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minerva / Userland / Applications / SystemMonitor / main.cpp
@minerva minerva on 13 Jul 30 KB Initial commit
/*
 * Copyright (c) 2018-2021, Andreas Kling <kling@serenityos.org>
 * Copyright (c) 2021, Undefine <cqundefine@gmail.com>
 * Copyright (c) 2022, the SerenityOS developers.
 *
 * SPDX-License-Identifier: BSD-2-Clause
 */

#include "GraphWidget.h"
#include "MemoryStatsWidget.h"
#include "NetworkStatisticsWidget.h"
#include "ProcessFileDescriptorMapWidget.h"
#include "ProcessMemoryMapWidget.h"
#include "ProcessModel.h"
#include "ProcessStateWidget.h"
#include "ProcessUnveiledPathsWidget.h"
#include "ThreadStackWidget.h"
#include <AK/NumberFormat.h>
#include <Applications/SystemMonitor/ProcessWindowGML.h>
#include <Applications/SystemMonitor/SystemMonitorGML.h>
#include <LibConfig/Client.h>
#include <LibCore/ArgsParser.h>
#include <LibCore/EventLoop.h>
#include <LibCore/EventReceiver.h>
#include <LibCore/System.h>
#include <LibCore/Timer.h>
#include <LibGUI/Action.h>
#include <LibGUI/ActionGroup.h>
#include <LibGUI/Application.h>
#include <LibGUI/BoxLayout.h>
#include <LibGUI/FileIconProvider.h>
#include <LibGUI/GroupBox.h>
#include <LibGUI/Icon.h>
#include <LibGUI/ImageWidget.h>
#include <LibGUI/JsonArrayModel.h>
#include <LibGUI/Label.h>
#include <LibGUI/LazyWidget.h>
#include <LibGUI/Menu.h>
#include <LibGUI/Menubar.h>
#include <LibGUI/MessageBox.h>
#include <LibGUI/Painter.h>
#include <LibGUI/Process.h>
#include <LibGUI/SeparatorWidget.h>
#include <LibGUI/SortingProxyModel.h>
#include <LibGUI/StackWidget.h>
#include <LibGUI/Statusbar.h>
#include <LibGUI/TabWidget.h>
#include <LibGUI/TreeView.h>
#include <LibGUI/Widget.h>
#include <LibGUI/Window.h>
#include <LibGfx/Font/FontDatabase.h>
#include <LibGfx/Palette.h>
#include <LibMain/Main.h>
#include <LibThreading/BackgroundAction.h>
#include <minerva.h>
#include <signal.h>
#include <spawn.h>
#include <stdio.h>
#include <unistd.h>

static ErrorOr<NonnullRefPtr<GUI::Window>> build_process_window(pid_t);
static ErrorOr<void> build_performance_tab(GUI::Widget&);

static RefPtr<GUI::Statusbar> statusbar;

namespace SystemMonitor {

class ProgressbarPaintingDelegate final : public GUI::TableCellPaintingDelegate {
public:
    virtual ~ProgressbarPaintingDelegate() override = default;

    virtual void paint(GUI::Painter& painter, Gfx::IntRect const& a_rect, Palette const& palette, GUI::ModelIndex const& index) override
    {
        auto rect = a_rect.shrunken(2, 2);
        auto percentage = index.data(GUI::ModelRole::Custom).to_i32();

        auto data = index.data();
        ByteString text;
        if (data.is_string())
            text = data.as_string();
        Gfx::StylePainter::paint_progressbar(painter, rect, palette, 0, 100, percentage, text);
        painter.draw_rect(rect, Color::Black);
    }
};

class UnavailableProcessWidget final : public GUI::Frame {
    C_OBJECT(UnavailableProcessWidget)
public:
    virtual ~UnavailableProcessWidget() override = default;

