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This patch adds three separate per-process fault counters: - Inode faults An inode fault happens when we've memory-mapped a file from disk and we end up having to load 1 page (4KB) of the file into memory. - Zero faults Memory returned by mmap() is lazily zeroed out. Every time we have to zero out 1 page, we count a zero fault. - CoW faults VM objects can be shared by multiple mappings that make their own unique copy iff they want to modify it. The typical reason here is memory shared between a parent and child process.
269 lines
8.9 KiB
C++
269 lines
8.9 KiB
C++
#include "ProcessModel.h"
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#include "GraphWidget.h"
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#include <AK/JsonArray.h>
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#include <AK/JsonObject.h>
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#include <AK/JsonValue.h>
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#include <LibC/SharedBuffer.h>
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#include <LibCore/CProcessStatisticsReader.h>
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#include <fcntl.h>
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#include <stdio.h>
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ProcessModel::ProcessModel(GraphWidget& graph)
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: m_graph(graph)
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{
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m_generic_process_icon = GraphicsBitmap::load_from_file("/res/icons/gear16.png");
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m_high_priority_icon = GraphicsBitmap::load_from_file("/res/icons/highpriority16.png");
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m_low_priority_icon = GraphicsBitmap::load_from_file("/res/icons/lowpriority16.png");
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m_normal_priority_icon = GraphicsBitmap::load_from_file("/res/icons/normalpriority16.png");
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}
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ProcessModel::~ProcessModel()
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{
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}
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int ProcessModel::row_count(const GModelIndex&) const
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{
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return m_pids.size();
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}
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int ProcessModel::column_count(const GModelIndex&) const
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{
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return Column::__Count;
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}
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String ProcessModel::column_name(int column) const
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{
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switch (column) {
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case Column::Icon:
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return "";
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case Column::PID:
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return "PID";
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case Column::State:
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return "State";
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case Column::User:
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return "User";
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case Column::Priority:
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return "Pr";
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case Column::Virtual:
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return "Virtual";
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case Column::Physical:
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return "Physical";
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case Column::CPU:
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return "CPU";
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case Column::Name:
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return "Name";
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case Column::Syscalls:
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return "Syscalls";
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case Column::InodeFaults:
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return "F:Inode";
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case Column::ZeroFaults:
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return "F:Zero";
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case Column::CowFaults:
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return "F:CoW";
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default:
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ASSERT_NOT_REACHED();
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}
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}
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GModel::ColumnMetadata ProcessModel::column_metadata(int column) const
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{
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switch (column) {
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case Column::Icon:
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return { 16, TextAlignment::CenterLeft };
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case Column::PID:
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return { 32, TextAlignment::CenterRight };
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case Column::State:
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return { 75, TextAlignment::CenterLeft };
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case Column::Priority:
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return { 16, TextAlignment::CenterLeft };
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case Column::User:
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return { 50, TextAlignment::CenterLeft };
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case Column::Virtual:
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return { 65, TextAlignment::CenterRight };
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case Column::Physical:
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return { 65, TextAlignment::CenterRight };
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case Column::CPU:
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return { 32, TextAlignment::CenterRight };
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case Column::Name:
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return { 140, TextAlignment::CenterLeft };
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case Column::Syscalls:
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return { 60, TextAlignment::CenterRight };
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case Column::InodeFaults:
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return { 60, TextAlignment::CenterRight };
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case Column::ZeroFaults:
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return { 60, TextAlignment::CenterRight };
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case Column::CowFaults:
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return { 60, TextAlignment::CenterRight };
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default:
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ASSERT_NOT_REACHED();
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}
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}
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static String pretty_byte_size(size_t size)
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{
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return String::format("%uK", size / 1024);
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}
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GVariant ProcessModel::data(const GModelIndex& index, Role role) const
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{
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ASSERT(is_valid(index));
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auto it = m_processes.find(m_pids[index.row()]);
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auto& process = *(*it).value;
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if (role == Role::Sort) {
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switch (index.column()) {
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case Column::Icon:
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return 0;
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case Column::PID:
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return process.current_state.pid;
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case Column::State:
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return process.current_state.state;
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case Column::User:
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return process.current_state.user;
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case Column::Priority:
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if (process.current_state.priority == "Idle")
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return 0;
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if (process.current_state.priority == "Low")
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return 1;
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if (process.current_state.priority == "Normal")
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return 2;
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if (process.current_state.priority == "High")
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return 3;
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ASSERT_NOT_REACHED();
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return 3;
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case Column::Virtual:
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return (int)process.current_state.amount_virtual;
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case Column::Physical:
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return (int)process.current_state.amount_resident;
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case Column::CPU:
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return process.current_state.cpu_percent;
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case Column::Name:
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return process.current_state.name;
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// FIXME: GVariant with unsigned?
