mirror of
https://github.com/gristlabs/grist-core.git
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04e5d90f86
Summary: This makes it possible to set the type of a column to ReferenceList, but the UI is terrible ReferenceList.ts is a mishmash of ChoiceList and Reference that sort of works but something about the CSS is clearly broken ReferenceListEditor is just a text editor, you have to type in a JSON array of row IDs. Ignore the value that's present when you start editing. I can maybe try mashing together ReferenceEditor and ChoiceListEditor but it doesn't seem wise. I think @georgegevoian should take over here. Reviewing the diff as it is to check for obvious issues is probably good but I don't think it's worth trying to land/merge anything. Test Plan: none Reviewers: dsagal Reviewed By: dsagal Subscribers: georgegevoian Differential Revision: https://phab.getgrist.com/D2914
487 lines
17 KiB
Python
487 lines
17 KiB
Python
import json
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import types
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from collections import namedtuple
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import six
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import depend
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import objtypes
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import usertypes
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import relabeling
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import relation
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import moment
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import logger
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from sortedcontainers import SortedListWithKey
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log = logger.Logger(__name__, logger.INFO)
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MANUAL_SORT = 'manualSort'
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MANUAL_SORT_COL_INFO = {
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'id': MANUAL_SORT,
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'type': 'ManualSortPos',
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'formula': '',
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'isFormula': False
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}
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MANUAL_SORT_DEFAULT = 2147483647.0
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SPECIAL_COL_IDS = {'id', MANUAL_SORT}
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def is_user_column(col_id):
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"""
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Returns whether the col_id is of a user column (as opposed to special columns that can't be used
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for user data).
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"""
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return col_id not in SPECIAL_COL_IDS and not col_id.startswith('#')
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def is_visible_column(col_id):
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"""
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Returns whether this is an id of a column that's intended to be shown to the user.
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"""
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return is_user_column(col_id) and not col_id.startswith('gristHelper_')
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def is_virtual_column(col_id):
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"""
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Returns whether col_id is of a special column that does not get communicated outside of the
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sandbox. Lookup maps are an example.
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"""
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return col_id.startswith('#')
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def is_validation_column_name(name):
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return name.startswith("validation___")
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ColInfo = namedtuple('ColInfo', ('type_obj', 'is_formula', 'method'))
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def get_col_info(col_model, default_func=None):
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if isinstance(col_model, types.FunctionType):
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type_obj = getattr(col_model, 'grist_type', usertypes.Any())
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return ColInfo(type_obj, is_formula=True, method=col_model)
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else:
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return ColInfo(col_model, is_formula=False, method=col_model.default_func or default_func)
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class BaseColumn(object):
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"""
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BaseColumn holds a column of data, whether raw or computed.
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"""
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def __init__(self, table, col_id, col_info):
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self.type_obj = col_info.type_obj
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self._data = []
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self.col_id = col_id
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self.table_id = table.table_id
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self.node = depend.Node(self.table_id, col_id)
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self._is_formula = col_info.is_formula
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self._is_private = bool(col_info.method) and getattr(col_info.method, 'is_private', False)
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self.update_method(col_info.method)
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# Always initialize to include the special empty record at index 0.
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self.growto(1)
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def update_method(self, method):
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"""
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After rebuilding user code, we reuse existing column objects, but need to replace their
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'method' function. The method may refer to variables in the generated "usercode" module, and
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it's important that all such references are to the rebuilt "usercode" module.
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"""
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self.method = method
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def is_formula(self):
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"""
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Whether this is a formula column. Note that a non-formula column may have an associated
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method, which is used to fill in defaults when a record is added.
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"""
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return self._is_formula
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def is_private(self):
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"""
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Returns whether this method is private to the sandbox. If so, changes to this column do not
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get communicated to outside the sandbox via actions.
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"""
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return self._is_private
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def has_formula(self):
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"""
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has_formula is true if formula is set, whether or not this is a formula column.
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"""
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return self.method is not None
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def clear(self):
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self._data = []
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self.growto(1) # Always include the special empty record at index 0.
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def destroy(self):
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"""
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Called when the column is deleted.
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"""
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del self._data[:]
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def growto(self, size):
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if len(self._data) < size:
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self._data.extend([self.getdefault()] * (size - len(self._data)))
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def size(self):
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return len(self._data)
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def set(self, row_id, value):
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"""
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Sets the value of this column for the given row_id. Value should be as returned by convert(),
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i.e. of the right type, or alttext, or error (but should NOT be random wrong types).
