Transcript
Shenzhen HiOSO Technology Co.,Ltd.
www.hioso.com Tel: 0086 755 83128820 Fax: 0086 755 83151488 Email: market@hioso.com Add:6th Floor,12th Building,Wangtang Industrial Zone,Xingao Road,Xili,Nanshan District,Shenzhen
HiOSO
HiOSO EPON Network Management System User’s Manual
Shenzhen HiOSO Technology Co., Ltd http://www.hioso.com Edition:H1-HS-20100519-2.0
Shenzhen HiOSO Technology Co.,Ltd.
www.hioso.com Tel: 0086 755 83128820 Fax: 0086 755 83151488 Email: market@hioso.com Add:6th Floor,12th Building,Wangtang Industrial Zone,Xingao Road,Xili,Nanshan District,Shenzhen
Statement Shenzhen HIOS Technology co., Ltd, all rights reserved.
Without the written permission of the copyright owner, any unit or individual shall not, in anyway, excerpt,
copy or translate this manual.
is registered trademark of Shenzhen HiOSO Technology Co.,Ltd.
Due to the constant renewal of products and technologies, the contents of the information may not
completely match the actual product, please understand. For inquiries on product updates, visit our Web
site: http://www.hioso.com
Technical Support Tel:0755-83110367 Customer Service:market@hioso.com Website:http://www.hioso.com or http://www.haishuo.com
Shenzhen HiOSO Technology Co.,Ltd.
www.hioso.com Tel: 0086 755 83128820 Fax: 0086 755 83151488 Email: market@hioso.com Add:6th Floor,12th Building,Wangtang Industrial Zone,Xingao Road,Xili,Nanshan District,Shenzhen
Introduction
Manual Instruction
This is <HiOSO EPON Network Management System Operation User’s Manual>, this manual is
applicable to the EPON equipment with the HiOSO Network Management System. This manual is
used for equipment setting instruction. Please read me before operation.
Conventions
1. Command Description Convention
When this manual is introducing the usage of the commands, it might use one or several text format as
below to express particular description:
Format Description
Bold Refers to command line keyword (remain unchanged part of the command, must
input accordingly)
| Used to separate several options, indicates that select from two or more options.
[] Indicates that the content in the “[]” is optional during command configuring.
[x|y|…] Indicates that select one or not from two or more options.
<A.B.C.D> Indicates that the user needs to input the IP address.
<A.B.C.D/M>
Indicates that the user needs to input the IP address, and it is allowed to
designate subnet mask with param “M”, “M” is referred to the bit of the subnet
mask.
<n-m> Indicates the allowable value range
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2.Graphical Interface Convention
Format Description
< > “< >” indicates the button name, such as “click <OK> button”.
[] “[]” indicates windows name, menu name and datasheet, such as “pop up [open]
window”.
/ Multilevel menu is separated with “/”, for example: [system/exit] indicates the [exit]
option under [system] menu list.
After this is explanative and illustrative content.
→
The simple operation procedure is linked with“→”, such as
“OLT→essentiainformation→enable”, it means select OLT menu first, then the
essential information, and the click the enable button in essential information.
3.Content Introduction
Chapter Content
Chapte 1 Product introduction EPON product interview、features and introduction of network
management.
Chapter 2 Config the system
parameter of the network
management card
Change the IP address, Alarm address and system information
Chapter 3 EPON network
management software Install, uninstall and enable the software
Chapter 4 EPON network
management software config
Network management software config, OLT config and ONU
config.
Chapter 5 Bridge mode config Bridge mode and config process
Chapter 6 Examples
HiOSO EPON SNMP software user manual
Catalog
Chapter 1 Product Introduction ................................................................................................... 1
1.1 Product Interview ................................................................................................................................... 1 1.2 Interface and Indicator Light................................................................................................................. 1 1.3 Management Card Cable Connection................................................................................................. 2
Chapter 2 Config the system parameter of the management card..................................... 3
2.1 Config Set Up ............................................................................................................................................ 3 2.2 Login Network Management Card Config ......................................................................................... 4
2.2.1 Telnet Login Network Management ......................................................................................... 4 2.2.2 Login network management by Console interface.............................................................. 5
2.2 Config the System Parameter of Management Card ...................................................................... 5 2.2.1 Command Format......................................................................................................................... 5 2.2.2 Config Process.............................................................................................................................. 5
2.3 Config Examples ...................................................................................................................................... 6
Chapter 3 EPON Network Management Software ................................................................... 7
3.1 Install........................................................................................................................................................... 7 3.1.1 Server .............................................................................................................................................. 7 3.1.2 Client................................................................................................................................................ 8
3.2 Enable ......................................................................................................................................................... 8 3.3 Uninstall ..................................................................................................................................................... 8
Chapter 4 EPON network management software config....................................................... 9
4.1 Config Introduction ................................................................................................................................. 9 4.1.1 Login Network Management Client.......................................................................................... 9 4.1.2 Config interface............................................................................................................................. 9 4.1.3 Menu .............................................................................................................................................. 10 4.1.4 Basic Button ................................................................................................................................ 11
4.2 Basic Config of Network Management............................................................................................. 12 4.2.1 Add Agent ..................................................................................................................................... 12 4.2.2 Rename ......................................................................................................................................... 13 4.2.3 Trap System ................................................................................................................................. 14 4.2.4 Log System .................................................................................................................................. 15
4.3 OLT Cofig ................................................................................................................................................. 16 4.3.1 Information ................................................................................................................................... 16 4.3.2 Network Params.......................................................................................................................... 16 4.3.3 DBA ................................................................................................................................................ 17 4.3.4 Uplink Port.................................................................................................................................... 18 4.3.5 Statistics ....................................................................................................................................... 18 4.3.6 Bridge Mode................................................................................................................................. 18 4.3.7 Bridge Mode Advanced............................................................................................................. 19 4.3.8 L3 Config ...................................................................................................................................... 20 4.3.9 L2 Entries...................................................................................................................................... 23
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4.4 ONU Config.............................................................................................................................................. 23 4.4.1 Information ................................................................................................................................... 23 4.4.2 Links .............................................................................................................................................. 24 4.4.3 Bridge Config............................................................................................................................... 25 4.4.4 Port ................................................................................................................................................. 26 4.4.5 Statistics ....................................................................................................................................... 27 4.4.6 Port VLAN ..................................................................................................................................... 27 4.4.7 RSTP Set ....................................................................................................................................... 30 4.4.8 Link Config ................................................................................................................................... 32 4.4.9 Filter Rule ..................................................................................................................................... 33 4.4.10 L2 Entries ................................................................................................................................... 35
Chapter 5 Bridge Mode Config ................................................................................................... 36
5.1 Overview .................................................................................................................................................. 36 5.2 Bridge Mode ............................................................................................................................................ 36
5.2.1 Simple Bridged............................................................................................................................ 36 5.2.2 Shared VLAN ............................................................................................................................... 37 5.2.3 Transparent VLAN ...................................................................................................................... 39 5.2.4 Link Cross-connect.................................................................................................................... 40 5.2.5 Dedicated Double VLAN ........................................................................................................... 41 5.2.6 Double Tagged Shared VLAN .................................................................................................. 42 5.2.7 Translated VLAN ......................................................................................................................... 42 5.2.8 Priority VLAN ............................................................................................................................... 42 5.2.9 Priority Shared VLAN ................................................................................................................ 42 5.2.10 Transparent Priority Shared VLAN ...................................................................................... 44 5.2.11 Priority Simple Bridged........................................................................................................... 44 5.2.12 Dedicated Single VLAN........................................................................................................... 44 5.2.13 Transparent Shared VLAN with Broadcast ........................................................................ 44 5.2.14 Priority Copy.............................................................................................................................. 45
5.3 Bridge Mode Option .............................................................................................................................. 47 5.3.1 Discard Frame with Unknown MAC ....................................................................................... 47 5.3.2 Simple BridgedForward Data Frame with unknown VID to Simple Bridged............... 47
Chapter 6 Config Examples......................................................................................................... 48
6.1 Network Requirement ........................................................................................................................... 48 6.2 Network Connection ............................................................................................................................. 48 6.3 Config Step .............................................................................................................................................. 48
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Chapter 1 Product Introduction
1.1 Product Interview
iCoreView is a HIOSO independent R&D EPON Network Management System based on SNMP V2c
protocol, and it’s compatible with SNMP V1. iCoreView adopts powerful management capability, the staff
in contol center can monitor, manage and maintain EPON system in different places. iCoreView made the
network stable.
