pex-8512 PLX, pex-8512 Datasheet - Page 3

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pex-8512

Manufacturer Part Number
pex-8512
Description
12 Lane, 5 Port Pci Express Switch, 23 X 23mm Pbga
Manufacturer
PLX
Datasheet
into a backplane or motherboard. Figure 3 shows the
PEX 8512 in this application.
The adapter card in Figure 3 can be transparent, in which
case the PCI Express I/O devices are just standard I/O
endpoints such as Ethernet or Fibre Channel. Or the PEX 8512
can provide a non-transparent port to the system (via the
card’s edge connector). In this case, one of the PCI Express
devices can be a CPU or other “intelligent” device with on-
chip processing capability – thus needing address domain
isolation from the rest of the system. This approach is
commonly used in RAID controllers.
Intelligent Adapter Card
The PEX 8512 supports the non-transparency feature.
Figure 4 illustrates a host system using an intelligent adapter
card.
In this figure, the CPU on the adapter card is isolated from the
host CPU. The PEX 8512 non-transparent port allows the two
CPUs to be isolated but communicate with each other through
various registers that are designed in the PEX 8512 for that
purpose. The host CPU can dynamically re-assign both the
upstream port and the non-transparent port of PEX 8512
allowing the system to be reconfigured.
Dual Host/Fabric Model
The ExpressLane PEX 8512 supports applications requiring
dual host, host failover, and load-sharing applications
through the non-transparency feature. Figure 5 illustrates a
dual host system with dual switch fabric in dual-star
configuration.
Quad GE
Quad GE
Quad GE
Quad GE
Figure 3. Aggregation Adapter Card
Figure 4. Intelligent Adapter Usage
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
Intelligent I/O Adaptor
Intelligent I/O Adaptor
x2
x2
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
x2
x2
PEX 8512
PEX 8512
x2
PEX 8512
PEX 8512
x2
x4
x4
x4
x4
x4
x4
CPU
CPU
CPU
CPU
x4
x4
NT
PEX 8533
PEX 8533
x2
x2
x2
Non-Transparent
PEX 8512
PEX 8512
PEX 8512
PEX 8512
Blade
Blade
Blade
Blade
Blade
Blade
Primary
Primary
Primary
Primary
CPU
CPU
CPU
CPU
CPU
CPU
Host
Host
Host
Host
Port
x4
x4
x4
The redundancy of the host and the fabric can be achieved
through many possible configurations using NTB function of
PEX 8512. In the configuration shown below the host 1
controls the switch 1 and associated I/Os and the host 2
controls the switch 2 and associated I/Os. The hosts and
switches are isolated using NTB functionality of PEX 8512 on
the host boards. If one of the hosts fails the surviving host can
remove the failing host from the configuration while
controlling both the switches and all I/Os. Similarly, if one of
the switches fails the host associated with that switch can send
control messages to its I/Os through the surviving switch using
NTB function.
Expansion Application
The PEX 8512 can also be utilized to expand the number of
PCI Express devices in a given system. Figure 6 shows how
the PEX 8512 can be used to double the number of ports
available from the Root Complex. Each port in the PEX 8512
is configured with a x4 link width. The Peer-to-peer
communication feature of the PEX 8512 allows the PCI
Express I/O devices to communicate with each other without
any centralized control.
Dual GE
x2
x2
x2
Figure 5. Dual Host/Fabric Mode
Figure 6. Expansion Application
Dual GE
x2
x2
x2
PEX 8512
PEX 8512
PEX 8512
PEX 8512
Dual GE
x4
x4
x4
x2
x2
x2
Complex
Complex
Root
Root
Dual GE
CPU
CPU
x2
x2
x2
PCI Express
PCI Express
PCI Express
x4
x4
x4
PEX 8512
PEX 8512
PEX 8512
PEX 8512
Slot
Slot
Slot
x4
x4
x4
FC
x4
x4
x4

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