918 lines
14 KiB
Text
918 lines
14 KiB
Text
-- Test cases for reference count insertion.
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[case testReturnLiteral]
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def f() -> int:
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return 1
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[out]
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def f():
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L0:
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return 2
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[case testReturnLocal]
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def f() -> int:
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x = 1
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return x
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[out]
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def f():
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x :: int
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L0:
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x = 2
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return x
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[case testLocalVars]
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def f() -> int:
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x = 1
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y = x
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x = y
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return x
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[out]
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def f():
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x, y :: int
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L0:
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x = 2
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y = x
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x = y
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return x
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[case testLocalVars2]
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def f() -> int:
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x = 1
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y = x
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z = x
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return y + z
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[out]
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def f():
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x, y, z, r0 :: int
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L0:
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x = 2
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inc_ref x :: int
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y = x
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z = x
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r0 = CPyTagged_Add(y, z)
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dec_ref y :: int
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dec_ref z :: int
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return r0
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[case testFreeAtReturn]
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def f() -> int:
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x = 1
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y = 2
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if x == 1:
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return x
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return y
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[out]
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def f():
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x, y :: int
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r0 :: bit
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L0:
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x = 2
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y = 4
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r0 = x == 2
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if r0 goto L3 else goto L4 :: bool
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L1:
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return x
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L2:
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return y
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L3:
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dec_ref y :: int
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goto L1
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L4:
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dec_ref x :: int
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goto L2
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[case testArgumentsInOps]
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def f(a: int, b: int) -> int:
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x = a + 1
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y = x + a
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return y
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[out]
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def f(a, b):
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a, b, r0, x, r1, y :: int
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L0:
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r0 = CPyTagged_Add(a, 2)
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x = r0
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r1 = CPyTagged_Add(x, a)
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dec_ref x :: int
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y = r1
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return y
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[case testArgumentsInAssign]
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def f(a: int) -> int:
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x = a
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y = a
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x = 1
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return x + y
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[out]
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def f(a):
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a, x, y, r0 :: int
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L0:
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inc_ref a :: int
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x = a
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dec_ref x :: int
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inc_ref a :: int
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y = a
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x = 2
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r0 = CPyTagged_Add(x, y)
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dec_ref x :: int
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dec_ref y :: int
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return r0
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[case testAssignToArgument1]
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def f(a: int) -> int:
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a = 1
