mirror of
https://github.com/ml-explore/mlx.git
synced 2025-12-16 01:49:05 +08:00
Refactor distributed config
This commit is contained in:
@@ -1,5 +1,6 @@
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# Copyright © 2025 Apple Inc.
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import argparse
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import ipaddress
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import json
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import sys
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@@ -16,6 +17,14 @@ class Host:
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rdma: list[Optional[str]]
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class OptionalBoolAction(argparse.Action):
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def __call__(self, parser, namespace, values, option_string=None):
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if option_string.startswith("--no-"):
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setattr(namespace, self.dest, False)
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else:
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setattr(namespace, self.dest, True)
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def positive_number(x):
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x = int(x)
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if x <= 0:
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@@ -50,7 +59,7 @@ def parse_hostlist(parser, hostlist, repeats):
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except ValueError:
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ips = []
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for i in range(repeats):
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hosts.append(Host(i, h, ips))
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hosts.append(Host(i, h, ips, []))
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return hosts
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@@ -0,0 +1,526 @@
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# Copyright © 2025 Apple Inc.
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import argparse
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import json
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import shlex
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import sys
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import threading
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from collections import defaultdict
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from dataclasses import dataclass
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from subprocess import DEVNULL, run
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from typing import Optional
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import mlx.core as mx
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from .common import (
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Host,
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OptionalBoolAction,
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log,
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log_error,
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parse_hostfile,
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parse_hostlist,
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)
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@dataclass
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class SSHInfo:
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can_ssh: bool
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has_sudo: bool
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def __bool__(self):
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return self.can_ssh
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@dataclass
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class ThunderboltPort:
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iface: str
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uuid: str
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connected_to: Optional[str]
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@dataclass
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class ThunderboltHost:
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name: str
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ports: list[ThunderboltPort]
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def add_ethernet_ips(hosts, verbose=False):
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# Get the ips for each host
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for h in hosts:
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log(verbose, "Getting the ip from", h.ssh_hostname)
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h.ips.append(
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run(
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["ssh", h.ssh_hostname, "ipconfig", "getifaddr", "en0"],
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capture_output=True,
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text=True,
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).stdout.strip()
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)
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class IPConfigurator:
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def __init__(self, hosts, tb_hosts, uuid_reverse_index):
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assigned = set()
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ips = defaultdict(list)
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ip0 = 0
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ip1 = 0
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for src_node, h in enumerate(tb_hosts):
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for src_port, p in enumerate(h.ports):
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if not p.connected_to:
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continue
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if (src_node, src_port) in assigned:
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continue
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dst_node, dst_port = uuid_reverse_index[p.connected_to]
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ip_src = f"192.168.{ip0}.{ip1 + 1}"
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ip_dst = f"192.168.{ip0}.{ip1 + 2}"
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iface_src = p.iface
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iface_dst = tb_hosts[dst_node].ports[dst_port].iface
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ips[src_node, dst_node].append((iface_src, ip_src))
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ips[dst_node, src_node].append((iface_dst, ip_dst))
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assigned.add((src_node, src_port))
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assigned.add((dst_node, dst_port))
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ip1 += 4
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if ip1 > 255:
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ip0 += 1
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ip1 = 0
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if ip0 > 255:
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raise ValueError("Ran out of available local IPs")
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self.ips = ips
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self.hosts = hosts
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self.tb_hosts = tb_hosts
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def setup(self, verbose=False, auto_setup=False):
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netmask = "255.255.255.252"
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for i, (h, th) in enumerate(zip(self.hosts, self.tb_hosts)):
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command = ""
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command += "sudo ifconfig bridge0 down\n"
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for j in range(len(self.hosts)):
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if i == j or (i, j) not in self.ips:
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continue
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for (iface, ip), (_, peer) in zip(self.ips[i, j], self.ips[j, i]):
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command += f"sudo ifconfig {iface} inet {ip} netmask {netmask}\n"
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command += f"sudo route change {peer} -interface {iface}\n"
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if auto_setup:
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print(f"Running auto setup for {h.ssh_hostname}")
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command = command.strip().replace("\n", " ; ")
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command = ["ssh", h.ssh_hostname, command]
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log(verbose, shlex.join(command))
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run(command)
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else:
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msg = f"Setup for {h.ssh_hostname}"
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print(msg)
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print("=" * len(msg))
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print(command)
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input("Enter to continue")
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print()
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def parse_hardware_ports(ports_string):
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ports = {}
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port_name = None
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for l in ports_string.decode("utf-8").split("\n"):
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if l.startswith("Hardware Port:"):
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port_name = l.strip()[15:]