    String const& text() const { return m_text; }
    void set_text(String text)
    {
        m_text = move(text);
        update();
    }

private:
    UnavailableProcessWidget()
    {
        REGISTER_STRING_PROPERTY("text", text, set_text);
    }

    virtual void paint_event(GUI::PaintEvent& event) override
    {
        Frame::paint_event(event);
        if (text().is_empty())
            return;
        GUI::Painter painter(*this);
        painter.add_clip_rect(event.rect());
        painter.draw_text(frame_inner_rect(), text(), Gfx::TextAlignment::Center, palette().window_text(), Gfx::TextElision::Right);
    }

    String m_text;
};

class StorageTabWidget final : public GUI::LazyWidget {
    C_OBJECT(StorageTabWidget)
public:
    StorageTabWidget()
    {
        this->on_first_show = [](GUI::LazyWidget& self) {
            auto& fs_table_view = *self.find_child_of_type_named<GUI::TableView>("storage_table");

            Vector<GUI::JsonArrayModel::FieldSpec> df_fields;
            df_fields.empend("mount_point", "Mount point"_string, Gfx::TextAlignment::CenterLeft);
            df_fields.empend("class_name", "Class"_string, Gfx::TextAlignment::CenterLeft);
            df_fields.empend("source", "Source"_string, Gfx::TextAlignment::CenterLeft);
            df_fields.empend(
                "Size"_string, Gfx::TextAlignment::CenterRight,
                [](JsonObject const& object) {
                    StringBuilder size_builder;
                    size_builder.append(' ');
                    size_builder.append(human_readable_size(object.get_u64("total_block_count"sv).value_or(0) * object.get_u64("block_size"sv).value_or(0)));
                    size_builder.append(' ');
                    return size_builder.to_byte_string();
                },
                [](JsonObject const& object) {
                    return object.get_u64("total_block_count"sv).value_or(0) * object.get_u64("block_size"sv).value_or(0);
                },
                [](JsonObject const& object) {
                    auto total_blocks = object.get_u64("total_block_count"sv).value_or(0);
                    if (total_blocks == 0)
                        return 0;
                    auto free_blocks = object.get_u64("free_block_count"sv).value_or(0);
                    auto used_blocks = total_blocks - free_blocks;
                    int percentage = (static_cast<double>(used_blocks) / static_cast<double>(total_blocks) * 100.0);
                    return percentage;
                });
            df_fields.empend(
                "Used"_string, Gfx::TextAlignment::CenterRight,
                [](JsonObject const& object) {
            auto total_blocks = object.get_u64("total_block_count"sv).value_or(0);
            auto free_blocks = object.get_u64("free_block_count"sv).value_or(0);
            auto used_blocks = total_blocks - free_blocks;
            return human_readable_size(used_blocks * object.get_u64("block_size"sv).value_or(0)); },
                [](JsonObject const& object) {
                    auto total_blocks = object.get_u64("total_block_count"sv).value_or(0);
                    auto free_blocks = object.get_u64("free_block_count"sv).value_or(0);
                    auto used_blocks = total_blocks - free_blocks;
                    return used_blocks * object.get_u64("block_size"sv).value_or(0);
                });
            df_fields.empend(
                "Available"_string, Gfx::TextAlignment::CenterRight,
                [](JsonObject const& object) {
                    return human_readable_size(object.get_u64("free_block_count"sv).value_or(0) * object.get_u64("block_size"sv).value_or(0));
                },
                [](JsonObject const& object) {
                    return object.get_u64("free_block_count"sv).value_or(0) * object.get_u64("block_size"sv).value_or(0);
                });
            df_fields.empend("Access"_string, Gfx::TextAlignment::CenterLeft, [](JsonObject const& object) {
                bool readonly = object.get_bool("readonly"sv).value_or(false);
                int mount_flags = object.get_i32("mount_flags"sv).value_or(0);
                return readonly || (mount_flags & MS_RDONLY) ? "Read-only" : "Read/Write";
            });
            df_fields.empend("Mount flags"_string, Gfx::TextAlignment::CenterLeft, [](JsonObject const& object) {
                int mount_flags = object.get_i32("mount_flags"sv).value_or(0);
                StringBuilder builder;
                bool first = true;
                auto check = [&](int flag, StringView name) {
                    if (!(mount_flags & flag))
                        return;
                    if (!first)
                        builder.append(',');
                    builder.append(name);
                    first = false;
                };
                check(MS_NODEV, "nodev"sv);
                check(MS_NOEXEC, "noexec"sv);
                check(MS_NOSUID, "nosuid"sv);
                check(MS_BIND, "bind"sv);
                check(MS_RDONLY, "ro"sv);
                check(MS_WXALLOWED, "wxallowed"sv);
                check(MS_AXALLOWED, "axallowed"sv);
                check(MS_NOREGULAR, "noregular"sv);
                if (builder.string_view().is_empty())
                    return ByteString("defaults");
                return builder.to_byte_string();
            });
            df_fields.empend("free_block_count", "Free blocks"_string, Gfx::TextAlignment::CenterRight);
            df_fields.empend("total_block_count", "Total blocks"_string, Gfx::TextAlignment::CenterRight);
            df_fields.empend("free_inode_count", "Free inodes"_string, Gfx::TextAlignment::CenterRight);
            df_fields.empend("total_inode_count", "Total inodes"_string, Gfx::TextAlignment::CenterRight);
            df_fields.empend("block_size", "Block size"_string, Gfx::TextAlignment::CenterRight);

