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import tokenize
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from IPython.testing import tools as tt
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from IPython.core import inputtransformer as ipt
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def transform_and_reset(transformer):
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transformer = transformer()
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def transform(inp):
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try:
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return transformer.push(inp)
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finally:
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transformer.reset()
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return transform
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# Transformer tests
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def transform_checker(tests, transformer, **kwargs):
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"""Utility to loop over test inputs"""
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transformer = transformer(**kwargs)
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try:
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for inp, tr in tests:
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if inp is None:
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out = transformer.reset()
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else:
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out = transformer.push(inp)
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assert out == tr
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finally:
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transformer.reset()
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# Data for all the syntax tests in the form of lists of pairs of
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# raw/transformed input. We store it here as a global dict so that we can use
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# it both within single-function tests and also to validate the behavior of the
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# larger objects
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syntax = \
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dict(assign_system =
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[('a =! ls', "a = get_ipython().getoutput('ls')"),
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('b = !ls', "b = get_ipython().getoutput('ls')"),
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('c= !ls', "c = get_ipython().getoutput('ls')"),
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('d == !ls', 'd == !ls'), # Invalid syntax, but we leave == alone.
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('x=1', 'x=1'), # normal input is unmodified
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(' ',' '), # blank lines are kept intact
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# Tuple unpacking
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("a, b = !echo 'a\\nb'", "a, b = get_ipython().getoutput(\"echo 'a\\\\nb'\")"),
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("a,= !echo 'a'", "a, = get_ipython().getoutput(\"echo 'a'\")"),
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("a, *bc = !echo 'a\\nb\\nc'", "a, *bc = get_ipython().getoutput(\"echo 'a\\\\nb\\\\nc'\")"),
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# Tuple unpacking with regular Python expressions, not our syntax.
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("a, b = range(2)", "a, b = range(2)"),
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("a, = range(1)", "a, = range(1)"),
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("a, *bc = range(3)", "a, *bc = range(3)"),
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],
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assign_magic =
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[('a =% who', "a = get_ipython().run_line_magic('who', '')"),
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('b = %who', "b = get_ipython().run_line_magic('who', '')"),
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('c= %ls', "c = get_ipython().run_line_magic('ls', '')"),
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('d == %ls', 'd == %ls'), # Invalid syntax, but we leave == alone.
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('x=1', 'x=1'), # normal input is unmodified
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(' ',' '), # blank lines are kept intact
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("a, b = %foo", "a, b = get_ipython().run_line_magic('foo', '')"),
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],
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classic_prompt =
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[('>>> x=1', 'x=1'),
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('x=1', 'x=1'), # normal input is unmodified
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(' ', ' '), # blank lines are kept intact
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],
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ipy_prompt =
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[('In [1]: x=1', 'x=1'),
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('x=1', 'x=1'), # normal input is unmodified
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(' ',' '), # blank lines are kept intact
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],
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# Tests for the escape transformer to leave normal code alone
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escaped_noesc =
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[ (' ', ' '),
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('x=1', 'x=1'),
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],
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# System calls
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escaped_shell =
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[ ('!ls', "get_ipython().system('ls')"),
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# Double-escape shell, this means to capture the output of the
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# subprocess and return it
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('!!ls', "get_ipython().getoutput('ls')"),
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],
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# Help/object info
