You appear not to have read the original post.  Take, for example, this
passage:

the technique would reject, as less predictive, the distribution (model):
> {0 x 7, 1 x 13}
> and it would also reject a model that used 2 bit tokens on odd-numbered
> bit boundaries, as well as models that used 3 bit, or longer, tokens.


On Fri, Oct 11, 2019 at 1:21 PM <[email protected]> wrote:

>  Looks like there are 50 percent zeros and fifty percent ones.
>  Looks completely random?
>  Seed sequences would:
>
> 00 01 10 11
>  And with no fragment seed sequences.
>
> A = 0
> B =1
>
>  Huffman coding, one bit seed compressor, does not work on this level.
>
> kolmogorov complextey  analysis would be to match, find,  bit string
> fragments of
> various lengths. The bit length of matching value would and is limited to
> half the bit length
> of the given bit file. Like as in the fist half of the file  could matches
> the end half.
>  And two matches within the file would make a valued match.
>
>  Then it is on to finding periodic distances to each match and then find
> periodic fragments
>  that match with other fragments and etc.
>
> The LZ77 Compression Family (Ep 2, Compressor Head):
> https://www.youtube.com/watch?v=Jqc418tQDkg
>
>  A completely random file can produce patterns. But there  is threshold it
> has to pass to become a non or less random bit string. Or parts of it.
>
>  Life could be a bit stream recorded in to an AGI. Recorded bit pattern
> are N or NP bit patterns.
>  If universe has  a beginning and an end then there could be a bit pattern
> of the fist
> half of the universe and then a matching pattern of the other half. So if
> a AGI machine
> dies before then end then this pattern is NP. Or AGI does not have enough
> memory
> to record the fist half.
>
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