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case Column::Syscalls:
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return (int)process.current_state.syscall_count;
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case Column::InodeFaults:
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return (int)process.current_state.inode_faults;
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case Column::ZeroFaults:
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return (int)process.current_state.zero_faults;
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case Column::CowFaults:
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return (int)process.current_state.cow_faults;
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}
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ASSERT_NOT_REACHED();
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return {};
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}
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if (role == Role::Display) {
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switch (index.column()) {
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case Column::Icon:
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if (process.current_state.icon_id != -1) {
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auto icon_buffer = SharedBuffer::create_from_shared_buffer_id(process.current_state.icon_id);
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if (icon_buffer) {
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auto icon_bitmap = GraphicsBitmap::create_with_shared_buffer(GraphicsBitmap::Format::RGBA32, *icon_buffer, { 16, 16 });
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if (icon_bitmap)
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return *icon_bitmap;
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}
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}
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return *m_generic_process_icon;
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case Column::PID:
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return process.current_state.pid;
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case Column::State:
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return process.current_state.state;
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case Column::User:
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return process.current_state.user;
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case Column::Priority:
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if (process.current_state.priority == "Idle")
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return String::empty();
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if (process.current_state.priority == "High")
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return *m_high_priority_icon;
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if (process.current_state.priority == "Low")
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return *m_low_priority_icon;
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if (process.current_state.priority == "Normal")
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return *m_normal_priority_icon;
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return process.current_state.priority;
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case Column::Virtual:
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return pretty_byte_size(process.current_state.amount_virtual);
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case Column::Physical:
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return pretty_byte_size(process.current_state.amount_resident);
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case Column::CPU:
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return process.current_state.cpu_percent;
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case Column::Name:
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return process.current_state.name;
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// FIXME: It's weird that GVariant doesn't support unsigned ints. Should it?
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case Column::Syscalls:
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return (int)process.current_state.syscall_count;
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case Column::InodeFaults:
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return (int)process.current_state.inode_faults;
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case Column::ZeroFaults:
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return (int)process.current_state.zero_faults;
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case Column::CowFaults:
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return (int)process.current_state.cow_faults;
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}
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}
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return {};
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}
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void ProcessModel::update()
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{
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auto all_processes = CProcessStatisticsReader::get_all();
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unsigned last_sum_times_scheduled = 0;
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for (auto& it : m_processes)
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last_sum_times_scheduled += it.value->current_state.times_scheduled;
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HashTable<pid_t> live_pids;
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unsigned sum_times_scheduled = 0;
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for (auto& it : all_processes) {
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ProcessState state;
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state.pid = it.value.pid;
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state.times_scheduled = it.value.times_scheduled;
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state.user = it.value.username;
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state.priority = it.value.priority;
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state.syscall_count = it.value.syscall_count;
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state.inode_faults = it.value.inode_faults;
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state.zero_faults = it.value.zero_faults;
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state.cow_faults = it.value.cow_faults;
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state.state = it.value.state;
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state.name = it.value.name;
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state.amount_virtual = it.value.amount_virtual;
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state.amount_resident = it.value.amount_resident;
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state.icon_id = it.value.icon_id;
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sum_times_scheduled += it.value.times_scheduled;
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{
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auto pit = m_processes.find(it.value.pid);
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if (pit == m_processes.end())
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m_processes.set(it.value.pid, make<Process>());
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}
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auto pit = m_processes.find(it.value.pid);
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ASSERT(pit != m_processes.end());
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(*pit).value->previous_state = (*pit).value->current_state;
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(*pit).value->current_state = state;
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live_pids.set(it.value.pid);
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}
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m_pids.clear();
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float total_cpu_percent = 0;
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Vector<pid_t, 16> pids_to_remove;
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for (auto& it : m_processes) {
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if (!live_pids.contains(it.key)) {
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pids_to_remove.append(it.key);
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continue;
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}
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auto& process = *it.value;
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u32 times_scheduled_diff = process.current_state.times_scheduled - process.previous_state.times_scheduled;
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process.current_state.cpu_percent = ((float)times_scheduled_diff * 100) / (float)(sum_times_scheduled - last_sum_times_scheduled);
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if (it.key != 0) {
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total_cpu_percent += process.current_state.cpu_percent;
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m_pids.append(it.key);
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}
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}
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for (auto pid : pids_to_remove)
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m_processes.remove(pid);
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m_graph.add_value(total_cpu_percent);
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did_update();
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}
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