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escaped_help =
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[ ('?', 'get_ipython().show_usage()'),
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('?x1', "get_ipython().run_line_magic('pinfo', 'x1')"),
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('??x2', "get_ipython().run_line_magic('pinfo2', 'x2')"),
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('?a.*s', "get_ipython().run_line_magic('psearch', 'a.*s')"),
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('?%hist1', "get_ipython().run_line_magic('pinfo', '%hist1')"),
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('?%%hist2', "get_ipython().run_line_magic('pinfo', '%%hist2')"),
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('?abc = qwe', "get_ipython().run_line_magic('pinfo', 'abc')"),
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],
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end_help =
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[ ('x3?', "get_ipython().run_line_magic('pinfo', 'x3')"),
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('x4??', "get_ipython().run_line_magic('pinfo2', 'x4')"),
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('%hist1?', "get_ipython().run_line_magic('pinfo', '%hist1')"),
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('%hist2??', "get_ipython().run_line_magic('pinfo2', '%hist2')"),
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('%%hist3?', "get_ipython().run_line_magic('pinfo', '%%hist3')"),
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('%%hist4??', "get_ipython().run_line_magic('pinfo2', '%%hist4')"),
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('Ï€.foo?', "get_ipython().run_line_magic('pinfo', 'Ï€.foo')"),
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('f*?', "get_ipython().run_line_magic('psearch', 'f*')"),
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('ax.*aspe*?', "get_ipython().run_line_magic('psearch', 'ax.*aspe*')"),
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('a = abc?', "get_ipython().set_next_input('a = abc');"
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"get_ipython().run_line_magic('pinfo', 'abc')"),
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('a = abc.qe??', "get_ipython().set_next_input('a = abc.qe');"
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"get_ipython().run_line_magic('pinfo2', 'abc.qe')"),
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('a = *.items?', "get_ipython().set_next_input('a = *.items');"
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"get_ipython().run_line_magic('psearch', '*.items')"),
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('plot(a?', "get_ipython().set_next_input('plot(a');"
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"get_ipython().run_line_magic('pinfo', 'a')"),
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('a*2 #comment?', 'a*2 #comment?'),
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],
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# Explicit magic calls
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escaped_magic =
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[ ('%cd', "get_ipython().run_line_magic('cd', '')"),
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('%cd /home', "get_ipython().run_line_magic('cd', '/home')"),
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# Backslashes need to be escaped.
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('%cd C:\\User', "get_ipython().run_line_magic('cd', 'C:\\\\User')"),
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(' %magic', " get_ipython().run_line_magic('magic', '')"),
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],
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# Quoting with separate arguments
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escaped_quote =
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[ (',f', 'f("")'),
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(',f x', 'f("x")'),
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(' ,f y', ' f("y")'),
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(',f a b', 'f("a", "b")'),
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],
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# Quoting with single argument
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escaped_quote2 =
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[ (';f', 'f("")'),
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(';f x', 'f("x")'),
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(' ;f y', ' f("y")'),
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(';f a b', 'f("a b")'),
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],
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# Simply apply parens
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escaped_paren =
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[ ('/f', 'f()'),
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('/f x', 'f(x)'),
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(' /f y', ' f(y)'),
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('/f a b', 'f(a, b)'),
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],
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# Check that we transform prompts before other transforms
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mixed =
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[ ('In [1]: %lsmagic', "get_ipython().run_line_magic('lsmagic', '')"),
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('>>> %lsmagic', "get_ipython().run_line_magic('lsmagic', '')"),
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('In [2]: !ls', "get_ipython().system('ls')"),
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('In [3]: abs?', "get_ipython().run_line_magic('pinfo', 'abs')"),
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('In [4]: b = %who', "b = get_ipython().run_line_magic('who', '')"),
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],
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)
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# multiline syntax examples. Each of these should be a list of lists, with
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# each entry itself having pairs of raw/transformed input. The union (with
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# '\n'.join() of the transformed inputs is what the splitter should produce
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# when fed the raw lines one at a time via push.
