#!/usr/bin/python from sys import stderr # These numbers are pasted from the first line of # ~/llrf/theory/distort/sample.txt s = "( 0.52761,-0.39069) \ (-0.11932,-0.18239) \ ( 0.00026,-0.00025) \ (-0.00086,-0.00053) \ (-0.01125, 0.00270) \ (-0.01016, 0.00338) \ ( 0.00008,-0.00002)" ss = s.replace("(", "").split(")") ss.pop() conveyor = [] for cs in ss: cf = [float(q.strip()) for q in cs.split(",")] x = complex(cf[0], cf[1]) conveyor.append(x) s1 = conveyor[0] s2 = conveyor[1] sH = conveyor[2] sL = conveyor[3] # early debugging if 0: a = s1*s1*2 b = a*s2.conjugate()*2 c = (abs(b)**2)*2 d = (1/c)/4 e = (1./b.conjugate())/8 f = (sL/b)/8 print("sL = %+8.5f%+8.5fj" % (sL.real, sL.imag)) print("s1 = %+8.5f%+8.5fj" % (s1.real, s1.imag)) print("s2 = %+8.5f%+8.5fj" % (s2.real, s2.imag)) print("sH = %+8.5f%+8.5fj" % (sH.real, sH.imag)) print("a = %+8.5f%+8.5fj" % (a.real, a.imag)) print("b = %+8.5f%+8.5fj" % (b.real, b.imag)) print("c = %+8.5f" % c) print("d = %+8.5f" % d) print("e = %+8.5f%+8.5fj" % (e.real, e.imag)) print("f = %+8.5f%+8.5fj" % (f.real, f.imag)) # conveyor belt numbers destined for fscanf in user_tb.v and sim1.c fs = 131072.0 def xprint(type, ix, x): xi = int(x*fs+0.5) if xi >= fs or xi < -fs: stderr.write("Overflow in setup: %.4f\n" % x) exit(1) print("%s %d %d" % (type, ix, xi)) # first the conveyor belt for x in [sL, s1, s2, sH]: xprint("s", 0, x.real) xprint("s", 0, x.imag) # then the configuration values written by the host from numpy import pi, sin, cos th = 36.0/47.0*2*pi xprint("h", 0, -cos(th)/sin(th)) # K1 xprint("h", 1, 0.5/sin(th)) # K2 xprint("h", 2, 0.5) # D xprint("h", 3, 0.5) # "two"