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服务器多路径是什么意思

发布时间: 2022-08-30 17:36:04

‘壹’ linux 多路径存储是怎么回事

Linux下HDS存储多路径查看
在Redhat下确定需要划分的存储空间。在本例中需要进行划分的空间是从HDS AMS2000上划分到服务器的多路径存储空间。其中sddlmad为ycdb1上需要进行划分的空间,sddlmah为ycdb2上需要进行划分的空间。具体如下:
查看环境
# rpm -qa|grep device-mapper
device-mapper-event-1.02.32-1.el5
device-mapper-multipath-0.4.7-30.el5
device-mapper-1.02.32-1.el5
# rpm -qa|grep lvm2 lvm2-2.02.46-8.el5
查看空间
#fdisk -l
Disk /dev/sddlmad: 184.2 GB, 184236900352 bytes 255 heads, 63 sectors/track, 22398 cylinders Units = cylinders of 16065 * 512 = 8225280 bytes
Disk /dev/sddlmah: 184.2 GB, 184236900352 bytes

255 heads, 63 sectors/track, 22398 cylinders Units = cylinders of 16065 * 512 = 8225280 bytes
查看存储
#cd /opt/DynamicLinkManager/bin/
#./dlnkmgr view -lu
Proct : AMS
SerialNumber : 83041424 LUs : 8
iLU HDevName Device PathID Status
0000 sddlmaa /dev/sdb 000000 Online
/dev/sdj 000008 Online
/dev/sdr 000016 Online
/dev/sdz 000017 Online

0001 sddlmab /dev/sdc 000001 Online
/dev/sdk 000009 Online
/dev/sds 000018 Online
/dev/sdaa 000019 Online
0002 sddlmac /dev/sdd 000002 Online
/dev/sdl 000010 Online
/dev/sdt 000020 Online
/dev/sdab 000021 Online
0003 sddlmad /dev/sde 000003 Online
/dev/sdm 000011 Online
/dev/s 000022 Online
/dev/sdac 000023 Online
0004 sddlmae /dev/sdf 000004 Online
/dev/sdn 000012 Online
/dev/sdv 000024 Online
/dev/sdad 000025 Online
0005 sddlmaf /dev/sdg 000005 Online
/dev/sdo 000013 Online
/dev/sdw 000026 Online
/dev/sdae 000027 Online
0006 sddlmag /dev/sdh 000006 Online
/dev/sdp 000014 Online
/dev/sdx 000028 Online
/dev/sdaf 000029 Online
0007 sddlmah /dev/sdi 000007 Online
/dev/sdq 000015 Online
/dev/sdy 000030 Online
/dev/sdag 000031 Online
##############################################################
4. lvm.conf的修改
为了能够正确的使用LVM,需要修改其过滤器:
#cd /etc/lvm #vi lvm.conf
# By default we accept every block device
# filter = [ "a/.*/" ]
filter = [ "a|sddlm[a-p][a-p]|.*|","r|dev/sd|" ]
例:

[root@bsrunbak etc]# ls -l lvm*

[root@bsrunbak etc]# cd lvm
[root@bsrunbak lvm]# ls
archive backup cache lvm.conf
[root@bsrunbak lvm]# more lvm.conf

[root@bsrunbak lvm]# pvs

Last login: Fri Jul 10 11:17:21 2015 from 172.17.99.198
[root@bsrunserver1 ~]#
[root@bsrunserver1 ~]#
[root@bsrunserver1 ~]# df -h
Filesystem Size Used Avail Use% Mounted on
/dev/sda4 30G 8.8G 20G 32% /
tmpfs 95G 606M 94G 1% /dev/shm
/dev/sda2 194M 33M 151M 18% /boot
/dev/sda1 200M 260K 200M 1% /boot/efi
/dev/mapper/datavg-oraclelv
50G 31G 17G 65% /oracle
172.16.110.25:/Tbackup
690G 553G 102G 85% /Tbackup
/dev/mapper/tmpvg-oradatalv
345G 254G 74G 78% /oradata
/dev/mapper/datavg-lvodc
5.0G 665M 4.1G 14% /odc
[root@bsrunserver1 ~]# pvs
PV VG Fmt Attr PSize PFree
/dev/sda5 datavg lvm2 a-- 208.06g 153.06g
/dev/sddlmba tmpvg lvm2 a-- 200.00g 49.99g
/dev/sddlmbb tmpvg lvm2 a-- 200.00g 0
[root@bsrunserver1 ~]# cd /etc/lvm
[root@bsrunserver1 lvm]# more lvm.conf
# Don't have more than one filter line active at once: only one gets
used.