            fs_table_view.set_model(MUST(GUI::SortingProxyModel::create(GUI::JsonArrayModel::create("/sys/kernel/df", move(df_fields)))));

            fs_table_view.set_column_painting_delegate(3, make<ProgressbarPaintingDelegate>());

            fs_table_view.model()->invalidate();
        };
    }
};

}

REGISTER_WIDGET(SystemMonitor, StorageTabWidget)
REGISTER_WIDGET(SystemMonitor, UnavailableProcessWidget)

static bool can_access_pid(pid_t pid)
{
    int rc = kill(pid, 0);
    return rc == 0;
}

ErrorOr<int> minerva_main(Main::Arguments arguments)
{
    {
        // Before we do anything else, boost our process priority to the maximum allowed.
        // It's very frustrating when the system is bogged down under load and you just want
        // System Monitor to work.
        sched_param param {
            .sched_priority = THREAD_PRIORITY_MAX,
        };
        sched_setparam(0, &param);
    }

    TRY(Core::System::pledge("stdio thread proc recvfd sendfd rpath exec unix"));

    auto app = TRY(GUI::Application::create(arguments));

    Config::pledge_domain("SystemMonitor");

    TRY(Core::System::unveil("/etc/passwd", "r"));
    TRY(Core::System::unveil("/res", "r"));
    TRY(Core::System::unveil("/proc", "r"));
    TRY(Core::System::unveil("/sys/kernel", "r"));
    TRY(Core::System::unveil("/dev", "r"));
    TRY(Core::System::unveil("/bin", "r"));
    TRY(Core::System::unveil("/bin/Escalator", "x"));
    TRY(Core::System::unveil("/bin/NetworkSettings", "x"));
    TRY(Core::System::unveil("/usr/lib", "r"));

    // This directory only exists if ports are installed
    if (auto result = Core::System::unveil("/usr/local/bin", "r"); result.is_error() && result.error().code() != ENOENT)
        return result.release_error();

    if (auto result = Core::System::unveil("/usr/local/lib", "r"); result.is_error() && result.error().code() != ENOENT)
        return result.release_error();

    // This file is only accessible when running as root if it is available on the disk image.
    // It might be possible to not have this file on the disk image, if the user decided to not
    // include kernel symbols for debug purposes so don't fail if the error is ENOENT.
    if (auto result = Core::System::unveil("/boot/Kernel.debug", "r"); result.is_error() && (result.error().code() != EACCES && result.error().code() != ENOENT))
        return result.release_error();

