Maglev simulation
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@ -47,7 +47,7 @@ def method1(nodes):
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tokens.append((token, dc, node_id))
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tokens.sort(key=lambda tok: tok[0])
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print(tokens)
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#print(tokens)
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count_tokens_per_node(tokens)
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space_of_node = {}
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@ -80,15 +80,55 @@ def method2(nodes):
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def walk_ring(v, rep):
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xxh = xxhash.xxh32()
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xxh.update(v.encode('ascii'))
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vh = xxh.intdigest()
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i = vh % (2**partition_bits)
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# xxh = xxhash.xxh32()
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# xxh.update(v.encode('ascii'))
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# vh = xxh.intdigest()
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# i = vh % (2**partition_bits)
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vh = hashlib.sha256(v.encode('ascii')).digest()
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i = (vh[0]<<8 | vh[1]) % (2**partition_bits)
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return walk_ring_from_pos(partition_nodes, dcs, i, rep)
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return walk_ring
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def method3(nodes):
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partition_bits = 10
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queues = []
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for (node_id, node_dc, n_tokens) in nodes:
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que = [(i, hash_str(f"{node_id} {i}")) for i in range(2**partition_bits)]
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que.sort(key=lambda x: x[1])
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que = [x[0] for x in que]
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queues.append((node_id, node_dc, n_tokens, que))
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partitions = [None for _ in range(2**partition_bits)]
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queues.sort(key=lambda x: hash_str(x[0]))
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# Maglev
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remaining = 2**partition_bits
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while remaining > 0:
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for toktok in range(100):
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for iq in range(len(queues)):
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node_id, node_dc, n_tokens, node_queue = queues[iq]
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if toktok >= n_tokens:
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continue
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for qi, qv in enumerate(node_queue):
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if partitions[qv] == None:
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partitions[qv] = (qv, node_dc, node_id)
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remaining -= 1
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queues[iq] = (node_id, node_dc, n_tokens, node_queue[qi+1:])
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break
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count_tokens_per_node(partitions)
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dcs = list(set(node_dc for _, node_dc, _ in nodes))
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def walk_ring(v, rep):
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vh = hashlib.sha256(v.encode('ascii')).digest()
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i = (vh[0]<<8 | vh[1]) % (2**partition_bits)
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return walk_ring_from_pos(partitions, dcs, i, rep)
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return walk_ring
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def evaluate_method(walk_ring):
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node_data_counts = {}
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@ -105,7 +145,7 @@ def evaluate_method(walk_ring):
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if __name__ == "__main__":
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print("------")
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print("method 1")
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print("method 1 (standard ring)")
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nodes = [('digitale', 'atuin', 64),
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('drosera', 'atuin', 64),
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('datura', 'atuin', 64),
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@ -114,10 +154,24 @@ if __name__ == "__main__":
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evaluate_method(method1_walk_ring)
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print("------")
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print("method 2")
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print("method 2 (custom ring)")
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nodes = [('digitale', 'atuin', 10),
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('drosera', 'atuin', 10),
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('datura', 'atuin', 10),
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('io', 'jupiter', 20)]
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method2_walk_ring = method2(nodes)
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evaluate_method(method2_walk_ring)
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print("------")
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print("method 3 (maglev)")
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nodes = [('digitale', 'atuin', 4),
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('drosera', 'atuin', 4),
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('datura', 'atuin', 4),
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('io', 'jupiter', 8),
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#('mini', 'grog', 2),
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#('mixi', 'grog', 2),
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#('moxi', 'grog', 2),
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#('modi', 'grog', 2),
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]
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method3_walk_ring = method3(nodes)
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evaluate_method(method3_walk_ring)
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