C H A P T E R 2 Intel Express 100BASE-TX Switching Hub

set-par-file

set-par-file <filename>

Sets the name of the SNMP agent parameter file downloaded by boot PROM (BOOTP). This filename must match the name of the parameter file on the BOOTP server. The format of the parameter file is:

<switch_hardware_address> : <read_comm> : <write_comm>

Example:

00-A0-C9-00-01-23 : public : private

set-fg-param

set-fg-param <dest> <source> <fill_byte> <length>

Sets the frame generator parameters. The dest and source are dash- separated hardware addresses in hex. The fill_byte is a single byte used to fill the entire packet except for the first 12 bytes. The length is the total length of the packet excluding CRC.

start-fg

start-fg<dport-bitmask> <count> <rate>

Starts frame generation. dport-bitmaskis a hex bitmask of which ports to generate traffic on. For example, a dport-bitmaskof 3E sends frames to ports 2, 3, 4, 5, 6. Use the source port list on page 68 for hexadecimal bitmask equivalents. The count specifies the number of frames to send on each port. A count of 0 sends packets until you type the stop-fgcommand. The rate specifies the number of packets per second to generate.

stop-fg

Stops the frame generator.

IP commands

This section lists the IP commands available from the command line interface. In the sections that follow, IP Configuration lists general configuration commands, Ping lists commands that describe the ping ability of the agent, and Address Resolution Protocol lists ARP commands.

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Intel 654655-001 manual IP commands, Set-par-file, Set-fg-param, Start-fg, Stop-fg

654655-001 specifications

The Intel 654655-001 is a high-performance embedded computing platform designed to support a variety of industrial and commercial applications. As part of Intel's robust family of processors, it integrates a combination of innovative technologies that enhance both processing capabilities and energy efficiency.

One of the standout features of the Intel 654655-001 is its multi-core processor architecture. This allows for efficient multitasking and improved performance in demanding applications. The multi-core design is particularly beneficial for real-time data processing, which is crucial in sectors like manufacturing, telecommunications, and automotive systems.

The processor supports advanced power management technologies, ensuring optimal energy efficiency while maintaining robust performance levels. This is particularly important for embedded systems, where power consumption directly affects operational costs and sustainability. Intel's Intelligent Power Management technology allows the system to adaptively adjust power usage based on workload demands, leading to substantial energy savings.

In addition to its powerful processing capabilities and energy efficiency, the Intel 654655-001 also features integrated graphics. This allows for high-quality visual outputs, making it suitable for applications that require graphical interfaces or advanced visualization. The integrated graphics also alleviate the need for dedicated GPUs, streamlining designs and reducing component costs.

Another vital aspect of the Intel 654655-001 is its support for a wide array of connectivity options. The platform is designed to facilitate seamless communication with various peripherals and networks, making it highly versatile for different applications. Support for industrial standards like PCIe and USB ensures compatibility with numerous devices, enhancing its integration into existing systems.

Furthermore, the Intel 654655-001 benefits from a robust security framework, essential for protecting sensitive data and maintaining operational integrity. Features like Intel Trusted Execution Technology help secure the platform against potential threats, making it an ideal choice for industries that handle confidential information.

Overall, the Intel 654655-001 combines powerful processing capabilities, energy efficiency, integrated graphics, versatile connectivity, and robust security features, making it an ideal solution for modern embedded computing needs across various sectors. Its adaptability and reliability position it as a preferred choice among engineers and developers seeking high-performance embedded systems.