Video and Vision Processing Suite Intel® FPGA IP User Guide

ID 683329
Date 12/31/2023
Public

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Document Table of Contents
1. About the Video and Vision Processing Suite 2. Getting Started with the Video and Vision Processing IPs 3. Video and Vision Processing IPs Functional Description 4. Video and Vision Processing IP Interfaces 5. Video and Vision Processing IP Registers 6. Video and Vision Processing IPs Software Programming Model 7. Protocol Converter Intel® FPGA IP 8. 1D LUT Intel® FPGA IP 9. 3D LUT Intel® FPGA IP 10. AXI-Stream Broadcaster Intel® FPGA IP 11. Bits per Color Sample Adapter Intel FPGA IP 12. Black Level Correction Intel® FPGA IP 13. Black Level Statistics Intel® FPGA IP 14. Chroma Key Intel® FPGA IP 15. Chroma Resampler Intel® FPGA IP 16. Clipper Intel® FPGA IP 17. Clocked Video Input Intel® FPGA IP 18. Clocked Video to Full-Raster Converter Intel® FPGA IP 19. Clocked Video Output Intel® FPGA IP 20. Color Space Converter Intel® FPGA IP 21. Defective Pixel Correction Intel® FPGA IP 22. Deinterlacer Intel® FPGA IP 23. Demosaic Intel® FPGA IP 24. FIR Filter Intel® FPGA IP 25. Frame Cleaner Intel® FPGA IP 26. Full-Raster to Clocked Video Converter Intel® FPGA IP 27. Full-Raster to Streaming Converter Intel® FPGA IP 28. Genlock Controller Intel® FPGA IP 29. Generic Crosspoint Intel® FPGA IP 30. Genlock Signal Router Intel® FPGA IP 31. Guard Bands Intel® FPGA IP 32. Histogram Statistics Intel® FPGA IP 33. Interlacer Intel® FPGA IP 34. Mixer Intel® FPGA IP 35. Pixels in Parallel Converter Intel® FPGA IP 36. Scaler Intel® FPGA IP 37. Stream Cleaner Intel® FPGA IP 38. Switch Intel® FPGA IP 39. Tone Mapping Operator Intel® FPGA IP 40. Test Pattern Generator Intel® FPGA IP 41. Unsharp Mask Intel® FPGA IP 42. Video and Vision Monitor Intel FPGA IP 43. Video Frame Buffer Intel® FPGA IP 44. Video Frame Reader Intel FPGA IP 45. Video Frame Writer Intel FPGA IP 46. Video Streaming FIFO Intel® FPGA IP 47. Video Timing Generator Intel® FPGA IP 48. Vignette Correction Intel® FPGA IP 49. Warp Intel® FPGA IP 50. White Balance Correction Intel® FPGA IP 51. White Balance Statistics Intel® FPGA IP 52. Design Security 53. Document Revision History for Video and Vision Processing Suite User Guide

33.3.1. Interlacer IP Interfaces

Table 523.  Interlacer IP Interfaces
Name Direction Width Description
Clocks and resets
main_clock_clk Input 1 AXI4-S processing clock.
main_reset_rst Input 1 AXI4-S processing reset.
agent_clock_clk Input 1 Clock for the Avalon memory-mapped control agent interface. Only if you turn on Separate clock for control interface .
agent_reset_rst Input 1 Reset for the Avalon memory-mapped control agent interface. Only if you turn on Separate clock for control interface .
Control interfaces
av_mm_control_agent_address Input 7 Avalon memory-mapped agent address
av_mm_control_agent_write Input 1 Avalon memory-mapped agent write
av_mm_control_agent_writedata Input 32 Avalon memory-mapped agent write data
av_mm_control_agent_byteenable Input 4 Avalon memory-mapped agent byte enable
av_mm_control_agent_read Input 1 Avalon memory-mapped agent read
av_mm_control_agent_readdata Output 32 Avalon memory-mapped agent read data
av_mm_control_agent_readdatavalid Output 1 Avalon memory-mapped agent read
av_mm_control_agent_waitrequest Output 1 Avalon memory-mapped agent wait request

Intel FPGA streaming video interfaces

axi4s_vid_in_tdata Input 92 AXI4-S data in
axi4s_vid_in_tvalid Input 1 AXI4-S data valid
axi4s_vid_in_tuser Input 93

AXI4-S tuser

  • tuser[0]indicates start of video frame when asserted
  • tuser[1] indicates the start of a nonvideo packet when asserted
axi4s_vid_in_tlast Output 1 AXI4-S end of packet
axi4s_vid_in_tready Output 1 AXI4-S data ready
axi4s_vid_out_tdata Output 92 AXI4-S data in
axi4s_vid_out_tvalid Output 1 AXI4-S data valid
axi4s_vid_out_tuser Output 93

AXI4-S tuser

  • tuser[0]indicates start of video frame when asserted
  • tuser[1] indicates the start of a nonvideo packet when asserted
axi4s_vid_out_tlast Output 1 AXI4-S end of packet
axi4s_vid_out_tready Input 1 AXI4-S data ready
92

The equation shows the sizes of all tdata widths in these interfaces:

max (ceil((bits per color sample x number of color planes) / 8) x pixels in parallel x 8, 16)

93

The equation shows the sizes of all tuser widths in these interfaces:

N = ceil (tdata width / 8)