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elif l.startswith("Device:"):
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ports[port_name] = l.strip()[8:]
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port_name = None
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return ports
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def extract_connectivity(hosts, verbose):
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# Extract the current connectivity from the remote hosts
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thunderbolt_connections = []
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for h in hosts:
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log(verbose, "Getting connectivity from", h.ssh_hostname)
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thunderbolt_connections.append(
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json.loads(
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run(
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[
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"ssh",
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h.ssh_hostname,
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"system_profiler",
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"SPThunderboltDataType",
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"-json",
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],
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capture_output=True,
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).stdout
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)
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)
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interface_maps = []
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for h in hosts:
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log(verbose, "Getting interface names from", h.ssh_hostname)
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interface_maps.append(
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parse_hardware_ports(
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run(
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[
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"ssh",
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h.ssh_hostname,
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"networksetup",
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"-listallhardwareports",
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],
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capture_output=True,
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).stdout
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)
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)
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# Parse the connectivity into some simple dataclasses
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tb_hosts = []
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for c, iface_map in zip(thunderbolt_connections, interface_maps):
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name = ""
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ports = []
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for t in c["SPThunderboltDataType"]:
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uuid = t.get("domain_uuid_key")
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if uuid is None:
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continue
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name = t["device_name_key"]
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tag = t["receptacle_1_tag"]["receptacle_id_key"]
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items = t.get("_items", [])
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connected_items = [item for item in items if "domain_uuid_key" in item]
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connected_to = (
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connected_items[0]["domain_uuid_key"] if connected_items else None
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)
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iface = iface_map[f"Thunderbolt {tag}"]
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ports.append(ThunderboltPort(iface, uuid, connected_to))
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tb_hosts.append(ThunderboltHost(name, sorted(ports, key=lambda x: x.iface)))
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# Create a reverse index to be able to map uuids to (host, port) quickly
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uuid_reverse_index = {}
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for i, h in enumerate(tb_hosts):
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for j, p in enumerate(h.ports):
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uuid_reverse_index[p.uuid] = (i, j)
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return tb_hosts, uuid_reverse_index
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def make_connectivity_matrix(tb_hosts, uuid_reverse_index):
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connectivity = []
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for i, h in enumerate(tb_hosts):
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c = [0] * len(tb_hosts)
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for p in h.ports:
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if p.connected_to is not None:
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j, _ = uuid_reverse_index[p.connected_to]
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c[j] += 1
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connectivity.append(c)
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return connectivity
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def tb_connectivity_to_dot(hosts, tb_hosts, uuid_reverse_index):
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# Make ids per node
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names = []
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for i in range(len(tb_hosts)):
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n = ""
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j = i
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while True:
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n += chr(97 + j % 26)
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j //= 26
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if j == 0:
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break
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names.append(n)
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print("graph G {")
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print(" node [shape=rectangle];")
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for i, h in enumerate(hosts):
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print(f' {names[i]} [label="{h.ssh_hostname}"];')
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for i, h in enumerate(tb_hosts):
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for p in h.ports:
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if not p.connected_to:
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continue
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dst = uuid_reverse_index[p.connected_to]
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if dst[0] < i:
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continue
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print(f" {names[i]} -- {names[dst[0]]}", end="")
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print(f' [label="{p.iface}/{tb_hosts[dst[0]].ports[dst[1]].iface}"]')
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print("}")
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def extract_rings(connectivity):
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rings = []
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existing_rings = set()
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num_nodes = len(connectivity)
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def dfs(start_node, node, path, visited):
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path.append(node)
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visited.add(node)
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for j in range(num_nodes):
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if connectivity[node][j] <= 0:
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continue
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if j == start_node:
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yield path[:]
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if j not in visited:
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yield from dfs(start_node, j, path, visited)
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path.pop()
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visited.remove(node)
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for start in range(num_nodes):
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for r in dfs(start, start, [], set()):
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cnt = min(connectivity[r[i]][r[(i + 1) % len(r)]] for i in range(len(r)))
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rkey = tuple(sorted(r))
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if rkey not in existing_rings:
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rings.append((r, cnt))
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existing_rings.add(rkey)
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return sorted(rings, key=lambda x: -len(x[0]))
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def check_valid_mesh(hosts, connectivity, strict=True):
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num_nodes = len(connectivity)
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for i in range(num_nodes):
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for j in range(num_nodes):
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if i == j:
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continue
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if connectivity[i][j] <= 0:
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if strict:
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log_error(
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f"Incomplete mesh, {hosts[i].ssh_hostname} is not connected to {hosts[j].ssh_hostname}"
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)
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sys.exit(1)
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else:
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return False
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return True
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def check_ssh_connections(hosts):
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results = [None] * len(hosts)
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def _check(hostname, i):
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info = SSHInfo(False, False)
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results[i] = info
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# Check for ssh
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result = run(
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[
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"ssh",
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"-o",
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"BatchMode=yes",
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"-o",
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"ConnectTimeout=5",
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hostname,
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"echo",
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"success",
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],
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stdout=DEVNULL,
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stderr=DEVNULL,
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)
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info.can_ssh = result.returncode == 0
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if not info.can_ssh:
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return
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# Check for sudo
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result = run(
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[
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"ssh",
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"-o",
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"BatchMode=yes",
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"-o",
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"ConnectTimeout=5",
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hostname,
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"sudo",
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"ls",
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],
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stdout=DEVNULL,
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stderr=DEVNULL,
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)
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info.has_sudo = result.returncode == 0
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threads = [
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threading.Thread(target=_check, args=(h.ssh_hostname, i))
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for i, h in enumerate(hosts)
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]
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for t in threads:
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t.start()
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for t in threads:
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t.join()
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if not all(results):
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log_error("Could not ssh to the following hosts:")
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for i, h in enumerate(hosts):
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if not results[i]:
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log_error(" - ", h.ssh_hostname)
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log_error()
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log_error("Maybe they are not set-up for password-less ssh?")
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sys.exit(1)
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return results
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def prepare_ethernet_hostfile(args, hosts):
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log(args.verbose, f"Preparing an ethernet hostfile")
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add_ethernet_ips(hosts, args.verbose)
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hostfile = []
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for h in hosts:
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hostfile.append(dict(ssh=h.ssh_hostname, ips=h.ips))
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if args.output_hostfile:
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with open(args.output_hostfile, "w") as f:
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json.dump(hostfile, f, indent=4)
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else:
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print("Hostfile")
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print("========")
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print(json.dumps(hostfile, indent=4))
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def configure_ring(args, hosts, ips, ring):
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log(args.verbose, "Prepare a ring hostfile")
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ring, count = ring
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hostfile = []
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for i, node in enumerate(ring):
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h = hosts[node]
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peer = ring[i - 1]
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hostfile.append(
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{
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"ssh": h.ssh_hostname,
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"ips": [ips.ips[node, peer][c][1] for c in range(count)],
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"rdma": [],
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}
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)
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ips.setup(verbose=args.verbose, auto_setup=args.auto_setup)
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if args.output_hostfile:
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with open(args.output_hostfile, "w") as f:
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json.dump(hostfile, f, indent=4)
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else:
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print("Hostfile")
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print("========")
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print(json.dumps(hostfile, indent=4))
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def configure_jaccl(args, hosts, ips):
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log(args.verbose, "Prepare a jaccl hostfile")
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add_ethernet_ips(hosts)
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hostfile = []
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for i, h in enumerate(hosts):
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rdma = []
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for j in range(len(hosts)):
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if i == j:
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rdma.append(None)
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else:
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rdma.append(f"rdma_{ips.ips[i, j][0][0]}")
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hostfile.append({"ssh": h.ssh_hostname, "ips": h.ips, "rdma": rdma})
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ips.setup(verbose=args.verbose, auto_setup=args.auto_setup)
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if args.output_hostfile:
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with open(args.output_hostfile, "w") as f:
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json.dump(hostfile, f, indent=4)
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else:
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print("Hostfile")
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print("========")
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print(json.dumps(hostfile, indent=4))
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def prepare_tb_hostfile(args, hosts):
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log(args.verbose, f"Preparing for communication over thunderbolt")
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tb_hosts, uuid_reverse_index = extract_connectivity(hosts, args.verbose)
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if args.dot:
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tb_connectivity_to_dot(hosts, tb_hosts, uuid_reverse_index)
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return
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ips = IPConfigurator(hosts, tb_hosts, uuid_reverse_index)
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connectivity = make_connectivity_matrix(tb_hosts, uuid_reverse_index)
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if args.backend is None:
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rings = extract_rings(connectivity)
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has_mesh = check_valid_mesh(hosts, connectivity, False)
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has_ring = len(rings) > 0 and len(rings[0][0]) == len(hosts)
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if not has_ring and not has_mesh:
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log_error("Neither thunderbolt mesh nor ring found.")
