439 lines
18 KiB
JavaScript
439 lines
18 KiB
JavaScript
const Desklet = imports.ui.desklet;
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const Settings = imports.ui.settings;
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const Mainloop = imports.mainloop;
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const Lang = imports.lang;
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const Clutter = imports.gi.Clutter;
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const Cinnamon = imports.gi.Cinnamon;
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const Gio = imports.gi.Gio;
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const Cairo = imports.cairo;
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const St = imports.gi.St;
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//const Util = imports.misc.util;
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const GLib = imports.gi.GLib;
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const Gettext = imports.gettext;
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const GIB_TO_KIB = 1048576; // 1 GiB = 1,048,576 kiB
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const GB_TO_B = 1000000000; // 1 GB = 1,000,000,000 B
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const GIB_TO_MIB = 1024; // 1 GiB = 1,042 MiB
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const UUID = "system-monitor-graph@rcassani";
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const DESKLET_PATH = imports.ui.deskletManager.deskletMeta[UUID].path;
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Gettext.bindtextdomain(UUID, GLib.get_home_dir() + "/.local/share/locale");
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function _(str) {
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return Gettext.dgettext(UUID, str);
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}
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function SystemMonitorGraph(metadata, desklet_id) {
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this._init(metadata, desklet_id);
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}
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function main(metadata, desklet_id) {
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return new SystemMonitorGraph(metadata, desklet_id);
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}
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SystemMonitorGraph.prototype = {
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__proto__: Desklet.Desklet.prototype,
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_init: function(metadata, desklet_id) {
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Desklet.Desklet.prototype._init.call(this, metadata, desklet_id);
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// initialize settings
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this.settings = new Settings.DeskletSettings(this, this.metadata["uuid"], desklet_id);
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this.settings.bindProperty(Settings.BindingDirection.IN, "type", "type", this.on_setting_changed);
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this.settings.bindProperty(Settings.BindingDirection.IN, "filesystem", "filesystem", this.on_setting_changed);
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this.settings.bindProperty(Settings.BindingDirection.IN, "filesystem-label", "filesystem_label", this.on_setting_changed);
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this.settings.bindProperty(Settings.BindingDirection.IN, "gpu-manufacturer", "gpu_manufacturer", this.on_setting_changed);
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this.settings.bindProperty(Settings.BindingDirection.IN, "gpu-variable", "gpu_variable", this.on_setting_changed);
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this.settings.bindProperty(Settings.BindingDirection.IN, "gpu-id", "gpu_id", this.on_setting_changed);
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this.settings.bindProperty(Settings.BindingDirection.IN, "refresh-interval", "refresh_interval", this.on_setting_changed);
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this.settings.bindProperty(Settings.BindingDirection.IN, "duration", "duration", this.on_setting_changed);
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this.settings.bindProperty(Settings.BindingDirection.IN, "background-color", "background_color", this.on_setting_changed);
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this.settings.bindProperty(Settings.BindingDirection.IN, "h-midlines", "h_midlines", this.on_setting_changed);
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this.settings.bindProperty(Settings.BindingDirection.IN, "v-midlines", "v_midlines", this.on_setting_changed);
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this.settings.bindProperty(Settings.BindingDirection.IN, "scale-size", "scale_size", this.on_setting_changed);
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this.settings.bindProperty(Settings.BindingDirection.IN, "midline-color", "midline_color", this.on_setting_changed);
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this.settings.bindProperty(Settings.BindingDirection.IN, "text-color", "text_color", this.on_setting_changed);
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this.settings.bindProperty(Settings.BindingDirection.IN, "line-color-cpu", "line_color_cpu", this.on_setting_changed);
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this.settings.bindProperty(Settings.BindingDirection.IN, "line-color-ram", "line_color_ram", this.on_setting_changed);
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this.settings.bindProperty(Settings.BindingDirection.IN, "line-color-swap", "line_color_swap", this.on_setting_changed);
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this.settings.bindProperty(Settings.BindingDirection.IN, "line-color-hdd", "line_color_hdd", this.on_setting_changed);
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this.settings.bindProperty(Settings.BindingDirection.IN, "line-color-gpu", "line_color_gpu", this.on_setting_changed);
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// initialize desklet GUI
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this.setupUI();
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},
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setupUI: function(){
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// initialize this.canvas
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this.canvas = new Clutter.Actor();
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this.canvas.remove_all_children();
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this.text1 = new St.Label();
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this.text2 = new St.Label();
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this.text3 = new St.Label();