# Run vgscan after you change this parameter to ensure that
# the cache file gets regenerated (see below).
# If it doesn't do what you expect, check the output of 'vgscan -vvvv'.

# By default we accept every block device:
# filter = [ "a/.*/" ]

# Exclude the cdrom drive
# filter = [ "r|/dev/cdrom|" ]

# When testing I like to work with just loopback devices:
# filter = [ "a/loop/", "r/.*/" ]

# Or maybe all loops and ide drives except hdc:
# filter =[ "a|loop|", "r|/dev/hdc|", "a|/dev/ide|", "r|.*|" ]

# Use anchors if you want to be really specific
# filter = [ "a|^/dev/hda8$|", "r/.*/" ]
filter = [ "a|/dev/sddlm.*|", "a|^/dev/sda5$|", "r|.*|" ]

[root@bsrunserver1 lvm]# df
Filesystem 1K-blocks Used Available Use% Mounted on
/dev/sda4 30963708 9178396 20212448 32% /
tmpfs 99105596 620228 98485368 1% /dev/shm
/dev/sda2 198337 33546 154551 18% /boot
/dev/sda1 204580 260 204320 1% /boot/efi
/dev/mapper/datavg-oraclelv
51606140 31486984 17497716 65% /oracle
172.16.110.25:/Tbackup
722486368 579049760 106736448 85% /Tbackup
/dev/mapper/tmpvg-oradatalv
361243236 266027580 76865576 78% /oradata
/dev/mapper/datavg-lvodc
5160576 680684 4217748 14% /odc
[root@bsrunserver1 lvm]#
You have new mail in /var/spool/mail/root
[root@bsrunserver1 lvm]#
[root@bsrunserver1 lvm]# pvs
PV VG Fmt Attr PSize PFree
/dev/sda5 datavg lvm2 a-- 208.06g 153.06g
/dev/sddlmba tmpvg lvm2 a-- 200.00g 49.99g
/dev/sddlmbb tmpvg lvm2 a-- 200.00g 0
[root@bsrunserver1 lvm]#
进入文件:
[root@bsrunbak lvm]# cd /opt/D*/bin
or
[root@bsrunbak bin]# pwd
/opt/DynamicLinkManager/bin
显示HDS存储卷:
[root@bsrunbak lvm]# ./dlnkmgr view -lu

‘贰’ 服务器说的“路、通道、线程”是什么意思

首先你要明白一点:路、核、线程三者的区别。
路:独立的CPU的个数。
核:单个CPU的物理核心(也叫真实核心)数量。
线程:程序中顺序控制流程的数量。

举个例子,双路四核八线程服务器指的就是该服务器有2个独立的CPU,每个CPU有2个物理核心(2x2=4核),每个核心拥有2条线程(4x2=8线程)。个人PC平台上很少出现“路”这个术语,以前奔腾时代英特尔公司面向桌面级用户倒是做过一些高端的双CPU平台,就是说一块主板上装了两个独立的CPU,和现在的双核CPU不是一个概念。多核CPU是由于后期技术发展后,芯片集成度越来越高,可以把多个物理核心集成在一个CPU上。打个比喻(虽然不恰当),如果把双路看做一对健康的双胞胎的话,那么双核就是一对连体双胞胎。

而所谓的四核八线程(注意:这里没有“路”定义)就是说,一颗独立的CPU上的真实核心数量为4,但是通过超线程技术又模拟出4个核心,看上去像8个核心了,但有4个是模拟出来的,不是真实的,以此类推。这就是所谓的超线程,目前是英特尔公司独有的技术。

