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from enum import Enum
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from typing import List, Optional
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__all__ = ['replicate', 'shard']
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class DistPlacementPattern(Enum):
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REPLICATE = 'r'
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SHARD = 's'
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class _DistSpec:
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def __init__(self, dist_placement_pattern: DistPlacementPattern, **meta_info):
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"""_DistSpec, Distributed Specification
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Args:
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dist_placement_pattern (DistPlacementPattern): the pattern describing how tensors are distributed among processes.
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The dist_placement_pattern is picked from a limited set, now including two patterns: replicate and shard.
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process_group (Optional[ProcessGroup], optional): the process group contains processes. Defaults to None.
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"""
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self.placement = dist_placement_pattern
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for k, v in meta_info.items():
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setattr(self, k, v)
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def __eq__(self, other: "_DistSpec") -> bool:
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if dir(self) != dir(other):
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return False
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for attr in dir(self):
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if not attr.startswith('__') and getattr(self, attr) != getattr(other, attr):
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return False
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return True
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def __repr__(self) -> str:
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res_list = ["DistSpec:"]
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for attr in dir(self):
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if not attr.startswith('__'):
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res_list.append(f'\n\t{attr}: {str(getattr(self, attr))}')
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return ''.join(res_list)
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def replicate() -> _DistSpec:
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return _DistSpec(DistPlacementPattern.REPLICATE)
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def shard(dims: List[int], num_partitions: List[int]) -> _DistSpec:
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assert isinstance(dims, list) and isinstance(num_partitions, list)
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assert len(dims) == len(num_partitions)
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return _DistSpec(DistPlacementPattern.SHARD, dims=tuple(dims), num_partitions=tuple(num_partitions))
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