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y = a
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return y
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[out]
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def f(a):
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a, y :: int
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L0:
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a = 2
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y = a
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return y
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[case testAssignToArgument2]
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def f(a: int) -> int:
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a = 1
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a = 2
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a = 3
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return a
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[out]
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def f(a):
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a :: int
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L0:
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a = 2
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dec_ref a :: int
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a = 4
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dec_ref a :: int
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a = 6
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return a
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[case testAssignToArgument3]
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def f(a: int) -> int:
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x = 1
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a = x
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y = x
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return a
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[out]
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def f(a):
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a, x, y :: int
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L0:
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x = 2
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inc_ref x :: int
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a = x
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y = x
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dec_ref y :: int
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return a
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[case testReturnArgument]
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def f(a: int) -> int:
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return a
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[out]
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def f(a):
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a :: int
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L0:
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inc_ref a :: int
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return a
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[case testConditionalAssignToArgument1]
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def f(a: int) -> int:
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if a == a:
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a = 1
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else:
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x = 2
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y = a + 1
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return y
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[out]
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def f(a):
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a :: int
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r0 :: native_int
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r1, r2, r3 :: bit
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x, r4, y :: int
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L0:
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r0 = a & 1
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r1 = r0 != 0
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if r1 goto L1 else goto L2 :: bool
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L1:
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r2 = CPyTagged_IsEq_(a, a)
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if r2 goto L3 else goto L4 :: bool
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L2:
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r3 = a == a
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if r3 goto L3 else goto L4 :: bool
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L3:
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a = 2
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goto L5
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L4:
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x = 4
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dec_ref x :: int
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goto L6
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L5:
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r4 = CPyTagged_Add(a, 2)
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dec_ref a :: int
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y = r4
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return y
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L6:
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inc_ref a :: int
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goto L5
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[case testConditionalAssignToArgument2]
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def f(a: int) -> int:
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if a == a:
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x = 2
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else:
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a = 1
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y = a + 1
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return y
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[out]
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def f(a):
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a :: int
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r0 :: native_int
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r1, r2, r3 :: bit
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x, r4, y :: int
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L0:
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r0 = a & 1
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r1 = r0 != 0
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if r1 goto L1 else goto L2 :: bool
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L1:
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r2 = CPyTagged_IsEq_(a, a)
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if r2 goto L3 else goto L4 :: bool
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L2:
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r3 = a == a
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if r3 goto L3 else goto L4 :: bool
