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1. About the PHY Lite for Parallel Interfaces IP
2. PHY Lite for Parallel Interfaces FPGA IP for Agilex™ 3 C-Series Devices
3. PHY Lite for Parallel Interfaces FPGA IP for Agilex™ 5 D-Series and E-Series Devices
4. PHY Lite for Parallel Interfaces FPGA IP for Agilex™ 7 M-Series Devices
5. PHY Lite for Parallel Interfaces FPGA IP for Agilex™ 7 F-Series and I-Series Devices
6. PHY Lite for Parallel Interfaces FPGA IP for Stratix® 10 Devices
7. PHY Lite for Parallel Interfaces FPGA IP for Arria® 10 and Cyclone® 10 GX Devices
8. PHY Lite for Parallel Interfaces FPGA IP User Guide Document Archives
9. Document Revision History for the PHY Lite for Parallel Interfaces FPGA IP User Guide
6.5.6.4.1. Timing Closure: Dynamic Reconfiguration
6.5.6.4.2. Timing Closure: Input Strobe Setup and Hold Delay Constraints
6.5.6.4.3. Timing Closure: Output Strobe Setup and Hold Delay Constraints
6.5.6.4.4. Timing Closure: Non Edge-Aligned Input Data
6.5.6.4.5. I/O Timing Violation
6.5.6.4.6. Internal FPGA Path Timing Violation
7.5.6.4.1. Timing Closure: Dynamic Reconfiguration
7.5.6.4.2. Timing Closure: Input Strobe Setup and Hold Delay Constraints
7.5.6.4.3. Timing Closure: Output Strobe Setup and Hold Delay Constraints
7.5.6.4.4. Timing Closure: Non Edge-Aligned Input Data
7.5.6.4.5. I/O Timing Violation
7.5.6.4.6. Internal FPGA Path Timing Violation
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5.2.4.2. Reconfiguration Features and Register Addressing
Each reconfigurable feature of the interface has a set of control registers with an associated memory address to store the reconfigurable settings; however, this address is placement dependent.
The following two sets of control registers store the reconfiguration feature settings:
- Control/status registers (CSR)—You can only read the values of these registers. The values are set through the IP parameters. The CSR registers contain the default setting in the IP.
- Avalon® memory-mapped interface registers—You can read and write to these registers using Avalon® memory-mapped interface. Perform an RTL simulation to show an accurate timing which correlates to the hardware operation.