
} catch (const Glib::Error& e) {
spdlog::error("Failed to list {} units: {}", kind, e.what().c_str());
}
return units;
}
std::string SystemdFailedUnits::BuildTooltipFailedList() const {
if (failed_units_.empty()) {
return "";
}
std::string list;
list.reserve(failed_units_.size() * 16);
bool first = true;
for (const auto& unit : failed_units_) {
try {
auto line = fmt::format(
fmt::runtime(tooltip_unit_format_),
fmt::arg("name", Glib::Markup::escape_text(unit.name).raw()),
fmt::arg("description", Glib::Markup::escape_text(unit.description).raw()),
fmt::arg("load_state", unit.load_state), fmt::arg("active_state", unit.active_state),
fmt::arg("sub_state", unit.sub_state), fmt::arg("scope", unit.scope));
if (!first) {
list += "\n";
}
first = false;
list += "- ";
list += line;
} catch (const std::exception& e) {
spdlog::warn("Failed to format tooltip for unit {}: {}", unit.name, e.what());
}
}
return list;
}
void SystemdFailedUnits::updateData() {
update_pending = false;
update_pending_ = false;
RequestSystemState();
if (overall_state == "degraded") RequestFailedUnits();
if (overall_state_ == "degraded") {
RequestFailedUnits();
RequestFailedUnitsList();
} else {
nr_failed_system_ = nr_failed_user_ = nr_failed_ = 0;
failed_units_.clear();
}
dp.emit();
}
auto SystemdFailedUnits::update() -> void {
if (last_status == overall_state) return;
// Hide if needed.
if (overall_state == "ok" && hide_on_ok) {
if (overall_state_ == "ok" && hide_on_ok_) {
event_box_.set_visible(false);
last_status_ = overall_state_;
return;
}
event_box_.set_visible(true);
// Set state class.
if (!last_status.empty() && label_.get_style_context()->has_class(last_status)) {
label_.get_style_context()->remove_class(last_status);
if (!last_status_.empty() && label_.get_style_context()->has_class(last_status_)) {
label_.get_style_context()->remove_class(last_status_);
}
if (!label_.get_style_context()->has_class(overall_state)) {
label_.get_style_context()->add_class(overall_state);
if (!label_.get_style_context()->has_class(overall_state_)) {
label_.get_style_context()->add_class(overall_state_);
}
last_status = overall_state;
last_status_ = overall_state_;
label_.set_markup(fmt::format(
fmt::runtime(nr_failed == 0 ? format_ok : format_), fmt::arg("nr_failed", nr_failed),
fmt::arg("nr_failed_system", nr_failed_system), fmt::arg("nr_failed_user", nr_failed_user),
fmt::arg("system_state", system_state), fmt::arg("user_state", user_state),
fmt::arg("overall_state", overall_state)));
fmt::runtime(nr_failed_ == 0 ? format_ok_ : format_), fmt::arg("nr_failed", nr_failed_),
fmt::arg("nr_failed_system", nr_failed_system_), fmt::arg("nr_failed_user", nr_failed_user_),
fmt::arg("system_state", system_state_), fmt::arg("user_state", user_state_),
fmt::arg("overall_state", overall_state_)));
if (tooltipEnabled()) {
std::string failed_list = BuildTooltipFailedList();
auto tooltip_template = overall_state_ == "ok" ? tooltip_format_ok_ : tooltip_format_;
if (!tooltip_template.empty()) {
label_.set_tooltip_markup(fmt::format(
fmt::runtime(tooltip_template), fmt::arg("nr_failed", nr_failed_),
fmt::arg("nr_failed_system", nr_failed_system_),
fmt::arg("nr_failed_user", nr_failed_user_), fmt::arg("system_state", system_state_),
fmt::arg("user_state", user_state_), fmt::arg("overall_state", overall_state_),
fmt::arg("failed_units_list", failed_list)));
} else {
label_.set_tooltip_markup("");
}
}
ALabel::update();
}
+74 -7
View File
@@ -1,6 +1,8 @@
#include "modules/temperature.hpp"
#include <filesystem>
#include <optional>
#include <stdexcept>
#include <string>
#if defined(__FreeBSD__)
@@ -20,12 +22,59 @@ waybar::modules::Temperature::Temperature(const std::string& id, const Json::Val
if (check_set_path(item.asString())) break;
};
// if hwmon_path is an array, loop to find first valid item
traverseAsArray(config_["hwmon-path"], [this](const std::string& path) {
if (!std::filesystem::exists(path)) return false;
file_path_ = path;
return true;
});
if (config_["hwmon-by-name"].isString() && config_["input-filename"].isString()) {
auto name = config_["hwmon-by-name"].asString();
auto input_filename = config_["input-filename"].asString();
for (const auto& entry : std::filesystem::directory_iterator("/sys/class/hwmon/")) {
if (std::filesystem::is_directory(entry) && file_path_.empty()) {
auto name_filepath = entry.path().string() + "/name";
auto input_filepath = entry.path().string() + "/" + input_filename;
if (std::filesystem::exists(name_filepath) && std::filesystem::exists(input_filepath)) {
std::ifstream name_file(name_filepath);
if (!name_file.is_open()) {
throw std::runtime_error("Error: Could not open file " + name_filepath);
}
std::string line;
while (std::getline(name_file, line)) {
if (line.find(name) != std::string::npos) {
file_path_ = input_filepath;
break;
}
}
}
}
}
if (file_path_.empty()) throw std::runtime_error("Could not find hwmon by name " + name);
}
auto find_hwmon_by_name = [](const std::string& name) -> std::optional<std::filesystem::path> {
for (const auto& entry : std::filesystem::directory_iterator("/sys/class/hwmon")) {
std::ifstream f(entry.path() / "name");
std::string hwname;
if (f >> hwname && hwname == name) {
return entry.path();
}
}
return std::nullopt;
};
// ensure either hwmon-name OR old paths are used, not both
if (config_["hwmon-name"].isString() &&
(!config_["hwmon-path"].isNull() || !config_["hwmon-path-abs"].isNull())) {
throw std::runtime_error(