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log_error("Perhaps run with --dot to generate a plot of the connectivity.")
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sys.exit(1)
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elif has_ring:
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configure_ring(args, hosts, ips, rings[0])
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else:
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configure_jaccl(args, hosts, ips)
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elif args.backend == "ring":
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rings = extract_rings(connectivity)
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has_ring = len(rings) > 0 and len(rings[0][0]) == len(hosts)
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if not has_ring:
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log_error("Could not find a full ring.")
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if len(rings) > 0:
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log_error("Rings found:")
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for r in rings:
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log_error(f" - {','.join(hosts[i].ssh_hostname for i in r)}")
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sys.exit(1)
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configure_ring(args, hosts, ips, rings[0])
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|
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elif args.backend == "jaccl":
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check_valid_mesh(hosts, connectivity)
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configure_jaccl(args, hosts, ips)
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|
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|
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def main():
|
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parser = argparse.ArgumentParser(
|
||||
description="Configure remote machines for use with MLX distributed"
|
||||
)
|
||||
parser.add_argument(
|
||||
"--verbose", action="store_true", help="Print debug messages in stdout"
|
||||
)
|
||||
parser.add_argument(
|
||||
"--hosts", default="127.0.0.1", help="A comma separated list of hosts"
|
||||
)
|
||||
parser.add_argument("--hostfile", help="The file containing the hosts")
|
||||
parser.add_argument(
|
||||
"--over",
|
||||
choices=["thunderbolt", "ethernet"],
|
||||
default="thunderbolt",
|
||||
help="What type of connectivity to configure",
|
||||
required=True,
|
||||
)
|
||||
parser.add_argument(
|
||||
"--output-hostfile", help="If provided, save the hostfile to this path"
|
||||
)
|
||||
parser.add_argument(
|
||||
"--auto-setup",
|
||||
"--no-auto-setup",
|
||||
action=OptionalBoolAction,
|
||||
nargs=0,
|
||||
dest="auto_setup",
|
||||
default=None,
|
||||
)
|
||||
parser.add_argument(
|
||||
"--dot", action="store_true", help="Output the topology in DOT format and exit"
|
||||
)
|
||||
parser.add_argument(
|
||||
"--backend",
|
||||
choices=["ring", "jaccl"],
|
||||
default=None,
|
||||
help="Which distributed backend to configure",
|
||||
)
|
||||
|
||||
# parser.add_argument(
|
||||
# "--hostfile-only", action="store_true", help="If set only compute the hostfile"
|
||||
# )
|
||||
args = parser.parse_args()
|
||||
|
||||
if args.hostfile is not None:
|
||||
hosts = parse_hostfile(parser, args.hostfile)
|
||||
else:
|
||||
hosts = parse_hostlist(parser, args.hosts, 1)
|
||||
|
||||
# Check that we can ssh
|
||||
log(
|
||||
args.verbose,
|
||||