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syntax_ml = \
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dict(classic_prompt =
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[ [('>>> for i in range(10):','for i in range(10):'),
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('... print i',' print i'),
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('... ', ''),
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],
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[('>>> a="""','a="""'),
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('... 123"""','123"""'),
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],
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[('a="""','a="""'),
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('... 123','123'),
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('... 456"""','456"""'),
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],
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[('a="""','a="""'),
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('>>> 123','123'),
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('... 456"""','456"""'),
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],
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[('a="""','a="""'),
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('123','123'),
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('... 456"""','... 456"""'),
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],
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[('....__class__','....__class__'),
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],
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[('a=5', 'a=5'),
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('...', ''),
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],
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[('>>> def f(x):', 'def f(x):'),
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('...', ''),
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('... return x', ' return x'),
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],
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[('board = """....', 'board = """....'),
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('....', '....'),
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('...."""', '...."""'),
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],
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],
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ipy_prompt =
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[ [('In [24]: for i in range(10):','for i in range(10):'),
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(' ....: print i',' print i'),
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(' ....: ', ''),
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],
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[('In [24]: for i in range(10):','for i in range(10):'),
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# Qt console prompts expand with spaces, not dots
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(' ...: print i',' print i'),
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(' ...: ', ''),
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],
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[('In [24]: for i in range(10):','for i in range(10):'),
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# Sometimes whitespace preceding '...' has been removed
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('...: print i',' print i'),
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('...: ', ''),
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],
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[('In [24]: for i in range(10):','for i in range(10):'),
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# Space after last continuation prompt has been removed (issue #6674)
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('...: print i',' print i'),
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('...:', ''),
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],
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[('In [2]: a="""','a="""'),
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(' ...: 123"""','123"""'),
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],
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[('a="""','a="""'),
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(' ...: 123','123'),
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(' ...: 456"""','456"""'),
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],
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[('a="""','a="""'),
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('In [1]: 123','123'),
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(' ...: 456"""','456"""'),
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],
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[('a="""','a="""'),
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('123','123'),
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(' ...: 456"""',' ...: 456"""'),
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],
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],
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multiline_datastructure_prompt =
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[ [('>>> a = [1,','a = [1,'),
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('... 2]','2]'),
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],
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],
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multiline_datastructure =
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[ [('b = ("%s"', None),
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('# comment', None),
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('%foo )', 'b = ("%s"\n# comment\n%foo )'),
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],
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],
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multiline_string =
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[ [("'''foo?", None),
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("bar'''", "'''foo?\nbar'''"),
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],
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],
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leading_indent =
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[ [(' print "hi"','print "hi"'),
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],
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[(' for a in range(5):','for a in range(5):'),
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(' a*2',' a*2'),
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],
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[(' a="""','a="""'),
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(' 123"""','123"""'),
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],
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[('a="""','a="""'),
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(' 123"""',' 123"""'),
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],
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],
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cellmagic =
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[ [('%%foo a', None),
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(None, "get_ipython().run_cell_magic('foo', 'a', '')"),
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],
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[('%%bar 123', None),
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('hello', None),
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(None , "get_ipython().run_cell_magic('bar', '123', 'hello')"),
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],
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[('a=5', 'a=5'),
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('%%cellmagic', '%%cellmagic'),
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],
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],
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escaped =
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[ [('%abc def \\', None),
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('ghi', "get_ipython().run_line_magic('abc', 'def ghi')"),
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],
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[('%abc def \\', None),
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('ghi\\', None),
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(None, "get_ipython().run_line_magic('abc', 'def ghi')"),
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],
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],
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assign_magic =
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[ [('a = %bc de \\', None),
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('fg', "a = get_ipython().run_line_magic('bc', 'de fg')"),
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],
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[('a = %bc de \\', None),
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('fg\\', None),
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(None, "a = get_ipython().run_line_magic('bc', 'de fg')"),
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],
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],
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assign_system =
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[ [('a = !bc de \\', None),
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('fg', "a = get_ipython().getoutput('bc de fg')"),
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],
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[('a = !bc de \\', None),
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('fg\\', None),
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(None, "a = get_ipython().getoutput('bc de fg')"),
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],
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],
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)
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def test_assign_system():
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tt.check_pairs(transform_and_reset(ipt.assign_from_system), syntax['assign_system'])
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def test_assign_magic():
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tt.check_pairs(transform_and_reset(ipt.assign_from_magic), syntax['assign_magic'])
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def test_classic_prompt():
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tt.check_pairs(transform_and_reset(ipt.classic_prompt), syntax['classic_prompt'])