至于“几通道”,它指的是服务器进行资源共享操作时的信道数量,它表现的是服务器的网络共享通信那一块的性能,和上面的三个术语面向的对象不同,他们仨表现的是服务器的数据处理那一块的性能,数量越高,服务器多任务处理能力越强。当然,这四个家伙一起展现了一台服务器的综合性能。

‘叁’ 磁盘阵列,多路径IO,服务器

就是多路径软件的问题,在服务器1上装一个多路径软件,把4块盘还原为2块盘就OK了,存储袋的DS这张盘里应该有。

‘肆’ Linux系统怎么配置多路径

Linux多路径指的是除了主机和硬盘一条路径的连接,还包括了主机和网络服务器的连接形成的主机一对多的路径连接关系。通过多路径的连接,实现了磁盘的虚拟化。

1、安装多路径软件包:
device-mapper-1.02.67-2.el5
device-mapper-event-1.02.67.2.el5
device-mapper-multipath-0.4.7-48.el5
[root@RKDB01 Server]# rpm -ivh device-mapper-1.02.67-2.el5.x86_64.rpm
warning: device-mapper-1.02.67-2.el5.x86_64.rpm: Header V3 DSA signature: NOKEY, key ID 37017186
Preparing.。。 ########################################### [100%]
package device-mapper-1.02.67-2.el5.x86_64 is already installed
[root@RKDB01 Server]# rpm -ivh device-mapper-event-1.02.67-2.el5.x86_64.rpm
warning: device-mapper-event-1.02.67-2.el5.x86_64.rpm: Header V3 DSA signature: NOKEY, key ID 37017186
Preparing.。。 ########################################### [100%]
package device-mapper-event-1.02.67-2.el5.x86_64 is already installed
[root@RKDB01 Server]# rpm -ivh device-mapper-multipath-0.4.7-48.el5.x86_64.rpm
warning: device-mapper-multipath-0.4.7-48.el5.x86_64.rpm: Header V3 DSA signature: NOKEY, key ID 37017186
Preparing.。。 ########################################### [100%]
package device-mapper-multipath-0.4.7-48.el5.x86_64 is already installed
2、设置开机启动,并检查安装包是否正常:
chkconfig --level 345 multipathd on
lsmod |grep dm_multipath
[root@RKDB01 Server]# chkconfig --level 345 multipathd on
[root@RKDB01 Server]# lsmod |grep dm_multipath
dm_multipath 58969 0
scsi_dh 42561 1 dm_multipath
dm_mod 102417 4 dm_mirror,dm_multipath,dm_raid45,dm_log
[root@RKDB01 Server]#
3、配置multipathd 使其正常工作,编辑/etc/multipath.conf,开放如下内容:
defaults {
udev_dir /dev
polling_interval 10
selector “round-robin 0”
path_grouping_policy multibus
getuid_callout “/sbin/scsi_id -g -u -s /block/%n”
prio_callout none
path_checker readsector0
rr_min_io 100
max_fds 8192
rr_weight priorities
failback immediate
no_path_retry fail
user_friendly_names yes
}
blacklist {
wwid 26353900f02796769
devnode “^(ram|raw|loop|fd|md|dm-|sr|scd|st)[0-9]*”
devnode “^hd[a-z]”
}
4、并关闭如下内容
#blacklist {
# devnode “*”
#}
#defaults {
27 # user_friendly_names yes
28 #}
5、完成之后执行如下命令发现多路径:
[root@RKDB01 Server]# modprobe dm-multipath
[root@RKDB01 Server]# multipath -F
[root@RKDB01 Server]# multipath dm-multipath
[root@RKDB01 Server]# multipath dm-round-robin
[root@RKDB01 Server]# service multipathd restart
正在关闭multipathd 端口监控程序: [确定]
正在启动守护进程multipathd: [确定]
[root@RKDB01 Server]# multipath -v2
[root@RKDB01 Server]# multipath -v2
[root@RKDB01 Server]# multipath -ll
mpath1 () dm-0 TOYOU,NetStor_iSUM510
[size=3.3T][features=0][hwhandler=0][rw]
\_ round-robin 0 [prio=2][ena bled]
\_ 1:0:0:0 sdb 8:16 [failed][ready]
\_ 1:0:1:0 sdc 8:32 [failed][ready]
[root@RKDB01 Server]#
6、重启服务器后,可以看到多路径信息了:
[root@RKDB01 ~]# ll /dev/mapper/
总计 0
