Continue to update test to use unittest.
Replace custom class strstream with StringIO.
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2 changed files with 104 additions and 73 deletions
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@ -3,6 +3,8 @@
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# Tests accessing of instruction operands.
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from llvm.core import *
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from StringIO import StringIO
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import logging, unittest
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m = None
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@ -24,54 +26,54 @@ entry:
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ret i32 %tmp3
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}
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"""
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class strstream(object):
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def __init__(self): pass
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def read(self): return test_module
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m = Module.from_assembly(strstream())
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print("-"*60)
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print(m)
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print("-"*60)
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test_func = m.get_function_named("test_func")
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prod = m.get_function_named("prod")
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class TestOperands(unittest.TestCase):
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def test_operands(self):
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m = Module.from_assembly(StringIO(test_module))
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logging.debug("-"*60)
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logging.debug(m)
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logging.debug("-"*60)
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#===----------------------------------------------------------------------===
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# test operands
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test_func = m.get_function_named("test_func")
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prod = m.get_function_named("prod")
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print()
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i1 = test_func.basic_blocks[0].instructions[0]
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i2 = test_func.basic_blocks[0].instructions[1]
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print("Testing User.operand_count ..", end=' ')
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if i1.operand_count == 3 and i2.operand_count == 2:
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print("OK")
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else:
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print("FAIL")
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#===----------------------------------------------------------------------===
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# test operands
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print("Testing User.operands ..", end=' ')
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c1 = i1.operands[0] is prod
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c2 = i1.operands[1] is test_func.args[0]
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c3 = i1.operands[2] is test_func.args[1]
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c4 = i2.operands[0] is i1
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c5 = i2.operands[1] is test_func.args[2]
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c6 = len(i1.operands) == 3
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c7 = len(i2.operands) == 2
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if c1 and c2 and c3 and c5 and c6 and c7:
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print("OK")
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else:
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print("FAIL")
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print()
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#===----------------------------------------------------------------------===
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# show test_function
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i1 = test_func.basic_blocks[0].instructions[0]
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i2 = test_func.basic_blocks[0].instructions[1]
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logging.debug("Testing User.operand_count ..")
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self.assertEqual(i1.operand_count, 3)
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self.assertEqual(i2.operand_count, 2)
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logging.debug("Testing User.operands ..")
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self.assertIs(i1.operands[-1], prod)
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self.assertIs(i1.operands[0], test_func.args[0])
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self.assertIs(i1.operands[1], test_func.args[1])
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self.assertIs(i2.operands[0], i1)
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self.assertIs(i2.operands[1], test_func.args[2])
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self.assertEqual(len(i1.operands), 3)
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self.assertEqual(len(i2.operands), 2)
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#===----------------------------------------------------------------------===
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# show test_function
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logging.debug("Examining test_function `test_test_func':")
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idx = 1
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for inst in test_func.basic_blocks[0].instructions:
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logging.debug("Instruction #%d:", idx)
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logging.debug(" operand_count = %d", inst.operand_count)
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logging.debug(" operands:")
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oidx = 1
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for op in inst.operands:
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logging.debug(" %d: %s", oidx, repr(op))
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oidx += 1
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idx += 1
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if __name__ == '__main__':
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unittest.main()
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print("Examining test_function `test_test_func':")
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idx = 1
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for inst in test_func.basic_blocks[0].instructions:
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print("Instruction #%d:" % (idx,))
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print(" operand_count =", inst.operand_count)
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print(" operands:")
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oidx = 1
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for op in inst.operands:
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print(" %d: %s" % (oidx, repr(op)))
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oidx += 1
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idx += 1
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@ -4,6 +4,10 @@ from llvm.core import *
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from llvm.passes import *
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from llvm.ee import *
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from StringIO import StringIO
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import logging, unittest
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# A helper class.
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class strstream(object):
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def __init__(self, s):
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@ -35,43 +39,68 @@ entry:
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ret i32 %tmp
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}
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"""
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m = Module.from_assembly(strstream(asm))
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print("-"*72)
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print(m)
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# Let's run a module-level inlining pass. First, create a pass manager.
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pm = PassManager.new()
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class TestPasses(unittest.TestCase):
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def test_passes(self):
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m = Module.from_assembly(StringIO(asm))
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logging.debug("-"*72)
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logging.debug(m)
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# Add the target data as the first "pass". This is mandatory.
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pm.add( TargetData.new('') )
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fn_test1 = m.get_function_named('test1')
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fn_test2 = m.get_function_named('test2')
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# Add the inlining pass.
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pm.add( PASS_FUNCTION_INLINING )
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original_test1 = str(fn_test1)
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original_test2 = str(fn_test2)
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# Run it!
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pm.run(m)
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# Let's run a module-level inlining pass. First, create a pass manager.
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pm = PassManager.new()
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# Done with the pass manager.
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del pm
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# Add the target data as the first "pass". This is mandatory.
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pm.add( TargetData.new('') )
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# Print the result. Note the change in @test2.
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print("-"*72)
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print(m)
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# Add the inlining pass.
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pm.add( PASS_FUNCTION_INLINING )
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# Run it!
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pm.run(m)
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# Let's run a DCE pass on the the function 'test1' now. First create a
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# function pass manager.
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fpm = FunctionPassManager.new(m)
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# Done with the pass manager.
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del pm
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# Add the target data as first "pass". This is mandatory.
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fpm.add( TargetData.new('') )
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# Print the result. Note the change in @test2.
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logging.debug("-"*72)
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logging.debug(m)
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# Add a DCE pass
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fpm.add( PASS_AGGRESSIVE_DCE )
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# Make sure test2 is inlined
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self.assertNotEqual(str(fn_test2).strip(), original_test2.strip())
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# Run the pass on the function 'test1'
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fpm.run( m.get_function_named('test1') )
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bb_entry = fn_test2.basic_blocks[0]
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self.assertEqual(len(bb_entry.instructions), 1)
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self.assertEqual(bb_entry.instructions[0].opcode_name, 'ret')
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# Let's run a DCE pass on the the function 'test1' now. First create a
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# function pass manager.
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fpm = FunctionPassManager.new(m)
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# Add the target data as first "pass". This is mandatory.
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fpm.add( TargetData.new('') )
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# Add a DCE pass
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fpm.add( PASS_AGGRESSIVE_DCE )
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# Run the pass on the function 'test1'
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fpm.run( m.get_function_named('test1') )
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# Print the result. Note the change in @test1.
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logging.debug("-"*72)
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logging.debug(m)
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# Make sure test1 is modified
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self.assertNotEqual(str(fn_test1).strip(), original_test1.strip())
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if __name__ == '__main__':
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unittest.main()
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# Print the result. Note the change in @test1.
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print("-"*72)
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print(m)
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