    TRY(Core::System::unveil("/bin/Profiler", "rx"));
    // HackStudio doesn't exist in the minimal build configuration.
    if (auto result = Core::System::unveil("/bin/HackStudio", "rx"); result.is_error() && result.error().code() != ENOENT)
        return result.release_error();
    TRY(Core::System::unveil(nullptr, nullptr));

    StringView args_tab = "processes"sv;
    Core::ArgsParser parser;
    parser.add_option(args_tab, "Tab, one of 'processes', 'graphs', 'fs', 'hardware', or 'network'", "open-tab", 't', "tab");
    parser.parse(arguments);
    StringView args_tab_view = args_tab;

    auto app_icon = TRY(GUI::Icon::try_create_default_icon("app-system-monitor"sv));

    auto window = GUI::Window::construct();
    window->set_title("System Monitor");
    window->restore_size_and_position("SystemMonitor"sv, "Window"sv, { { 560, 430 } });
    window->save_size_and_position_on_close("SystemMonitor"sv, "Window"sv);

    auto main_widget = window->set_main_widget<GUI::Widget>();
    TRY(main_widget->load_from_gml(system_monitor_gml));
    auto& tabwidget = *main_widget->find_descendant_of_type_named<GUI::TabWidget>("main_tabs");
    statusbar = main_widget->find_descendant_of_type_named<GUI::Statusbar>("statusbar");

    auto& process_table_container = *tabwidget.find_descendant_of_type_named<GUI::Widget>("processes");

    auto process_model = ProcessModel::create();
    process_model->on_state_update = [&](int process_count, int thread_count) {
        statusbar->set_text(0, String::formatted("Processes: {}", process_count).release_value_but_fixme_should_propagate_errors());
        statusbar->set_text(1, String::formatted("Threads: {}", thread_count).release_value_but_fixme_should_propagate_errors());
    };

    auto& performance_widget = *tabwidget.find_descendant_of_type_named<GUI::Widget>("performance");
    TRY(build_performance_tab(performance_widget));

    auto& process_table_view = *process_table_container.find_child_of_type_named<GUI::TreeView>("process_table");
    process_table_view.set_model(TRY(GUI::SortingProxyModel::create(process_model)));
    process_table_view.column_header().set_section_selectable(ProcessModel::Icon, false);

    for (auto column = 0; column < ProcessModel::Column::__Count; ++column) {
        process_table_view.set_column_visible(column,
            Config::read_bool("SystemMonitor"sv, "ProcessTableColumns"sv, TRY(process_model->column_name(column)),
                process_model->is_default_column(column)));
    }

    process_table_view.set_key_column_and_sort_order(ProcessModel::Column::CPU, GUI::SortOrder::Descending);
    process_model->update();

    i32 frequency = Config::read_i32("SystemMonitor"sv, "Monitor"sv, "Frequency"sv, 3);
    if (frequency != 0 && frequency != 1 && frequency != 3 && frequency != 5) {
        frequency = 3;
        Config::write_i32("SystemMonitor"sv, "Monitor"sv, "Frequency"sv, frequency);
    }

    auto update_stats = [&] {
        // FIXME: remove the primitive re-toggling code once persistent model indices work.
        auto toggled_indices = process_table_view.selection().indices();
        toggled_indices.remove_all_matching([&](auto const& index) { return !process_table_view.is_toggled(index); });
        process_model->update();
        if (!process_table_view.selection().is_empty())
            process_table_view.selection().for_each_index([&](auto& selection) {
                if (toggled_indices.contains_slow(selection))
                    process_table_view.expand_all_parents_of(selection);
            });

        if (auto* memory_stats_widget = SystemMonitor::MemoryStatsWidget::the())
            memory_stats_widget->refresh();
    };
    update_stats();
    auto& refresh_timer = window->add<Core::Timer>(frequency * 1000, move(update_stats));
    if (frequency > 0)
        refresh_timer.start();