"hwmon-name cannot be used together with hwmon-path or hwmon-path-abs");
}
if (file_path_.empty()) {
// if hwmon_path is an array, loop to find first valid item
traverseAsArray(config_["hwmon-path"], [this](const std::string& path) {
if (!std::filesystem::exists(path)) return false;
file_path_ = path;
return true;
});
}
if (file_path_.empty() && config_["input-filename"].isString()) {
// fallback to hwmon_paths-abs
@@ -40,6 +89,20 @@ waybar::modules::Temperature::Temperature(const std::string& id, const Json::Val
});
}
if (file_path_.empty() && config_["hwmon-name"].isString()) {
if (!config_["input-filename"].isString()) {
throw std::runtime_error("hwmon-name requires input-filename to be set");
}
auto hwmon = find_hwmon_by_name(config_["hwmon-name"].asString());
if (!hwmon) {
throw std::runtime_error("hwmon-name '" + config_["hwmon-name"].asString() + "' not found");
}
file_path_ = hwmon->string() + "/" + config_["input-filename"].asString();
}
if (file_path_.empty()) {
auto zone = config_["thermal-zone"].isInt() ? config_["thermal-zone"].asInt() : 0;
file_path_ = fmt::format("/sys/class/thermal/thermal_zone{}/temp", zone);
@@ -101,7 +164,7 @@ auto waybar::modules::Temperature::update() -> void {
if (config_["tooltip-format"].isString()) {
tooltip_format = config_["tooltip-format"].asString();
}
label_.set_tooltip_text(fmt::format(
label_.set_tooltip_markup(fmt::format(
fmt::runtime(tooltip_format), fmt::arg("temperatureC", temperature_c),
fmt::arg("temperatureF", temperature_f), fmt::arg("temperatureK", temperature_k)));
}
@@ -155,3 +218,7 @@ bool waybar::modules::Temperature::isCritical(uint16_t temperature_c) {
return config_["critical-threshold"].isInt() &&
temperature_c >= config_["critical-threshold"].asInt();
}
void waybar::modules::Temperature::suspend() { thread_.pause(); }
void waybar::modules::Temperature::resume() { thread_.resume(); }
+11 -7
View File
@@ -59,10 +59,13 @@ UPower::UPower(const std::string& id, const Json::Value& config)
sigc::mem_fun(*this, &UPower::getConn_cb));
// Make UPower client
GError** gErr = NULL;
upClient_ = up_client_new_full(NULL, gErr);
if (upClient_ == NULL)
spdlog::error("Upower. UPower client connection error. {}", (*gErr)->message);
GError* gErr = NULL;
upClient_ = up_client_new_full(NULL, &gErr);
if (upClient_ == NULL) {
spdlog::error("Upower. UPower client connection error. {}",
gErr ? gErr->message : "unknown error");
if (gErr) g_error_free(gErr);
}
// Subscribe UPower events
g_signal_connect(upClient_, "device-added", G_CALLBACK(deviceAdded_cb), this);
@@ -92,7 +95,7 @@ UPower::~UPower() {
removeDevices();
}
static const std::string getDeviceStatus(UpDeviceState& state) {
static std::string_view getDeviceStatus(UpDeviceState& state) {
switch (state) {
case UP_DEVICE_STATE_CHARGING:
case UP_DEVICE_STATE_PENDING_CHARGE:
@@ -109,7 +112,7 @@ static const std::string getDeviceStatus(UpDeviceState& state) {
}
}
static const std::string getDeviceIcon(UpDeviceKind& kind) {
static std::string_view getDeviceIcon(UpDeviceKind& kind) {
switch (kind) {
case UP_DEVICE_KIND_LINE_POWER:
return "ac-adapter-symbolic";
@@ -209,7 +212,8 @@ auto UPower::update() -> void {
// Remove last status if it exists
if (!lastStatus_.empty() && box_.get_style_context()->has_class(lastStatus_))
box_.get_style_context()->remove_class(lastStatus_);
if (!box_.get_style_context()->has_class(status)) box_.get_style_context()->add_class(status);
if (!box_.get_style_context()->has_class(std::string(status)))
box_.get_style_context()->add_class(std::string(status));
lastStatus_ = status;
if (devices_.size() == 0 && !upDeviceValid && hideIfEmpty_) {
-1
View File
@@ -7,7 +7,6 @@
#include <algorithm>
#include <chrono>
#include "gdkmm/cursor.h"
#include "gdkmm/event.h"
#include "gdkmm/types.h"
#include "glibmm/fileutils.h"
+34 -17
View File
@@ -9,6 +9,7 @@
#include <bit>
#include <cstdint>
#include <cstdlib>
#include <cstring>
#include <exception>
#include <ranges>
#include <thread>
@@ -26,13 +27,19 @@ inline auto byteswap(uint32_t x) -> uint32_t {
auto pack_and_write(Sock& sock, std::string&& buf) -> void {
uint32_t len = buf.size();
if constexpr (std::endian::native != std::endian::little) len = byteswap(len);
(void)write(sock.fd, &len, 4);
(void)write(sock.fd, buf.data(), buf.size());
(void)write(sock, &len, 4);
(void)write(sock, buf.data(), buf.size());
}
auto read_exact(Sock& sock, size_t n) -> std::string {
auto buf = std::string(n, 0);
for (size_t i = 0; i < n;) i += read(sock.fd, &buf[i], n - i);
for (size_t i = 0; i < n;) {
auto r = read(sock, &buf[i], n - i);
if (r <= 0) {
throw std::runtime_error("Wayfire IPC: read failed");
}
i += static_cast<size_t>(r);
}
return buf;
}
@@ -53,6 +60,9 @@ auto State::Wset::locate_ws(const Json::Value& geo) -> Workspace& {
}
auto State::Wset::locate_ws(const Json::Value& geo) const -> const Workspace& {
if (!output.has_value()) {
throw std::runtime_error("Wayfire IPC: wset has no output assigned");
}
const auto& out = output.value().get();
auto [qx, rx] = std::div(geo["x"].asInt(), out.w);
auto [qy, ry] = std::div(geo["y"].asInt(), out.h);
@@ -88,7 +98,10 @@ auto State::update_view(const Json::Value& view) -> void {
auto IPC::get_instance() -> std::shared_ptr<IPC> {
auto p = instance.lock();
if (!p) instance = p = std::shared_ptr<IPC>(new IPC);
if (!p) {
instance = p = std::shared_ptr<IPC>(new IPC);
p->start();
}
return p;
}
@@ -98,7 +111,7 @@ auto IPC::connect() -> Sock {
throw std::runtime_error{"Wayfire IPC: ipc not available"};