iCoreView provides oprable and administrable interface, the features are:
Support Performance Management, Malfunction Management, Alarm Management, Safety
Management, and real time monitoring.
Provide reliable safety stratege, support multilevel user rights
Adopt hierarchical architecture, easy to operate
Support remote management and maitenance
Support several Trap management modes, support Trap Email distribution and Trap sms
notification, help the management staff know the condition of the device and the network in
time, ensure the stability of the network.
Perfect log management, record detailed log information during operation and maintenance,
ensure the safety of management and operation
Up-to-date endition supports Chinese and English
iCoreView adopts C/S architecture, composed of server and client
1.2 Interface and Indicator Light
There is one RJ45 port and one Console port on the Network Management card, RJ45 port connects with
the PC network port, Console port connects with the PC Console port by serial line:
Table1-1 Indicator Light Status
Indicator Light Status Meanning
Blink The management card is normal RUN
Off The management card is not running.
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On The right power fan is normal FANA
Off The right power fan stops
On The left power fan is normal FANB
Off The left power fan stops
On The right power supply is normal PWRA
Off The right power supply is off
On The left power supply is normal PWRB
Off The left power supply is off
On The full duplex is on FDX
Off The half duplex is on
On The power supply of the chasis is normal PWR
Off The power supply of the chasis is not normal
On RJ-45 port is under 10M mode 10M
Off RJ-45 port is under other modes
On RJ-45 port is under 10/100M mode 100M
Off RJ-45 port is under other modes
1.3 Management Card Cable Connection
The EPON management card should be in the leftmost slot of the chasis (3U), the cable connetion is
shown as Figure 1-1, both of the way of connections in Figure 1-1 are OK.
Figure 1-1 Cable Connection between PC and Management Card
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Chapter 2 Config the system parameter of the management card
2.1 Config Set Up
Supposed the user has inserted the management card in the right place of the chasis, and has finished
the cable connection. Before the config, the user’s PC has to meet some basic config demand.
1.The PC’s demand
Operation System(Windows XP/2000);
One Ethernet network card;
2.Working Condition
Temperature: -10 ~55℃ ℃
Humudity: 5%~95% (Non-condensing)
Place the chasis on flat and steady table, and avoid as much as possible using it
under following environment:
■ Through sunlight and in high temperature
■ Extream changing temperature
■ Dusty and humid environment
■ Place with crossive gas, inflammable gas and chemical gas
3. Installation Process
Check if the main back-up power module in the back panel is secure
Insert the Management Card to the chasis
Insert ONU to the chasis
Place it on flat and steady table
Connect AC220V/DC-48V power cord
For local config, the IP address of the PC and EPON management card must be in the
same subnet; for remote config, the PC and EPON management card must be reachable
through switch. The default IP address of EPON management card is: 192.168.0.88,
Mask is: 255.255.255.0
Connect the RJ45 ports of the PC and EPON management card by UTP cable or through
switch. After positive identification, power on the device.
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2.2 Login Network Management Card Config
2.2.1 Telnet Login Network Management
Click “start/run” of the PC, see the dialog box, input telnet 192.168.0.88 in “open”, shown as Figure 2-1
Figure 2-1 Telnet Login
Click <OK>, see the Telnet login interface, shown as Figure 2-2, input the user name and the password
(for first login, input default username: root, password: root), then push the enter button, enter the telnet
command line config interface, then see the command prompt , indicates
successful login.
Figure 2-2 Telnet Login Interface
EPON network management card allows only one user to login in the same time.
No operations would displayed on the screen when you input the password, just push enter after
the input.
Push Ctrl+Backspace to delete, only Backspace would’t work.
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2.2.2 Login network management by Console interface
Config the network management card by hyperterminal when the IP address of the card is unknown.
Connect the Console port of the PC with the Console port of the management card with RS232 serial line,
and then run the hyperterminal (start-program-accessories-communication-hyperterminal). Need to input
area code, phone number and other related information for the first login, and then click<OK> to next step,
input ‘hioso management card’ in “tag”under [connection description], click “OK”, to [connect to…], click
“OK”, to [propertoes], click <restore to default>, then select 115200 in “bit per second”, click “OK”, then to
[hyperterminal], input enter, see the .
2.3 Config the System Parameter of Management Card
2.3.1 Command Format
The primary command format of managemrnt card is shown as Table 2-1:
Table 2-1 Primary Command Format
Command Foramt Description
sysconf Display essential information of the system
sysconf net Config the IP address, subnet mask and gateway
sysconf host Config the host name
sysconf trap Config the Trap function, Trap address and Trap type
sysconf info Config the system information
reboot Reboot the software
2.3.2 Config Process
IP Address Config:
In config windows: Input sysconf net and push enter
Display IP address : Input the IP address and push enter
Display Net mask : Input subnet mask and push enter
Display Gateway : Input gateway and push enter
After the prompt message, input y and push enter to change the IP address
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Host Name Config:
In config windows:Input sysconf host and push enter
Display Host name : Input the name and push enter
After the prompt message, input y and push enter to change the Host name..
Trap config:
In config windows: Input sysconf trap and push enter
Display Trapenable :Input 1 or 2 and push enter, 1 for enable, 2 for disable
Display Trapsink :Input the first trap address and push enter
Display Trap2sink : Input the second trap address and push enter
Trapcommunity : Input trap type and push enter, it is snmptrap here
After prompt message, input y and push enter to change the trap address
Config information:
In config windows: Input sysconf info and push enter
Display Syslocation : Input the address info and push enter
Display Syscontact : Input the contact and push enter
After the prompt message, input y and push enter to change the info
In prompt message, y stands for OK and save, n stands for cancel.
Restart the management card to enable the config
2.4 Config Examples
Config the IP address: 192.168.10.10,Net mask: 255.255.255.0,Gateway: 192.168.10.1;Trapsink:
192.168.10.11;Other info: default. Enter telnet or Console windows, the config process is shown as
Figure 2-3 :
Figure 2-3 Config Process
After config, input reboot and push enter to restart the management card, the config would be enabled
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Chapter 3 EPON Network Management Software
3.1 Install
Copy the file EPONnms from the disk to the desktop, and then double click to run the software, see the
interface as Figure 3-1, select a setup type (the default is recommended), click <Next>→<Next> until
<Finish>. After the installation, the server and the client would be generated on desktop.
Figure 3-1 Select a Setup Type
Complete: Complete installation. The installing program would install server and client to
“C:\program files\”
Custom:Custom installation. The user could choose setup type and destination path. Setup type
includes: Client, Server, Client and Server.