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this.canvas.add_actor(this.text1);
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this.canvas.add_actor(this.text2);
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this.canvas.add_actor(this.text3);
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this.setContent(this.canvas);
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// flag to indicate the first loop of the Desklet
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this.first_run = true;
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// update loop for Desklet
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this.update();
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},
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update: function() {
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// monitors a given variable and plot its graph
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this.update_draw();
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// call this.update() every in refresh_interval seconds
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this.timeout = Mainloop.timeout_add_seconds(this.refresh_interval, Lang.bind(this, this.update));
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},
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update_draw: function() {
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// values needed in first run
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if (this.first_run){
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this.n_values = Math.floor(this.duration / this.refresh_interval) + 1;
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this.values = new Array(this.n_values).fill(0.0);
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this.cpu_cpu_tot = 0;
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this.cpu_cpu_idl = 0;
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this.hdd_cpu_tot = 0;
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this.hdd_hdd_tot = 0;
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// values to graph
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this.gpu_use = 0;
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// set colors
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switch (this.type) {
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case "cpu":
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this.line_color = this.line_color_cpu;
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break;
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case "ram":
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this.line_color = this.line_color_ram;
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break;
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case "swap":
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this.line_color = this.line_color_swap;
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break;
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case "hdd":
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this.line_color = this.line_color_hdd;
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break;
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case "gpu":
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this.line_color = this.line_color_gpu;
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break;
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}
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this.first_run = false;
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}
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// Desklet proportions
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let unit_size = 15 * this.scale_size * global.ui_scale; // pixels
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var line_width = unit_size / 15;
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var margin_up = 3 * unit_size;
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var graph_w = 20 * unit_size;
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var graph_h = 4 * unit_size;
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let desklet_w = graph_w + (2 * unit_size);
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let desklet_h = graph_h + (4 * unit_size);
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var h_midlines = this.h_midlines;
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var v_midlines = this.v_midlines;
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let text1_size = (4 * unit_size / 3) / global.ui_scale;
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let text2_size = (4 * unit_size / 3) / global.ui_scale;
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let text3_size = (3 * unit_size / 3) / global.ui_scale;
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var radius = 2 * unit_size / 3;;
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var degrees = Math.PI / 180.0;
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let n_values = this.n_values;
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let values = this.values;
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let graph_step = graph_w / (n_values -1);
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var value = 0.0;
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var text1 = '';
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var text2 = '';
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var text3 = '';
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var line_colors = this.parse_rgba_settings(this.line_color);
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// current values
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switch (this.type) {
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case "cpu":
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let cpu_use = this.get_cpu_use();
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value = cpu_use / 100;
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text1 = _("CPU");
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text2 = Math.round(cpu_use).toString() + "%";
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break;
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case "ram":
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let ram_values = this.get_ram_values();
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let ram_use = 100 * ram_values[1] / ram_values[0];
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value = ram_use / 100;
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text1 = _("RAM");
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text2 = Math.round(ram_use).toString() + "%"
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text3 = ram_values[1].toFixed(1) + " / "
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+ ram_values[0].toFixed(1) + " " + _("GiB");
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break;
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case "swap":