crw------- 1 root root 10, 60 11-05 22:35 control
brw-rw---- 1 root disk 253, 0 11-05 22:35 mpath1
brw-rw---- 1 root disk 253, 1 11-05 22:35 mpath2
[root@RKDB01 ~]# multipath -ll
mpath2 () dm-1 TOYOU,NetStor_iSUM510
[size=3.2T][features=0][hwhandler=0][rw]
\_ round-robin 0 [prio=2][active]
\_ 1:0:0:1 sdc 8:32 [active][ready]
\_ 1:0:1:1 sde 8:64 [active][ready]
mpath1 () dm-0 TOYOU,NetStor_iSUM510
[size=20G][features=0][hwhandler=0][rw]
\_ round-robin 0 [prio=2][active]
\_ 1:0:0:0 sdb 8:16 [active][ready]
\_ 1:0:1:0 sdd 8:48 [active][ready]
7、通过fdisk 看可以生成了DM-0/DM-1两个盘,正是上面sdc/sde,sdb/sdd多路径后出来的:
[root@RKDB01 ~]# fdisk -l
Disk /dev/sda: 299.4 GB, 299439751168 bytes
255 heads, 63 sectors/track, 36404 cylinders
Units = cylinders of 16065 * 512 = 8225280 bytes
Device Boot Start End Blocks Id System
/dev/sda1 * 1 38 305203+ 83 Linux
/dev/sda2 39 13092 104856255 83 Linux
/dev/sda3 13093 19619 52428127+ 83 Linux
/dev/sda4 19620 36404 134825512+ 5 Extended
/dev/sda5 19620 26146 52428096 83 Linux
/dev/sda6 26147 28757 20972826 83 Linux
/dev/sda7 28758 30324 12586896 82 Linux swap / Solaris
/dev/sda8 30325 36404 48837568+ 83 Linux
Disk /dev/sdb: 21.4 GB, 21474836480 bytes
255 heads, 63 sectors/track, 2610 cylinders
Units = cylinders of 16065 * 512 = 8225280 bytes
Disk /dev/sdb doesn‘t contain a valid partition table
Disk /dev/sdc: 3568.4 GB, 3568429957120 bytes
255 heads, 63 sectors/track, 433836 cylinders
Units = cylinders of 16065 * 512 = 8225280 bytes
Disk /dev/sdc doesn’t contain a valid partition table
Disk /dev/sdd: 21.4 GB, 21474836480 bytes
255 heads, 63 sectors/track, 2610 cylinders
Units = cylinders of 16065 * 512 = 8225280 bytes
Disk /dev/sdd doesn‘t contain a valid partition table
Disk /dev/sde: 3568.4 GB, 3568429957120 bytes
255 heads, 63 sectors/track, 433836 cylinders
Units = cylinders of 16065 * 512 = 8225280 bytes
Disk /dev/sde doesn’t contain a valid partition table
Disk /dev/dm-0: 21.4 GB, 21474836480 bytes
255 heads, 63 sectors/track, 2610 cylinders
Units = cylinders of 16065 * 512 = 8225280 bytes
Disk /dev/dm-0 doesn‘t contain a valid partition table
Disk /dev/dm-1: 3568.4 GB, 3568429957120 bytes
255 heads, 63 sectors/track, 433836 cylinders
Units = cylinders of 16065 * 512 = 8225280 bytes
Disk /dev/dm-1 doesn’t contain a valid partition table
Disk /dev/sdf: 4009 MB, 4009754624 bytes
255 heads, 63 sectors/track, 487 cylinders
Units = cylinders of 16065 * 512 = 8225280 bytes
Device Boot Start End Blocks Id System
/dev/sdf4 * 1 488 3915744+ b W95 FAT32
Partition 4 has different physical/logical endings:
phys=(486, 254, 63) logical=(487, 125, 22)
[root@RKDB01 ~]#
8、同时也可以在/dev/mapper目录中查看到多路径映射的信息:
[root@RKDB01 ~]# ll /dev/mapper/
总计 0
crw------- 1 root root 10, 60 11-06 00:49 control
brw-rw---- 1 root disk 253, 2 11-06 00:49 data-data001
brw-rw---- 1 root disk 253, 0 11-06 00:49 mpath1
brw-rw---- 1 root disk 253, 1 11-06 00:49 mpath2