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for example in syntax_ml['classic_prompt']:
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transform_checker(example, ipt.classic_prompt)
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for example in syntax_ml['multiline_datastructure_prompt']:
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transform_checker(example, ipt.classic_prompt)
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# Check that we don't transform the second line if the first is obviously
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# IPython syntax
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transform_checker([
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('%foo', '%foo'),
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('>>> bar', '>>> bar'),
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], ipt.classic_prompt)
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def test_ipy_prompt():
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tt.check_pairs(transform_and_reset(ipt.ipy_prompt), syntax['ipy_prompt'])
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for example in syntax_ml['ipy_prompt']:
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transform_checker(example, ipt.ipy_prompt)
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# Check that we don't transform the second line if we're inside a cell magic
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transform_checker([
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('%%foo', '%%foo'),
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('In [1]: bar', 'In [1]: bar'),
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], ipt.ipy_prompt)
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def test_assemble_logical_lines():
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tests = \
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[ [("a = \\", None),
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("123", "a = 123"),
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],
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[("a = \\", None), # Test resetting when within a multi-line string
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("12 *\\", None),
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(None, "a = 12 *"),
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],
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[("# foo\\", "# foo\\"), # Comments can't be continued like this
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],
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]
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for example in tests:
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transform_checker(example, ipt.assemble_logical_lines)
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def test_assemble_python_lines():
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tests = \
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[ [("a = '''", None),
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("abc'''", "a = '''\nabc'''"),
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],
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[("a = '''", None), # Test resetting when within a multi-line string
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("def", None),
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(None, "a = '''\ndef"),
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],
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[("a = [1,", None),
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("2]", "a = [1,\n2]"),
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],
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[("a = [1,", None), # Test resetting when within a multi-line string
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("2,", None),
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(None, "a = [1,\n2,"),
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],
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[("a = '''", None), # Test line continuation within a multi-line string
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("abc\\", None),
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("def", None),
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("'''", "a = '''\nabc\\\ndef\n'''"),
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],
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] + syntax_ml['multiline_datastructure']
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for example in tests:
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transform_checker(example, ipt.assemble_python_lines)
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def test_help_end():
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tt.check_pairs(transform_and_reset(ipt.help_end), syntax['end_help'])
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def test_escaped_noesc():
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tt.check_pairs(transform_and_reset(ipt.escaped_commands), syntax['escaped_noesc'])
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def test_escaped_shell():
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tt.check_pairs(transform_and_reset(ipt.escaped_commands), syntax['escaped_shell'])
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def test_escaped_help():
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tt.check_pairs(transform_and_reset(ipt.escaped_commands), syntax['escaped_help'])
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def test_escaped_magic():
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tt.check_pairs(transform_and_reset(ipt.escaped_commands), syntax['escaped_magic'])
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def test_escaped_quote():
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tt.check_pairs(transform_and_reset(ipt.escaped_commands), syntax['escaped_quote'])
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def test_escaped_quote2():
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tt.check_pairs(transform_and_reset(ipt.escaped_commands), syntax['escaped_quote2'])
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def test_escaped_paren():
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tt.check_pairs(transform_and_reset(ipt.escaped_commands), syntax['escaped_paren'])
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def test_cellmagic():
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for example in syntax_ml['cellmagic']:
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transform_checker(example, ipt.cellmagic)
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line_example = [('%%bar 123', None),
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('hello', None),
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('' , "get_ipython().run_cell_magic('bar', '123', 'hello')"),
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]
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transform_checker(line_example, ipt.cellmagic, end_on_blank_line=True)
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def test_has_comment():
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tests = [('text', False),
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('text #comment', True),
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('text #comment\n', True),
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('#comment', True),
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('#comment\n', True),
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('a = "#string"', False),
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('a = "#string" # comment', True),
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('a #comment not "string"', True),
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]
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tt.check_pairs(ipt.has_comment, tests)
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@ipt.TokenInputTransformer.wrap
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def decistmt(tokens):
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"""Substitute Decimals for floats in a string of statements.
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Based on an example from the tokenize module docs.
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"""
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result = []
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for toknum, tokval, _, _, _ in tokens:
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if toknum == tokenize.NUMBER and '.' in tokval: # replace NUMBER tokens
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yield from [
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(tokenize.NAME, 'Decimal'),
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(tokenize.OP, '('),
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|
(tokenize.STRING, repr(tokval)),
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(tokenize.OP, ')')
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]
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else:
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yield (toknum, tokval)
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def test_token_input_transformer():
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tests = [('1.2', "Decimal ('1.2')"),
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('"1.2"', '"1.2"'),
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]
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tt.check_pairs(transform_and_reset(decistmt), tests)
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ml_tests = \
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[ [("a = 1.2; b = '''x", None),
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|
("y'''", "a =Decimal ('1.2');b ='''x\ny'''"),
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|
],
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|
[("a = [1.2,", None),
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|
("3]", "a =[Decimal ('1.2'),\n3 ]"),
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|
],
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|
[("a = '''foo", None), # Test resetting when within a multi-line string
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|
("bar", None),
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|
(None, "a = '''foo\nbar"),
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|
],
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]
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for example in ml_tests:
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transform_checker(example, decistmt)
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