3.1.1 Server
EPON network management server has centralized data acquisition and distribution function, and provide
services to client so that the client could realize device management, user management, and device
maitainence.
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3.1.2 Client
The cilen could manage and maintain the OLT and ONU. The specific functions are:
User management: add, delete and edit user. Config different authorities for different users to
realize administration in different levels
Agent management: after adding agent info to the chasis, the user could browse the
operationg and trap info.
Trap query: Config the Traplink directing to IP address of the server, all the client that login the
server could get the trap info.
Device management: Manage OLT, ONU and service config.
Trap management: Manage history Trap messages and judge the current network status by
the Trap message.
3.2 Enable
EPON network management software consists of server and client, enable the server before using the
client. Double click on the desktop, into enable interface, click <enable> button, until prompt
message “Enable success”, click <OK> button. Double click on the desktop, use default setting for
user name/password/server/port, click <login> to EPON network management interface.
3.3 Uninstall
To uninstall EPON network management software, enter “add/delete program” in control panel shown as
Figure 3-2, select iCoreView, and click <delete>, then finish the unintallation under instruction.
Figure 3-2 Unistall iCoreView
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Chapter 4 EPON network management software config
User could visually manage and maintain the device by EPON network management software; install and
enable refer to Chapter 3.
Make sure the connection between the management card and the PC is OK, and the IP address, Trap
address are all set through telnet or Console port.
4.1 Config Introduction
4.1.1 Login Network Management Client
Enable the software, the process refers to 3.2. And as the Figure 4-1 shows, the client pompts that the
user name and the password are matched (commonly, the login box has default username and
password), the user can directly click <login> to enter the management interface, shown as Figure 4-2.
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Table 4-1 Login Interface
Figure 4-1
4.1.2 Config interface
EPON management consists of Title, Menu, Config and Equipment list. Click the the menu item to
corresponding dialog box, the Config could display the device info and config data, Device list could
display all OTL and the ONU under the management card. The first login is shown as Figure 4-2.
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Figure 4-2 Management Interface for First Login
4.1.3 Menu
The menu of the EPON network management card consists of: System, View, Security, Trap, Cards, Log,
Window amd Help. Table 4-1 lists the Menu and related config window, find the config content quickly by
the table.
Table 4-1 Menu
Menu Tab Function
System Exit Exit the platform
Equipment List List all OLT and ONU
Toplogy Display management card
chassis Chassis info
OLT set Enter OLT config interface
View
ONU set Enter ONU config interface
Menu Tab Function
View style Change view style
Security user Add, delete or modify the user info
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Domain Add, delete or modify the domain
Cur trap Display cur trap
Histroy trap Histroy trap query Trap
trap messages Distribute the trap message
Intelligent Query Search the management card by the name Cards
Auto search Search the management card in given IP field
Cur Display current log Log
Histroy History log query
Toplogy Display proxy toplogy
Chassis Display chassis info and ONU under selected OLT
OLT Config selected OLT
ONU Config selected ONU
Cur Trap Display current Trap
History Trap History trap query
Log Display current log
Window
Log Query History log query
4.1.4 Basic Button
Table 4-2 Button Introduction
Button Function
Apply Apply the current config
Refresh Refresh current config
Edit Edit original config
Add Add new config
Delete Delete the config
Button Function
OK Submit input info and
Close Close the selected window
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Not all the config can be applied immediately, for example, to apply link add or delete, the user
needs to restart the ONU.
4.2 Basic Config of Network Management
4.2.1 Add Agent
After entering the Management Network interface shown as Figure 4-2, move the mouse pointer in the
yellow zone, RCLICK, select [Add Agent], see the dialog box as Figure 4-3.
Figure 4-3 Add Agent
Input the IP address (default) in the dialog box, input 0.88 in name, click <OK>, see the . Double
click the to see the info of the chasis as Figure 4-4.
Figure 4-4 Chasis Info
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The gray zone indicates the slot is empty, click OLT in the graphical interface, the blank zone under the
chasis displays all the ONU, shown as Figure 4-5
Figure 4-5 ONU Number and Info under OLT
The ONU index indicates the registered order of the ONU; OLT index indicates the position of the OLT in
chasis; Number indicates the ports number of the ONU; MAX Number indicates the MAX link that the
ONU supports; Status indicates if the ONU is online or offline; RTT indicates the Round Trip Time
between ONU and OLT; Distance indicates the fiber length between ONU and OLT; Connect Mode can be
set to allow or disallow (default setting is recommeded)
RUN indicates the agent is on, DCS indicates the agent is off, TRAP indicates that there is a trap
message. Due to the system, it is normal that the management card which is running can not be
displayed as RUN in time.
The Chasis info is system numbering, it’s unnecessary to be edited; the Node info is system info
of the management card, how to edit refers to Chapter 2.
4.2.2 Rename
For the convinience to memorize and distinguish, the network management software supports rename for
OLT, ONU and the ports of ONU. For example:
Click in the Equipment list, see the list shown as Figure 4-6.
Figure 4-6 Equipment List
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Select the Number (5) OLT, RCLIK→rename, see the OLT rename dialog box as Figure 4-7, input
“shore build”, and the Number (5) would be displayed as .
Figure 4-7 OLT Rename Dialog Box
Select the Number 3 ONU as in Figure 4-5, RCLICK→rename, see the ONU rename dialog box,
input “A28”, click OK, and the Number 3 ONU would be displayed as .
Select Number 3 ONU and click Window/ONU, enter ONU config window as Figure 4-8.
Figure 4-8 ONU Config Window
Select Port, RCLICK→rename, rename port 1,2,3,4 to 2801,2802,2803,2804 as Figure 4-9.
Figure 4-9 Port Rename
4.2.3 Trap System
The Trap System is a significant feature of HIOSO Network Management, with the powerful data support
of background, it is easier for the manage staff to check history data, the staff doesn’t need to monitor at
all times, release the nervous pressure of the staff effectively.
1、Current Trap
Click Window/Cur Trap or Cur Trap in config zone to enter the Cur Trap interface, this interface displays
all the Trap messages after the client enables, the user can delete/delete all the Trap messages.
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In Cur Trap messages, print or other similar operation is not allowed, do it in History Trap.
2、History Trap
Click Window/History Trap or History Trap in config zone to enter the Cur Trap interface, RCLICK to
query, delete, erase, and print; click query to enter dialog box as Figure 4-10. Query by time, Trap level
and Management card are supported.
Figure 4-10 Trap Query
4.2.4 Log System
The Log System is another significant feature of HIOSO Network Management, it’s convenient to system
info query with the powerful background data base
1、Current Log
Click Window/Log or Log in config zone to enter Log interface, all the Current Log after the login of
the user would be displayed, RCLICK to delete or erase the log.
2、History Log
Click Window/Log Query or click Log Query in the config zone to enter History Log interface, Rclick
to log query and erase; click query to query dialog box as Figure 4-11. For the convenience of query,
query by the time or key words are available.
Figure 4-11 Log Query Dialog Box
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4.3 OLT Cofig
Click Window/OLT or click OLT in the config zone to enter OLT config interface as Figure 4-12.
Figure 4-12 OLT Config Interface
Must select one OLT before config so that the user can enter the interface.
4.3.1 Information
Click Window/OLT/Info as Table 1-12, the interface displays the status and Entry parameters of OLT, and
enable, disable, default, reset.