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"""
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try:
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self._data[row_id] = value
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except IndexError:
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self.growto(row_id + 1)
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self._data[row_id] = value
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def unset(self, row_id):
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"""
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Sets the value for the given row_id to the default value.
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"""
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self.set(row_id, self.getdefault())
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def get_cell_value(self, row_id):
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"""
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Returns the "rich" value for the given row_id, i.e. the value that would be seen by formulas.
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E.g. for ReferenceColumns it'll be the referred-to Record object. For cells containing
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alttext, this will be an AltText object. For RaisedException objects that represent a thrown
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error, this will re-raise that error.
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"""
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raw = self.raw_get(row_id)
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if isinstance(raw, objtypes.RaisedException):
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raise raw.error
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if self.type_obj.is_right_type(raw):
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return self._make_rich_value(raw)
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return usertypes.AltText(str(raw), self.type_obj.typename())
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def _make_rich_value(self, typed_value):
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"""
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Called by get_cell_value() with a value of the right type for this column. Should be
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implemented by derived classes to produce a "rich" version of the value.
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"""
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# pylint: disable=no-self-use
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return typed_value
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def raw_get(self, row_id):
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"""
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Returns the value stored for the given row_id. This may be an error or alttext, and it does
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not convert to a richer object.
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"""
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try:
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return self._data[row_id]
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except IndexError:
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return self.getdefault()
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def safe_get(self, row_id):
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"""
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Returns a value of the right type, or the default value if the stored value had a wrong type.
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"""
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raw = self.raw_get(row_id)
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return raw if self.type_obj.is_right_type(raw) else self.getdefault()
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def getdefault(self):
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"""
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Returns the default value for this column. This is a static default; the implementation of
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"default formula" logic is separate.
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"""
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return self.type_obj.default
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def sample_value(self):
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"""
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Returns a sample value for this column, used for auto-completions. E.g. for a date, this
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returns an actual datetime object rather than None (only its attributes should matter).
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"""
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return self.type_obj.default
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def copy_from_column(self, other_column):
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"""
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Replace this column's data entirely with data from another column of the same exact type.
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"""
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self._data[:] = other_column._data
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def convert(self, value_to_convert):
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"""
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Converts a value of any type to this column's type, returning either the converted value (for
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which is_right_type is true), or an alttext string, or an error object.
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"""
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return self.type_obj.convert(value_to_convert)
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def prepare_new_values(self, values, ignore_data=False, action_summary=None):
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"""
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This allows us to modify values and also produce adjustments to existing records. This
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currently is only used by PositionColumn. Returns two lists: new_values, and
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[(row_id, new_value)] list of adjustments to existing records.
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If ignore_data is True, makes adjustments without regard to the existing data; this is used
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for processing ReplaceTableData actions.
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"""
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# pylint: disable=no-self-use, unused-argument
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return values, []
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class DataColumn(BaseColumn):
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"""
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DataColumn describes a column of raw data, and holds it.
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"""
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pass
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class BoolColumn(BaseColumn):
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def set(self, row_id, value):
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# When 1 or 1.0 is loaded, we should see it as True, and similarly 0 as False. This is similar
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# to how, after loading a number into a DateColumn, we should see a date, except we adjust
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# booleans at set() time.
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bool_value = True if value == 1 else (False if value == 0 else value)
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super(BoolColumn, self).set(row_id, bool_value)
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class NumericColumn(BaseColumn):
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def set(self, row_id, value):
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# Make sure any integers are treated as floats to avoid truncation.
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# Uses `type(value) == int` rather than `isintance(value, int)` to specifically target
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# ints and not bools (which are singleton instances the class int in python). But
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# perhaps something should be done about bools also?
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# pylint: disable=unidiomatic-typecheck
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super(NumericColumn, self).set(row_id, float(value) if type(value) == int else value)
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_sample_date = moment.ts_to_date(0)
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_sample_datetime = moment.ts_to_dt(0, None, moment.TZ_UTC)
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class DateColumn(NumericColumn):
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"""
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DateColumn contains numerical timestamps represented as seconds since epoch, in type float,
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to midnight of specific UTC dates. Accessing them yields date objects.
