參數(shù)資料
型號(hào): AM79C970AKCW
廠商: ADVANCED MICRO DEVICES INC
元件分類: 微控制器/微處理器
英文描述: PCnet-PCI II Single-Chip Full-Duplex Ethernet Controller for PCI Local Bus Product
中文描述: 2 CHANNEL(S), 10M bps, LOCAL AREA NETWORK CONTROLLER, PQFP132
封裝: PLASTIC, QFP-132
文件頁數(shù): 209/219頁
文件大?。?/td> 1065K
代理商: AM79C970AKCW
第1頁第2頁第3頁第4頁第5頁第6頁第7頁第8頁第9頁第10頁第11頁第12頁第13頁第14頁第15頁第16頁第17頁第18頁第19頁第20頁第21頁第22頁第23頁第24頁第25頁第26頁第27頁第28頁第29頁第30頁第31頁第32頁第33頁第34頁第35頁第36頁第37頁第38頁第39頁第40頁第41頁第42頁第43頁第44頁第45頁第46頁第47頁第48頁第49頁第50頁第51頁第52頁第53頁第54頁第55頁第56頁第57頁第58頁第59頁第60頁第61頁第62頁第63頁第64頁第65頁第66頁第67頁第68頁第69頁第70頁第71頁第72頁第73頁第74頁第75頁第76頁第77頁第78頁第79頁第80頁第81頁第82頁第83頁第84頁第85頁第86頁第87頁第88頁第89頁第90頁第91頁第92頁第93頁第94頁第95頁第96頁第97頁第98頁第99頁第100頁第101頁第102頁第103頁第104頁第105頁第106頁第107頁第108頁第109頁第110頁第111頁第112頁第113頁第114頁第115頁第116頁第117頁第118頁第119頁第120頁第121頁第122頁第123頁第124頁第125頁第126頁第127頁第128頁第129頁第130頁第131頁第132頁第133頁第134頁第135頁第136頁第137頁第138頁第139頁第140頁第141頁第142頁第143頁第144頁第145頁第146頁第147頁第148頁第149頁第150頁第151頁第152頁第153頁第154頁第155頁第156頁第157頁第158頁第159頁第160頁第161頁第162頁第163頁第164頁第165頁第166頁第167頁第168頁第169頁第170頁第171頁第172頁第173頁第174頁第175頁第176頁第177頁第178頁第179頁第180頁第181頁第182頁第183頁第184頁第185頁第186頁第187頁第188頁第189頁第190頁第191頁第192頁第193頁第194頁第195頁第196頁第197頁第198頁第199頁第200頁第201頁第202頁第203頁第204頁第205頁第206頁第207頁第208頁當(dāng)前第209頁第210頁第211頁第212頁第213頁第214頁第215頁第216頁第217頁第218頁第219頁
AMD
D-5
Am79C970A
application call latency, minus the time needed for the
driver to write to the third descriptor, minus the time
needed for the driver to copy data from buffer #1 to the
application buffer space, and minus the time needed for
the driver to copy data from buffer #2 to the application
buffer space. Note that the time needed for the copies
performed by the driver depends upon the sizes of the
2nd and 3rd buffers, and that the sizes of the second and
third buffers need to be set according to the time needed
for the data copy operations! This means that an
iterative self-adjusting mechanism needs to be placed
into the software to determine the correct buffer sizing
for optimal operation. Fixed values for buffer sizes may
be used; in such a case, the LAPP method will still pro-
vide a significant performance increase, but the per-
formance increase will not be maximized.
The following diagram illustrates this setup for a receive
ring size of 9:
19436A-58
A = Expected message size in bytes
S1 = Interrupt latency
S2 = Application call latency
S3 = Time needed for driver to write
to third descriptor
S4 = Time needed for driver to copy
data from buffer #1 to
application buffer space
S6 = Time needed for driver to copy
data from buffer #2 to
application buffer space
Note that the times needed for tasks S1,
S2, S3, S4, and S6 should be divided by
0.8 microseconds to yield an equivalent
number of network byte times before
subtracting these quantities from the
expected message size A.
OWN = 1 STP = 1
SIZE = A-(S1+S2+S3+S4+S6)
Descriptor
#1
OWN = 1 STP = 0
SIZE = S1+S2+S3+S4
Descriptor
#2
OWN = 0 STP = 0
SIZE = S6
Descriptor
#3
OWN = 1 STP = 1
SIZE = A-(S1+S2+S3+S4+S6)
Descriptor
#4
OWN = 1
SIZE = S1+S2+S3+S4
Descriptor
#5
STP = 0
Descriptor
#6
OWN = 0 STP = 0
SIZE = S6
OWN = 1 STP = 1
SIZE = A-(S1+S2+S3+S4+S6)
Descriptor
#7
OWN = 1
SIZE = S1+S2+S3+S4
Descriptor
#8
STP = 0
Descriptor
#9
OWN = 0 STP = 0
SIZE = S6
Figure D2
.
LAPP 3 Buffer Grouping
LAPP Rules for Parsing of Descriptors
When using the LAPP method, software must use a
modified form of descriptor parsingas follows:
Software will examine OWN and STP to determine
where a RCV frame begins. RCV frames will only
begin in buffers that have OWN = 0 and STP = 1.
Software shall assume that a frame continues until
it finds either ENP = 1 or ERR= 1.
Software must discard all descriptors with
OWN = 0 and STP = 0 and move to the next
descriptor when searching for the beginning of a
new frame; ENP and ERR should be ignored by
software during this search.
Software cannot change an STP value in the re-
ceive descriptor ring after the initial setup of the
ring is complete, even if software has ownership of
the STP descriptor unless the previous STP de-
scriptor in the ring is also OWNED by the software.
When LAPPEN = 1, then hardware will use a modified
form of descriptor parsingas follows:
The controller will examine OWN and STP to de-
termine where to begin placing a RCV frame. A
new RCV frame will only begin in a buffer that has
OWN= 1 and STP = 1.
The controller will always obey the OWN bit for
determining whether or not it may use the next
buffer for a chain.
The controller will always mark the end of a frame
with either ENP = 1 or ERR= 1.
相關(guān)PDF資料
PDF描述
AM79C970AKC PCnet-PCI II Single-Chip Full-Duplex Ethernet Controller for PCI Local Bus Product
AM79C970A PCnet-PCI II Single-Chip Full-Duplex Ethernet Controller for PCI Local Bus Product
AM79C970AVCW PCnet-PCI II Single-Chip Full-Duplex Ethernet Controller for PCI Local Bus Product
AM79C970 PCnetTM-PCI Single-Chip Ethernet Controller for PCI Local Bus
AM79C971VCW PCnet⑩-FAST Single-Chip Full-Duplex 10/100 Mbps Ethernet Controller for PCI Local Bus
相關(guān)代理商/技術(shù)參數(shù)
參數(shù)描述
AM79C970AVC 制造商:Advanced Micro Devices 功能描述:
AM79C970AVC\\W 制造商:Advanced Micro Devices 功能描述: 制造商:Rochester Electronics LLC 功能描述:
AM79C970AVC\W 制造商:Advanced Micro Devices 功能描述: 制造商:Rochester Electronics LLC 功能描述: 制造商:AMD 功能描述:
AM79C970AVC-G 制造商:Rochester Electronics LLC 功能描述:
AM79C970AVCW 制造商:AMD 制造商全稱:Advanced Micro Devices 功能描述:PCnet-PCI II Single-Chip Full-Duplex Ethernet Controller for PCI Local Bus Product