    auto selected_id = [&](ProcessModel::Column column) -> pid_t {
        if (process_table_view.selection().is_empty())
            return -1;
        auto pid_index = process_table_view.model()->index(process_table_view.selection().first().row(), column, process_table_view.selection().first().parent());
        return pid_index.data().to_i32();
    };

    auto selected_name = [&](ProcessModel::Column column) -> ByteString {
        if (process_table_view.selection().is_empty())
            return {};
        auto pid_index = process_table_view.model()->index(process_table_view.selection().first().row(), column, process_table_view.selection().first().parent());
        return pid_index.data().to_byte_string();
    };

    auto kill_action = GUI::Action::create(
        "&Kill Process", { Mod_Ctrl, Key_K }, { Key_Delete }, TRY(Gfx::Bitmap::load_from_file("/res/icons/16x16/kill.png"sv)), [&](const GUI::Action&) {
            pid_t pid = selected_id(ProcessModel::Column::PID);
            if (pid == -1)
                return;
            auto rc = GUI::MessageBox::show(window, ByteString::formatted("Do you really want to kill \"{}\" (PID {})?", selected_name(ProcessModel::Column::Name), pid), "System Monitor"sv, GUI::MessageBox::Type::Question, GUI::MessageBox::InputType::YesNo);
            if (rc == GUI::Dialog::ExecResult::Yes)
                kill(pid, SIGKILL);
        },
        &process_table_view);

    auto stop_action = GUI::Action::create(
        "&Stop Process", { Mod_Ctrl, Key_S }, TRY(Gfx::Bitmap::load_from_file("/res/icons/16x16/stop-hand.png"sv)), [&](const GUI::Action&) {
            pid_t pid = selected_id(ProcessModel::Column::PID);
            if (pid == -1)
                return;
            auto rc = GUI::MessageBox::show(window, ByteString::formatted("Do you really want to stop \"{}\" (PID {})?", selected_name(ProcessModel::Column::Name), pid), "System Monitor"sv, GUI::MessageBox::Type::Question, GUI::MessageBox::InputType::YesNo);
            if (rc == GUI::Dialog::ExecResult::Yes)
                kill(pid, SIGSTOP);
        },
        &process_table_view);

    auto continue_action = GUI::Action::create(
        "&Continue Process", { Mod_Ctrl, Key_C }, TRY(Gfx::Bitmap::load_from_file("/res/icons/16x16/continue.png"sv)), [&](const GUI::Action&) {
            pid_t pid = selected_id(ProcessModel::Column::PID);
            if (pid != -1)
                kill(pid, SIGCONT);
        },
        &process_table_view);

    auto profile_action = GUI::Action::create(
        "&Profile Process", { Mod_Ctrl, Key_P },
        TRY(Gfx::Bitmap::load_from_file("/res/icons/16x16/app-profiler.png"sv)), [&](auto&) {
            pid_t pid = selected_id(ProcessModel::Column::PID);
            if (pid == -1)
                return;
            auto pid_string = ByteString::number(pid);
            GUI::Process::spawn_or_show_error(window, "/bin/Profiler"sv, Array { "--pid", pid_string.characters() });
        },
        &process_table_view);

    auto debug_action = GUI::Action::create(
        "Debug in HackStudio", { Mod_Ctrl, Key_D }, TRY(Gfx::Bitmap::load_from_file("/res/icons/16x16/app-hack-studio.png"sv)), [&](const GUI::Action&) {
            pid_t pid = selected_id(ProcessModel::Column::PID);
            if (pid == -1)
                return;
            auto pid_string = ByteString::number(pid);
            GUI::Process::spawn_or_show_error(window, "/bin/HackStudio"sv, Array { "--pid", pid_string.characters() });
        },
        &process_table_view);

    HashMap<pid_t, NonnullRefPtr<GUI::Window>> process_windows;

    auto process_properties_action = GUI::CommonActions::make_properties_action(
        [&](auto&) {
            auto pid = selected_id(ProcessModel::Column::PID);
            if (pid == -1)
                return;