}
auto sock = socket(AF_UNIX, SOCK_STREAM, 0);
util::ScopedFd sock(socket(AF_UNIX, SOCK_STREAM, 0));
if (sock == -1) {
throw std::runtime_error{"Wayfire IPC: socket() failed"};
}
@@ -108,15 +121,16 @@ auto IPC::connect() -> Sock {
addr.sun_path[sizeof(addr.sun_path) - 1] = 0;
if (::connect(sock, (const sockaddr*)&addr, sizeof(addr)) == -1) {
close(sock);
throw std::runtime_error{"Wayfire IPC: connect() failed"};
}
return {sock};
return sock;
}
auto IPC::receive(Sock& sock) -> Json::Value {
auto len = *reinterpret_cast<uint32_t*>(read_exact(sock, 4).data());
auto len_buf = read_exact(sock, 4);
uint32_t len;
std::memcpy(&len, len_buf.data(), sizeof(len));
if constexpr (std::endian::native != std::endian::little) len = byteswap(len);
auto buf = read_exact(sock, len);
@@ -153,15 +167,15 @@ auto IPC::start() -> void {
send("window-rules/get-focused-view", {});
send("window-rules/get-focused-output", {});
std::thread([&] {
std::thread([self = shared_from_this()] {
auto sock = connect();
{
Json::Value json;
json["method"] = "window-rules/events/watch";
pack_and_write(sock, Json::writeString(writer_builder, json));
if (receive(sock)["result"] != "ok") {
pack_and_write(sock, Json::writeString(self->writer_builder, json));
if (self->receive(sock)["result"] != "ok") {
spdlog::error(
"Wayfire IPC: method \"window-rules/events/watch\""
" have failed");
@@ -169,10 +183,10 @@ auto IPC::start() -> void {
}
}
while (auto json = receive(sock)) {
while (auto json = self->receive(sock)) {
auto ev = json["event"].asString();
spdlog::debug("Wayfire IPC: received event \"{}\"", ev);
root_event_handler(ev, json);
self->root_event_handler(ev, json);
}
}).detach();
}
@@ -333,10 +347,13 @@ auto IPC::update_state_handler(const std::string& event, const Json::Value& data
if (event == "output-wset-changed") {
// data: { event, new-wset: wset.name, output: id, new-wset-data: wset, output-data: output }
auto& output = state.outputs.at(data["output-data"]["name"].asString());
auto wset_idx = data["new-wset-data"]["index"].asUInt();
state.wsets.at(wset_idx).output = output;
output.wset_idx = wset_idx;
try {
auto& output = state.outputs.at(data["output-data"]["name"].asString());
auto wset_idx = data["new-wset-data"]["index"].asUInt();
state.wsets.at(wset_idx).output = output;
output.wset_idx = wset_idx;
} catch (const std::exception&) {
}
return;
}
+6 -2
View File
@@ -34,8 +34,12 @@ auto Window::update() -> void {
auto Window::update_icon_label() -> void {
auto _ = ipc->lock_state();
const auto& output = ipc->get_outputs().at(bar_.output->name);
const auto& wset = ipc->get_wsets().at(output.wset_idx);
auto out_it = ipc->get_outputs().find(bar_.output->name);
if (out_it == ipc->get_outputs().end()) return;
const auto& output = out_it->second;
auto wset_it = ipc->get_wsets().find(output.wset_idx);
if (wset_it == ipc->get_wsets().end()) return;
const auto& wset = wset_it->second;
const auto& views = ipc->get_views();
auto ctx = bar_.window.get_style_context();
+12 -4
View File
@@ -70,8 +70,12 @@ auto Workspaces::handleScroll(GdkEventScroll* e) -> bool {
Json::Value data;
{
auto _ = ipc->lock_state();
const auto& output = ipc->get_outputs().at(bar_.output->name);
const auto& wset = ipc->get_wsets().at(output.wset_idx);
auto out_it = ipc->get_outputs().find(bar_.output->name);
if (out_it == ipc->get_outputs().end()) return true;
const auto& output = out_it->second;
auto wset_it = ipc->get_wsets().find(output.wset_idx);
if (wset_it == ipc->get_wsets().end()) return true;
const auto& wset = wset_it->second;
auto n = wset.ws_w * wset.ws_h;
auto i = (wset.ws_idx() + delta + n) % n;
data["x"] = Json::Value((uint64_t)i % wset.ws_w);
@@ -92,8 +96,12 @@ auto Workspaces::update_box() -> void {
auto _ = ipc->lock_state();
const auto& output_name = bar_.output->name;
const auto& output = ipc->get_outputs().at(output_name);
const auto& wset = ipc->get_wsets().at(output.wset_idx);
auto out_it = ipc->get_outputs().find(output_name);
if (out_it == ipc->get_outputs().end()) return;
const auto& output = out_it->second;
auto wset_it = ipc->get_wsets().find(output.wset_idx);
if (wset_it == ipc->get_wsets().end()) return;
const auto& wset = wset_it->second;
auto output_focused = ipc->get_focused_output_name() == output_name;
auto ws_w = wset.ws_w;
+154 -38
View File
@@ -2,6 +2,9 @@
#include <spdlog/spdlog.h>
#include <cmath>
#include <string>
bool isValidNodeId(uint32_t id) { return id > 0 && id < G_MAXUINT32; }
std::list<waybar::modules::Wireplumber*> waybar::modules::Wireplumber::modules;
@@ -25,7 +28,8 @@ waybar::modules::Wireplumber::Wireplumber(const std::string& id, const Json::Val
source_node_id_(0),
source_muted_(false),
source_volume_(0.0),
default_source_name_(nullptr) {
default_source_name_(nullptr),
form_factor_("") {
waybar::modules::Wireplumber::modules.push_back(this);
wp_init(WP_INIT_PIPEWIRE);
@@ -54,6 +58,15 @@ waybar::modules::Wireplumber::Wireplumber(const std::string& id, const Json::Val
waybar::modules::Wireplumber::~Wireplumber() {
waybar::modules::Wireplumber::modules.remove(this);
if (mixer_api_ != nullptr) {
g_signal_handlers_disconnect_by_data(mixer_api_, this);
}
if (def_nodes_api_ != nullptr) {
g_signal_handlers_disconnect_by_data(def_nodes_api_, this);
}
if (om_ != nullptr) {
g_signal_handlers_disconnect_by_data(om_, this);
}
wp_core_disconnect(wp_core_);
g_clear_pointer(&apis_, g_ptr_array_unref);
g_clear_object(&om_);