‘伍’ 服务器中的2路,4路,8 路是什么意思

代表的是CPU的数量,也就是服务器主板上CPU插槽的数量。

1、单路:指服务器支持1个CPU ,整个电路中只有一个用电器的电路叫做单路电路在单路电路中用电器必须只有1个,且不可为电压表、电流表、导线。

2、双路(2路):指服务器支持2个CPU。

3、四路(4路):指服务器支持4个CPU。

4、八路(8路):指服务器支持8个CPU。

5、多路:指服务器支持多个CPU。

(5)服务器多路径是什么意思扩展阅读:

CPU有强大的算术运算单元,可以在很少的时钟周期内完成算术计算。同时,有很大的缓存可以保存很多数据在里面。

此外,还有复杂的逻辑控制单元,当程序有多个分支的时候,通过提供分支预测的能力来降低延时。

GPU是基于大的吞吐量设计,有很多的算术运算单元和很少的缓存。同时GPU支持大量的线程同时运行。

如果他们需要访问同一个数据,缓存会合并这些访问,自然会带来延时的问题。尽管有延时,但是因为其算术运算单元的数量庞大,因此能够达到一个非常大的吞吐量的效果。

网络-单路

网络-中央处理器

‘陆’ linux什么情况下用到多路径

1、安装多路径软件包:
device-mapper-1.02.67-2.el5
device-mapper-event-1.02.67.2.el5
device-mapper-multipath-0.4.7-48.el5

[plain] view plain print?
[root@RKDB01 Server]# rpm -ivh device-mapper-1.02.67-2.el5.x86_64.rpm
warning: device-mapper-1.02.67-2.el5.x86_64.rpm: Header V3 DSA signature: NOKEY, key ID 37017186
Preparing... ########################################### [100%]
package device-mapper-1.02.67-2.el5.x86_64 is already installed
[root@RKDB01 Server]# rpm -ivh device-mapper-event-1.02.67-2.el5.x86_64.rpm
warning: device-mapper-event-1.02.67-2.el5.x86_64.rpm: Header V3 DSA signature: NOKEY, key ID 37017186
Preparing... ########################################### [100%]
package device-mapper-event-1.02.67-2.el5.x86_64 is already installed
[root@RKDB01 Server]# rpm -ivh device-mapper-multipath-0.4.7-48.el5.x86_64.rpm
warning: device-mapper-multipath-0.4.7-48.el5.x86_64.rpm: Header V3 DSA signature: NOKEY, key ID 37017186
Preparing... ########################################### [100%]
package device-mapper-multipath-0.4.7-48.el5.x86_64 is already installed

2、设置开机启动,并检查安装包是否正常:

chkconfig --level 345 multipathd on
lsmod |grep dm_multipath

[plain] view plain print?
[root@RKDB01 Server]# chkconfig --level 345 multipathd on
[root@RKDB01 Server]# lsmod |grep dm_multipath
dm_multipath 58969 0
scsi_dh 42561 1 dm_multipath
dm_mod 102417 4 dm_mirror,dm_multipath,dm_raid45,dm_log
[root@RKDB01 Server]#

3、配置multipathd 使其正常工作,编辑/etc/multipath.conf,开放如下内容:

[plain] view plain print?
defaults {
udev_dir /dev
polling_interval 10
selector "round-robin 0"
path_grouping_policy multibus
getuid_callout "/sbin/scsi_id -g -u -s /block/%n"
prio_callout none
path_checker readsector0
rr_min_io 100
max_fds 8192
rr_weight priorities
failback immediate
no_path_retry fail
user_friendly_names yes
}
blacklist {
wwid 26353900f02796769
devnode "^(ram|raw|loop|fd|md|dm-|sr|scd|st)[0-9]*"
devnode "^hd[a-z]"
}

