The EvoApproxLibLITE is the lightweight version of our library of approximate circuits with formally guaranteed error parameters. Hardware as well as software models are provided for each circuit.

Circuit name MAE WCE MRE EP power area Download model
mul8x2u_106 [1] 0.00 % 0.00 % 0.00 % 0.00 % 0.033 109.8 Verilog fileC filePython PYX
mul8x2u_07K [1] 0.024 % 0.098 % 0.59 % 25.00 % 0.032 110.3 Verilog fileC filePython PYX
mul8x2u_0S7 [1] 0.067 % 0.29 % 1.45 % 37.50 % 0.027 100.4 Verilog fileC filePython PYX
mul8x2u_0FS [1] 0.23 % 0.88 % 4.34 % 64.06 % 0.022 83.1 Verilog fileC filePython PYX
mul8x2u_0ZF [1] 0.47 % 2.05 % 8.16 % 70.90 % 0.017 68.0 Verilog fileC filePython PYX
mul8x2u_01H [1] 0.83 % 4.39 % 11.82 % 71.78 % 0.012 47.4 Verilog fileC filePython PYX
mul8x2u_098 [1] 2.00 % 7.91 % 25.39 % 73.83 % 0.0071 31.4 Verilog fileC filePython PYX
mul8x2u_0AJ [1] 4.25 % 18.46 % 45.58 % 74.32 % 0.002 12.7 Verilog fileC filePython PYX
mul8x2u_0SN [1] 7.50 % 25.39 % 60.33 % 74.71 % 0.0006 4.7 Verilog fileC filePython PYX
mul8x2u_0NG [1] 18.68 % 74.71 % 100.00 % 74.71 % 0.000 0.0 Verilog fileC filePython PYX

Reported error parameters: MAE - Mean Absolute Error (Mean Error Magnitude), WCE - Worst-Case Absolute Error (Error Magnitude / Error Significance), MSE - Mean Squared Error, MRE - Mean Relative Error (Mean Relative Error Distance), WCRE - Worst-Case Relative Error, EP - Error Probability (Error Rate)  |  Reported design parameters: power - power consumption in mW, area - area on the chip in um2, dly - delay, all values obtained using Synopsys DC (45 nm PDK, 1 V, 25 ℃)  |  Error parameters marked by were verified using a formal technique analyzing all possible input combinations. There is a formal guarantee that the error is not worse than the shown value. The exact values are included at the beginning of each C file and Verilog file.

COMPARISON

Comparison with the complete EvoApproxLib dataset on various metrics. The first plot shows the performance wrt. the parameters used for pareto filtration. The black dots are the circuits included in this dataset. The blue dots are parameters of the circuits included in the full version of EvoApproxLib. Note that the parameters of the accurate implementation shown in the figure correspond with those exhibiting the lowest power consumption.

REFERENCES
  1. V. Mrazek, L. Sekanina and Z. Vasicek, Libraries of Approximate Circuits: Design and Application in CNN Accelerators