网络命令ping和ifconfig
ping命令Linux系统的ping命令是常用的网络命令,它通常用来测试与目标主机的连通性,我们经常会说“ping一下某机器,看是不是开着”、不能打开网页时会说“你先ping网关地址192.168.1.1试试”。它通过发送ICMPECHO_REQUEST数据包到网络主机(sendICMPECHO_REQUESTtonetworkhosts),并显示响应情况,这样我们就可以根据它输出...
ping命令
Linux系统的ping命令是常用的网络命令,它通常用来测试与目标主机的连通性,我们经常会说“ping一下某机器,看是不是开着”、不能打开网页时会说“你先ping网关地址192.168.1.1试试”。它通过发送ICMP ECHO_REQUEST数据包到网络主机(send ICMP ECHO_REQUEST to network hosts),并显示响应情况,这样我们就可以根据它输出的信息来确定目标主机是否可访问(但这不是绝对的)。有些服务器为了防止通过ping探测到,通过防火墙设置了禁止ping或者在内核参数中禁止ping,这样就不能通过ping确定该主机是否还处于开启状态。
linux下的ping和windows下的ping稍有区别,linux下ping不会自动终止,需要按ctrl+c终止或者用参数-c指定要求完成的回应次数。
1.命令格式:
ping [参数] [主机名或IP地址]
2.命令功能:
ping命令用于:确定网络和各外部主机的状态;跟踪和隔离硬件和软件问题;测试、评估和管理网络。如果主机正在运行并连在网上,它就对回送信号进行响应。每个回送信号请求包含一个网际协议(IP)和 ICMP 头,后面紧跟一个 tim 结构,以及来填写这个信息包的足够的字节。缺省情况是连续发送回送信号请求直到接收到中断信号(Ctrl-C)。
ping 命令每秒发送一个数据报并且为每个接收到的响应打印一行输出。ping 命令计算信号往返时间和(信息)包丢失情况的统计信息,并且在完成之后显示一个简要总结。ping 命令在程序超时或当接收到 SIGINT 信号时结束。Host 参数或者是一个有效的主机名或者是因特网地址。
3.命令参数:
4.使用实例:
实例1:ping的通的情况
命令:
ping 192.168.120.205
输出:
[root@localhost ~]# ping 192.168.120.205
PING 192.168.120.205 (192.168.120.205) 56(84) bytes of data.
64 bytes from 192.168.120.205: icmp_seq=1 ttl=64 time=0.720 ms
64 bytes from 192.168.120.205: icmp_seq=2 ttl=64 time=0.181 ms
64 bytes from 192.168.120.205: icmp_seq=3 ttl=64 time=0.191 ms
64 bytes from 192.168.120.205: icmp_seq=4 ttl=64 time=0.188 ms
64 bytes from 192.168.120.205: icmp_seq=5 ttl=64 time=0.189 ms
--- 192.168.120.205 ping statistics ---
5 packets transmitted, 5 received, 0% packet loss, time 4000ms
rtt min/avg/max/mdev = 0.181/0.293/0.720/0.214 ms
[root@localhost ~]#
实例2:ping不通的情况
命令:
ping 192.168.120.202
输出:
[root@localhost ~]# ping 192.168.120.202
PING 192.168.120.202 (192.168.120.202) 56(84) bytes of data.
From 192.168.120.204 icmp_seq=1 Destination Host Unreachable
From 192.168.120.204 icmp_seq=2 Destination Host Unreachable
From 192.168.120.204 icmp_seq=3 Destination Host Unreachable
From 192.168.120.204 icmp_seq=4 Destination Host Unreachable
From 192.168.120.204 icmp_seq=5 Destination Host Unreachable
From 192.168.120.204 icmp_seq=6 Destination Host Unreachable
--- 192.168.120.202 ping statistics ---
8 packets transmitted, 0 received, +6 errors, 100% packet loss, time 7005ms
, pipe 4
[root@localhost ~]#
实例3:ping网关
命令:
ping -b 192.168.120.1
输出:
[root@localhost ~]# route
Kernel IP routing table
Destination Gateway Genmask Flags Metric Ref Use Iface
192.168.120.0 * 255.255.255.0 U 0 0 0 eth0
192.168.0.0 192.168.120.1 255.255.0.0 UG 0 0 0 eth0
10.0.0.0 192.168.120.1 255.0.0.0 UG 0 0 0 eth0
default 192.168.120.240 0.0.0.0 UG 0 0 0 eth0
[root@localhost ~]# ping -b 192.168.120.1
PING 192.168.120.1 (192.168.120.1) 56(84) bytes of data.