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let swap_values = this.get_swap_values();
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let swap_use = 100 * swap_values[1] / swap_values[0];
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value = swap_use / 100;
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text1 = _("Swap");
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text2 = Math.round(swap_use).toString() + "%"
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text3 = swap_values[1].toFixed(1) + " / "
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+ swap_values[0].toFixed(1) + " " + _("GiB");
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break;
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case "hdd":
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let dir_path = decodeURIComponent(this.filesystem.replace("file://", "").trim());
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if(dir_path == null || dir_path == "") dir_path = "/";
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let hdd_values = this.get_hdd_values(dir_path);
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let hdd_use = Math.min(hdd_values[1], 100); //already in %
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value = hdd_use / 100;
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text1 = this.filesystem_label;
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if (text1 == "") text1 = hdd_values[0];
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text2 = Math.round(hdd_use).toString() + "%"
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text3 = hdd_values[3].toFixed(0) + " " + _("GB free of") + " "
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+ hdd_values[2].toFixed(0) + " " + _("GB");
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break;
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case "gpu":
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switch (this.gpu_manufacturer) {
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case "nvidia":
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switch (this.gpu_variable) {
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case "usage":
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this.get_nvidia_gpu_use();
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value = this.gpu_use / 100;
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text1 = _("GPU Usage");
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text2 = Math.round(this.gpu_use).toString() + "%";
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break;
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case "memory":
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let gpu_mem_values = this.get_nvidia_gpu_mem();
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let gpu_mem_use = 100 * gpu_mem_values[1] / gpu_mem_values[0];
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value = gpu_mem_use / 100;
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text1 = _("GPU Memory");
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text2 = Math.round(gpu_mem_use).toString() + "%"
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text3 = gpu_mem_values[1].toFixed(1) + " / "
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+ gpu_mem_values[0].toFixed(1) + " " + _("GiB");
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break;
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}
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break;
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case "other":
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break
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}
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break;
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}
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// concatenate new value
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values.push(isNaN(value) ? 0 : value);
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values.shift();
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this.values = values;
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var background_colors = this.parse_rgba_settings(this.background_color);
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var midline_colors = this.parse_rgba_settings(this.midline_color);
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// draws graph
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let canvas = new Clutter.Canvas();
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canvas.set_size(desklet_w, desklet_h);
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canvas.connect('draw', function (canvas, ctx, desklet_w, desklet_h) {
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ctx.save();
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ctx.setOperator(Cairo.Operator.CLEAR);
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ctx.paint();
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ctx.restore();
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ctx.setOperator(Cairo.Operator.OVER);
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ctx.setLineWidth(2 * line_width);
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// desklet background
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ctx.setSourceRGBA(background_colors[0], background_colors[1], background_colors[2], background_colors[3]);
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ctx.newSubPath();
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ctx.arc(desklet_w - radius, radius, radius, -90 * degrees, 0 * degrees);
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ctx.arc(desklet_w - radius, desklet_h - radius, radius, 0 * degrees, 90 * degrees);
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ctx.arc(radius, desklet_h - radius, radius, 90 * degrees, 180 * degrees);
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ctx.arc(radius, radius, radius, 180 * degrees, 270 * degrees);
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ctx.closePath();
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ctx.fill();
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// graph border
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ctx.setSourceRGBA(line_colors[0], line_colors[1], line_colors[2], 1);
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ctx.rectangle(unit_size, margin_up, graph_w, graph_h);
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ctx.stroke();
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// graph V and H midlines
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ctx.setSourceRGBA(midline_colors[0], midline_colors[1], midline_colors[2], 1);
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ctx.setLineWidth(line_width);
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for (let i = 1; i<v_midlines; i++){
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ctx.moveTo((i * graph_w / v_midlines) + unit_size, margin_up);