@@ -81,7 +94,7 @@ void waybar::modules::Wireplumber::updateNodeName(waybar::modules::Wireplumber*
if (proxy == nullptr) {
auto err = fmt::format("Object '{}' not found\n", id);
spdlog::error("[{}]: {}", self->name_, err);
throw std::runtime_error(err);
return;
}
g_autoptr(WpProperties) properties =
@@ -99,6 +112,21 @@ void waybar::modules::Wireplumber::updateNodeName(waybar::modules::Wireplumber*
: description != nullptr ? description
: "Unknown node name";
spdlog::debug("[{}]: Updating '{}' node name to: {}", self->name_, self->type_, self->node_name_);
// find form-factor
const auto* devid = wp_properties_get(properties, "device.id");
spdlog::debug("[{}]: '{}' device.id is {}", self->name_, self->type_, devid);
auto* dev = static_cast<WpDevice*>(wp_object_manager_lookup(
self->om_, WP_TYPE_DEVICE, WP_CONSTRAINT_TYPE_G_PROPERTY, "bound-id", "=s", devid, nullptr));
if (const auto* ff =
wp_pipewire_object_get_property(WP_PIPEWIRE_OBJECT(dev), "device.form-factor")) {
self->form_factor_ = ff;
spdlog::debug("[{}]: Updating node form factor to: {}", self->name_, self->form_factor_);
} else {
self->form_factor_ = "";
}
}
void waybar::modules::Wireplumber::updateSourceName(waybar::modules::Wireplumber* self,
@@ -153,7 +181,7 @@ void waybar::modules::Wireplumber::updateVolume(waybar::modules::Wireplumber* se
if (variant == nullptr) {
auto err = fmt::format("Node {} does not support volume\n", id);
spdlog::error("[{}]: {}", self->name_, err);
throw std::runtime_error(err);
return;
}
g_variant_lookup(variant, "volume", "d", &self->volume_);
@@ -202,6 +230,7 @@ void waybar::modules::Wireplumber::onMixerChanged(waybar::modules::Wireplumber*
return;
}
}
return;
}
spdlog::warn("[{}]: (onMixerChanged: {}) - Object with id {} not found", self->name_,
@@ -287,14 +316,14 @@ void waybar::modules::Wireplumber::onObjectManagerInstalled(waybar::modules::Wir
if (self->def_nodes_api_ == nullptr) {
spdlog::error("[{}]: default nodes api is not loaded.", self->name_);
throw std::runtime_error("Default nodes API is not loaded\n");
return;
}
self->mixer_api_ = wp_plugin_find(self->wp_core_, "mixer-api");
if (self->mixer_api_ == nullptr) {
spdlog::error("[{}]: mixer api is not loaded.", self->name_);
throw std::runtime_error("Mixer api is not loaded\n");
return;
}
// Get default sink
@@ -336,7 +365,7 @@ void waybar::modules::Wireplumber::onPluginActivated(WpObject* p, GAsyncResult*
if (wp_object_activate_finish(p, res, &error) == 0) {
spdlog::error("[{}]: error activating plugin: {}", self->name_, error->message);
throw std::runtime_error(error->message);
return;
}
if (--self->pending_plugins_ == 0) {
@@ -360,6 +389,8 @@ void waybar::modules::Wireplumber::prepare(waybar::modules::Wireplumber* self) {
"=s", self->type_, nullptr);
wp_object_manager_add_interest(om_, WP_TYPE_NODE, WP_CONSTRAINT_TYPE_PW_PROPERTY, "media.class",
"=s", "Audio/Source", nullptr);
wp_object_manager_add_interest(om_, WP_TYPE_DEVICE, WP_CONSTRAINT_TYPE_PW_PROPERTY, "media.class",
"=s", "Audio/Device", nullptr);
}
void waybar::modules::Wireplumber::onDefaultNodesApiLoaded(WpObject* p, GAsyncResult* res,
@@ -373,7 +404,7 @@ void waybar::modules::Wireplumber::onDefaultNodesApiLoaded(WpObject* p, GAsyncRe
if (success == FALSE) {
spdlog::error("[{}]: default nodes API load failed", self->name_);
throw std::runtime_error(error->message);
return;
}
spdlog::debug("[{}]: loaded default nodes api", self->name_);
g_ptr_array_add(self->apis_, wp_plugin_find(self->wp_core_, "default-nodes-api"));
@@ -392,13 +423,13 @@ void waybar::modules::Wireplumber::onMixerApiLoaded(WpObject* p, GAsyncResult* r
if (success == FALSE) {
spdlog::error("[{}]: mixer API load failed", self->name_);
throw std::runtime_error(error->message);
return;
}
spdlog::debug("[{}]: loaded mixer API", self->name_);
g_ptr_array_add(self->apis_, ({
WpPlugin* p = wp_plugin_find(self->wp_core_, "mixer-api");
g_object_set(G_OBJECT(p), "scale", 1 /* cubic */, nullptr);
g_object_set(G_OBJECT(p), "scale", 0 /* linear */, nullptr);
p;
}));
@@ -417,13 +448,55 @@ void waybar::modules::Wireplumber::asyncLoadRequiredApiModules() {
this);
}
static const std::array<std::string, 7> ports = {
"headphone", "speaker", "headset", "hands-free", "portable", "car", "hifi",
};
std::vector<std::string> waybar::modules::Wireplumber::getWPIcon() {
std::vector<std::string> res;
if (muted_) {
res.emplace_back(node_name_ + "-muted");
}
res.push_back(node_name_);
res.push_back(source_name_);
std::transform(form_factor_.begin(), form_factor_.end(), form_factor_.begin(), ::tolower);
for (auto const& port : ports) {
if (form_factor_.find(port) != std::string::npos) {
if (muted_) {
res.emplace_back(port + "-muted");
}
res.push_back(port);
break;
}
}
if (muted_) {
res.emplace_back("default-muted");
}
return res;
}
auto waybar::modules::Wireplumber::update() -> void {
auto format = format_;
std::string tooltipFormat;
std::string format_name = "format";
// Handle sink bluetooth state
const std::string name = default_node_name_ != nullptr ? default_node_name_ : "";
auto bt = name.find("bluez") != std::string::npos || name.find("a2dp-sink") != std::string::npos;
if (bt) {
format_name += "-bluetooth";
label_.get_style_context()->add_class("bluetooth");
} else {
label_.get_style_context()->remove_class("bluetooth");
}
// Handle sink mute state
if (muted_) {
format = config_["format-muted"].isString() ? config_["format-muted"].asString() : format;
// Check muted bluetooth format exists, otherwise fall back to default muted format.