            RefPtr<GUI::Window> process_window;
            auto it = process_windows.find(pid);
            if (it == process_windows.end()) {
                auto process_window_or_error = build_process_window(pid);
                if (process_window_or_error.is_error())
                    return;
                process_window = process_window_or_error.release_value();
                process_window->on_close_request = [pid, &process_windows] {
                    process_windows.remove(pid);
                    return GUI::Window::CloseRequestDecision::Close;
                };
                process_windows.set(pid, *process_window);
            } else {
                process_window = it->value;
            }
            process_window->show();
            process_window->move_to_front();
        },
        &process_table_view);

    auto file_menu = window->add_menu("&File"_string);
    file_menu->add_action(GUI::CommonActions::make_quit_action([](auto&) {
        GUI::Application::the()->quit();
    }));

    auto process_context_menu = GUI::Menu::construct();
    process_context_menu->add_action(kill_action);
    process_context_menu->add_action(stop_action);
    process_context_menu->add_action(continue_action);
    process_context_menu->add_separator();
    process_context_menu->add_action(profile_action);
    process_context_menu->add_action(debug_action);
    process_context_menu->add_separator();
    process_context_menu->add_action(process_properties_action);
    process_table_view.on_context_menu_request = [&]([[maybe_unused]] const GUI::ModelIndex& index, const GUI::ContextMenuEvent& event) {
        if (index.is_valid())
            process_context_menu->popup(event.screen_position(), process_properties_action);
    };

    auto frequency_menu = window->add_menu("F&requency"_string);
    GUI::ActionGroup frequency_action_group;
    frequency_action_group.set_exclusive(true);

    auto make_frequency_action = [&](int seconds) -> ErrorOr<void> {
        auto action = GUI::Action::create_checkable(ByteString::formatted("&{} Sec", seconds), [&window, &refresh_timer, seconds](auto&) {
            Config::write_i32("SystemMonitor"sv, "Monitor"sv, "Frequency"sv, seconds);
            refresh_timer.restart(seconds * 1000);
            window->set_title("System Monitor");
        });
        action->set_status_tip(TRY(String::formatted("Refresh every {} seconds", seconds)));
        action->set_checked(frequency == seconds);
        frequency_action_group.add_action(*action);
        frequency_menu->add_action(*action);
        return {};
    };

    TRY(make_frequency_action(1));
    TRY(make_frequency_action(3));
    TRY(make_frequency_action(5));

    auto view_menu = window->add_menu("&View"_string);
    auto refresh_action = GUI::Action::create("&Refresh", { Mod_Ctrl, Key_R }, Key_F5, TRY(Gfx::Bitmap::load_from_file("/res/icons/16x16/reload.png"sv)), [&refresh_timer, &update_stats](auto&) {
        if (refresh_timer.is_active())
            refresh_timer.restart();
        update_stats();
    });
    view_menu->add_action(*refresh_action);
    view_menu->add_separator();
    view_menu->add_action(GUI::CommonActions::make_fullscreen_action([&](auto&) {
        window->set_fullscreen(!window->is_fullscreen());
    }));

    auto pause_action = GUI::Action::create_checkable("&Paused", [&window, &refresh_timer](auto&) {
        Config::write_i32("SystemMonitor"sv, "Monitor"sv, "Frequency"sv, 0);
        window->set_title("System Monitor - Paused");
        refresh_timer.stop();
    });
    pause_action->set_status_tip("Pause updates"_string);
    pause_action->set_checked(frequency == 0);
    frequency_action_group.add_action(*pause_action);
    frequency_menu->add_action(*pause_action);

    auto help_menu = window->add_menu("&Help"_string);
    help_menu->add_action(GUI::CommonActions::make_command_palette_action(window));
    help_menu->add_action(GUI::CommonActions::make_about_action("System Monitor"_string, app_icon, window));

    process_table_view.on_activation = [&](auto&) {
        if (process_properties_action->is_enabled())
            process_properties_action->activate();
    };

    static pid_t last_selected_pid;