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"""
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def _make_rich_value(self, typed_value):
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return typed_value and moment.ts_to_date(typed_value)
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def sample_value(self):
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return _sample_date
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class DateTimeColumn(NumericColumn):
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"""
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DateTimeColumn contains numerical timestamps represented as seconds since epoch, in type float,
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and a timestamp associated with the column. Accessing them yields datetime objects.
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"""
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def __init__(self, table, col_id, col_info):
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super(DateTimeColumn, self).__init__(table, col_id, col_info)
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self._timezone = col_info.type_obj.timezone
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def _make_rich_value(self, typed_value):
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return typed_value and moment.ts_to_dt(typed_value, self._timezone)
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def sample_value(self):
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return _sample_datetime
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class MixedTypesKey(object):
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"""
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Sort key that can contain different types.
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This mimics Python 2 where values of different types can be compared,
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falling back on some comparison of the types when the values
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can't be compared normally.
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"""
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__slots__ = ("value",)
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def __init__(self, value):
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self.value = value
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def __repr__(self):
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return "MixedTypesKey({self.value!r})".format(self=self)
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def __eq__(self, other):
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return self.value == other.value
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def __lt__(self, other):
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try:
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return self.value < other.value
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except TypeError:
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return type(self.value).__name__ < type(other.value).__name__
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if six.PY2:
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def MixedTypesKey(x):
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return x
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class PositionColumn(NumericColumn):
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def __init__(self, table, col_id, col_info):
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super(PositionColumn, self).__init__(table, col_id, col_info)
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# This is a list of row_ids, ordered by the position.
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self._sorted_rows = SortedListWithKey(key=lambda x: MixedTypesKey(self.raw_get(x)))
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def set(self, row_id, value):
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self._sorted_rows.discard(row_id)
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super(PositionColumn, self).set(row_id, value)
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if value != self.getdefault():
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self._sorted_rows.add(row_id)
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def copy_from_column(self, other_column):
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super(PositionColumn, self).copy_from_column(other_column)
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self._sorted_rows = SortedListWithKey(other_column._sorted_rows[:],
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key=lambda x: MixedTypesKey(self.raw_get(x)))
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def prepare_new_values(self, values, ignore_data=False, action_summary=None):
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# This does the work of adjusting positions and relabeling existing rows with new position
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# (without changing sort order) to make space for the new positions. Note that this is also
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# used for updating a position for an existing row: we'll find a new value for it; later when
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# this value is set, the old position will be removed and the new one added.
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if ignore_data:
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rows = []
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else:
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rows = self._sorted_rows
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# prepare_inserts expects floats as keys, not MixedTypesKeys
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rows = SortedListWithKey(rows, key=self.raw_get)
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adjustments, new_values = relabeling.prepare_inserts(rows, values)
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return new_values, [(self._sorted_rows[i], pos) for (i, pos) in adjustments]
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class ChoiceListColumn(BaseColumn):
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"""
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ChoiceListColumn's default value is None, but is presented to formulas as the empty list.
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"""
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def set(self, row_id, value):
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# When a JSON string is loaded, set it to a tuple parsed from it. When a list is loaded,
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# convert to a tuple to keep values immutable.
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if isinstance(value, six.string_types) and value.startswith(u'['):
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try:
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value = tuple(json.loads(value))
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except Exception:
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pass
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elif isinstance(value, list):
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value = tuple(value)
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super(ChoiceListColumn, self).set(row_id, value)
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def _make_rich_value(self, typed_value):
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return () if typed_value is None else typed_value
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class BaseReferenceColumn(BaseColumn):
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"""
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Base class for ReferenceColumn and ReferenceListColumn.
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"""
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def __init__(self, table, col_id, col_info):
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super(BaseReferenceColumn, self).__init__(table, col_id, col_info)
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# We can assume that all tables have been instantiated, but not all initialized.
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target_table_id = self.type_obj.table_id
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self._target_table = table._engine.tables.get(target_table_id, None)
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self._relation = relation.ReferenceRelation(table.table_id, target_table_id, col_id)
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# Note that we need to remove these back-references when the column is removed.
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if self._target_table:
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self._target_table._back_references.add(self)
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def destroy(self):
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# Destroy the column and remove the back-reference we created in the constructor.