if (format_name != "format" && !config_[format_name + "-muted"].isString())
format_name = "format";
format_name += "-muted";
label_.get_style_context()->add_class("muted");
label_.get_style_context()->add_class("sink-muted");
} else {
@@ -438,18 +511,21 @@ auto waybar::modules::Wireplumber::update() -> void {
label_.get_style_context()->remove_class("source-muted");
}
int vol = round(volume_ * 100.0);
int source_vol = round(source_volume_ * 100.0);
double vol_cube = pow(volume_, 3);
double source_vol_cube = pow(source_volume_, 3);
int vol = round(vol_cube * 100.0);
int source_vol = round(source_vol_cube * 100.0);
double vol_db = 20.0 * log10(volume_);
double source_vol_db = 20.0 * log10(source_volume_);
// Get the state and apply state-specific format if available
auto state = getState(vol);
if (!state.empty()) {
std::string format_name = muted_ ? "format-muted" : "format";
std::string state_format_name = format_name + "-" + state;
if (config_[state_format_name].isString()) {
format = config_[state_format_name].asString();
}
}
if (!state.empty() && config_[format_name + "-" + state].isString())
format = config_[format_name + "-" + state].asString();
else if (config_[format_name].isString())
format = config_[format_name].asString();
// Prepare source format string (similar to PulseAudio)
std::string format_source = "{volume}%";
@@ -467,10 +543,14 @@ auto waybar::modules::Wireplumber::update() -> void {
std::string formatted_source =
fmt::format(fmt::runtime(format_source), fmt::arg("volume", source_vol));
std::string markup =
fmt::format(fmt::runtime(format), fmt::arg("node_name", node_name_), fmt::arg("volume", vol),
fmt::arg("icon", getIcon(vol)), fmt::arg("format_source", formatted_source),
fmt::arg("source_volume", source_vol), fmt::arg("source_desc", source_name_));
std::string markup = fmt::format(
fmt::runtime(format), fmt::arg("node_name", node_name_), fmt::arg("volume", vol),
fmt::arg("icon", getIcon(vol, getWPIcon())), fmt::arg("format_source", formatted_source),
fmt::arg("source_volume", source_vol), fmt::arg("source_desc", source_name_),
fmt::arg("volume_linear", volume_), fmt::arg("volume_cubic", vol_cube),
fmt::arg("volume_db", vol_db), fmt::arg("source_volume_linear", source_volume_),
fmt::arg("source_volume_cubic", source_vol_cube),
fmt::arg("source_volume_db", source_vol_db));
label_.set_markup(markup);
if (tooltipEnabled()) {
@@ -479,12 +559,16 @@ auto waybar::modules::Wireplumber::update() -> void {
}
if (!tooltipFormat.empty()) {
label_.set_tooltip_text(fmt::format(
label_.set_tooltip_markup(fmt::format(
fmt::runtime(tooltipFormat), fmt::arg("node_name", node_name_), fmt::arg("volume", vol),
fmt::arg("icon", getIcon(vol)), fmt::arg("format_source", formatted_source),
fmt::arg("source_volume", source_vol), fmt::arg("source_desc", source_name_)));
fmt::arg("icon", getIcon(vol, getWPIcon())), fmt::arg("format_source", formatted_source),
fmt::arg("source_volume", source_vol), fmt::arg("source_desc", source_name_),
fmt::arg("volume_linear", volume_), fmt::arg("volume_cubic", vol_cube),
fmt::arg("volume_db", vol_db), fmt::arg("source_volume_linear", source_volume_),
fmt::arg("source_volume_cubic", source_vol_cube),
fmt::arg("source_volume_db", source_vol_db)));
} else {
label_.set_tooltip_text(node_name_);
label_.set_tooltip_markup(node_name_);
}
}
@@ -501,32 +585,64 @@ bool waybar::modules::Wireplumber::handleScroll(GdkEventScroll* e) {
return true;
}
double maxVolume = 1;
double step = 1.0 / 100.0;
double step = 1.0;
if (config_["scroll-step"].isDouble()) {
step = config_["scroll-step"].asDouble() / 100.0;
step = config_["scroll-step"].asDouble();
}
if (config_["max-volume"].isDouble()) {
maxVolume = config_["max-volume"].asDouble() / 100.0;
maxVolume = config_["max-volume"].asDouble();
}
if (step < min_step_) step = min_step_;
double vol = volume_;
std::string scale = "cubic_percent";
if (config_["scroll-scale"].isString()) {
scale = config_["scroll-scale"].asString();
}
double newVol = volume_;
if (scale == "cubic") {
vol = pow(vol, 3);
} else if (scale == "db") {
vol = log10(vol) * 20.0;
} else if (scale == "cubic_percent") {
vol = pow(vol, 3) * 100.0;
}
double newVol = vol;
if (dir == SCROLL_DIR::UP) {
if (volume_ < maxVolume) {
newVol = volume_ + step;
if (newVol > maxVolume) newVol = maxVolume;
newVol = vol + step;
} else if (dir == SCROLL_DIR::DOWN) {
newVol = vol - step;
}
if (scale == "cubic") {
newVol = cbrt(newVol);
} else if (scale == "db") {
newVol = exp10(newVol / 20.0);
} else if (scale == "cubic_percent") {
newVol = cbrt(newVol / 100.0);
}
if (dir == SCROLL_DIR::UP) {
if (volume_ + min_step_ > newVol) {
newVol = volume_ + min_step_;
}
} else if (dir == SCROLL_DIR::DOWN) {
if (volume_ > 0) {
newVol = volume_ - step;
if (newVol < 0) newVol = 0;
if (volume_ - min_step_ < newVol) {
newVol = volume_ - min_step_;
}
}
if (newVol < 0)
newVol = 0;
else if (newVol > maxVolume)
newVol = maxVolume;
if (newVol != volume_) {