    process_table_view.on_selection_change = [&] {
        pid_t pid = selected_id(ProcessModel::Column::PID);
        if (pid == last_selected_pid || pid < 1)
            return;
        last_selected_pid = pid;
        bool has_access = can_access_pid(pid);
        kill_action->set_enabled(has_access);
        stop_action->set_enabled(has_access);
        continue_action->set_enabled(has_access);
        profile_action->set_enabled(has_access);
        debug_action->set_enabled(has_access);
        process_properties_action->set_enabled(has_access);
    };

    app->on_action_enter = [](GUI::Action const& action) {
        statusbar->set_override_text(action.status_tip());
    };
    app->on_action_leave = [](GUI::Action const&) {
        statusbar->set_override_text({});
    };

    window->show();
    window->set_icon(app_icon.bitmap_for_size(16));

    if (args_tab_view == "processes")
        tabwidget.set_active_widget(&process_table_container);
    else if (args_tab_view == "graphs")
        tabwidget.set_active_widget(&performance_widget);
    else if (args_tab_view == "fs")
        tabwidget.set_active_widget(tabwidget.find_descendant_of_type_named<SystemMonitor::StorageTabWidget>("storage"));
    else if (args_tab_view == "network")
        tabwidget.set_active_widget(tabwidget.find_descendant_of_type_named<GUI::Widget>("network"));

    int exec = app->exec();

    // When exiting the application, save the configuration of the columns
    // to be loaded the next time the application is opened.
    auto& process_table_header = process_table_view.column_header();
    for (auto column = 0; column < ProcessModel::Column::__Count; ++column)
        Config::write_bool("SystemMonitor"sv, "ProcessTableColumns"sv, TRY(process_model->column_name(column)), process_table_header.is_section_visible(column));

    return exec;
}

ErrorOr<NonnullRefPtr<GUI::Window>> build_process_window(pid_t pid)
{
    auto window = GUI::Window::construct();
    window->resize(480, 360);
    window->set_title(ByteString::formatted("PID {} - System Monitor", pid));

    auto app_icon = TRY(GUI::Icon::try_create_default_icon("app-system-monitor"sv));
    window->set_icon(app_icon.bitmap_for_size(16));

    auto main_widget = window->set_main_widget<GUI::Widget>();
    TRY(main_widget->load_from_gml(process_window_gml));

    GUI::ModelIndex process_index;
    for (int row = 0; row < ProcessModel::the().row_count({}); ++row) {
        auto index = ProcessModel::the().index(row, ProcessModel::Column::PID);
        if (index.data().to_i32() == pid) {
            process_index = index;
            break;
        }
    }

    VERIFY(process_index.is_valid());
    if (auto icon_data = process_index.sibling_at_column(ProcessModel::Column::Icon).data(); icon_data.is_icon()) {
        main_widget->find_descendant_of_type_named<GUI::ImageWidget>("process_icon")->set_bitmap(icon_data.as_icon().bitmap_for_size(32));
    }

    main_widget->find_descendant_of_type_named<GUI::Label>("process_name")->set_text(TRY(String::formatted("{} (PID {})", process_index.sibling_at_column(ProcessModel::Column::Name).data().to_byte_string(), pid)));

    main_widget->find_descendant_of_type_named<SystemMonitor::ProcessStateWidget>("process_state")->set_pid(pid);
    main_widget->find_descendant_of_type_named<SystemMonitor::ProcessFileDescriptorMapWidget>("open_files")->set_pid(pid);
    main_widget->find_descendant_of_type_named<SystemMonitor::ThreadStackWidget>("thread_stack")->set_ids(pid, pid);
    main_widget->find_descendant_of_type_named<SystemMonitor::ProcessMemoryMapWidget>("memory_map")->set_pid(pid);
    main_widget->find_descendant_of_type_named<SystemMonitor::ProcessUnveiledPathsWidget>("unveiled_paths")->set_pid(pid);

