參數(shù)資料
型號(hào): LPC47M192
廠商: SMSC Corporation
英文描述: LPC SUPER I/O WITH HARDWARE MONITORING BLOCK
中文描述: LPC超級(jí)的I / O座硬件監(jiān)測(cè)
文件頁(yè)數(shù): 38/228頁(yè)
文件大?。?/td> 1269K
代理商: LPC47M192
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MAIN STATUS REGISTER
SMSC DS – LPC47M192
Page 38
Rev. 03/30/05
DATASHEET
Address 3F4 READ ONLY
The Main Status Register is a read-only register and indicates the status of the disk controller. The Main Status
Register can be read at any time. The MSR indicates when the disk controller is ready to receive data via the Data
Register. It should be read before each byte transferring to or from the data register except in DMA mode. No delay
is required when reading the MSR after a data transfer.
7
6
5
4
3
2
1
0
RQM
DIO
NON
DMA
CMD
BUSY
Reserved Reserved
DRV1
BUSY
DRV0
BUSY
BIT 0 – 1 DRV x BUSY
These bits are set to 1s when a drive is in the seek portion of a command, including implied and overlapped seeks
and recalibrates.
BIT 4 COMMAND BUSY
This bit is set to a 1 when a command is in progress. This bit will go active after the command byte has been
accepted and goes inactive at the end of the results phase. If there is no result phase (Seek, Recalibrate
commands), this bit is returned to a 0 after the last command byte.
BIT 5 NON-DMA
Reserved, read ‘0’. This part does not support non-DMA mode.
BIT 6 DIO
Indicates the direction of a data transfer once a RQM is set. A 1 indicates a read and a 0 indicates a write is
required.
BIT 7 RQM
Indicates that the host can transfer data if set to a 1. No access is permitted if set to a 0.
DATA REGISTER (FIFO)
Address 3F5 READ/WRITE
All command parameter information, disk data and result status are transferred between the host processor and the
floppy disk controller through the Data Register.
Data transfers are governed by the RQM and DIO bits in the Main Status Register.
The Data Register defaults to FIFO disabled mode after any form of reset. This maintains PC/AT hardware
compatibility. The default values can be changed through the Configure command (enable full FIFO operation with
threshold control). The advantage of the FIFO is that it allows the system a larger DMA latency without causing a
disk error. Table 11 gives several examples of the delays with a FIFO.
The data is based upon the following formula:
Threshold # x
1
DATA RATE
At the start of a command, the FIFO action is always disabled and command parameters must be sent based upon
the RQM and DIO bit settings. As the command execution phase is entered, the FIFO is cleared of any data to
ensure that invalid data is not transferred.
An overrun or underrun will terminate the current command and the transfer of data. Disk writes will complete the
current sector by generating a 00 pattern and valid CRC. Reads require the host to remove the remaining data so
that the result phase may be entered.
x 8 - 1.5 us = DELAY
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