4.3.2 Network Params
OLT Network Params is shown as Figure 4-13. The user could edit VLAN Ethertype, and add tag to
upstream and downstream.
Figure 4-13 OLT Network Params
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4.3.3 DBA
Click DBA in OLT config interface to enter DBA config as Figure 4-14.
Figure 4-14 DBA
The user could config the whole bandwidth of OLT and Broadcast SLA bandwidth, the param meaning is
shown as Table 4-3.
Table 4-3 DBA Config Description
Item Description
units The units of data rate(Default is Kbps)
Maximum Band Width maximum data rate
Minimum Band Width minimum data rate
Maximum burst Size Reserved maximum band for the burst
Tolerant Assign fixed bandwidth for a link, even if the link queue is empty.
Sensitive Only when the link queue is not empty, assigned bandwidth is valid. When the link
queue is empty, assigned bandwidth will be released (Recommeded).
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4.3.4 Uplink Port
Click Uplink Port in OLT config interface to enter Uplink Port config shown as Figure 4-15.
Figure 4-15Uplink Port
The user could config the uplink port (the default is recmmended), the param meaning is shown as Table
4-4:
Table 4-4 Uplink Port Params
Item Description
Port Enable Manage uplink port, Enable to start communicating, Disable to stop
communicating.
Discard packets with
Length Errors Discard the packets which dosen’t fit certain requirements
Flow control Enable Control the flow type of uplink port
Aotonegotiation Enable The mode of data rate are 10Mbps、100Mbps、1Gbps
4.3.5 Statistics
OLT upstream and downstream statistics, and the data would be displayed by the upstream and
downstream, and the datatype.
4.3.6 Bridge Mode
EPON system supports many Bridging Modes, these modes could manage the flow in many ways, and
many of the modes support VLAN or VLAN stacking, QoS, could be used in different network topology
and applications, the user could select the appropriate bridging mode by his own circumstances. For
detailed information, please refer to Chapter 5.
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4.3.7 Bridge Mode Advanced
Click the Bridge Mode Advanced in OLT config to enter the interface shown as Figure 4-16
Figure 4-16 Bridge Mode Advanced
The description of each config item is shown as Table 4-5
Table 4-5 Bridge Mode Advanced Config Description
Item Description
AGE Limit Age time limit
Number of bridge VLANs The domain quantity of the VLAN under Shared VLAN mode, the
maximum number is 24.
Downstream Frames Reset
Aging Enable the new setting aging time
MAC Learning Over Write Each new learning MAC address would cover the oldest entry
Discard Unknown MAC
Address Discard the data with unknown MAC address
Allow VLAN Taged Framer
Commonly, when the data frame is with VID, the OLT will discard these
frames, Eable this option and the downstream OLT will not discard these
frames.
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4.3.8 L3 Config
Click the L3 config in the OLT config to enter the interface shown as 4-16. DHCP (Dynamic Host
Configuration Protocol), adopts server/client communication mode, the client addresses application, the
server returns the config info for client, such as IP address, so that the dynamic allocation of IP address
and other config realizes. There’re 3 strategies for IP address allcocation:
Manual:Administrator allocates a fixed static binding IP address for specific user (such as www
server)
Automatic: DHCP allocates an IP address with indefinitely long lease time.
Dynamic: DHCP allocates an IP address with term of validity to the client, when the serveice time is
finished, the client needs to renew the address. Most of the clients get this kind of dynamic address.
Figure 4-17 DHCP Config
Config DHCP of L3, the param meaning is shown as Table 4-6
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Table 4-6 DHCP Config Params Descripton
Item Description
DHCP Snooping⑴ Enable
Enable DHCP Snooping (default is diable), then enable . After ⑵⑵⑵
enable DHCP Snooping, OLT intercepts DHCP frames and maintain
IP/MAC binding address list
DHCP IPv4/MAC⑵ Address
Learning Enable Enable ⑵, then enable ⑶
ARP Snooping⑶ Enable
Enable⑶, then enable . After enable ARP Snooping, OLT ⑷⑷⑷⑷⑷
monitor all ARP request and complete L3 static entry binding, the
monitored ARP requests are oriented to LLID which related to target IP,
or generate ARP Proxy response according to ARP mode, only after
enabled, the L3 entries static config is supported.
DHCP⑷ relay agent enable
(insert option 82 for
provisioned links)
Enable (4), then enable , each Option82 data of the link should be ⑸⑸⑸
set the same way (link DHCP config panel), the value of field Code, Len,
Value should be in accord with standard
DHCP⑸ relay angent sets
“giaddr”
OLT uses the IP address of the DHCP relay agent to config the “giaddr”
field in the DHCP forwarding request. Some DHCP servers require the
relay agent config giaddt, to arouse the Option 82 response message of
echo of the DHCP Server. DHCP would normally ARP the IP address
received from giaddr, and OLT would use its MAC address to respond
such ARP request.
Item Description
⑸insert Option 82 in unicast
frames
Option 82OLT inserts Option 82 in all DHCP requests, not only in unicast
requests.
⑸forward DHCP frames with
Option 82 inserted by
customer
OLT forwards DHCP requests including Option 82, not discard them
⑷ARP Mode After enabled, OLT would genaerate Proxy ARP response for the ARP
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(Unchecked=Derected ARP,
Checked=ARP Proxy)
received by IP address, not orient it to LLID/Client
⑷Disable Upstream ARP
Request Validation Disable Upstream ARP request validation
⑷Disable downstream ARP
reply Validation Disable Downstream ARP reply validation
⑷Disable upstream ARP
reply Validation Disable upstream ARP reply validation
RARP Sno⑵ oping Enable
After enabled, enable , then OLT monitor all RAPP requests, orient ⒀
these requests to LLID which related to target MAC, or generate Proxy
RAPP response according to RAPP mode
RARP⒀ Mode
After enabled, OLT generates Proxy RAPP response for the ARP
received by known IP address (in IP/MAC binding address list), not orient
the request to LLID/Cilent
⑵Exclude UDP Multicast IP
Fragments
After enabled, OLT uses extra rules to restrict DHCP Snooping capture
rules in order to exclude UDP data frame with multicast MAC address
(0x01:00:5E:00:00:00 – 0x01:00:5E:7F:FF:FF)
Max learned IPs The maximum number of IP address (static adding and/or OLT learing).
The range is 0-3839, default is 0.
DHCP timer
Describe the update of recent OLT DHCP list, including DHCP lease
change, DHCP Server responding timeout, ARP request retry interval.
The param range is 1-65535s, default is 10s
DHCP Resp timer
The amount of DHCP timer interval which must be expired before DHCP
Server respond time out. Uncomplete DHCP dialog will occupy some
resources of OLT, so the dialog must be time out, so that OLT can recycle
these resources. The range is 1-254, default is 3.
ARP retry ticks The amount of DHCP timer interval which must be expired before the
regulated static IP (generated by the OLT under static IP/MAC binding)
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retries. The range is 1-255, default is 1.
DHCP relay agent Only enable giaddr in OLT relay agent, DHCP relay agent can config
giaddr, default is 0.
Max DHCP Lease
Max DFCP lease. 0 means disable. Any value not 0 would make OLT
verify lease time back to DHCP, and reduce these lease time when a
longer lease time is appointed, the range is 0-2^32, the default is 0.
4.3.9 L2 Entries
Click L2 entries, see the interface as Figure 4-18.
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Figure 4-18 OLT L2 Entries
The dynamic zone is the link learning MAC, the static zone is the link binding static MAC, the user could
add entries manually, for example , click <Add Entries>, a static
MAC would appear in the blank of the static zone.
