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staros/os_unix.go

153 lines
3.7 KiB
Go

// +build linux darwin unix
package staros
import (
"bytes"
"fmt"
"io/ioutil"
"os/user"
"strconv"
"strings"
"syscall"
"time"
)
var clockTicks = 100 // default value
// StartTime 开机时间
func StartTime() time.Time {
tmp, _ := readAsString("/proc/stat")
data := splitBy(ReplaceByte9(tmp), " ")
btime, _ := strconv.ParseInt(strings.TrimSpace(data["btime"]), 10, 64)
return time.Unix(btime, 0)
}
// IsRoot 当前是否是管理员用户
func IsRoot() bool {
uid, _ := user.Current()
if uid.Uid == "0" {
return true
}
return false
}
func Whoami() (uid, gid int, uname, gname, home string, err error) {
var me *user.User
var gup *user.Group
me, err = user.Current()
if err != nil {
return
}
uid, _ = strconv.Atoi(me.Uid)
gid, _ = strconv.Atoi(me.Uid)
home = me.HomeDir
uname = me.Username
gup, err = user.LookupGroupId(me.Gid)
if err != nil {
return
}
gname = gup.Name
return
}
func getCPUSample() (idle, total uint64) {
contents, err := ioutil.ReadFile("/proc/stat")
if err != nil {
return
}
lines := strings.Split(string(contents), "\n")
for _, line := range lines {
fields := strings.Fields(line)
if fields[0] == "cpu" {
numFields := len(fields)
for i := 1; i < numFields; i++ {
val, err := strconv.ParseUint(fields[i], 10, 64)
if err != nil {
fmt.Println("Error: ", i, fields[i], err)
}
total += val // tally up all the numbers to get total ticks
if i == 4 || i == 5 { // idle is the 5th field in the cpu line
idle += val
}
}
return
}
}
return
}
func splitProcStat(content []byte) []string {
nameStart := bytes.IndexByte(content, '(')
nameEnd := bytes.LastIndexByte(content, ')')
restFields := strings.Fields(string(content[nameEnd+2:])) // +2 skip ') '
name := content[nameStart+1 : nameEnd]
pid := strings.TrimSpace(string(content[:nameStart]))
fields := make([]string, 3, len(restFields)+3)
fields[1] = string(pid)
fields[2] = string(name)
fields = append(fields, restFields...)
return fields
}
func getCPUSampleByPid(pid int) float64 {
contents, err := ioutil.ReadFile("/proc/" + strconv.Itoa(pid) + "/stat")
if err != nil {
return 0
}
fields := splitProcStat(contents)
utime, err := strconv.ParseFloat(fields[14], 64)
if err != nil {
return 0
}
stime, err := strconv.ParseFloat(fields[15], 64)
if err != nil {
return 0
}
// There is no such thing as iotime in stat file. As an approximation, we
// will use delayacct_blkio_ticks (aggregated block I/O delays, as per Linux
// docs). Note: I am assuming at least Linux 2.6.18
var iotime float64
if len(fields) > 42 {
iotime, err = strconv.ParseFloat(fields[42], 64)
if err != nil {
iotime = 0 // Ancient linux version, most likely
}
} else {
iotime = 0 // e.g. SmartOS containers
}
return utime/float64(clockTicks) + stime/float64(clockTicks) + iotime/float64(clockTicks)
}
func CpuUsageByPid(pid int, sleep time.Duration) float64 {
total1 := getCPUSampleByPid(pid)
time.Sleep(sleep)
total2 := getCPUSampleByPid(pid)
return (total2 - total1) / sleep.Seconds() * 100
}
// CpuUsage 获取CPU使用量
func CpuUsage(sleep time.Duration) float64 {
idle0, total0 := getCPUSample()
time.Sleep(sleep)
idle1, total1 := getCPUSample()
idleTicks := float64(idle1 - idle0)
totalTicks := float64(total1 - total0)
cpuUsage := 100 * (totalTicks - idleTicks) / totalTicks
return cpuUsage
//fmt.Printf("CPU usage is %f%% [busy: %f, total: %f]\n", cpuUsage, totalTicks-idleTicks, totalTicks)
}
func DiskUsage(path string) (disk DiskStatus) {
fs := syscall.Statfs_t{}
err := syscall.Statfs(path, &fs)
if err != nil {
return
}
disk.All = fs.Blocks * uint64(fs.Bsize)
disk.Free = fs.Bfree * uint64(fs.Bsize)
disk.Available = fs.Bavail * uint64(fs.Bsize)
disk.Used = disk.All - disk.Free
return
}