Revert and refactor
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@ -59,7 +59,7 @@
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- [`get_epoch_start_slot`](#get_epoch_start_slot)
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- [`is_active_validator`](#is_active_validator)
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- [`get_active_validator_indices`](#get_active_validator_indices)
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- [`shuffle`](#shuffle)
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- [`get_permuted_index`](#get_permuted_index)
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- [`split`](#split)
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- [`get_epoch_committee_count`](#get_epoch_committee_count)
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- [`get_shuffling`](#get_shuffling)
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@ -693,38 +693,29 @@ def get_active_validator_indices(validators: List[Validator], epoch: EpochNumber
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return [i for i, v in enumerate(validators) if is_active_validator(v, epoch)]
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```
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### `shuffle`
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### `get_permuted_index`
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```python
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def shuffle(list_size: int, seed: Bytes32) -> List[int]:
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def get_permuted_index(index: int, list_size: int, seed: Bytes32, round_count: int=90) -> List[int]:
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"""
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Return shuffled indices in a pseudorandom permutation `0...list_size-1` with ``seed`` as entropy.
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Return `p(index)` in a pseudorandom permutation `p` of `0...list_size-1` with ``seed`` as entropy.
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Note that ``round_count`` is ``90`` in protocol and parameterized for the shuffling tests.
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Utilizes 'swap or not' shuffling found in
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https://link.springer.com/content/pdf/10.1007%2F978-3-642-32009-5_1.pdf
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See the 'generalized domain' algorithm on page 3.
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"""
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indices = list(range(list_size))
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power_of_two_numbers = [1, 2, 4, 8, 16, 32, 64, 128]
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for round in range(90):
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hash_bytes = b''.join([
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hash(seed + int_to_bytes1(round) + int_to_bytes4(i))
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for i in range((list_size + 255) // 256)
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])
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for round in range(round_count):
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pivot = int.from_bytes(hash(seed + int_to_bytes1(round)), 'little') % list_size
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for i in range(list_size):
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flip = (pivot - indices[i]) % list_size
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hash_position = indices[i] if indices[i] > flip else flip
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byte = hash_bytes[hash_position // 8]
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mask = power_of_two_numbers[hash_position % 8]
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if byte & mask:
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indices[i] = flip
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else:
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# not swap
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pass
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flip = (pivot - index) % list_size
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position = max(index, flip)
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source = hash(seed + int_to_bytes1(round) + int_to_bytes4(position // 256))
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byte = source[(position % 256) // 8]
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bit = (byte >> (position % 8)) % 2
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index = flip if bit else index
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return indices
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return index
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```
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### `split`
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@ -775,8 +766,8 @@ def get_shuffling(seed: Bytes32,
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# Shuffle
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shuffled_active_validator_indices = [
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active_validator_indices[i]
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for i in shuffle(len(active_validator_indices), seed)
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active_validator_indices[get_permuted_index(i, len(active_validator_indices), seed)]
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for i in active_validator_indices
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]
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# Split the shuffled list into committees_per_epoch pieces
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