4.4 ONU Config
Click Window/ONU or click ONU in the config zone to enter ONU config interface, shown as Figure 4-17.
ONU config includes Links, Bridging Config, Port, Statistics, Port VLAN, Rstp Set, Rules and L2 Entries,
etc, detailed config please refer to the chapater below.
4.4.1 Information
Select Window/ONU/Information, see the interface shown as Figure 4-19, the window shows the status
and basic entries of ONU, can restore the ONU to factory default, and can restart or upgrade ONU.
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Figure 4-19 ONU Config Interface
4.4.2 Links
Each ONU supports 8 logical links at most, network management software can control every link of each
ONU, click links in ONU config interface to enter ONU links management interface, where displays status
of each link, limit the upstream/downstream bandwidth of
each link, shown as Figure 4-20.
Figure 4-20 Links Interface
The params of the config interface are described as Table 4-7.
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Table 4-7 Link Params Description
Item Description
LINK SLA Setting Link SLA setting
LINK SLA Multicast SLA
setting Link SLA multicast SLA setting
Upstream Data from ONU to OLT
Downstream Data from OLT to ONU
Maximum Band Maximum bandwidth
Minimum Band Minimum bandwidth
Maximum Burst Maximum Burst of traffic shaping, 1-256K
TDM Time division multiplexing mode, can set time slice of round-robin Example: Shown as Figure 4-21, set the Upstream Maximum Band to 10 Mbps, Downstream Maximum Band to 10 Mbps, select Sensitivity, others default.
Figure 4-19 Set Upstream to 10Mbps Downstream to 10Mbps
4.4.3 Bridge Config
Click Bridging Config in ONU config interface to enter Bridging Config interface, the MAC learning can be
set in ONU Bridging Config interface, the maximum number is 64. And the port switching can also be set.
Figure 4-22 ONU Bridging Config
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The params are described as Table 4-8
Table 4-8 ONU Brdging Config Description
Item Description
Aggregate ONU Learning The maximum number of ONU downstream MAC learning
Flood Unknown Das Flood data frame with unknown MAC
Local Switching After enabling, the local port can exchange data directly.
Downstream Burst Tolerance Enable Downstream Burst Tolerance
The config above is adopted by HIOSO 4 ports and 8 ports ONU, is not adopted by 1 port and 2 port
ONU
4.4.4 Port
Click Port in ONU config interface to enter interface shown as Figure 4-23. The user can config port name,
upstream/downstream bandwidth and duplex, the status can also be displayed.
Figure 4-23 ONU Port Interface
Example: The port 1’s name is “VOIP”, work pattern is 10/100Mbps, auto-adaptive, the upstream
bandwidth is 44Mbps, downstream bandwidth is 2Mbps, the process is as follows:
LCLICK to select port 1, then the shading of port line will turn to blue, RCLICK, select user-defined,
input VOIP in the pop-up dialog box, shown as Figure 4-24.
Figure 4-24 User-defined Port Name
Select port-RCLICK, select Configuration, select Autonegotiation Enab and click <Apply>→close,
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shown as Figure 4-25.
Figure 4-25 ONU Configuration
Select port 1, RCLICK to select upstream bandwidth, select Kbps and 1000, click <Apply>→close,
shown as Figure 4-26.
Figure 4-26 Upstream Bandwidth
Select port 1, RCLICK to select downstream bandtidth, select Kbps and 1000, click <Apply>→close
4.4.5 Statistics
ONU ports upstream and downstream statistics, and the data would be displayed by the upstream and
downstream, and the datatype.
4.4.6 Port VLAN
HIOSO HA7204、HA7208 support VLAN config for each port, for the convenience of communication
between ports without jamming.
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Example: A certain company has three services, described as VID 2, VID 3,VID 4, and reach to the user
under ONU, the config process is as follows.
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The topology is shown as Figure 4-27, the OLT used is the experiment is HA7100, ONU is HA7204.
Figure 4-27 VLAN Topology
Select [Bridge Mode] in OLT config interface, select link as the ONU MAC which needs to be set,
then set the mode to Simple Bridge (commonly the default), then click <Apply>; select [Bridge
Mode Advanced], then select “Allow VALAN Taged Framer On Simple Bridge”, click <Apply>.
Select ONU in Chasis interface, then click window/ONU or directly click ONU in config zone to
enter ONU config interface, select [Port VLAN] to enter VLAN config interface, shown as Figure
4-28.
Figure 4-28 Port VLAN Config Interface
Supposed port 2 is VLAN 2, port 3 is VLAN 3, port 4 is VLAN 4, select port 2, sett he VID as 2,
action as Remove Tag, click Save and then <Apply>. Select port 3, set the VID as 3, Configur
as [Forward only if port is member of frame’s VLAN], click <Add>, Action as Remove Tag, click
Save and then <Apply>. Select port 4, set the VID as 4, Configur as shown as [Forward only if www.hioso.com Tel: 0086 755 83128820 Fax: 0086 755 83151488 Email: market@hioso.com Add:6th Floor,12th Building,Wangtang Industrial Zone,Xingao Road,Xili,Nanshan District,Shenzhen
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port is member of frame’s VLAN], click <Add>, set the VID as 4, Action as Remove Tag, click
Save and <Apply>, shown as Figure 4-29.
Figure 4-29 Set VID for Port 2,3,4
Select fiber port 0 (VID is 0 and no need to change it, because multiple VLAN pass through),
click <Add> in [VLAN] zone, input “2” in [VLAN] in the popup dialog box, Action is “Add Tag”,
then click <Save>, shown as Figure 4-30.
Figure 4-30 Fiber Port Action Tag
Add 3 and 4 as the process above, the Action are all “Add Tag”, click <Apply>, then restart ONU,
shown as Figure 4-31.
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Figure 4-31 Config Success
4.4.7 RSTP Set
RSTP(Rapid Spanning Tree Protocol) is defined in IEEE802.D, the basic thought is to generate “a tree”,
in order to eliminate the loop in network. The root is a switch called Root Bridge, the tree is generated
level by level from Root Bridge, and the root bridge will send config messages to ensure the stability of
the tree.
STP(Spanning Tree Protocol) defines these concept such as Root Bridge, Root Port, Designated Port,
Designated Bridge, Path Cost. STP makes only one active link exsist between any two nodes in network
topology, other redundant links block, so the network loop is eliminated, broardcast storm is restrained.
Only when the active link is failing, backup link will be enabled, and recover the connection between
devices, ensure the network operate smoothly.
As the evolution editon of STP, RSTP makes 3 improvments:
Set up replace port and backup port for Root Port and Designated Port, when Root Port/
Designated Port loses efficacy, replace port and backup port will forward without delay.
In the point to point link which only connects two exchange ports, Designated Port can forward
without delay by hand shake with downstream bridge. In the shared link which connects 3 or above
bridges, the downstream bridge will not respond the hand shake sent by upstream Designated Port,
can only wait double Forward Delay time.
Connect to the master directly, do not define the ports with bridge connecting as edge port. Edge
port can forward without delay. Because the bridge can not know if the port is directly connected to
master, so manual config is needed.
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RSTP has a great improvement on convergence rate to supply a gap of STP, HIOSO EPON system
supports RSTP protocaol. Click RSTP set in ONU interface to config RSTP, shown as Figure 4-32.
Figure 4-32 RSTP Set
The params of RSTP set is decribed as Table 4-9.