64 bytes from 192.168.120.1: icmp_seq=1 ttl=255 time=2.02 ms
64 bytes from 192.168.120.1: icmp_seq=2 ttl=255 time=1.83 ms
64 bytes from 192.168.120.1: icmp_seq=3 ttl=255 time=1.68 ms
64 bytes from 192.168.120.1: icmp_seq=4 ttl=255 time=1.98 ms
64 bytes from 192.168.120.1: icmp_seq=5 ttl=255 time=1.88 ms
--- 192.168.120.1 ping statistics ---
5 packets transmitted, 5 received, 0% packet loss, time 4000ms
rtt min/avg/max/mdev = 1.682/1.880/2.020/0.129 ms
实例4:ping指定次数
命令:
ping -c 10 192.168.120.206
输出:
[root@localhost ~]# ping -c 10 192.168.120.206
PING 192.168.120.206 (192.168.120.206) 56(84) bytes of data.
64 bytes from 192.168.120.206: icmp_seq=1 ttl=64 time=1.25 ms
64 bytes from 192.168.120.206: icmp_seq=2 ttl=64 time=0.260 ms
64 bytes from 192.168.120.206: icmp_seq=3 ttl=64 time=0.242 ms
64 bytes from 192.168.120.206: icmp_seq=4 ttl=64 time=0.271 ms
64 bytes from 192.168.120.206: icmp_seq=5 ttl=64 time=0.274 ms
64 bytes from 192.168.120.206: icmp_seq=6 ttl=64 time=0.295 ms
64 bytes from 192.168.120.206: icmp_seq=7 ttl=64 time=0.269 ms
64 bytes from 192.168.120.206: icmp_seq=8 ttl=64 time=0.270 ms
64 bytes from 192.168.120.206: icmp_seq=9 ttl=64 time=0.253 ms
64 bytes from 192.168.120.206: icmp_seq=10 ttl=64 time=0.289 ms
--- 192.168.120.206 ping statistics ---
10 packets transmitted, 10 received, 0% packet loss, time 9000ms
rtt min/avg/max/mdev = 0.242/0.367/1.251/0.295 ms
[root@localhost ~]#
实例5:时间间隔和次数限制的ping
命令:
ping -c 10 -i 0.5 192.168.120.206
输出:
[root@localhost ~]# ping -c 10 -i 0.5 192.168.120.206
PING 192.168.120.206 (192.168.120.206) 56(84) bytes of data.
64 bytes from 192.168.120.206: icmp_seq=1 ttl=64 time=1.24 ms
64 bytes from 192.168.120.206: icmp_seq=2 ttl=64 time=0.235 ms
64 bytes from 192.168.120.206: icmp_seq=3 ttl=64 time=0.244 ms
64 bytes from 192.168.120.206: icmp_seq=4 ttl=64 time=0.300 ms
64 bytes from 192.168.120.206: icmp_seq=5 ttl=64 time=0.255 ms
64 bytes from 192.168.120.206: icmp_seq=6 ttl=64 time=0.264 ms
64 bytes from 192.168.120.206: icmp_seq=7 ttl=64 time=0.263 ms
64 bytes from 192.168.120.206: icmp_seq=8 ttl=64 time=0.331 ms
64 bytes from 192.168.120.206: icmp_seq=9 ttl=64 time=0.247 ms
64 bytes from 192.168.120.206: icmp_seq=10 ttl=64 time=0.244 ms
--- 192.168.120.206 ping statistics ---
10 packets transmitted, 10 received, 0% packet loss, time 4499ms
rtt min/avg/max/mdev = 0.235/0.362/1.241/0.294 ms
[root@localhost ~]# ping -c 10 -i 0.01 192.168.120.206
PING 192.168.120.206 (192.168.120.206) 56(84) bytes of data.