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L3:
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x = 4
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dec_ref x :: int
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goto L6
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L4:
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a = 2
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L5:
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r4 = CPyTagged_Add(a, 2)
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dec_ref a :: int
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y = r4
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return y
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L6:
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inc_ref a :: int
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goto L5
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[case testConditionalAssignToArgument3]
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def f(a: int) -> int:
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if a == a:
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a = 1
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return a
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[out]
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def f(a):
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a :: int
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r0 :: native_int
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r1, r2, r3 :: bit
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L0:
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r0 = a & 1
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r1 = r0 != 0
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if r1 goto L1 else goto L2 :: bool
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L1:
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r2 = CPyTagged_IsEq_(a, a)
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if r2 goto L3 else goto L5 :: bool
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L2:
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r3 = a == a
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if r3 goto L3 else goto L5 :: bool
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L3:
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a = 2
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L4:
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return a
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L5:
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inc_ref a :: int
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goto L4
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[case testAssignRegisterToItself]
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def f(a: int) -> int:
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a = a
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x = 1
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x = x
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return x + a
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-- This is correct but bad code
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[out]
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def f(a):
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a, x, r0 :: int
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L0:
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inc_ref a :: int
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a = a
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x = 2
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inc_ref x :: int
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dec_ref x :: int
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x = x
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r0 = CPyTagged_Add(x, a)
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dec_ref x :: int
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dec_ref a :: int
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return r0
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[case testIncrement1]
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def f(a: int) -> int:
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a = a + 1
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x = 1
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x = x + 1
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return a + x
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[out]
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def f(a):
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a, r0, x, r1, r2 :: int
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L0:
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r0 = CPyTagged_Add(a, 2)
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a = r0
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x = 2
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r1 = CPyTagged_Add(x, 2)
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dec_ref x :: int
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x = r1
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r2 = CPyTagged_Add(a, x)
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dec_ref a :: int
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dec_ref x :: int
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return r2
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[case testIncrement2]
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def f() -> None:
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x = 1
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x = x + 1
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[out]
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def f():
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x, r0 :: int
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L0:
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x = 2
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r0 = CPyTagged_Add(x, 2)
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dec_ref x :: int
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x = r0
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dec_ref x :: int
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return 1
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[case testAdd1]
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def f() -> None:
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y = 1
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x = y + 1
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[out]
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def f():
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y, r0, x :: int
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L0:
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y = 2
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r0 = CPyTagged_Add(y, 2)
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dec_ref y :: int
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x = r0
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dec_ref x :: int
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return 1
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[case testAdd2]
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def f(a: int) -> int:
