128 lines
4.1 KiB
Python
128 lines
4.1 KiB
Python
"""
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Classes to represent the default SQL aggregate functions
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"""
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class AggregateField(object):
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"""An internal field mockup used to identify aggregates in the
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data-conversion parts of the database backend.
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"""
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def __init__(self, internal_type):
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self.internal_type = internal_type
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def get_internal_type(self):
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return self.internal_type
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ordinal_aggregate_field = AggregateField('IntegerField')
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computed_aggregate_field = AggregateField('FloatField')
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class Aggregate(object):
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"""
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Default SQL Aggregate.
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"""
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is_ordinal = False
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is_computed = False
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sql_template = '%(function)s(%(field)s)'
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def __init__(self, col, source=None, is_summary=False, **extra):
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"""Instantiate an SQL aggregate
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* col is a column reference describing the subject field
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of the aggregate. It can be an alias, or a tuple describing
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a table and column name.
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* source is the underlying field or aggregate definition for
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the column reference. If the aggregate is not an ordinal or
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computed type, this reference is used to determine the coerced
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output type of the aggregate.
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* extra is a dictionary of additional data to provide for the
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aggregate definition
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Also utilizes the class variables:
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* sql_function, the name of the SQL function that implements the
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aggregate.
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* sql_template, a template string that is used to render the
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aggregate into SQL.
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* is_ordinal, a boolean indicating if the output of this aggregate
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is an integer (e.g., a count)
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* is_computed, a boolean indicating if this output of this aggregate
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is a computed float (e.g., an average), regardless of the input
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type.
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"""
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self.col = col
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self.source = source
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self.is_summary = is_summary
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self.extra = extra
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# Follow the chain of aggregate sources back until you find an
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# actual field, or an aggregate that forces a particular output
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# type. This type of this field will be used to coerce values
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# retrieved from the database.
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tmp = self
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while tmp and isinstance(tmp, Aggregate):
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if getattr(tmp, 'is_ordinal', False):
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tmp = ordinal_aggregate_field
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elif getattr(tmp, 'is_computed', False):
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tmp = computed_aggregate_field
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else:
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tmp = tmp.source
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self.field = tmp
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def relabel_aliases(self, change_map):
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if isinstance(self.col, (list, tuple)):
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self.col = (change_map.get(self.col[0], self.col[0]), self.col[1])
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def as_sql(self, qn, connection):
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"Return the aggregate, rendered as SQL."
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if hasattr(self.col, 'as_sql'):
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field_name = self.col.as_sql(qn, connection)
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elif isinstance(self.col, (list, tuple)):
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field_name = '.'.join([qn(c) for c in self.col])
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else:
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field_name = self.col
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params = {
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'function': self.sql_function,
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'field': field_name
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}
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params.update(self.extra)
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return self.sql_template % params
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class Avg(Aggregate):
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is_computed = True
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sql_function = 'AVG'
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class Count(Aggregate):
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is_ordinal = True
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sql_function = 'COUNT'
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sql_template = '%(function)s(%(distinct)s%(field)s)'
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def __init__(self, col, distinct=False, **extra):
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super(Count, self).__init__(col, distinct=distinct and 'DISTINCT ' or '', **extra)
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class Max(Aggregate):
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sql_function = 'MAX'
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class Min(Aggregate):
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sql_function = 'MIN'
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class StdDev(Aggregate):
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is_computed = True
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def __init__(self, col, sample=False, **extra):
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super(StdDev, self).__init__(col, **extra)
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self.sql_function = sample and 'STDDEV_SAMP' or 'STDDEV_POP'
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class Sum(Aggregate):
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sql_function = 'SUM'
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class Variance(Aggregate):
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is_computed = True
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def __init__(self, col, sample=False, **extra):
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super(Variance, self).__init__(col, **extra)
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self.sql_function = sample and 'VAR_SAMP' or 'VAR_POP'
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