if (mixer_api_ == nullptr) return true;
GVariant* variant = g_variant_new_double(newVol);
gboolean ret;
g_signal_emit_by_name(mixer_api_, "set-volume", node_id_, variant, &ret);
g_variant_unref(variant);
}
return true;
}
+298 -8
View File
@@ -94,9 +94,46 @@ Task::Task(const waybar::Bar& bar, const Json::Value& config, Taskbar* tbar,
button.set_relief(Gtk::RELIEF_NONE);
content_.add(text_before_);
content_.add(icon_);
content_.add(text_after_);
/* When "expand" is enabled the buttons stretch to fill the taskbar and the
* titles ellipsize to fit within the available space. This only makes sense
* on a horizontal bar; on a vertical bar the box grows along the vertical
* axis, so ellipsizing/forcing width_chars(1) would truncate every title to
* "…". Keep the historical behavior (buttons sized to their content) as the
* default and when the bar is vertical. */
bool expand = config_["expand"].isBool() && config_["expand"].asBool();
bool horizontal = bar.orientation == Gtk::ORIENTATION_HORIZONTAL;
if (expand && horizontal) {
button.set_hexpand(true);
content_.set_hexpand(true);
text_before_.set_ellipsize(Pango::ELLIPSIZE_END);
text_before_.set_single_line_mode(true);
text_before_.set_width_chars(1);
text_before_.set_xalign(0.0);
text_after_.set_ellipsize(Pango::ELLIPSIZE_END);
text_after_.set_single_line_mode(true);
text_after_.set_width_chars(1);
text_after_.set_xalign(0.0);
content_.pack_start(text_before_, true, true, 0);
content_.pack_start(icon_, false, false, 0);
content_.pack_start(text_after_, true, true, 0);
} else {
content_.add(text_before_);
content_.add(icon_);
content_.add(text_after_);
}
if (config_["justify"].isString()) {
auto justify_str = config_["justify"].asString();
if (justify_str == "left") {
content_.set_halign(Gtk::ALIGN_START);
} else if (justify_str == "right") {
content_.set_halign(Gtk::ALIGN_END);
} else if (justify_str == "center") {
content_.set_halign(Gtk::ALIGN_CENTER);
}
}
content_.show();
button.add(content_);
@@ -198,7 +235,7 @@ void Task::handle_title(const char* title) {
title_ = title;
hide_if_ignored();
if (!with_icon_ && !with_name_ || app_info_) {
if ((!with_icon_ && !with_name_) || app_info_) {
return;
}
@@ -293,9 +330,12 @@ void Task::handle_output_enter(struct wl_output* output) {
button.signal_size_allocate().connect_notify(
sigc::mem_fun(this, &Task::on_button_size_allocated));
tbar_->add_button(button);
button.show();
if (!config_["active-only"].asBool() || active()) {
button.show();
}
button_visible_ = true;
spdlog::debug("{} now visible on {}", repr(), bar_.output->name);
tbar_->update_bar_css_classes();
}
}
@@ -308,6 +348,7 @@ void Task::handle_output_leave(struct wl_output* output) {
button.hide();
button_visible_ = false;
spdlog::debug("{} now invisible on {}", repr(), bar_.output->name);
tbar_->update_bar_css_classes();
}
}
@@ -350,6 +391,20 @@ void Task::handle_done() {
button.get_style_context()->remove_class("fullscreen");
}
if (button_visible_ && config_["active-only"].asBool()) {
if (active()) {
button.show();
} else {
button.hide();
}
}
if (active()) {
tbar_->assign_current_workspace(*this);
}
tbar_->update_bar_css_classes();
if (config_["active-first"].isBool() && config_["active-first"].asBool() && active())
tbar_->move_button(button, 0);
@@ -437,7 +492,9 @@ void Task::handle_drag_data_get(const Glib::RefPtr<Gdk::DragContext>& context,
void Task::handle_drag_data_received(const Glib::RefPtr<Gdk::DragContext>& context, int x, int y,
Gtk::SelectionData selection_data, guint info, guint time) {
spdlog::debug("drag_data_received");
gpointer handle = *(gpointer*)selection_data.get_data();
auto* raw = selection_data.get_data();
if (!raw || selection_data.get_length() < static_cast<int>(sizeof(gpointer))) return;
gpointer handle = *(gpointer*)raw;
auto dragged_button = (Gtk::Button*)handle;
if (dragged_button == &this->button) return;
@@ -509,7 +566,7 @@ void Task::update() {
if (markup)
button.set_tooltip_markup(txt);
else
button.set_tooltip_text(txt);
button.set_tooltip_markup(txt);
}
}
@@ -549,6 +606,8 @@ static void handle_global(void* data, struct wl_registry* registry, uint32_t nam
const char* interface, uint32_t version) {
if (std::strcmp(interface, zwlr_foreign_toplevel_manager_v1_interface.name) == 0) {
static_cast<Taskbar*>(data)->register_manager(registry, name, version);
} else if (std::strcmp(interface, ext_workspace_manager_v1_interface.name) == 0) {
static_cast<Taskbar*>(data)->register_workspace_manager(registry, name, version);
} else if (std::strcmp(interface, wl_seat_interface.name) == 0) {
static_cast<Taskbar*>(data)->register_seat(registry, name, version);
}
@@ -566,6 +625,7 @@ Taskbar::Taskbar(const std::string& id, const waybar::Bar& bar, const Json::Valu
bar_(bar),
box_{bar.orientation, 0},
manager_{nullptr},
workspace_manager_{nullptr},
seat_{nullptr} {
box_.set_name("taskbar");
if (!id.empty()) {