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a = a + a
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x = a
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x = x + x
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return x
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[out]
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def f(a):
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a, r0, x, r1 :: int
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L0:
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r0 = CPyTagged_Add(a, a)
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a = r0
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x = a
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r1 = CPyTagged_Add(x, x)
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dec_ref x :: int
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x = r1
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return x
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[case testAdd3]
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def f(a: int) -> int:
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x = a + a
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y = x + x
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return y
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[out]
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def f(a):
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a, r0, x, r1, y :: int
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L0:
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r0 = CPyTagged_Add(a, a)
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x = r0
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r1 = CPyTagged_Add(x, x)
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dec_ref x :: int
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y = r1
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return y
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[case testAdd4]
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def f(a: int) -> None:
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x = a + a
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y = 1
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z = y + y
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[out]
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def f(a):
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a, r0, x, y, r1, z :: int
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L0:
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r0 = CPyTagged_Add(a, a)
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x = r0
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dec_ref x :: int
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y = 2
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r1 = CPyTagged_Add(y, y)
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dec_ref y :: int
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z = r1
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dec_ref z :: int
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return 1
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[case testAdd5]
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def f(a: int) -> None:
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a = a + a
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x = 1
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x = x + x
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[out]
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def f(a):
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a, r0, x, r1 :: int
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L0:
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r0 = CPyTagged_Add(a, a)
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a = r0
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dec_ref a :: int
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x = 2
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r1 = CPyTagged_Add(x, x)
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dec_ref x :: int
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x = r1
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dec_ref x :: int
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return 1
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[case testReturnInMiddleOfFunction]
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def f() -> int:
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x = 1
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y = 2
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z = 3
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if z == z:
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return z
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a = 1
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return x + y - a
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[out]
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def f():
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x, y, z :: int
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r0 :: native_int
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r1, r2, r3 :: bit
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a, r4, r5 :: int
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L0:
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x = 2
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y = 4
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z = 6
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r0 = z & 1
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r1 = r0 != 0
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if r1 goto L1 else goto L2 :: bool
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L1:
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r2 = CPyTagged_IsEq_(z, z)
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if r2 goto L5 else goto L6 :: bool
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L2:
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r3 = z == z
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if r3 goto L5 else goto L6 :: bool
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L3:
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return z
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L4:
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a = 2
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r4 = CPyTagged_Add(x, y)
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dec_ref x :: int
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dec_ref y :: int
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r5 = CPyTagged_Subtract(r4, a)
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dec_ref r4 :: int
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dec_ref a :: int
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return r5
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L5:
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dec_ref x :: int
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dec_ref y :: int
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goto L3
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L6:
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dec_ref z :: int
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goto L4