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ctx.relLineTo(0, graph_h);
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ctx.stroke();
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}
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for (let i = 1; i<h_midlines; i++){
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ctx.moveTo(unit_size, margin_up + i * (graph_h / h_midlines));
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ctx.relLineTo(graph_w, 0);
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ctx.stroke();
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}
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// timeseries and area
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ctx.setLineWidth(2 * line_width);
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ctx.setSourceRGBA(line_colors[0], line_colors[1], line_colors[2], 1);
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ctx.moveTo(unit_size, margin_up + graph_h - (values[0] * graph_h));
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for (let i = 1; i<n_values; i++){
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ctx.lineTo(unit_size + (i * graph_step), margin_up + graph_h - (values[i] * graph_h));
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}
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ctx.strokePreserve();
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ctx.lineTo(unit_size + graph_w, margin_up + graph_h);
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ctx.lineTo(unit_size, margin_up + graph_h);
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ctx.closePath();
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ctx.setSourceRGBA(line_colors[0], line_colors[1], line_colors[2], 0.4);
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ctx.fill();
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return false;
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});
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// text position and content
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this.text1.set_position(
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Math.round(unit_size),
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Math.round((2.5 * unit_size) - this.text1.get_height())
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);
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this.text1.set_text(text1);
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this.text1.style = "font-size: " + text1_size + "px;"
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+ "color: " + this.text_color + ";";
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this.text2.set_position(
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Math.round(this.text1.get_width() + (2 * unit_size)),
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Math.round((2.5 * unit_size) - this.text2.get_height())
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);
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this.text2.set_text(text2);
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this.text2.style = "font-size: " + text2_size + "px;"
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+ "color: " + this.text_color + ";";
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this.text3.set_text(text3);
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this.text3.style = "font-size: " + text3_size + "px;"
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+ "color: " + this.text_color + ";";
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this.text3.set_position(
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Math.round((21 * unit_size) - this.text3.get_width()),
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Math.round((2.5 * unit_size) - this.text3.get_height())
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);
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// update canvas
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canvas.invalidate();
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this.canvas.set_content(canvas);
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this.canvas.set_size(desklet_w, desklet_h);
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},
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on_setting_changed: function() {
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// settings changed; instant refresh
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Mainloop.source_remove(this.timeout);
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this.first_run = true;
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this.update();
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},
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on_desklet_removed: function() {
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Mainloop.source_remove(this.timeout);
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},
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get_cpu_use: function() {
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// https://rosettacode.org/wiki/Linux_CPU_utilization
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let cpu_line = Cinnamon.get_file_contents_utf8_sync("/proc/stat").match(/cpu\s.+/)[0];
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let cpu_values = cpu_line.split(/\s+/);
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let cpu_idl = parseFloat(cpu_values[4]);
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let cpu_tot = 0;
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for (let i = 1; i<10; i++){
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cpu_tot += parseFloat(cpu_values[i])
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}
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let cpu_use = 100 * (1 - (cpu_idl - this.cpu_cpu_idl) / (cpu_tot - this.cpu_cpu_tot));
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this.cpu_cpu_tot = cpu_tot;
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this.cpu_cpu_idl = cpu_idl;
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return cpu_use;
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},
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get_ram_values: function() {
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// used = total - available
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let mem_out = Cinnamon.get_file_contents_utf8_sync("/proc/meminfo");
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let mem_tot = parseInt(mem_out.match(/(MemTotal):\D+(\d+)/)[2]);
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let mem_usd = mem_tot - parseInt(mem_out.match(/(MemAvailable):\D+(\d+)/)[2]);
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let ram_tot = mem_tot / GIB_TO_KIB;
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let ram_usd = mem_usd / GIB_TO_KIB;
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return [ram_tot, ram_usd];
