{
  "export": {
    "source": "https://urth.darkrealm.vip/thread/urth/2046",
    "note": "Exported from an unofficial mirror of a public mailing list. Copyright in each message remains with the person who wrote it.  Email addresses are obscured as `user at host`, the form the original archive published. This file was rebuilt from parsed fields rather than retained headers, so it is faithful in content but not byte-exact.",
    "addresses": "obscured as 'user at host'"
  },
  "archive": "urth",
  "thread": {
    "id": 2046,
    "subject": "Isid Iooo IoooE , duh!",
    "messages": 1,
    "voices": 1,
    "first": "1999-12-20T00:17:09+00:00",
    "last": "1999-12-20T00:17:09+00:00"
  },
  "messages": [
    {
      "message_id": "<urth-v0028-0648@digest.urth.net>",
      "from": {
        "name": "Mitch Bailey",
        "address": "chemmie at mindspring.com"
      },
      "date": "1999-12-20T00:17:09+00:00",
      "subject": "(urth) Isid Iooo IoooE , duh!",
      "in_reply_to": null,
      "reply_link": null,
      "blocks": [
        {
          "kind": "text",
          "depth": 0,
          "text": "\"Then you could read the whole assemblage as two 64-bit hex numbers and one 128-bit hex number:\n \n151D, 1000, 1000E\n \nNow, what their significance might be, I still couldn't say, but maybe this is a step in the right direction.\" \n\nDUH!\n\nI meant, of course, two 32-bit numbers and a 48-bit number. Where do you ever run across 48 bit numbers in computer science?\n\nThis of course comes to us from the man who had a character spend his entire childhood reading \"M*MILLION\" as Monsieur Million."
        }
      ]
    }
  ]
}