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AM79C978VC/W データシート(PDF) 246 Page - Advanced Micro Devices

部品番号 AM79C978VC/W
部品情報  Single-Chip 1/10 Mbps PCI Home Networking Controller
PDF  261 Pages
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メーカー  AMD [Advanced Micro Devices]
ホームページ  http://www.amd.com
Logo AMD - Advanced Micro Devices

AM79C978VC/W データシート(HTML) 246 Page - Advanced Micro Devices

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B-6
Am79C978
descriptor, unless the previous STP descriptor in the
ring is also OWNED by the software.
When LAPPEN = 1, then hardware will use a modified
form of descriptor parsing as follows:
n The controller will examine OWN and STP to deter-
mine where to begin placing an RCV frame. A new
RCV frame will only begin in a buffer that has
OWN = 1 and STP =1.
n The controller will always obey the OWN bit for de-
termining whether or not it may use the next buffer
for a chain.
n The controller will always mark the end of a frame
with either ENP = 1 or ERR = 1.
The controller will discard all descriptors with OWN = 1
and STP = 0 and move to the next descriptor when
searching for a place to begin a new frame. It discards
these descriptors by simply changing the ownership bit
from OWN = 1 to OWN = 0. Such a descriptor is un-
used for receive purposes by the controller, and the
driver must recognize this. (The driver will recognize
this if it follows the software rules.)
The controller will ignore all descriptors with OWN = 0
and STP = 0 and move to the next descriptor when
searching for a place to begin a new frame. In other
words, the controller is allowed to skip entries in the
ring that it does not own, but only when it is looking for
a place to begin a new frame.
Some Examples of LAPP Descriptor
Interaction
Choose an expected frame size of 1060 bytes. Choose
buffer sizes of 800, 200, and 200 bytes.
n Example 1: Assume that a 1060 byte frame arrives
correctly, and that the timing of the early interrupt
and the software is smooth. The descriptors will
have changed from:
n Example 2: Assume that instead of the expected
1060 byte frame, a 900 byte frame arrives, either
because there was an error in the network, or be-
cause this is the last frame in a file transmission se-
quence.
Note: The controller might write a ZERO to ENP loca-
tion in the third descriptor. Here are the two possibili-
ties:
1. If the controller finishes the data transfers into buffer
number 2 after the driver writes the application
modified buffer pointer into the third descriptor, then
the controller will write a ZERO to ENP for this
buffer and will write a ZERO to OWN and STP.
2. If the controller finishes the data transfers into buffer
number 2 before the driver writes the applications
Descriptor
Number
Before the Frame Arrives
After the Frame Arrives
Comments (After
Frame Arrival)
OWN
STP
ENPa
OWN
STP
ENPb
1
1
1
x
0
1
0
Bytes 1-800
2
1
0
X
0
0
0
Bytes 801-1000
3
0
0
X
0
0
1
Bytes 1001-1060
4
1
1
X
1
1
X
Controller’s current
location
5
1
0
X
1
0
X
Not yet used
6
0
0
X
0
0
X
Not yet used
etc.
1
1
X
1
1
X
Net yet used
a. & b. ENP or ERR.
Descriptor
Number
Before the Frame Arrives
After the Frame Arrives
Comments (After
Frame Arrival)
OWN
STP
ENPa
OWN
STP
ENPb
1
1
1
x
0
1
0
Bytes 1-800
2
1
0
X
0
0
0
Bytes 801-1000
3
0
0
X
0
0
?*
Discarded buffer
4
1
1
X
1
1
X
Controller’s current
location
5
1
0
X
1
0
X
Not yet used
6
0
0
X
0
0
X
Not yet used
etc.
1
1
X
1
1
X
Net yet used
a. & b. ENP or ERR.



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