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},
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get_swap_values: function() {
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// used = total - available
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let mem_out = Cinnamon.get_file_contents_utf8_sync("/proc/meminfo");
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let mem_tot = parseInt(mem_out.match(/(SwapTotal):\D+(\d+)/)[2]);
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let mem_usd = mem_tot - parseInt(mem_out.match(/(SwapFree):\D+(\d+)/)[2]);
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let swap_tot = mem_tot / GIB_TO_KIB;
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let swap_usd = mem_usd / GIB_TO_KIB;
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return [swap_tot, swap_usd];
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},
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get_hdd_values: function(dir_path) {
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let subprocess = new Gio.Subprocess({
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argv: ['/bin/df', dir_path],
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flags: Gio.SubprocessFlags.STDOUT_PIPE,
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});
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subprocess.init(null);
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let [, out] = subprocess.communicate_utf8(null, null); // get full output from stdout
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let df_line = out.match(/.+/g)[1];
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let df_values = df_line.split(/\s+/); // split by space
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// values for partition space
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let hdd_tot = parseFloat(df_values[1]) * 1024 / GB_TO_B;
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let hdd_fre = parseFloat(df_values[3]) * 1024 / GB_TO_B;
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// utilization of partition
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let dev_fs = df_values[0];
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let fs = dev_fs.split(/\/+/)[2];
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let hdd_use = this.get_hdd_use(fs);
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return [fs, hdd_use, hdd_tot, hdd_fre];
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},
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get_hdd_use: function(fs) {
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// https://stackoverflow.com/questions/4458183/how-the-util-of-iostat-is-computed
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let cpu_line = Cinnamon.get_file_contents_utf8_sync("/proc/stat").match(/cpu\s.+/)[0];
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let re = new RegExp(fs + '.+');
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let hdd_line = Cinnamon.get_file_contents_utf8_sync("/proc/diskstats").match(re)[0];
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// get total CPU time
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let cpu_values = cpu_line.split(/\s+/);
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let hdd_cpu_tot = 0;
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for (let i = 1; i<10; i++){
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hdd_cpu_tot += parseFloat(cpu_values[i])
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}
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// get total of IO times
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let hdd_hdd_tot = hdd_line.split(/\s+/)[10];
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// update HHD use
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let hdd_use = 100 * (hdd_hdd_tot - this.hdd_hdd_tot) / (hdd_cpu_tot - this.hdd_cpu_tot);
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// update global values
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this.hdd_cpu_tot = hdd_cpu_tot;
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this.hdd_hdd_tot = hdd_hdd_tot;
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return hdd_use;
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},
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parse_rgba_settings: function(color_str) {
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let colors = color_str.match(/\((.*?)\)/)[1].split(","); // get contents inside brackets: "rgb(...)"
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let r = parseInt(colors[0])/255;
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let g = parseInt(colors[1])/255;
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let b = parseInt(colors[2])/255;
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let a = 1;
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if (colors.length > 3) a = colors[3];
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return [r, g, b, a];
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},
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get_nvidia_gpu_use: function() {
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let subprocess = new Gio.Subprocess({
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argv: ['nvidia-smi', '--query-gpu=utilization.gpu', '--format=csv', '--id='+ this.gpu_id],
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flags: Gio.SubprocessFlags.STDOUT_PIPE|Gio.SubprocessFlags.STDERR_PIPE,
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});
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subprocess.init(null);
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subprocess.wait_async(null, (sourceObject, res) => {
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let [, stdout, stderr] = sourceObject.communicate_utf8(null, null);
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this.gpu_use = parseInt(stdout.toString().match(/[^\r\n]+/g)[1]); // parse integer in second line
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});
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|
},
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|
|
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get_nvidia_gpu_mem: function() {
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|
let [result, stdout, stderr] = GLib.spawn_command_line_sync("nvidia-smi --query-gpu=memory.total --format=csv --id=" + this.gpu_id);
|
|
let mem_tot = parseInt(stdout.toString().match(/[^\r\n]+/g)[1]); // parse integer in second line
|
|
[result, stdout, stderr] = GLib.spawn_command_line_sync("nvidia-smi --query-gpu=memory.used --format=csv --id=" + this.gpu_id);
|
|
let mem_usd = parseInt(stdout.toString().match(/[^\r\n]+/g)[1]); // parse integer in second line
|
|
let gpu_mem_tot = mem_tot / GIB_TO_MIB;
|
|
let gpu_mem_usd = mem_usd / GIB_TO_MIB;
|
|
return [gpu_mem_tot, gpu_mem_usd];
|
|
}
|
|
|
|
};
|