Table 4-9 RSTP Params Description
Item Description
Mode Enable or disable RSTP, after enabling, a part of network resource will be
occupied, the default setting is disable
Priori
The priority value dicides if the bridge can be selected as Root Bridge.
The bridge with lower value can be designated as Root Bridge, if all the
bridges in the network adopt the same priority, the bridge with smallest
MAC will be selected as Root Bridge. When the RSTP protocol is
enabled, if config the bridge priority, will cause the recalculation of RSTP.
The range is 0-65535, the default setting is 32768.
Max Age
Config the Age time of messages. If the time is too short, the calculation
of RSTP will be frequent, if the time is too long, the link failure will not be
discovered immediately. The user can config the time according to the
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practical network situation, the default is recommended. The range is
6-40s, the default is 20s.
Hello Time
The Hello Time of messages. If the time is too short, the bridge will send
the config message frequently, the network and the CPU will be over
burdened; too long, the bridge will think there’s link failure problem
because of the packet loss, cause the recalculation of RSTP. The default
is recommended. The range is 1-10s, the default is 2s.
Forward Delay
The RSTP adopts state transition. RSTP protocol defined port status
has: Discarding, Learning, Forwarding. Forward Delay happened in
Discarding and Learning status. If the value is too small, will cause
temporary redundant path, if the value is too big, the network may not
connect again in a long time. The default is recommended, the range is
4-30s, the default is 15s.
The values of Hello Time, Forward Delay and Max Age of Root Bridge
should fulfil the fomula below:
2*(Forward Delay -1s)>=2*(Hello Time+1s), or the network will shock
frequently.
After enabling RSTP, the user can check the related params and status in RSTP interface, make the
management more convenient.
4.4.8 Link Config
Each ONU can support 8 logical links at most, click Link Config to enter the config interface, shown as
Figure 4-33, the user can config the link number for selected ONU, at most 8, at least 1.
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Figure 4-33 Link Config
This edition does not support the config for link queue.
The UNI refers to user network interface, for HA7204 and HA7208, all electrical ports are UNI-1,
UNI-2 does not exsist; for HA7200, the electrical port is UNI-2, UNI-1 does not exsist; for HA7200G,
the electrical port in UNI-1, UNI-2 does not exsit; for HA7200D, the 1000Mb port is UNI-1, the 100Mb
port is UNI-2.
4.4.9 Filter Rule
The link rule is very complicated, this manual is only descrbing the basic config, if the user is interested,
please read related matiarial, please understand. The basic filter rule is as follows:
Click ONU config interface, select Link Config, click EPON0, select PORT1 or PORT2 (decided
by product model, the description refers to 4.4.4), then click <Apply>.
Click UNI-1 or UNI-2 (decided by product model, the description refers to 4.4.7), config link
number as 1, then click <Apply>.
Select [Filter Rule] in config interface to enter the config, shown as Figure 4-34.
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Figure 4-34 Filter Rule
Click EPON0, config downstream filter rule, then click <Add>, enter filter rule config dialog box,
and complete the config as what the table shows, click <Add>→<OK> to add downstream filter
rule shown as Figure 4-35.
Figure 4-35 Upstream Filter Rule
Back to Filter Rule interface, click UNI-1 or UNI-2 (decided by product model, the description
refers to 4.4.7) to config upstream filter rule, click <Add> to enter downstream filter rule config,
complete the config as what the table shows, then click <Add>→<OK> to add downstream
filter rule, shown as Figure 4-36.
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Figure 4-36 Downstream Filter Rule
After adding the upstream/downstream filter rule, click <Apply> in the lower left quarter of
config zone, and restart the ONU to enable the config.
If ONU is HA7200D, the filter rule must be set to UNI-1 and UNI-2, the process is the
same.
Restart ONU so that the link config can be enabled.
4.4.10 L2 Entries
Click L2 entries in ONU config window, see the interface shown as Figure 4-37.
Figure 4-37 ONU L2 Entries
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Chapter 5 Bridge Mode Config
5.1 Overview
HIOSO EPON products support many Bridging Modes, these modes have many flow processing modes,
have their particular application contexts. The user could use these Bridging Modes flexibly to meet
specific business requirements.
The terms in Bridging Modes, the description is as followed:
Shared: Several ONU could share one domain. Shared domain would establish an additional
logical link for flood flow.
Dedicated: The domain that only one ONU could have. Could regard it as a point to point
channel.
Priority:Priority mode can use different logical links, can transmit multiple flow which classified
by Priority to PON port, this mode is widely used in QoS.
Transparent: VLAN tag can not be changed.
Translated: According to the mapping relationship between client side VID to network side VID,
VLAN tag could be changed. The two VID could be different.
Single: “Single” is difined against VLAN tag of the frame. “Single” mode would ban VLAN tag of
client side, and add one tag only, make sure there is only one VLAN tag in passing frame.
Double: Double mode would add one VLAN tag to received frame, the received frame could be
single or stacking. The user frame could probly have no tags, then no tags would be added to the
frame, similarly, after the frame is adding a tag, the total tag quantity won’t exceed 2.
5.2 Bridge Mode
Considering practical situation, this chapter would only give detailed introduction to some usual bridge
modes, others are in short introduction, the one who’s interested, please operate after reading related
material, please understand.
5.2.1 Simple Bridged
In Simple Bridged Mode, the action of OLT is similar to bridge, however, OLT would distinguish two port
types: network side port and client side port, in order to reduce flood flow. The network side port connects
the OLT with upstream equipment, such as edge router or switch. The client side port is equal to specific
HiOSO EPON SNMP software user manual
LLID (Logical Link ID). The forward list of Simple Bridge adopts dynamic learning or static adding. All link
default is this mode. The downstream of simple bridged doesn’t support VLAN, but the user can enable
VLAN support via option “Allow VLAN Taged Framer on Simple Bridge”, and this option is recommended.
The default Bridge Mode is Simple Bridge, click Window/OLT→Bridge Mode to config, select the link
need to be config in [Select], then select Simple Bridge in <Select>, and click <Apply>, the config is
shown as Table 5-1.
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Table 5-1 Simple Bridge Config
5.2.2 Shared VLAN
Shared VLAN mode allows several links to transmit same VLAN tag.
Customized VLAN tag shall be added to user's data frame upstream.( if existed already, alternate;
customized VLAN shall be untagged downstream so as to ensure of data received by user without VLAN
tag.)
For data frame downstream with VLAN tag and unlearned destination MAC, OLT will retransmit it to all
the links marked with this VLAN. But selecting "Discard Unknown MAC Addresses” will impact this action.
The process is as follows:
Select OLT in Chasis interface, click Window/OLT or click OLT in the config zone to enter the
config interface, then select [Bridge Mode] to enter Bridge Mode config interface, shown as
Table 5-1.
Select the link need to be config in [Select], then select Shared VLAN in <Select>, shown as
Talbe 5-2.
HiOSO EPON SNMP software user manual
Table 5-2 Shared VLAN Config
After the Shared VLAN is slected, see the interface shown as Table 5-3, select [set], the CoS
and VID would turn into white, input the VID number and click <Apply>, the link address would
be displayed in VLAN tag on the right, shown as Table 5-3.
[Entry] is the maximum MAC that the OLT can learn, also can be set.
Table 5-3 Successfully Config Shared VLAN
Commonly, config Shared VLAN for the first time, clicking <Apply> would cause the Mode zone
turn to gray, it will get right after set again.
