參數(shù)資料
型號: AM79C983AKC
廠商: ADVANCED MICRO DEVICES INC
元件分類: 網(wǎng)絡(luò)接口
英文描述: Integrated Multiport Repeater 2 (IMR2⑩)
中文描述: DATACOM, ETHERNET TRANSCEIVER, PQFP132
封裝: PLASTIC, QFP-132
文件頁數(shù): 18/60頁
文件大?。?/td> 348K
代理商: AM79C983AKC
18
Am79C983A
P R E L I M I N A R Y
a. Standard reconnection algorithm—A data packet
longer than 512-bit times (nominal) is transmitted or re-
ceived by the partitioned port without a collision.
b. Alternate reconnection algorithm—A data packet
longer than 512-bit times (nominal) is transmitted by
the partitioned port without a collision.
Basic Management Functions
Repeater Management
The IMR2 management functions are a super-set of
the those provided by the AMD’s IMR+/HIMIB device
chipset. The IMR2 device contains the complete set of
repeater and port functions as defined in ANSI/IEEE
802.3, Repeater Management Standard (Section 19).
All mandatory and optional capabilities are supported.
These include the Basic Control, Performance Monitor-
ing, and Address Tracking packages. Additionally,
Node Address Mapping, MAU Management specific
functions, and intrusion protection functions are in-
cluded. Support is also provided for the RMON MIB
RFC 1757.
All information is stored in registers which can be ac-
cessed through the Microprocessor Interface (Node
Processor Port). The register location is defined by a
register bank and an address within that register bank.
Address and data of the registers are multiplexed using
the C/D pin. The register address is selected by writing
to the Node Processor Port with C/D HIGH. The regis-
ter data is selected by writing or reading to the Node
Processor Port with C/D LOW.
Many of the registers are larger than 1 byte. For these
registers, consecutive accesses to register data (equal
to the number of bytes in the register) are required. The
order is LSByte to MSByte. For a write operation, if the
address changes before all the bytes are written, the
register is not changed to the new value.
The Status Register is accessed by reading the Node
Processor Port with the C/D pin HIGH. This reduces
the number of operations necessary to access the
Status Register.
All bit fields are ordered such that the left most bit is the
most significant bit. Unused register banks, ports and
register numbers are reserved and should not be ac-
cessed as this may cause device malfunction. When
specifying the register bank or port number, the follow-
ing format is used:
P4:0 represent the Register Bank or Port Number, or-
ganized as follows:
P = P
4
P
3
P
2
P
1
P
0
P
0
1
2
3
4
5
7
16- 30
Port/Register Bank
Repeater Registers
Interrupt Registers
Interrupt Control Registers
Port Control Registers
Port Status Registers
RMON Registers
Packet Report Registers
Port Attributes
The register to be accessed for reading or writing is
specified by writing the following control byte to the
C register:
R = R
4
R
3
R
2
R
1
R
0
Figure 1 shows the Management Register Map, and
Table 1 shows register banks and register assignments
within the register banks.
RMON
Remote monitoring (RMON) functions are designed to
give the management system the capability to remotely
monitor the hub for diagnostic purposes. The rules for
RMON are described in the RMON MIB (as of this
writing IETF RFC1578).
The IMR2 device provides direct support for both the
statistics and history object groups. Indirect support is
provided for the alarm, host, hostTopN, event, and ma-
trix groups. Direct support is provided via the RMON
register set and relevant attribute registers. Indirect
support is provided through the Packet Report Port.
Packet Reports
The IMR2 device generates status information on
every packet that it repeats. The data is transmitted
over the Packet Report Port. The data format consists
of the beginning of the packet followed by a packet tag
and statistical data on the packet.
0
0
0
P4
P3
P2
P1
P0
LSB
C Port Write
MSB
1
1
1
R4
R3
R2
R1
R0
C Port Write
MSB
LSB
Preamble DA SA T/L Packet Data Port No., New
Var. Length Tag & FCS
Status
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