@@ -621,6 +681,27 @@ Taskbar::Taskbar(const std::string& id, const waybar::Bar& bar, const Json::Valu
}
Taskbar::~Taskbar() {
for (auto& workspace : workspaces_) {
ext_workspace_handle_v1_destroy(workspace->handle);
}
workspaces_.clear();
for (auto* group : workspace_groups_) {
ext_workspace_group_handle_v1_destroy(group);
}
workspace_groups_.clear();
if (workspace_manager_) {
struct wl_display* display = Client::inst()->wl_display;
ext_workspace_manager_v1_stop(workspace_manager_);
wl_display_roundtrip(display);
if (workspace_manager_) {
spdlog::warn("Workspace manager destroyed before .finished event");
ext_workspace_manager_v1_destroy(workspace_manager_);
workspace_manager_ = nullptr;
}
}
if (manager_) {
struct wl_display* display = Client::inst()->wl_display;
/*
@@ -637,6 +718,13 @@ Taskbar::~Taskbar() {
manager_ = nullptr;
}
}
if (config_["bar-css-states"].asBool()) {
set_bar_css_class("toplevel-active", false);
set_bar_css_class("toplevel-maximized", false);
set_bar_css_class("toplevel-minimized", false);
set_bar_css_class("toplevel-fullscreen", false);
}
}
void Taskbar::update() {
@@ -672,6 +760,80 @@ static const struct zwlr_foreign_toplevel_manager_v1_listener toplevel_manager_i
.finished = tm_handle_finished,
};
static void workspace_handle_id(void*, struct ext_workspace_handle_v1*, const char*) {}
static void workspace_handle_name(void*, struct ext_workspace_handle_v1*, const char*) {}
static void workspace_handle_coordinates(void*, struct ext_workspace_handle_v1*, struct wl_array*) {
}
static void workspace_handle_state(void* data, struct ext_workspace_handle_v1*, uint32_t state) {
static_cast<Taskbar::WorkspaceState*>(data)->state = state;
}
static void workspace_handle_capabilities(void*, struct ext_workspace_handle_v1*, uint32_t) {}
static void workspace_handle_removed(void* data, struct ext_workspace_handle_v1* handle) {
static_cast<Taskbar::WorkspaceState*>(data)->taskbar->handle_workspace_removed(handle);
}
static const struct ext_workspace_handle_v1_listener workspace_handle_impl = {
.id = workspace_handle_id,
.name = workspace_handle_name,
.coordinates = workspace_handle_coordinates,
.state = workspace_handle_state,
.capabilities = workspace_handle_capabilities,
.removed = workspace_handle_removed,
};
static void workspace_group_handle_capabilities(void*, struct ext_workspace_group_handle_v1*,
uint32_t) {}
static void workspace_group_handle_output_enter(void*, struct ext_workspace_group_handle_v1*,
struct wl_output*) {}
static void workspace_group_handle_output_leave(void*, struct ext_workspace_group_handle_v1*,
struct wl_output*) {}
static void workspace_group_handle_workspace_enter(void*, struct ext_workspace_group_handle_v1*,
struct ext_workspace_handle_v1*) {}
static void workspace_group_handle_workspace_leave(void*, struct ext_workspace_group_handle_v1*,
struct ext_workspace_handle_v1*) {}
static void workspace_group_handle_removed(void* data,
struct ext_workspace_group_handle_v1* group) {
static_cast<Taskbar*>(data)->handle_workspace_group_removed(group);
}
static const struct ext_workspace_group_handle_v1_listener workspace_group_impl = {
.capabilities = workspace_group_handle_capabilities,
.output_enter = workspace_group_handle_output_enter,
.output_leave = workspace_group_handle_output_leave,
.workspace_enter = workspace_group_handle_workspace_enter,
.workspace_leave = workspace_group_handle_workspace_leave,
.removed = workspace_group_handle_removed,
};
static void workspace_manager_handle_group(void* data, struct ext_workspace_manager_v1*,
struct ext_workspace_group_handle_v1* group) {
static_cast<Taskbar*>(data)->handle_workspace_group_create(group);
}
static void workspace_manager_handle_workspace(void* data, struct ext_workspace_manager_v1*,
struct ext_workspace_handle_v1* workspace) {
static_cast<Taskbar*>(data)->handle_workspace_create(workspace);
}
static void workspace_manager_handle_done(void* data, struct ext_workspace_manager_v1*) {
static_cast<Taskbar*>(data)->handle_workspace_done();
}
static void workspace_manager_handle_finished(void* data, struct ext_workspace_manager_v1*) {
static_cast<Taskbar*>(data)->handle_workspace_finished();
}
static const struct ext_workspace_manager_v1_listener workspace_manager_impl = {
.workspace_group = workspace_manager_handle_group,
.workspace = workspace_manager_handle_workspace,
.done = workspace_manager_handle_done,
.finished = workspace_manager_handle_finished,
};
void Taskbar::register_manager(struct wl_registry* registry, uint32_t name, uint32_t version) {
if (manager_) {
spdlog::warn("Register foreign toplevel manager again although already existing!");
@@ -696,6 +858,18 @@ void Taskbar::register_manager(struct wl_registry* registry, uint32_t name, uint
spdlog::debug("Failed to register manager");
}
void Taskbar::register_workspace_manager(struct wl_registry* registry, uint32_t name,
uint32_t version) {
if (workspace_manager_) {
return;
}
version = std::min<uint32_t>(version, ext_workspace_manager_v1_interface.version);