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5.2.3 Transparent VLAN
Under Transparent VLAN Mode, the message will be forwarded unchanged, this mode could guarantee
the VLAN tag of the client side. Under this mode, each link can support 62 VLAN tag at most.
Upstream, Transparent VLAN Mode is similar to Simple Bridged Mode: OLT will not test the validation of
the data frame, and will not learn the source address of the upstream data frame.
Downstream, when the tagged frame reaches to OLT Uplink port, OLT will compare the tag with the set
tag. If match, OLT forward the data to related link unchanged, discard the data untagged or unmatched.
The process is as follows:
Select the OLT in Chassis interface, click Window/OLT or click OLT in config zone to enter OLT
config, select [Bridge Mode] to enter Bridging config,shown as Table 5-1.
Select the link in [Select], then select Transparent VLAN in <Select>, shown as Talbe 5-4.
Table 5-4 Transparent VLAN Config
After selecting Transparent VLAN, see the interface shown as Table 5-5, to transparent transmit
single VID or some disjunct VID, input the VID in [To] in the first line and click <Add>→<Apply>,
if the VID is serial, input starting IP in [From], and input end IP in [To], click <Add>→<Apply>.
The VID can be shown under [VLAN tags for current link]
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Table 5-5 Config Single VID and Serial VID
The single VID and serial VID can not be config at the same time.
If the adding VID is in the serial VID group,the user must use the Delete button below to delete.
5.2.4 Link Cross-connect
Link Cross-connect can connect two links straightly belongs to different ONUs and, to set private channel.
In the direction of upstream, the flow of a certain link will be changed to downstream of a certain link, not
to be forwarded to OLT or other ONUs. Under this mode, the dara frame will not be changed.
For example: To config ONU with MAC 785c72000002 and ONU with MAC 0eab70007940, the process
is as follows:
Select the OLT in Chassis interface, click Window/OLT or click OLT in config zone to enter OLT
config, select [Bridge Mode] to enter Bridging config,shown as Table 5-1.
Select 785c72000002 in [Select], and select Link Cross-connect in [Select],shown as Table 5-6
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Table 5-6 Link cross-connect Config
After selecting Link cross-connect, see the interface shown as Table 5-7, select [Set] in [Status] and
select link 0eab70007940 in [Link], click <Apply>, shown as Table 5-7.
Table 5-7 Link cross-connect Config
Then, config the Link cross-connect as 785c72000002 for 0eab70007940.
The two links must be set to Link cross-connect
It is normal to fail when you first click <Apply>, repeat the process.
5.2.5 Dedicated Double VLAN
Under Dedicated Double VLAN mode, if data frame from customer end has VLAN tag, data frame
enters OLT end core network will have double or more VLAN tags. If data frame customer end has no
VLAN tag, then add tag, and data frame downstream will be transmitted based on VID. The config is
same as Dedicated Single VLAN.
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5.2.6 Double Tagged Shared VLAN
Double Tagged Shared Vlan can connect two links straightly belongs to different ONUs and, to set private
channel. In the direction of upstream, the flow of a certain link will be changed to downstream of a certain
link, not to be forwarded to OLT or other ONUs. Under this mode, the dara frame will not be changed.
5.2.7 Translated VLAN
Under Translated VLAN Mode, in the direction of upstream, OLT will change the tag and LLID of the user
into new, unique network VLAN tag. And OLT will do the opposite in the direction of downstream, return
the unique network VLAN tag into user VLAN tag and unique LLID, the untagged data frame will be
discarded.
There’s conflict between Translated VLAN Mode and Priority Copy Shared/Double/Single
VLAN, the PriorityCopy should be disabled.
5.2.8 Priority VLAN
Priority VLAN Mode uses downstream data frame’s VID to select corresponding ONU, and 802.1P priority
field is used to select unique link in ONU. IPv4 TOS field can be used to select link, too. Priority VLAN
Mode permits priority message of client side (including IP Precedence / TOS) to be mapped to a unique
link. On the network side, service class is mapped to VLAN priority.
Upstream data frame's VLAN tag is subject to destination link, composed of VID and Upstream CoS.
Similar as Dedicated Single VLAN, VLAN is untagged before frame is sent. VLAN is only determined
considering priority.
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The data frame forwarding in the direction of downstream includes two steps. Firstly, VID is used to select
a link group in ONU, sencondly, the priority is used to select right link among these links. VLAN can be
determined by a single priority or serial priority range (as [3, 5]). If the frame’s priority is unset, the frame
will be discarded.
Same VID can be only shared by links of same ONU.To use IPv4 TOS, there should be only one
link with "Non-IP" enabled. This link generally has the lowest priority and is applied to data
communication.
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5.2.9 Priority Shared VLAN
Under this mode, each bit of the VLAN tag can be used to descripe a VLAN. VID is used to select a ONU
group, 802.1P (CoS field)is used to select a unique link subclass (VLAN) from the ONU group. IPv4 TOS
field, as an optional field, can be used to select VLAN, too. The downstream broadcast domain is
identified by a combination of the VID and an inclusive range of upstream priority field values, such as [0,
4].
Compared with Shared VLAN mode, this mode’s downstream forwarding can be set by IPv4 TOS field, so,
this mode is more flexible. The typical application of this mode would be the same as that of Shared
VLAN. That is, Priority Shared VLANs can be used to segment the PON based on service class. For
example, one shared VLAN may serve voice traffic, while another may serve data.
Upstream, VLAN comprises of VID and Upstream CoS. (can be set, which is Upstream CoS option).
Upstream CoS value is different, even the VID is the same, the flood link is different. If a certain link is
under Priority Shared VLAN mode, will insert related VLAN tag to received data frame. The same as
Shared VLAN mode, OLT can learn L2 SA source address, to ensure the forwarding of downstream’s
data frame.
Downstream, it is more complicated for OLT to forward data frame. VID is used to select UNI port
subclass of ONU, priority field (ToS or CoS) is used to select a smaller link subclass (VLAN domain) from
UNI port subclass, L2 DA is used to select related link from VLAN domain. If the L2 DA of the frame is not
learnt, OLT will broadcast the data frame to VLAN domain.
The administrator must ensure that no two links with the same destination ONU UNI port are
configured in the same Priority Shared VLAN.
Groups of LLIDs with the same VID can not be provisioned with matching or overlapping priority
ranges. Downstream forwarding decisions are based on VID and ToS (or CoS). Therefore,
provisioning groups of LLIDs with the same configurations will create forwarding problems.
Furthermore, all values within the downstream (ToS or CoS) range should be provisioned.
If IPv4 ToS is used as the priority field, one link must be provisioned for forwarding non-IP
frames. This link is usually the lowest priority link
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5.2.10 Transparent Priority Shared VLAN
This mode is the identical to Priority Shared VLAN in terms of provisioning and classification of traffic in
both directions. The difference is that this mode does not strip VLAN tags in the downstream direction. It
uses the VLAN for classification, but does not remove the tag. Downstream frames from the UNI ports
retain their tags.Refer to the figure below. The restrictions that apply to Priority Shared VLAN also apply
to this mode.
5.2.11 Priority Simple Bridged
This mode is used to further classify Simple Bridged traffic, Only unicast traffic is prioritized.
This mode is similar to Simple Bridged mode, but can differentiate services by IPv4 ToS. The user can
name the priority for each link, to refine classification of data. However, this mode doesn’t support frame
with VLAN tag, thus the data classified by CoS is not supported. When the ToS is 0, the IP and Non-IP
packet are grouped together, OLT would execute priority clsssification on downstream only, and the
desination MAC of the packet must be learnt, means the MAC must be in MAC list, The data frame will be
discarded if the priority is out of range.
