serenity/Userland/top.cpp
Andreas Kling 0ed89440f1 ProcessManager+top: Rename "linear" size to "virtual" size.
I originally called it "linear" because that's how the Intel manual names
virtual addresses in many cases. I'm ready to accept that most people know
this as "virtual" so let's just call it that.
2019-06-07 12:44:29 +02:00

138 lines
3.8 KiB
C++

#include <AK/AKString.h>
#include <AK/HashMap.h>
#include <AK/QuickSort.h>
#include <AK/Vector.h>
#include <fcntl.h>
#include <pwd.h>
#include <stdio.h>
#include <stdlib.h>
#include <unistd.h>
static HashMap<unsigned, String>* s_usernames;
struct Process {
pid_t pid;
unsigned nsched;
String name;
String state;
String user;
String priority;
unsigned virtual_size;
unsigned physical_size;
unsigned nsched_since_prev;
unsigned cpu_percent;
unsigned cpu_percent_decimal;
};
struct Snapshot {
HashMap<unsigned, Process> map;
dword sum_nsched { 0 };
};
static Snapshot get_snapshot()
{
Snapshot snapshot;
FILE* fp = fopen("/proc/all", "r");
if (!fp) {
perror("failed to open /proc/all");
exit(1);
}
for (;;) {
char buf[4096];
char* ptr = fgets(buf, sizeof(buf), fp);
if (!ptr)
break;
auto parts = String(buf, Chomp).split(',');
if (parts.size() < 17)
break;
bool ok;
pid_t pid = parts[0].to_uint(ok);
ASSERT(ok);
unsigned nsched = parts[1].to_uint(ok);
ASSERT(ok);
snapshot.sum_nsched += nsched;
Process process;
process.pid = pid;
process.nsched = nsched;
unsigned uid = parts[5].to_uint(ok);
ASSERT(ok);
process.user = s_usernames->get(uid);
process.priority = parts[16];
process.state = parts[7];
process.name = parts[11];
process.virtual_size = parts[12].to_uint(ok);
ASSERT(ok);
process.physical_size = parts[13].to_uint(ok);
ASSERT(ok);
snapshot.map.set(pid, move(process));
}
int rc = fclose(fp);
ASSERT(rc == 0);
return snapshot;
}
int main(int, char**)
{
s_usernames = new HashMap<unsigned, String>();
setpwent();
while (auto* passwd = getpwent())
s_usernames->set(passwd->pw_uid, passwd->pw_name);
endpwent();
Vector<Process*> processes;
auto prev = get_snapshot();
usleep(10000);
for (;;) {
auto current = get_snapshot();
auto sum_diff = current.sum_nsched - prev.sum_nsched;
printf("\033[3J\033[H\033[2J");
printf("\033[47;30m%6s %3s % 8s % 8s %6s %6s %4s %s\033[K\033[0m\n",
"PID",
"PRI",
"USER",
"STATE",
"VIRT",
"PHYS",
"%CPU",
"NAME");
for (auto& it : current.map) {
pid_t pid = it.key;
if (pid == 0)
continue;
dword nsched_now = it.value.nsched;
auto jt = prev.map.find(pid);
if (jt == prev.map.end())
continue;
dword nsched_before = (*jt).value.nsched;
dword nsched_diff = nsched_now - nsched_before;
it.value.nsched_since_prev = nsched_diff;
it.value.cpu_percent = ((nsched_diff * 100) / sum_diff);
it.value.cpu_percent_decimal = (((nsched_diff * 1000) / sum_diff) % 10);
processes.append(&it.value);
}
quick_sort(processes.begin(), processes.end(), [](auto* p1, auto* p2) {
return p2->nsched_since_prev < p1->nsched_since_prev;
});
for (auto* process : processes) {
printf("%6d %c % 8s % 8s %6u %6u %2u.%1u %s\n",
process->pid,
process->priority[0],
process->user.characters(),
process->state.characters(),
process->virtual_size / 1024,
process->physical_size / 1024,
process->cpu_percent,
process->cpu_percent_decimal,
process->name.characters());
}
processes.clear_with_capacity();
prev = move(current);
sleep(1);
}
return 0;
}