64 bytes from 192.168.120.206: icmp_seq=1 ttl=64 time=0.244 ms
64 bytes from 192.168.120.206: icmp_seq=2 ttl=64 time=0.195 ms
64 bytes from 192.168.120.206: icmp_seq=3 ttl=64 time=0.219 ms
64 bytes from 192.168.120.206: icmp_seq=4 ttl=64 time=0.204 ms
64 bytes from 192.168.120.206: icmp_seq=5 ttl=64 time=3.56 ms
64 bytes from 192.168.120.206: icmp_seq=6 ttl=64 time=1.93 ms
64 bytes from 192.168.120.206: icmp_seq=7 ttl=64 time=0.193 ms
64 bytes from 192.168.120.206: icmp_seq=8 ttl=64 time=0.193 ms
64 bytes from 192.168.120.206: icmp_seq=9 ttl=64 time=0.202 ms
64 bytes from 192.168.120.206: icmp_seq=10 ttl=64 time=0.211 ms
--- 192.168.120.206 ping statistics ---
10 packets transmitted, 10 received, 0% packet loss, time 90ms
rtt min/avg/max/mdev = 0.193/0.716/3.564/1.080 ms
[root@localhost ~]#
实例6:通过域名ping公网上的站点
命令:
ping -c 5 www.58.com
输出:
peida-VirtualBox ~ # ping -c 5 www.58.com
PING www.58.com (211.151.111.30) 56(84) bytes of data.
64 bytes from 211.151.111.30: icmp_req=1 ttl=49 time=14.7 ms
64 bytes from 211.151.111.30: icmp_req=2 ttl=49 time=16.4 ms
64 bytes from 211.151.111.30: icmp_req=3 ttl=49 time=15.2 ms
64 bytes from 211.151.111.30: icmp_req=4 ttl=49 time=14.6 ms
64 bytes from 211.151.111.30: icmp_req=5 ttl=49 time=19.9 ms
--- www.58.com ping statistics ---
5 packets transmitted, 5 received, 0% packet loss, time 20101ms
rtt min/avg/max/mdev = 14.618/16.192/19.917/1.965 ms
peida-VirtualBox ~ #
说明:
实例7:多参数使用
命令:
ping -i 3 -s 1024 -t 255 192.168.120.206
输出:
[root@localhost ~]# ping -i 3 -s 1024 -t 255 192.168.120.206
PING 192.168.120.206 (192.168.120.206) 1024(1052) bytes of data.
1032 bytes from 192.168.120.206: icmp_seq=1 ttl=64 time=1.99 ms
1032 bytes from 192.168.120.206: icmp_seq=2 ttl=64 time=0.694 ms
1032 bytes from 192.168.120.206: icmp_seq=3 ttl=64 time=0.300 ms
1032 bytes from 192.168.120.206: icmp_seq=4 ttl=64 time=0.481 ms
1032 bytes from 192.168.120.206: icmp_seq=5 ttl=64 time=0.415 ms
1032 bytes from 192.168.120.206: icmp_seq=6 ttl=64 time=0.600 ms
1032 bytes from 192.168.120.206: icmp_seq=7 ttl=64 time=0.411 ms
1032 bytes from 192.168.120.206: icmp_seq=8 ttl=64 time=0.281 ms
1032 bytes from 192.168.120.206: icmp_seq=9 ttl=64 time=0.318 ms
1032 bytes from 192.168.120.206: icmp_seq=10 ttl=64 time=0.362 ms
1032 bytes from 192.168.120.206: icmp_seq=11 ttl=64 time=0.408 ms
1032 bytes from 192.168.120.206: icmp_seq=12 ttl=64 time=0.445 ms
1032 bytes from 192.168.120.206: icmp_seq=13 ttl=64 time=0.397 ms
1032 bytes from 192.168.120.206: icmp_seq=14 ttl=64 time=0.406 ms
1032 bytes from 192.168.120.206: icmp_seq=15 ttl=64 time=0.458 ms
--- 192.168.120.206 ping statistics ---