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[case testLoop]
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def f(a: int) -> int:
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sum = 0
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i = 0
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while i <= a:
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sum = sum + i
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i = i + 1
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return sum
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[out]
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def f(a):
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a, sum, i :: int
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r0 :: native_int
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r1 :: bit
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r2 :: native_int
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r3, r4, r5 :: bit
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r6, r7 :: int
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L0:
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sum = 0
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i = 0
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L1:
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r0 = i & 1
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r1 = r0 != 0
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if r1 goto L3 else goto L2 :: bool
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L2:
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r2 = a & 1
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r3 = r2 != 0
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if r3 goto L3 else goto L4 :: bool
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L3:
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r4 = CPyTagged_IsLt_(a, i)
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if r4 goto L7 else goto L5 :: bool
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L4:
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r5 = i <= a :: signed
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if r5 goto L5 else goto L7 :: bool
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L5:
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r6 = CPyTagged_Add(sum, i)
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dec_ref sum :: int
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sum = r6
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r7 = CPyTagged_Add(i, 2)
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dec_ref i :: int
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i = r7
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goto L1
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L6:
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return sum
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L7:
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dec_ref i :: int
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goto L6
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[case testCall]
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def f(a: int) -> int:
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return f(a + 1)
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[out]
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def f(a):
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a, r0, r1 :: int
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L0:
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r0 = CPyTagged_Add(a, 2)
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r1 = f(r0)
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dec_ref r0 :: int
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return r1
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[case testError]
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def f(x: List[int]) -> None: pass # E: Name "List" is not defined \
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# N: Did you forget to import it from "typing"? (Suggestion: "from typing import List")
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[case testNewList]
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def f() -> int:
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a = [0, 1]
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return 0
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[out]
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def f():
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r0 :: list
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r1, r2 :: object
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r3, r4, r5 :: ptr
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a :: list
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L0:
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r0 = PyList_New(2)
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r1 = box(short_int, 0)
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r2 = box(short_int, 2)
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r3 = get_element_ptr r0 ob_item :: PyListObject
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r4 = load_mem r3 :: ptr*
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set_mem r4, r1 :: builtins.object*
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r5 = r4 + WORD_SIZE*1
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set_mem r5, r2 :: builtins.object*
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a = r0
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dec_ref a
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return 0
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[case testListSet]
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from typing import List
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def f(a: List[int], b: List[int]) -> None:
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a[0] = b[0]
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[out]
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def f(a, b):
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a, b :: list
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r0 :: object
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r1 :: int
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r2 :: object
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r3 :: bit
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L0:
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r0 = CPyList_GetItemShort(b, 0)
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r1 = unbox(int, r0)
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dec_ref r0
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r2 = box(int, r1)
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r3 = CPyList_SetItem(a, 0, r2)
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return 1
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[case testTupleRefcount]
|
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from typing import Tuple
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def f(x: Tuple[Tuple[int, bool], bool]) -> int:
|
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return x[0][0]
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[out]
|
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def f(x):
