def elaborate(self, platform):
m = Module()
- #m.submodules.add0_in_a = self.i.a
- #m.submodules.add0_in_b = self.i.b
- #m.submodules.add0_out_z = self.o.z
+ comb = m.d.comb
# store intermediate tests (and zero-extended mantissas)
seq = Signal(reset_less=True)
mge = Signal(reset_less=True)
am0 = Signal(len(self.i.a.m)+1, reset_less=True)
bm0 = Signal(len(self.i.b.m)+1, reset_less=True)
- m.d.comb += [seq.eq(self.i.a.s == self.i.b.s),
+ comb += [seq.eq(self.i.a.s == self.i.b.s),
mge.eq(self.i.a.m >= self.i.b.m),
am0.eq(Cat(self.i.a.m, 0)),
bm0.eq(Cat(self.i.b.m, 0))
]
# same-sign (both negative or both positive) add mantissas
with m.If(~self.i.out_do_z):
- m.d.comb += self.o.z.e.eq(self.i.a.e)
+ comb += self.o.z.e.eq(self.i.a.e)
with m.If(seq):
- m.d.comb += [
+ comb += [
self.o.tot.eq(am0 + bm0),
self.o.z.s.eq(self.i.a.s)
]
# a mantissa greater than b, use a
with m.Elif(mge):
- m.d.comb += [
+ comb += [
self.o.tot.eq(am0 - bm0),
self.o.z.s.eq(self.i.a.s)
]
# b mantissa greater than a, use b
with m.Else():
- m.d.comb += [
+ comb += [
self.o.tot.eq(bm0 - am0),
self.o.z.s.eq(self.i.b.s)
]
- m.d.comb += self.o.oz.eq(self.i.oz)
- m.d.comb += self.o.out_do_z.eq(self.i.out_do_z)
- m.d.comb += self.o.ctx.eq(self.i.ctx)
+ # pass-through context
+ comb += self.o.oz.eq(self.i.oz)
+ comb += self.o.out_do_z.eq(self.i.out_do_z)
+ comb += self.o.ctx.eq(self.i.ctx)
return m