229 lines
9.0 KiB
Python
229 lines
9.0 KiB
Python
from enum import Enum
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from collections import OrderedDict
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from functools import reduce
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from .. import tracer
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from .._utils import union, deprecated
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from .ast import *
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__all__ = ["Direction", "DIR_NONE", "DIR_FANOUT", "DIR_FANIN", "Layout", "Record"]
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Direction = Enum('Direction', ('NONE', 'FANOUT', 'FANIN'))
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DIR_NONE = Direction.NONE
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DIR_FANOUT = Direction.FANOUT
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DIR_FANIN = Direction.FANIN
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class Layout:
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@staticmethod
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def cast(obj, *, src_loc_at=0):
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if isinstance(obj, Layout):
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return obj
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return Layout(obj, src_loc_at=1 + src_loc_at)
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def __init__(self, fields, *, src_loc_at=0):
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self.fields = OrderedDict()
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for field in fields:
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if not isinstance(field, tuple) or len(field) not in (2, 3):
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raise TypeError("Field {!r} has invalid layout: should be either "
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"(name, shape) or (name, shape, direction)"
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.format(field))
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if len(field) == 2:
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name, shape = field
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direction = DIR_NONE
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if isinstance(shape, list):
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shape = Layout.cast(shape)
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else:
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name, shape, direction = field
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if not isinstance(direction, Direction):
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raise TypeError("Field {!r} has invalid direction: should be a Direction "
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"instance like DIR_FANIN"
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.format(field))
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if not isinstance(name, str):
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raise TypeError("Field {!r} has invalid name: should be a string"
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.format(field))
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if not isinstance(shape, Layout):
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try:
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shape = Shape.cast(shape, src_loc_at=1 + src_loc_at)
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except Exception as error:
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raise TypeError("Field {!r} has invalid shape: should be castable to Shape "
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"or a list of fields of a nested record"
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.format(field))
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if name in self.fields:
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raise NameError("Field {!r} has a name that is already present in the layout"
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.format(field))
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self.fields[name] = (shape, direction)
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def __getitem__(self, item):
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if isinstance(item, tuple):
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return Layout([
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(name, shape, dir)
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for (name, (shape, dir)) in self.fields.items()
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if name in item
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])
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return self.fields[item]
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def __iter__(self):
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for name, (shape, dir) in self.fields.items():
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yield (name, shape, dir)
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def __eq__(self, other):
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return self.fields == other.fields
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# Unlike most Values, Record *can* be subclassed.
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class Record(Value):
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@staticmethod
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def like(other, *, name=None, name_suffix=None, src_loc_at=0):
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if name is not None:
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new_name = str(name)
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elif name_suffix is not None:
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new_name = other.name + str(name_suffix)
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else:
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new_name = tracer.get_var_name(depth=2 + src_loc_at, default=None)
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def concat(a, b):
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if a is None:
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return b
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return "{}__{}".format(a, b)
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fields = {}
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for field_name in other.fields:
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field = other[field_name]
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if isinstance(field, Record):
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fields[field_name] = Record.like(field, name=concat(new_name, field_name),
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src_loc_at=1 + src_loc_at)
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else:
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fields[field_name] = Signal.like(field, name=concat(new_name, field_name),
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src_loc_at=1 + src_loc_at)
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return Record(other.layout, name=new_name, fields=fields, src_loc_at=1)
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def __init__(self, layout, *, name=None, fields=None, src_loc_at=0):
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if name is None:
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name = tracer.get_var_name(depth=2 + src_loc_at, default=None)
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self.name = name
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self.src_loc = tracer.get_src_loc(src_loc_at)
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def concat(a, b):
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if a is None:
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return b
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return "{}__{}".format(a, b)
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self.layout = Layout.cast(layout, src_loc_at=1 + src_loc_at)
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self.fields = OrderedDict()
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for field_name, field_shape, field_dir in self.layout:
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if fields is not None and field_name in fields:
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field = fields[field_name]
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if isinstance(field_shape, Layout):
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assert isinstance(field, Record) and field_shape == field.layout
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else:
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assert isinstance(field, Signal) and field_shape == field.shape()
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self.fields[field_name] = field
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else:
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if isinstance(field_shape, Layout):
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self.fields[field_name] = Record(field_shape, name=concat(name, field_name),
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src_loc_at=1 + src_loc_at)
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else:
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self.fields[field_name] = Signal(field_shape, name=concat(name, field_name),
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src_loc_at=1 + src_loc_at)
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def __getattr__(self, name):
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return self[name]
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def __getitem__(self, item):
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if isinstance(item, str):
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try:
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return self.fields[item]
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except KeyError:
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if self.name is None:
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reference = "Unnamed record"
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else:
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reference = "Record '{}'".format(self.name)
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raise AttributeError("{} does not have a field '{}'. Did you mean one of: {}?"
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.format(reference, item, ", ".join(self.fields))) from None
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elif isinstance(item, tuple):
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return Record(self.layout[item], fields={
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field_name: field_value
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for field_name, field_value in self.fields.items()
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if field_name in item
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})
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else:
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return super().__getitem__(item)
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def shape(self):
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return Shape(sum(len(f) for f in self.fields.values()))
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def _lhs_signals(self):
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return union((f._lhs_signals() for f in self.fields.values()), start=SignalSet())
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def _rhs_signals(self):
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return union((f._rhs_signals() for f in self.fields.values()), start=SignalSet())
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def __repr__(self):
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fields = []
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for field_name, field in self.fields.items():
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if isinstance(field, Signal):
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fields.append(field_name)
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else:
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fields.append(repr(field))
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name = self.name
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if name is None:
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name = "<unnamed>"
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return "(rec {} {})".format(name, " ".join(fields))
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def connect(self, *subordinates, include=None, exclude=None):
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def rec_name(record):
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if record.name is None:
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return "unnamed record"
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else:
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return "record '{}'".format(record.name)
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for field in include or {}:
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if field not in self.fields:
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raise AttributeError("Cannot include field '{}' because it is not present in {}"
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.format(field, rec_name(self)))
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for field in exclude or {}:
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if field not in self.fields:
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raise AttributeError("Cannot exclude field '{}' because it is not present in {}"
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.format(field, rec_name(self)))
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stmts = []
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for field in self.fields:
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if include is not None and field not in include:
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continue
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if exclude is not None and field in exclude:
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continue
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shape, direction = self.layout[field]
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if not isinstance(shape, Layout) and direction == DIR_NONE:
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raise TypeError("Cannot connect field '{}' of {} because it does not have "
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"a direction"
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.format(field, rec_name(self)))
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item = self.fields[field]
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subord_items = []
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for subord in subordinates:
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if field not in subord.fields:
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raise AttributeError("Cannot connect field '{}' of {} to subordinate {} "
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"because the subordinate record does not have this field"
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.format(field, rec_name(self), rec_name(subord)))
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subord_items.append(subord.fields[field])
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if isinstance(shape, Layout):
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sub_include = include[field] if include and field in include else None
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sub_exclude = exclude[field] if exclude and field in exclude else None
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stmts += item.connect(*subord_items, include=sub_include, exclude=sub_exclude)
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else:
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if direction == DIR_FANOUT:
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stmts += [sub_item.eq(item) for sub_item in subord_items]
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if direction == DIR_FANIN:
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stmts += [item.eq(reduce(lambda a, b: a | b, subord_items))]
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return stmts
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