    auto& widget_stack = *main_widget->find_descendant_of_type_named<GUI::StackWidget>("widget_stack");
    auto& unavailable_process_widget = *widget_stack.find_descendant_of_type_named<SystemMonitor::UnavailableProcessWidget>("unavailable_process");
    unavailable_process_widget.set_text(TRY(String::formatted("Unable to access PID {}", pid)));

    if (can_access_pid(pid))
        widget_stack.set_active_widget(widget_stack.find_descendant_of_type_named<GUI::TabWidget>("available_process"));
    else
        widget_stack.set_active_widget(&unavailable_process_widget);

    return window;
}

ErrorOr<void> build_performance_tab(GUI::Widget& graphs_container)
{
    auto& cpu_graph_group_box = *graphs_container.find_descendant_of_type_named<GUI::GroupBox>("cpu_graph");

    size_t cpus_count = ProcessModel::the().cpus().size();
    size_t cpu_graphs_per_row = min(cpus_count, 4);
    auto cpu_graph_rows = ceil_div(cpus_count, cpu_graphs_per_row);

    Vector<SystemMonitor::GraphWidget&> cpu_graphs;
    for (auto row = 0u; row < cpu_graph_rows; ++row) {
        auto& cpu_graph_row = cpu_graph_group_box.add<GUI::Widget>();
        cpu_graph_row.set_layout<GUI::HorizontalBoxLayout>(6);
        cpu_graph_row.set_min_height(108);
        for (auto i = 0u; i < cpu_graphs_per_row; ++i) {
            auto& cpu_graph = cpu_graph_row.add<SystemMonitor::GraphWidget>();
            cpu_graph.set_max(100);
            cpu_graph.set_value_format(0, {
                                              .graph_color_role = ColorRole::SyntaxPreprocessorStatement,
                                              .text_formatter = [](u64 value) {
                                                  return ByteString::formatted("Total: {}%", value);
                                              },
                                          });
            cpu_graph.set_value_format(1, {
                                              .graph_color_role = ColorRole::SyntaxPreprocessorValue,
                                              .text_formatter = [](u64 value) {
                                                  return ByteString::formatted("Kernel: {}%", value);
                                              },
                                          });
            cpu_graphs.append(cpu_graph);
        }
    }
    ProcessModel::the().on_cpu_info_change = [cpu_graphs](Vector<NonnullOwnPtr<ProcessModel::CpuInfo>> const& cpus) mutable {
        float sum_cpu = 0;
        for (size_t i = 0; i < cpus.size(); ++i) {
            cpu_graphs[i].add_value({ static_cast<size_t>(cpus[i]->total_cpu_percent), static_cast<size_t>(cpus[i]->total_cpu_percent_kernel) });
            sum_cpu += cpus[i]->total_cpu_percent;
        }
        float cpu_usage = sum_cpu / (float)cpus.size();
        statusbar->set_text(2, String::formatted("CPU usage: {}%", (int)roundf(cpu_usage)).release_value_but_fixme_should_propagate_errors());
    };

    auto& memory_graph = *graphs_container.find_descendant_of_type_named<SystemMonitor::GraphWidget>("memory_graph");
    memory_graph.set_value_format(0, {
                                         .graph_color_role = ColorRole::SyntaxComment,
                                         .text_formatter = [](u64 bytes) {
                                             return ByteString::formatted("Committed: {}", human_readable_size(bytes));
                                         },
                                     });
    memory_graph.set_value_format(1, {
                                         .graph_color_role = ColorRole::SyntaxPreprocessorStatement,
                                         .text_formatter = [](u64 bytes) {
                                             return ByteString::formatted("Allocated: {}", human_readable_size(bytes));
                                         },
                                     });
    memory_graph.set_value_format(2, {
                                         .graph_color_role = ColorRole::SyntaxPreprocessorValue,
                                         .text_formatter = [](u64 bytes) {
                                             return ByteString::formatted("Kernel heap: {}", human_readable_size(bytes));
                                         },
                                     });
    return {};
}