f"Checking for ssh access for {', '.join(h.ssh_hostname for h in hosts)}",
|
||||
)
|
||||
check_ssh_connections(hosts)
|
||||
|
||||
# Prepare a hostfile for communication over ethernet using the ips of the
|
||||
# provided hostnames
|
||||
if args.over == "ethernet":
|
||||
prepare_ethernet_hostfile(args, hosts)
|
||||
|
||||
# Configure the macs for communication over thunderbolt, both via RDMA and IP
|
||||
else:
|
||||
prepare_tb_hostfile(args, hosts)
|
||||
|
||||
@@ -45,11 +45,13 @@ class CommandProcess:
|
||||
|
||||
|
||||
class RemoteProcess(CommandProcess):
|
||||
def __init__(self, rank, host, cwd, files, env, command):
|
||||
def __init__(self, rank, host, python, cwd, files, env, command):
|
||||
is_local = host == "127.0.0.1"
|
||||
script = RemoteProcess.make_monitor_script(rank, cwd, files, env, command)
|
||||
script_b64 = base64.b64encode(script.encode()).decode()
|
||||
cmd = f'{sys.executable} -c "import base64; exec(base64.b64decode(\\"{script_b64}\\"));"'
|
||||
cmd = (
|
||||
f'{python} -c "import base64; exec(base64.b64decode(\\"{script_b64}\\"));"'
|
||||
)
|
||||
if not is_local:
|
||||
cmd = f"ssh {host} '{cmd}'"
|
||||
|
||||
@@ -309,7 +311,7 @@ def launch_ring(parser, hosts, args, command):
|
||||
_launch_with_io(
|
||||
RemoteProcess,
|
||||
[
|
||||
((rank, h.ssh_hostname, cwd, files, env, command), {})
|
||||
((rank, h.ssh_hostname, args.python, cwd, files, env, command), {})
|
||||
for rank, h in enumerate(hosts)
|
||||
],
|
||||
args.verbose,
|
||||
@@ -341,6 +343,7 @@ def launch_nccl(parser, hosts, args, command):
|
||||
(
|
||||
rank,
|
||||
h.ssh_hostname,
|
||||
args.python,
|
||||
cwd,
|
||||
{},
|
||||
env + [f"CUDA_VISIBLE_DEVICES={rank % args.repeat_hosts}"],
|
||||
@@ -374,7 +377,7 @@ def launch_jaccl(parser, hosts, args, command):
|
||||
_launch_with_io(
|
||||
RemoteProcess,
|
||||
[
|
||||
((rank, h.ssh_hostname, cwd, files, env, command), {})
|
||||
((rank, h.ssh_hostname, args.python, cwd, files, env, command), {})
|
||||
for rank, h in enumerate(hosts)
|
||||
],
|
||||
args.verbose,
|
||||
@@ -503,11 +506,20 @@ def main():
|
||||
default=12345,
|
||||
help="The port to use for the NCCL communication (only for nccl backend)",
|
||||
)
|
||||
parser.add_argument(
|
||||
"--no-verify-script",
|
||||
action="store_false",
|
||||
dest="verify_script",
|
||||
help="Do not verify that the script exists",
|
||||
)
|
||||
parser.add_argument(
|
||||
"--python", default=sys.executable, help="Use this python on the remote hosts"
|
||||
)
|
||||
|
||||
args, rest = parser.parse_known_args()
|
||||
|
||||
if args.print_python:
|
||||
print(sys.executable)
|
||||
print(args.python)
|
||||
return
|
||||
|
||||
if len(rest) == 0:
|
||||
@@ -523,10 +535,10 @@ def main():
|
||||
|
||||
# Check if the script is a file and convert it to a full path
|
||||
if (script := Path(rest[0])).exists() and script.is_file():
|
||||
rest[0:1] = [sys.executable, str(script.resolve())]
|
||||
rest[0:1] = [args.python, str(script.resolve())]
|
||||
elif (command := shutil.which(rest[0])) is not None:
|
||||
rest[0] = command
|
||||
else:
|
||||
elif args.verify_script:
|
||||
raise ValueError(f"Invalid script or command {rest[0]}")
|
||||
|
||||
# Launch
|
||||
|
||||
2
setup.py
2
setup.py
@@ -266,7 +266,7 @@ if __name__ == "__main__":
|
||||
entry_points = {
|
||||
"console_scripts": [
|
||||
"mlx.launch = mlx._distributed_utils.launch:main",
|
||||
# "mlx.distributed_config = mlx.distributed_run:distributed_config",
|
||||
"mlx.distributed_config = mlx._distributed_utils.config:main",
|
||||
]
|
||||
}
|
||||
install_requires = []
|
||||
|
||||
Reference in New Issue
Block a user