4、并关闭如下内容

[plain] view plain print?
#blacklist {
# devnode "*"
#}
#defaults {
27 # user_friendly_names yes
28 #}

5、完成之后执行如下命令发现多路径:

[plain] view plain print?
[root@RKDB01 Server]# modprobe dm-multipath
[root@RKDB01 Server]# multipath -F
[root@RKDB01 Server]# multipath dm-multipath
[root@RKDB01 Server]# multipath dm-round-robin
[root@RKDB01 Server]# service multipathd restart
正在关闭multipathd 端口监控程序: [确定]
正在启动守护进程multipathd: [确定]
[root@RKDB01 Server]# multipath -v2
[root@RKDB01 Server]# multipath -v2
[root@RKDB01 Server]# multipath -ll
mpath1 () dm-0 TOYOU,NetStor_iSUM510
[size=3.3T][features=0][hwhandler=0][rw]
\_ round-robin 0 [prio=2][ena bled]
\_ 1:0:0:0 sdb 8:16 [failed][ready]
\_ 1:0:1:0 sdc 8:32 [failed][ready]
[root@RKDB01 Server]#

6、重启服务器后,我们可以看到多路径信息了:

[plain] view plain print?
[root@RKDB01 ~]# ll /dev/mapper/
总计 0
crw------- 1 root root 10, 60 11-05 22:35 control
brw-rw---- 1 root disk 253, 0 11-05 22:35 mpath1
brw-rw---- 1 root disk 253, 1 11-05 22:35 mpath2
[root@RKDB01 ~]# multipath -ll
mpath2 () dm-1 TOYOU,NetStor_iSUM510
[size=3.2T][features=0][hwhandler=0][rw]
\_ round-robin 0 [prio=2][active]
\_ 1:0:0:1 sdc 8:32 [active][ready]
\_ 1:0:1:1 sde 8:64 [active][ready]
mpath1 () dm-0 TOYOU,NetStor_iSUM510
[size=20G][features=0][hwhandler=0][rw]
\_ round-robin 0 [prio=2][active]
\_ 1:0:0:0 sdb 8:16 [active][ready]
\_ 1:0:1:0 sdd 8:48 [active][ready]

7、通过fdisk 看可以生成了DM-0/DM-1两个盘,正是上面sdc/sde,sdb/sdd多路径后出来的:

[plain] view plain print?
[root@RKDB01 ~]# fdisk -l
Disk /dev/sda: 299.4 GB, 299439751168 bytes
255 heads, 63 sectors/track, 36404 cylinders
Units = cylinders of 16065 * 512 = 8225280 bytes
Device Boot Start End Blocks Id System
/dev/sda1 * 1 38 305203+ 83 Linux
/dev/sda2 39 13092 104856255 83 Linux
/dev/sda3 13093 19619 52428127+ 83 Linux
/dev/sda4 19620 36404 134825512+ 5 Extended
/dev/sda5 19620 26146 52428096 83 Linux
/dev/sda6 26147 28757 20972826 83 Linux
/dev/sda7 28758 30324 12586896 82 Linux swap / Solaris
/dev/sda8 30325 36404 48837568+ 83 Linux
Disk /dev/sdb: 21.4 GB, 21474836480 bytes
255 heads, 63 sectors/track, 2610 cylinders
Units = cylinders of 16065 * 512 = 8225280 bytes
Disk /dev/sdb doesn't contain a valid partition table
Disk /dev/sdc: 3568.4 GB, 3568429957120 bytes
255 heads, 63 sectors/track, 433836 cylinders
Units = cylinders of 16065 * 512 = 8225280 bytes
Disk /dev/sdc doesn't contain a valid partition table
Disk /dev/sdd: 21.4 GB, 21474836480 bytes
255 heads, 63 sectors/track, 2610 cylinders
Units = cylinders of 16065 * 512 = 8225280 bytes
Disk /dev/sdd doesn't contain a valid partition table
Disk /dev/sde: 3568.4 GB, 3568429957120 bytes
255 heads, 63 sectors/track, 433836 cylinders
Units = cylinders of 16065 * 512 = 8225280 bytes
Disk /dev/sde doesn't contain a valid partition table
Disk /dev/dm-0: 21.4 GB, 21474836480 bytes
255 heads, 63 sectors/track, 2610 cylinders
Units = cylinders of 16065 * 512 = 8225280 bytes
Disk /dev/dm-0 doesn't contain a valid partition table
Disk /dev/dm-1: 3568.4 GB, 3568429957120 bytes
255 heads, 63 sectors/track, 433836 cylinders
Units = cylinders of 16065 * 512 = 8225280 bytes
Disk /dev/dm-1 doesn't contain a valid partition table
Disk /dev/sdf: 4009 MB, 4009754624 bytes
255 heads, 63 sectors/track, 487 cylinders
Units = cylinders of 16065 * 512 = 8225280 bytes
Device Boot Start End Blocks Id System
/dev/sdf4 * 1 488 3915744+ b W95 FAT32
Partition 4 has different physical/logical endings:
phys=(486, 254, 63) logical=(487, 125, 22)
[root@RKDB01 ~]#