15 packets transmitted, 15 received, 0% packet loss, time 41999ms
rtt min/avg/max/mdev = 0.281/0.531/1.993/0.404 ms
[root@localhost ~]#
说明:
-i 3 发送周期为 3秒 -s 设置发送包的大小为1024 -t 设置TTL值为 255
实例8:设置数据包分片命令
ping 10.1.23.3 -l 4000
以太网帧数据最大数据是MTU,IP数据包的数据长度大于MTU时候,在网络传输时候,必须分片传输。查看抓包可以看到IP首部flag字段的最后一位MF=1,表示后面还有分片的数据包
实例8:数据包设置不允许分片
ping 10.1.23.3 -f
实例9:一直ping网络通不通
ping 10.1.23.3 -t
ifconfig命令
许多windows非常熟悉ipconfig命令行工具,它被用来获取网络接口配置信息并对此进行修改。Linux系统拥有一个类似的工具,也就是ifconfig(interfaces config)。通常需要以root身份登录或使用sudo以便在Linux机器上使用ifconfig工具。依赖于ifconfig命令中使用一些选项属性,ifconfig工具不仅可以被用来简单地获取网络接口配置信息,还可以修改这些配置。
1.命令格式:
ifconfig [网络设备] [参数]
2.命令功能:
ifconfig 命令用来查看和配置网络设备。当网络环境发生改变时可通过此命令对网络进行相应的配置。
3.命令参数:
up 启动指定网络设备/网卡。
down 关闭指定网络设备/网卡。该参数可以有效地阻止通过指定接口的IP信息流,如果想永久地关闭一个接口,我们还需要从核心路由表中将该接口的路由信息全部删除。
arp 设置指定网卡是否支持ARP协议。
-promisc 设置是否支持网卡的promiscuous模式,如果选择此参数,网卡将接收网络中发给它所有的数据包
-allmulti 设置是否支持多播模式,如果选择此参数,网卡将接收网络中所有的多播数据包
-a 显示全部接口信息
-s 显示摘要信息(类似于 netstat -i)
add 给指定网卡配置IPv6地址
del 删除指定网卡的IPv6地址
<硬件地址> 配置网卡最大的传输单元
mtu<字节数> 设置网卡的最大传输单元 (bytes)
netmask<子网掩码> 设置网卡的子网掩码。掩码可以是有前缀0x的32位十六进制数,也可以是用点分开的4个十进制数。如果不打算将网络分成子网,可以不管这一选项;如果要使用子网,那么请记住,网络中每一个系统必须有相同子网掩码。
tunel 建立隧道
dstaddr 设定一个远端地址,建立点对点通信
-broadcast<地址> 为指定网卡设置广播协议
-pointtopoint<地址> 为网卡设置点对点通讯协议
multicast 为网卡设置组播标志
address 为网卡设置IPv4地址
txqueuelen<长度> 为网卡设置传输列队的长度
4.使用实例:
实例1:显示网络设备信息(激活状态的)
命令:
ifconfig
输出:
[root@localhost ~]# ifconfig
eth0 Link encap:Ethernet HWaddr 00:50:56:BF:26:20
inet addr:192.168.120.204 Bcast:192.168.120.255 Mask:255.255.255.0
UP BROADCAST RUNNING MULTICAST MTU:1500 Metric:1
RX packets:8700857 errors:0 dropped:0 overruns:0 frame:0
TX packets:31533 errors:0 dropped:0 overruns:0 carrier:0
collisions:0 txqueuelen:1000
RX bytes:596390239 (568.7 MiB) TX bytes:2886956 (2.7 MiB)
lo Link encap:Local Loopback
inet addr:127.0.0.1 Mask:255.0.0.0
UP LOOPBACK RUNNING MTU:16436 Metric:1
RX packets:68 errors:0 dropped:0 overruns:0 frame:0
TX packets:68 errors:0 dropped:0 overruns:0 carrier:0
collisions:0 txqueuelen:0
RX bytes:2856 (2.7 KiB) TX bytes:2856 (2.7 KiB)
说明:
eth0 表示第一块网卡, 其中 HWaddr 表示网卡的物理地址,可以看到目前这个网卡的物理地址(MAC地址)是 00:50:56:BF:26:20
inet addr 用来表示网卡的IP地址,此网卡的 IP地址是 192.168.120.204,广播地址, Bcast:192.168.120.255,掩码地址Mask:255.255.255.0
lo 是表示主机的回坏地址,这个一般是用来测试一个网络程序,但又不想让局域网或外网的用户能够查看,只能在此台主机上运行和查看所用的网络接口。比如把 HTTPD服务器的指定到回坏地址,在浏览器输入 127.0.0.1 就能看到你所架WEB网站了。但只是您能看得到,局域网的其它主机或用户无从知道。
第一行:连接类型:Ethernet(以太网)HWaddr(硬件mac地址)
第二行:网卡的IP地址、子网、掩码
第三行:UP(代表网卡开启状态)RUNNING(代表网卡的网线被接上)MULTICAST(支持组播)MTU:1500(最大传输单元):1500字节
第四、五行:接收、发送数据包情况统计
第七行:接收、发送数据字节数统计信息。
实例2:启动关闭指定网卡
命令:
ifconfig eth0 up
ifconfig eth0 down
输出:
说明:
