GTS Ethernet Intel® FPGA Hard IP User Guide: Agilex™ 3 FPGAs and SoCs
ID
848477
Date
4/07/2025
Public
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1. Overview
2. Install and License the GTS Ethernet Intel® FPGA Hard IP
3. Configure and Generate Ethernet Hard IP variant
4. Integrate GTS Ethernet Intel® FPGA Hard IP into Your Application
5. Simulate and Compile (MAC+PCS) Design Example
6. Simulate and Compile (MII PCS Only/PCS66 OTN/PCS66 FlexE) Design Example
7. Simulate and Compile SyncE Design Example
8. Simulate and Compile PTP1588 Design Example
9. Troubleshoot and Diagnose Issues
10. Appendix A: Functional Description
11. Appendix B: Configuration Registers
12. Appendix C: Document Revision History for the GTS Ethernet Intel® FPGA Hard IP User Guide: Agilex 3 FPGAs and SoCs
4.1. Implement Required Clocking
4.2. Implement Required Resets
4.3. Connect the Status Interface
4.4. Connect the MAC Avalon Streaming Client Interface
4.5. Connect the MII PCS Only Client Interface
4.6. Connect the PCS66 Client Interface – FlexE and OTN
4.7. Connect the Precision Time Protocol Interface
4.8. Connect the Ethernet Hard IP Reconfiguration Interface
4.4.1.1. Drive the Ethernet Packet to the TX MAC Avalon Streaming Client Interface with Disabled Preamble Passthrough
4.4.1.2. Drive the Ethernet Packet on the TX MAC Avalon Streaming Client Interface with Enabled Preamble Passthrough
4.4.1.3. Use i_tx_skip_crc to Control Source Address, PAD, and CRC Insertion
4.4.1.4. Assert the i_tx_error to Invalidate a Packet
4.4.2.1. Receive Ethernet Frame on the RX MAC Avalon Streaming Client Interface with Preamble Passthrough Disabled
4.4.2.2. Receive Ethernet Frame with Preamble Passthrough Enabled
4.4.2.3. Receive Ethernet Frame with Remove CRC bytes Disabled
4.4.2.4. Monitor Status and Errors on the RX MAC Avalon Streaming Client Interface
10.3.3. FlexE Mode
The GTS Ethernet Intel® FPGA Hard IP supports all flexible Ethernet mode variants with optional RSFEC feature. This mode bypassed the Ethernet MAC and uses PCS66 interface to read and write to the PMA block.
The TX FlexE datapath consists of:
- TX PCS scrambler—enables the data to be scrambled. Channels does not lock correctly if the data is not scrambled.
- Alignment insertion—the TX PCS interface inserts alignment markers.
- Striper—enables logically sequential data to be segmented to increase data throughput.
The RX FlexE datapath consists of:
- Aligner—enables the alignment of incoming data.
- RX PCS descrambler—enables the incoming scrambled data to be descramble.