Priority Shared VLAN mode and Priority Simple Bridge mode should never be provisioned
together on the same ONU.
The option “discard the unknown MAC” will affect the forwarding under this mode.
5.2.12 Dedicated Single VLAN
Upstream, if the data frame is with VLAN tag, it will be replaced by customized VLAN, if the data frame is
without VALN tag, add customized VLAN tag. Downstream, Dedicated Single VLAN will strip the VLAN
tag, but the forwarding under this mode is only based on VID.
5.2.13 Transparent Shared VLAN with Broadcast
Transparent Shared VLAN with Broadcast (TSVB) divides PON into several domains, each domain
supports one or several links under this mode. Upstream and downstream, VLAN tag will not be changed.
Every link under TSVB mode shares one broadcast channel, this channel is as the same as the channel
under Simple Bridged mode.
Upstream, OLT directly forwards the received data frame (whether with VLAN tag or not) unchanged, and
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learns the source address of the data frame.
Downstream, when OLT uplink port receives tagged data frame which belongs to TSVB group, OLT will
forward with tag unchanged. Data frame with unknown destination address will be forwarded to broadcast
channel, each link in TSVB group will forward this frame, and so do other links that forward broadcast,
including Simple Bridged link,Priority Simple Bridged link,etc. If DA of frame is in MAC list, the frame will
be transmitted to related link.
5.2.14 Priority Copy
Priority Copy has three members: Priority Copy Single VLAN, Priority Copy Double VLAN and Priority
Copy Shared VLAN.
1、Priority Copy
Priority Copy permits the network operator to set the priority field of VLAN tag on the network side (COS),
these priorities is input on the basis user frame, VID and COS can be allocated. With Priority Copy
function, the network adnimistrator selects either one or two priority fields as the priority source from the
UNI input frames. These fields are known as "Priority A" and "Priority B". Both fields are programmable.
For example, the Class of Service (CoS) field in the VLAN tag can be provisioned for Priority B, and the IP
Precedence or Type of Service (ToS) field in the IP header can be provisioned for Priority A.
Upstream, data frame’s priority field (COS or TOS) is called input priority value, and by TOS/COS
mapping list, output priority value can be determined on the basis of the input priority value, output priority
value will be included in network side VLAN tag added be OLT. When input priority value and output
priority value match, input priority value is a “priority copy” of output priority value. Certainly, output priority
value can be set to many different values, means the mapping between input priority and output priority
can be random.
When the COS and TOS are used, upstream, the priority field of data frame is called input priority, and the
output priority can be determined by TOS/COS mapping list on the biasis of input priority, output priority
will be included in network side VLAN tag added by OLT.
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If Translated VLAN mode is configured for any LLID in the PON, Priority Copy option cannot be used.
The first condition of configuring one mode in Priority Copy group is enableing Priority Copy.
The config interface is shown as Figure 5-8.
Figure 5-8 Priority Copy Priority Mapping
Designate the weight Mode A and Mode B in mapping list, see Table 5-1
Table 5-1 Priority Copy Weight
Option Description
Mode A Only Only Mode A can determine output priority
Mode B Only Only Mode B can determine output priority
Mode A over B Both A and B can, A dominates
Mode B over A Both A and B can, B dominates
When the two domains are without set value, default value is enabled. For example, if TOS has
designated to input priority, the received data frame is not IP frame, the default value is output priority;
similarly, if COS is input priority, the received data frame has no VLAN tag, the default value is output
priority. Priority Copy can be used to reverse priority stragety. For example, in a certain program, lower
numerical value stands for higer priority traffic, Priority Copy can reverse it, let higher numerical value
stands for lower priority traffic.
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2、Priority Copy Single VLAN
Priority Copy Single VLAN is as the same as Dedicated Single VLAN on forwarding, except the new
adding Priority Copy function.
3、Priority Copy Double VLAN
Priority Copy Double VLAN is as the same as Dedicated Double VLAN on forwarding, unless the new
adding Priority Copy function.
4、Priority Copy Shared VLAN
Priority Copy Shared VLAN is as the same asShared VLAN on forwarding, unless the new adding Priority
Copy function.
5.3 Bridge Mode Option
The forwarding of Bridge Mode maybe affected by the option in “Bridge Mode advanced”.
5.3.1 Discard Frame with Unknown MAC
After enabling the option, OLT will discard downstream data frame with unknown (not learnt) MAC. When
the MAC of data frame is unknown, and multicast in destination address is set, OLT will forward the data
frame to multicast link. The default setting is disabled, OLT will forward frame with unknown MAC to
broadcast or multicast link on the basis of config mode. OLT will learn and save destination MAC from
upstream data frame, in order to realize quick message forwarding both in upstream and downstream.
The range of muilticast MAC is as follows:0x01 00 5E 00 00 00 ---- 0x01 00 5E FF FF FF
5.3.2 Simple BridgedForward Data Frame with unknown VID to Simple Bridged
Commanly, when VID of data frame is unset, which means VID is unknown to OTL, OLT will discard these
frames. After enabling this option, downstream, OLT will forward frame with unknown VLAN tag to the link
under Simple Bridged mode, not discard, the default setting of OLT is discard. Unknowm VLAN tag
means undefined VID.
Under Simple Bridged mode, whether this option is enable or disable, OLT will not discard upstream
tagged data frame.
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Chapter 6 Config Examples
6.1 Network Requirement
A certain server has 4 services, describes as VID 1, VID 2, VID 3, VID 4, now the needed service for each
ONU is shown as Table 6-1, the service will reach to user group in different location by HIOSO 1 port or 2
ports ONU, to ensure the regular communication without jam, now use HIOSO EPON system to achieve
this function.
6.2 Network Connection
Figure 6-1 Config Case
6.3 Config Step
Connect each equipment in order: Host->Switch vlan port->Switch trunk port->OLT uplink
port->ONU->user
Config link for each ONU
Config downstream filter rules for link shown as Table 6-2
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Figure 6-2 Downstream Filter Rules
Config upstream filter rules for link, shown as Table 6-3.
Figure 6-3 Upstream Filter Rules
After clicking <Apply>, set the ONU Bridged Mode to shared Vlan, in chasis interface, select
the OLT, click window/OLT or click OLT item in config zone to enter OLT config interface, select
[Bridged Mode] to enter Bridged Mode interface.
Selecet MAC of ONU 4 in [Select], and select ShareVLAN in [Select], shown as Talbe 6-4.
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Figure 6-4 Shared VLAN Config Interface
After selecting Shared VLAN, see the interface shown as Table 6-5, select [set], the CoS and VID item will turn to white, input VID number under VID and click <Apply>, then the selected link address will be shown in VLAN tag zone on the right.
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Figure 6-5 Successfully Config Shared VLAN
Then config ONU1, ONU2, ONU3 to Transparent VLAN mode, select MAC of ONU1 in [select],
then select Transparent VLAN in [select], shown as Talbe 6-6.
Table 6-6 Select Transparent VLAN
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After selecting Transparent VLAN, see the interface shown as 6-7, add VID 1 and 4 under
Transparent VLAN, click <Add><Apply>, after applying, the VID of ONU will be shown under
Transparent VLAN in VLAN tag zone of current link, shown as Table 6-7, the VID of ONU1 are 1
and 4. Config ONU2 and ONU3 the same way.
Figure 6-7 Config VID to 1 and 4 under Transparent VLAN
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