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super(BaseReferenceColumn, self).destroy()
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if self._target_table:
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self._target_table._back_references.remove(self)
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def _update_references(self, row_id, old_value, new_value):
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raise NotImplementedError()
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def set(self, row_id, value):
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old = self.safe_get(row_id)
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super(BaseReferenceColumn, self).set(row_id, value)
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new = self.safe_get(row_id)
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self._update_references(row_id, old, new)
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def copy_from_column(self, other_column):
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super(BaseReferenceColumn, self).copy_from_column(other_column)
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self._relation.clear()
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# This is hacky: we should have an interface to iterate through values of a column. (As it is,
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# self._data may include values for non-existent rows; it works here because those values are
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# falsy, which makes them ignored by self._update_references).
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for row_id, value in enumerate(self._data):
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if self.type_obj.is_right_type(value):
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self._update_references(row_id, None, value)
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def sample_value(self):
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return self._target_table.sample_record
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def get_updates_for_removed_target_rows(self, target_row_ids):
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"""
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Returns a list of pairs of (row_id, new_value) for values in this column that need to be
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updated when target_row_ids are removed from the referenced table.
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"""
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affected_rows = sorted(self._relation.get_affected_rows(target_row_ids))
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return [(row_id, self._raw_get_without(row_id, target_row_ids)) for row_id in affected_rows]
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def _raw_get_without(self, _row_id, _target_row_ids):
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"""
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Returns a Ref or RefList cell value with the specified target_row_ids removed, assuming one of
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them is actually present in the value. For References, it just leaves the default value.
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"""
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return self.getdefault()
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class ReferenceColumn(BaseReferenceColumn):
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"""
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ReferenceColumn contains IDs of rows in another table. Accessing them yields the records in the
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other table.
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"""
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def _make_rich_value(self, typed_value):
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# If we refer to an invalid table, return integers rather than fail completely.
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if not self._target_table:
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return typed_value
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# For a Reference, values must either refer to an existing record, or be 0. In all tables,
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# the 0 index will contain the all-defaults record.
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return self._target_table.Record(typed_value, self._relation)
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def _update_references(self, row_id, old_value, new_value):
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if old_value:
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self._relation.remove_reference(row_id, old_value)
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if new_value:
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self._relation.add_reference(row_id, new_value)
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def prepare_new_values(self, values, ignore_data=False, action_summary=None):
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if action_summary and values:
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values = action_summary.translate_new_row_ids(self._target_table.table_id, values)
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return values, []
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class ReferenceListColumn(BaseReferenceColumn):
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"""
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ReferenceListColumn maintains for each row a list of references (row IDs) into another table.
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Accessing them yields RecordSets.
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"""
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def set(self, row_id, value):
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if isinstance(value, six.string_types) and value.startswith(u'['):
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try:
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value = json.loads(value)
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except Exception:
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pass
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super(ReferenceListColumn, self).set(row_id, value)
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def _update_references(self, row_id, old_list, new_list):
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for old_value in old_list or ():
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self._relation.remove_reference(row_id, old_value)
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for new_value in new_list or ():
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self._relation.add_reference(row_id, new_value)
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def _make_rich_value(self, typed_value):
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if typed_value is None:
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typed_value = []
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# If we refer to an invalid table, return integers rather than fail completely.
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if not self._target_table:
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return typed_value
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return self._target_table.RecordSet(typed_value, self._relation)
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def _raw_get_without(self, row_id, target_row_ids):
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"""
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Returns the RefList cell value at row_id with the specified target_row_ids removed.
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"""
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raw = self.raw_get(row_id)
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if self.type_obj.is_right_type(raw):
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raw = [r for r in raw if r not in target_row_ids] or None
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return raw
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# Set up the relationship between usertypes objects and column objects.
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usertypes.BaseColumnType.ColType = DataColumn
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usertypes.Reference.ColType = ReferenceColumn
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usertypes.ReferenceList.ColType = ReferenceListColumn
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usertypes.ChoiceList.ColType = ChoiceListColumn
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usertypes.DateTime.ColType = DateTimeColumn
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usertypes.Date.ColType = DateColumn
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usertypes.PositionNumber.ColType = PositionColumn
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usertypes.Bool.ColType = BoolColumn
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usertypes.Numeric.ColType = NumericColumn
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def create_column(table, col_id, col_info):
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return col_info.type_obj.ColType(table, col_id, col_info)
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