|
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x :: tuple[tuple[int, bool], bool]
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r0 :: tuple[int, bool]
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r1 :: int
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L0:
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r0 = x[0]
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r1 = r0[0]
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dec_ref r0
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return r1
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|
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[case testUserClassRefCount]
|
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class C:
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x: 'C'
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def f() -> None:
|
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c = C()
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c.x = C()
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[out]
|
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def f():
|
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r0, c, r1 :: __main__.C
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r2 :: bool
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L0:
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r0 = C()
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c = r0
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r1 = C()
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c.x = r1; r2 = is_error
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dec_ref c
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return 1
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|
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[case testCastRefCount]
|
|
class C: pass
|
|
|
|
def f() -> None:
|
|
a = [C()]
|
|
d = a[0]
|
|
[out]
|
|
def f():
|
|
r0 :: __main__.C
|
|
r1 :: list
|
|
r2, r3 :: ptr
|
|
a :: list
|
|
r4 :: object
|
|
r5, d :: __main__.C
|
|
L0:
|
|
r0 = C()
|
|
r1 = PyList_New(1)
|
|
r2 = get_element_ptr r1 ob_item :: PyListObject
|
|
r3 = load_mem r2 :: ptr*
|
|
set_mem r3, r0 :: builtins.object*
|
|
a = r1
|
|
r4 = CPyList_GetItemShort(a, 0)
|
|
dec_ref a
|
|
r5 = cast(__main__.C, r4)
|
|
d = r5
|
|
dec_ref d
|
|
return 1
|
|
|
|
[case testUnaryBranchSpecialCase]
|
|
def f(x: bool) -> int:
|
|
if x:
|
|
return 1
|
|
return 2
|
|
[out]
|
|
def f(x):
|
|
x :: bool
|
|
L0:
|
|
if x goto L1 else goto L2 :: bool
|
|
L1:
|
|
return 2
|
|
L2:
|
|
return 4
|
|
|
|
[case testUnicodeLiteral]
|
|
def f() -> str:
|
|
return "some string"
|
|
[out]
|
|
def f():
|
|
r0 :: str
|
|
L0:
|
|
r0 = 'some string'
|
|
inc_ref r0
|
|
return r0
|
|
|
|
[case testPyMethodCall]
|
|
def g(x: str) -> int:
|
|
return int(x, base=2)
|
|
[out]
|
|
def g(x):
|
|
x :: str
|
|
r0 :: object
|
|
r1 :: str
|
|
r2 :: tuple
|
|
r3 :: object
|
|
r4 :: dict
|
|
r5 :: object
|
|
r6 :: int
|
|
L0:
|
|
r0 = load_address PyLong_Type
|
|
r1 = 'base'
|
|
r2 = PyTuple_Pack(1, x)
|
|
r3 = box(short_int, 4)
|
|
r4 = CPyDict_Build(1, r1, r3)
|
|
dec_ref r3
|
|
r5 = PyObject_Call(r0, r2, r4)
|
|
dec_ref r2
|
|
dec_ref r4
|
|
r6 = unbox(int, r5)
|
|
dec_ref r5
|
|
return r6
|
|
|
|
[case testListAppend]
|
|
from typing import List
|
|
def f(a: List[int], x: int) -> None:
|
|
a.append(x)
|
|
[out]
|
|
def f(a, x):
|
|
a :: list
|
|
x :: int
|
|
r0 :: object
|
|
r1 :: int32
|
|
r2 :: bit
|
|
L0:
|
|
inc_ref x :: int
|
|
r0 = box(int, x)
|
|
r1 = PyList_Append(a, r0)
|
|
dec_ref r0
|
|
r2 = r1 >= 0 :: signed
|
|
return 1
|
|
|
|
[case testForDict]
|
|
from typing import Dict
|
|
|
|
def f(d: Dict[int, int]) -> None:
|
|
for key in d:
|
|
d[key]
|
|
[out]
|
|
def f(d):
|
|
d :: dict
|
|
r0 :: short_int
|
|
r1 :: native_int
|
|
r2 :: short_int
|
|
r3 :: object
|
|
r4 :: tuple[bool, short_int, object]
|
|
r5 :: short_int
|
|
r6 :: bool
|
|
r7 :: object
|
|
r8, key :: int
|
|
r9, r10 :: object
|
|
r11 :: int
|
|
r12, r13 :: bit
|
|
L0:
|
|
r0 = 0
|
|
r1 = PyDict_Size(d)
|
|
r2 = r1 << 1
|
|
r3 = CPyDict_GetKeysIter(d)
|
|
L1:
|
|
r4 = CPyDict_NextKey(r3, r0)
|
|
r5 = r4[1]
|
|
r0 = r5
|
|
r6 = r4[0]
|
|
if r6 goto L2 else goto L6 :: bool
|
|
L2:
|
|
r7 = r4[2]
|
|
dec_ref r4
|
|
r8 = unbox(int, r7)
|
|
dec_ref r7
|
|
key = r8
|
|
r9 = box(int, key)
|
|
r10 = CPyDict_GetItem(d, r9)
|
|
dec_ref r9
|
|
r11 = unbox(int, r10)
|
|
dec_ref r10
|
|
dec_ref r11 :: int
|
|
L3:
|
|
r12 = CPyDict_CheckSize(d, r2)
|
|
goto L1
|
|
L4:
|
|
r13 = CPy_NoErrOccured()
|
|
L5:
|
|
return 1
|
|
L6:
|
|
dec_ref r3
|
|
dec_ref r4
|
|
goto L4
|
|
|
|
[case testBorrowRefs]
|
|
def make_garbage(arg: object) -> None:
|
|
b = True
|
|
while b:
|
|
arg = None
|
|
b = False
|
|
[out]
|
|
def make_garbage(arg):
|
|
arg :: object
|
|
b :: bool
|
|
r0 :: object
|
|
L0:
|
|
b = 1
|
|
L1:
|
|
if b goto L2 else goto L3 :: bool
|
|
L2:
|
|
r0 = box(None, 1)
|
|
inc_ref r0
|
|
arg = r0
|
|
dec_ref arg
|
|
b = 0
|
|
goto L1
|
|
L3:
|
|
return 1
|
|
|
|
[case testGetElementPtrLifeTime]
|
|
from typing import List
|
|
|
|
def f() -> int:
|
|
x: List[str] = []
|
|
return len(x)
|
|
[out]
|
|
def f():
|
|
r0, x :: list
|
|
r1 :: ptr
|
|
r2 :: native_int
|
|
r3 :: short_int
|
|
L0:
|
|
r0 = PyList_New(0)
|
|
x = r0
|
|
r1 = get_element_ptr x ob_size :: PyVarObject
|
|
r2 = load_mem r1 :: native_int*
|
|
dec_ref x
|
|
r3 = r2 << 1
|
|
return r3
|
|
|
|
[case testSometimesUninitializedVariable]
|
|
def f(x: bool) -> int:
|
|
if x:
|
|
y = 1
|
|
else:
|
|
z = 2
|
|
return y + z
|
|
[out]
|
|
def f(x):
|
|
x :: bool
|
|
r0, y, r1, z :: int
|
|
r2, r3 :: bool
|
|
r4 :: int
|
|
L0:
|
|
r0 = <error> :: int
|
|
y = r0
|
|
r1 = <error> :: int
|
|
z = r1
|
|
if x goto L8 else goto L9 :: bool
|
|
L1:
|
|
y = 2
|
|
goto L3
|
|
L2:
|
|
z = 4
|
|
L3:
|
|
if is_error(y) goto L10 else goto L5
|
|
L4:
|
|
r2 = raise UnboundLocalError('local variable "y" referenced before assignment')
|
|
unreachable
|
|
L5:
|
|
if is_error(z) goto L11 else goto L7
|
|
L6:
|
|
r3 = raise UnboundLocalError('local variable "z" referenced before assignment')
|
|
unreachable
|
|
L7:
|
|
r4 = CPyTagged_Add(y, z)
|
|
xdec_ref y :: int
|
|
xdec_ref z :: int
|
|
return r4
|
|
L8:
|
|
xdec_ref y :: int
|
|
goto L1
|
|
L9:
|
|
xdec_ref z :: int
|
|
goto L2
|
|
L10:
|
|
xdec_ref z :: int
|
|
goto L4
|
|
L11:
|
|
xdec_ref y :: int
|
|
goto L6
|
|
|
|
[case testVectorcall_python3_8]
|
|
from typing import Any
|
|
|
|
def call(f: Any, x: int) -> int:
|
|
return f(x)
|
|
[out]
|
|
def call(f, x):
|
|
f :: object
|
|
x :: int
|
|
r0 :: object
|
|
r1 :: object[1]
|
|
r2 :: object_ptr
|
|
r3 :: object
|
|
r4 :: int
|
|
L0:
|
|
inc_ref x :: int
|
|
r0 = box(int, x)
|
|
r1 = [r0]
|
|
r2 = load_address r1
|
|
r3 = _PyObject_Vectorcall(f, r2, 1, 0)
|
|
dec_ref r0
|
|
r4 = unbox(int, r3)
|
|
dec_ref r3
|
|
return r4
|
|
|
|
[case testVectorcallMethod_python3_9_64bit]
|
|
from typing import Any
|
|
|
|
def call(o: Any, x: int) -> int:
|
|
return o.m(x)
|
|
[out]
|
|
def call(o, x):
|
|
o :: object
|
|
x :: int
|
|
r0 :: str
|
|
r1 :: object
|
|
r2 :: object[2]
|
|
r3 :: object_ptr
|
|
r4 :: object
|
|
r5 :: int
|
|
L0:
|
|
r0 = 'm'
|
|
inc_ref x :: int
|
|
r1 = box(int, x)
|
|
r2 = [o, r1]
|
|
r3 = load_address r2
|
|
r4 = PyObject_VectorcallMethod(r0, r3, 9223372036854775810, 0)
|
|
dec_ref r1
|
|
r5 = unbox(int, r4)
|
|
dec_ref r4
|
|
return r5
|