return lambda state: normalize(lhs(state) - rhs(state), shape)
if value.op == "*":
return lambda state: normalize(lhs(state) * rhs(state), shape)
+ if value.op == "//":
+ def floordiv(lhs, rhs):
+ return 0 if rhs == 0 else lhs // rhs
+ return lambda state: normalize(floordiv(lhs(state), rhs(state)), shape)
if value.op == "&":
return lambda state: normalize(lhs(state) & rhs(state), shape)
if value.op == "|":
(2, "+"): "$add",
(2, "-"): "$sub",
(2, "*"): "$mul",
- (2, "/"): "$div",
+ (2, "//"): "$div",
(2, "%"): "$mod",
(2, "**"): "$pow",
(2, "<<"): "$sshl",
return Operator("%", [self, other])
def __rmod__(self, other):
return Operator("%", [other, self])
- def __div__(self, other):
- return Operator("/", [self, other])
- def __rdiv__(self, other):
- return Operator("/", [other, self])
+ def __floordiv__(self, other):
+ return Operator("//", [self, other])
+ def __rfloordiv__(self, other):
+ return Operator("//", [other, self])
def __lshift__(self, other):
return Operator("<<", [self, other])
def __rlshift__(self, other):
return width + 1, signed
if self.op == "*":
return a_width + b_width, a_signed or b_signed
+ if self.op == "//":
+ # division by -1 can overflow
+ return a_width + b_signed, a_signed or b_signed
if self.op == "%":
return a_width, a_signed
if self.op in ("<", "<=", "==", "!=", ">", ">="):
v5 = 10 * Const(0, 4)
self.assertEqual(v5.shape(), (8, False))
+ def test_floordiv(self):
+ v1 = Const(0, (4, False)) // Const(0, (6, False))
+ self.assertEqual(repr(v1), "(// (const 4'd0) (const 6'd0))")
+ self.assertEqual(v1.shape(), (4, False))
+ v2 = Const(0, (4, True)) // Const(0, (6, True))
+ self.assertEqual(v2.shape(), (5, True))
+ v3 = Const(0, (4, True)) // Const(0, (4, False))
+ self.assertEqual(v3.shape(), (4, True))
+ v5 = 10 // Const(0, 4)
+ self.assertEqual(v5.shape(), (4, False))
+
def test_and(self):
v1 = Const(0, (4, False)) & Const(0, (6, False))
self.assertEqual(repr(v1), "(& (const 4'd0) (const 6'd0))")
self.assertStatement(stmt, [C(2, 4), C(2, 4)], C(4, 8))
self.assertStatement(stmt, [C(7, 4), C(7, 4)], C(49, 8))
+ def test_floordiv(self):
+ stmt = lambda y, a, b: y.eq(a // b)
+ self.assertStatement(stmt, [C(2, 4), C(1, 4)], C(2, 8))
+ self.assertStatement(stmt, [C(2, 4), C(2, 4)], C(1, 8))
+ self.assertStatement(stmt, [C(7, 4), C(2, 4)], C(3, 8))
+
def test_and(self):
stmt = lambda y, a, b: y.eq(a & b)
self.assertStatement(stmt, [C(0b1100, 4), C(0b1010, 4)], C(0b1000, 4))