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import argparse
import sys
import numpy as np
from matplotlib import pyplot as plt
def get_output(sat_ctl, x):
mag = x ** 2
quad = mag ** 2
quad = (np.where(mag, mag <= 1, 1) * quad +
np.where(mag, mag > 1, 1) * (2 * mag - 1))
gain = 1 + sat_ctl - mag + quad / 4
return gain * x
def simulate():
x = np.linspace(0, 1, 1000) * np.sqrt(2)
for sat_ctl in np.linspace(0.25, 0.75, 5):
y = get_output(sat_ctl, x)
plt.plot(x, y)
plt.show()
def make_check(show_plots=False):
sat_ctl = 0.75
verilog_out = np.loadtxt('a_compress.dat')
x = verilog_out[:, 0] * np.sqrt(2) / (1 << 17)
y_verilog = verilog_out[:, 1] * np.sqrt(2) / (1 << 17)
y_simulate = get_output(sat_ctl, x)
if show_plots:
plt.plot(x, y_verilog, verilog_out, 'r')
plt.xlabel('input')
plt.ylabel('output')
plt.show()
err = y_simulate - y_verilog
if np.max(np.abs(err)) > 0.0001:
print('FAIL')
sys.exit(1)
else:
print('PASS')
if __name__ == "__main__":
parser = argparse.ArgumentParser(description='Test a_compress')
parser.add_argument('-c', '--check', action='store_true', default=True,
help='Purely run the check')
parser.add_argument('-s', '--simulate', action='store_true',
help='Run the simulation and then check and show plots')
args = parser.parse_args()
if args.simulate:
simulate()
make_check(show_plots=True)
else:
make_check()