ifconfig eth0 up 为启动网卡eth0 ;ifconfig eth0 down 为关闭网卡eth0。ssh登陆linux服务器操作要小心,关闭了就不能开启了,除非你有多网卡。
实例3:为网卡配置和删除IPv6地址
命令:
ifconfig eth0 add 33ffe:3240:800:1005::2/64
ifconfig eth0 del 33ffe:3240:800:1005::2/64
输出:
说明:
ifconfig eth0 add 33ffe:3240:800:1005::2/64 为网卡eth0配置IPv6地址;
ifconfig eth0 add 33ffe:3240:800:1005::2/64 为网卡eth0删除IPv6地址;
练习的时候,ssh登陆linux服务器操作要小心,关闭了就不能开启了,除非你有多网卡。
实例4:用ifconfig修改MAC地址
命令:
ifconfig eth0 hw ether 00:AA:BB:CC:DD:EE
输出:
[root@localhost ~]# ifconfig eth0 down //关闭网卡
[root@localhost ~]# ifconfig eth0 hw ether 00:AA:BB:CC:DD:EE //修改MAC地址
[root@localhost ~]# ifconfig eth0 up //启动网卡
[root@localhost ~]# ifconfig
eth0 Link encap:Ethernet HWaddr 00:AA:BB:CC:DD:EE
inet addr:192.168.120.204 Bcast:192.168.120.255 Mask:255.255.255.0
UP BROADCAST RUNNING MULTICAST MTU:1500 Metric:1
RX packets:8700857 errors:0 dropped:0 overruns:0 frame:0
TX packets:31533 errors:0 dropped:0 overruns:0 carrier:0
collisions:0 txqueuelen:1000
RX bytes:596390239 (568.7 MiB) TX bytes:2886956 (2.7 MiB)
lo Link encap:Local Loopback
inet addr:127.0.0.1 Mask:255.0.0.0
UP LOOPBACK RUNNING MTU:16436 Metric:1
RX packets:68 errors:0 dropped:0 overruns:0 frame:0
TX packets:68 errors:0 dropped:0 overruns:0 carrier:0
collisions:0 txqueuelen:0
RX bytes:2856 (2.7 KiB) TX bytes:2856 (2.7 KiB)
[root@localhost ~]# ifconfig eth0 hw ether 00:50:56:BF:26:20 //关闭网卡并修改MAC地址
[root@localhost ~]# ifconfig eth0 up //启动网卡
[root@localhost ~]# ifconfig
eth0 Link encap:Ethernet HWaddr 00:50:56:BF:26:20
inet addr:192.168.120.204 Bcast:192.168.120.255 Mask:255.255.255.0
UP BROADCAST RUNNING MULTICAST MTU:1500 Metric:1
RX packets:8700857 errors:0 dropped:0 overruns:0 frame:0
TX packets:31533 errors:0 dropped:0 overruns:0 carrier:0
collisions:0 txqueuelen:1000
RX bytes:596390239 (568.7 MiB) TX bytes:2886956 (2.7 MiB)
lo Link encap:Local Loopback
inet addr:127.0.0.1 Mask:255.0.0.0
UP LOOPBACK RUNNING MTU:16436 Metric:1
RX packets:68 errors:0 dropped:0 overruns:0 frame:0
TX packets:68 errors:0 dropped:0 overruns:0 carrier:0
collisions:0 txqueuelen:0
RX bytes:2856 (2.7 KiB) TX bytes:2856 (2.7 KiB)
说明:
实例5:配置IP地址
命令:
# ifconfig eth0 192.168.120.56
# ifconfig eth0 192.168.120.56 netmask 255.255.255.0
# ifconfig eth0 192.168.120.56 netmask 255.255.255.0 broadcast 192.168.120.255
说明:
ifconfig eth0 192.168.120.56
给eth0网卡配置IP地:192.168.120.56
ifconfig eth0 192.168.120.56 netmask 255.255.255.0
给eth0网卡配置IP地址:192.168.120.56 ,并加上子掩码:255.255.255.0
ifconfig eth0 192.168.120.56 netmask 255.255.255.0 broadcast 192.168.120.255
/给eth0网卡配置IP地址:192.168.120.56,加上子掩码:255.255.255.0,加上个广播地址: 192.168.120.255
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