workspace_manager_ = static_cast<struct ext_workspace_manager_v1*>(
wl_registry_bind(registry, name, &ext_workspace_manager_v1_interface, version));
ext_workspace_manager_v1_add_listener(workspace_manager_, &workspace_manager_impl, this);
}
void Taskbar::register_seat(struct wl_registry* registry, uint32_t name, uint32_t version) {
if (seat_) {
spdlog::warn("Register seat again although already existing!");
@@ -715,8 +889,74 @@ void Taskbar::handle_finished() {
manager_ = nullptr;
}
void Taskbar::handle_workspace_group_create(struct ext_workspace_group_handle_v1* handle) {
ext_workspace_group_handle_v1_add_listener(handle, &workspace_group_impl, this);
workspace_groups_.push_back(handle);
}
void Taskbar::handle_workspace_group_removed(struct ext_workspace_group_handle_v1* handle) {
const auto group = std::find(workspace_groups_.begin(), workspace_groups_.end(), handle);
if (group != workspace_groups_.end()) {
ext_workspace_group_handle_v1_destroy(*group);
workspace_groups_.erase(group);
}
}
void Taskbar::handle_workspace_create(struct ext_workspace_handle_v1* handle) {
auto workspace = std::make_unique<WorkspaceState>(WorkspaceState{this, handle});
ext_workspace_handle_v1_add_listener(handle, &workspace_handle_impl, workspace.get());
workspaces_.push_back(std::move(workspace));
}
void Taskbar::handle_workspace_done() {
const auto active_workspace =
std::find_if(workspaces_.begin(), workspaces_.end(), [](const auto& workspace) {
return workspace->state & EXT_WORKSPACE_HANDLE_V1_STATE_ACTIVE;
});
current_workspace_ =
active_workspace == workspaces_.end() ? nullptr : (*active_workspace)->handle;
if (current_workspace_) {
const auto active_task =
std::find_if(tasks_.begin(), tasks_.end(), [](const auto& task) { return task->active(); });
if (active_task != tasks_.end()) {
(*active_task)->set_workspace(current_workspace_);
}
}
update_bar_css_classes();
}
void Taskbar::handle_workspace_finished() { workspace_manager_ = nullptr; }
void Taskbar::handle_workspace_removed(struct ext_workspace_handle_v1* handle) {
if (current_workspace_ == handle) {
current_workspace_ = nullptr;
}
for (auto& task : tasks_) {
if (task->workspace() == handle) {
task->set_workspace(nullptr);
}
}
const auto workspace =
std::find_if(workspaces_.begin(), workspaces_.end(),
[handle](const auto& workspace) { return workspace->handle == handle; });
if (workspace != workspaces_.end()) {
ext_workspace_handle_v1_destroy((*workspace)->handle);
workspaces_.erase(workspace);
}
update_bar_css_classes();
}
void Taskbar::add_button(Gtk::Button& bt) {
box_.pack_start(bt, false, false);
/* Only let the buttons expand to fill the taskbar when "expand" is enabled
* and the bar is horizontal (see the Task constructor for details). */
bool expand = config_["expand"].isBool() && config_["expand"].asBool();
bool horizontal = bar_.orientation == Gtk::ORIENTATION_HORIZONTAL;
if (expand && horizontal) {
box_.pack_start(bt, true, true);
} else {
box_.pack_start(bt, false, false);
}
box_.get_style_context()->remove_class("empty");
}
@@ -739,6 +979,56 @@ void Taskbar::remove_task(uint32_t id) {
}
tasks_.erase(it);
update_bar_css_classes();
}
void Taskbar::assign_current_workspace(Task& task) {
if (current_workspace_) {
task.set_workspace(current_workspace_);
}
}
void Taskbar::update_bar_css_classes() {
if (!config_["bar-css-states"].asBool()) {
return;
}
const auto active_task = std::find_if(tasks_.begin(), tasks_.end(), [](const TaskPtr& task) {
return task->visible() && task->active();
});
const bool has_active_task = active_task != tasks_.end();
const auto on_current_workspace = [this](const TaskPtr& task) {
if (!current_workspace_) {
return task->active();
}
return task->workspace() == current_workspace_;
};
const bool has_maximized_task =
std::any_of(tasks_.begin(), tasks_.end(), [&on_current_workspace](const TaskPtr& task) {
return task->visible() && !task->minimized() && on_current_workspace(task) &&
task->maximized();
});
const bool has_fullscreen_task =
std::any_of(tasks_.begin(), tasks_.end(), [&on_current_workspace](const TaskPtr& task) {
return task->visible() && !task->minimized() && on_current_workspace(task) &&
task->fullscreen();
});
set_bar_css_class("toplevel-active", has_active_task);
set_bar_css_class("toplevel-maximized", has_maximized_task);
set_bar_css_class("toplevel-minimized", has_active_task && (*active_task)->minimized());
set_bar_css_class("toplevel-fullscreen", has_fullscreen_task);
}
void Taskbar::set_bar_css_class(const std::string& class_name, bool enabled) {
const auto style = bar_.window.get_style_context();
if (enabled && !style->has_class(class_name)) {
spdlog::trace("Adding bar class: {}", class_name);
style->add_class(class_name);
} else if (!enabled && style->has_class(class_name)) {
spdlog::trace("Removing bar class: {}", class_name);
style->remove_class(class_name);
}
}
bool Taskbar::show_output(struct wl_output* output) const {