Packages update
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@@ -24,7 +24,15 @@ def str_to_datetime_processor_factory(regexp, type_):
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if value is None:
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return None
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else:
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return type_(*map(int, rmatch(value).groups(0)))
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try:
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m = rmatch(value)
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except TypeError:
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raise ValueError("Couldn't parse %s string '%r' "
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"- value is not a string." % (type_.__name__ , value))
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if m is None:
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raise ValueError("Couldn't parse %s string: "
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"'%s'" % (type_.__name__ , value))
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return type_(*map(int, m.groups(0)))
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return process
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def boolean_to_int(value):
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@@ -33,29 +41,7 @@ def boolean_to_int(value):
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else:
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return int(value)
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try:
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from sqlalchemy.cprocessors import UnicodeResultProcessor, \
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DecimalResultProcessor, \
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to_float, to_str, int_to_boolean, \
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str_to_datetime, str_to_time, \
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str_to_date
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def to_unicode_processor_factory(encoding, errors=None):
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# this is cumbersome but it would be even more so on the C side
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if errors is not None:
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return UnicodeResultProcessor(encoding, errors).process
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else:
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return UnicodeResultProcessor(encoding).process
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def to_decimal_processor_factory(target_class, scale=10):
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# Note that the scale argument is not taken into account for integer
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# values in the C implementation while it is in the Python one.
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# For example, the Python implementation might return
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# Decimal('5.00000') whereas the C implementation will
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# return Decimal('5'). These are equivalent of course.
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return DecimalResultProcessor(target_class, "%%.%df" % scale).process
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except ImportError:
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def py_fallback():
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def to_unicode_processor_factory(encoding, errors=None):
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decoder = codecs.getdecoder(encoding)
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@@ -106,4 +92,30 @@ except ImportError:
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datetime.datetime)
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str_to_time = str_to_datetime_processor_factory(TIME_RE, datetime.time)
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str_to_date = str_to_datetime_processor_factory(DATE_RE, datetime.date)
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return locals()
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try:
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from sqlalchemy.cprocessors import UnicodeResultProcessor, \
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DecimalResultProcessor, \
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to_float, to_str, int_to_boolean, \
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str_to_datetime, str_to_time, \
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str_to_date
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def to_unicode_processor_factory(encoding, errors=None):
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# this is cumbersome but it would be even more so on the C side
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if errors is not None:
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return UnicodeResultProcessor(encoding, errors).process
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else:
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return UnicodeResultProcessor(encoding).process
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def to_decimal_processor_factory(target_class, scale=10):
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# Note that the scale argument is not taken into account for integer
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# values in the C implementation while it is in the Python one.
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# For example, the Python implementation might return
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# Decimal('5.00000') whereas the C implementation will
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# return Decimal('5'). These are equivalent of course.
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return DecimalResultProcessor(target_class, "%%.%df" % scale).process
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except ImportError:
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globals().update(py_fallback())
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