8、我们同时也可以在/dev/mapper目录中查看到多路径映射的信息:

[plain] view plain print?
[root@RKDB01 ~]# ll /dev/mapper/
总计 0
crw------- 1 root root 10, 60 11-06 00:49 control
brw-rw---- 1 root disk 253, 2 11-06 00:49 data-data001
brw-rw---- 1 root disk 253, 0 11-06 00:49 mpath1
brw-rw---- 1 root disk 253, 1 11-06 00:49 mpath2

‘柒’ Windows Server 2012 的多路径 I/O支持使用以下哪些功能

面向高可用性的多路径支持

Windows Server® 2008 包括许多将运行
Windows 服务器级操作系统的计算机与存储区域网络 (SAN) 设备连接起来的增强功能。

集成的多路径 I/O (MPIO) 支持是为基于 Windows 的服务器与 SAN
连接提供高可用性的众多增强功能之一。Microsoft MPIO 体系结构通过建立到存储阵列的多个会话或连接,支持
iSCSI、光纤通道和串行连接的存储 (SAS) SAN 连接。

‘捌’ 存储多路径是个什么意思

机身储存是电子数码产品或设备(如手机、MP3、电脑等)本身所带的内部存储介质,由存储芯片直接安装在仪器或是设备内部,以支撑机器的正常运行,用于暂时存放运算数据,以及与外部存储器交换的数据。目前主流的机身储存容量有8GB、16GB、和32GB。运行内存是指手机运行程序时的内存,也叫RAM(简称运存)。用电脑比较的话手机的运行内存就是电脑的内存,是不可以作为储存数据的介质的。目前智能手机运行内存一般为1GB、2GB或3GB。

‘玖’ 如何实施SAN多路径以及重要的考虑因素(含视频)

因此,如果两者之间只有一条路径的话,那么很可能会出现问题。SAN多路径技术通过在硬件之间建立多条路径的方式可以解决这个问题,一条路径发生故障后,I/O可以使用另一条。多路径还可以实现负载均衡。在下面的视频中,存储专家Howard Marks探讨了实施SAN多路径的一些实践。任何接触过存储区域网络(SAN)的人都遇到过路径失效的问题。人们常常会拔掉电缆或者关闭电源。这时服务器和存储设备都运行良好,但它们之间却没有有效的路径可用。所以,有必要建立一种机制来支持多路径。微软和VMware都已经在它们的核心产品中建立了原始的多路径,并嵌入了由存储阵列厂商或第三方组织提供的插件,这样使得多路径技术更高效。VMware的多路径方式是失效备援。如果你的主机上有一个双端口光纤通道(FC)适配器,把它们连接到两个独立的开关上,也就是你的磁盘阵列同时连接了两个开关,这时所有的流量都使用其中一条路径,除非这条路径失效。你也可以将开关转到循环档,这时会有交替的请求通过这些路径,但是由于这些请求不会按照你想象的那样只在一条路径上传输,所以这种循环路径不会产生双倍的带宽。有效带宽只能达到1.6倍。

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