TMBR: December 2025

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Prev: November 2025 This Month in Beaver Research Next: January 2026

This edition of TMBR is in progress and has not yet been released. Please add any notes you think may be relevant (including in the form a of a TODO with a link to any relevant Discord discussion).

This is the last edition of TMBR this year. 2025 was a very productive year for BBChallenge: about 60% of the next domain, BB(6), was solved. Furthermore, new champions were discovered for BB(6), BB(7) and BB(4,3). Many models of computation other than Turing Machines were also explored - most notably Fractran and Instruction-Limited Busy Beaver. Some new methods were developed, such as mxdys's new version of FAR.

This year, Themed Months were introduced - first, for BB(3,3), then for BB(2,5) - and the result is the clarification and verification of some of the results and techniques on the Discord and wiki. See TMBR: November 2025#Themed Months for more information.

This Year in Beaver Research (TYBR - "Thank You Beaver Researchers!")

Holdouts Reductions.

  • BB(6) - Reduced from 3571 to 1416 holdouts. Hence, 2155 machines were solved this year. This is a 60% reduction.
  • BB(2,5) - Reduced from 217 to 75, a 65.43% reduction.
  • BB(7) - Enumeration was completed, the number of holdouts was reduced from an initial 85,853,789 to 20,405,295 machines, a 76.23% reduction.
  • BB(4,3) - Reduced from 460,916,384 to 9,401,447 holdouts, a 97.96% reduction.
  • BB(3,4) - Reduced from 434,787,751 to 14,518,243 holdouts, a 96.66% reduction.
  • BB(2,7) - Enumeration started, 50K of the 1M subtasks have been enumerated (5%).

Champions.

New Methods.

TODO: Before July

Misc.

  • A fast algorithm for Consistent Collatz simulation was re-discovered and popularized. Using it,
    • apgoucher simulated Antihydra to 238 iterations. This is actually a result from one year ago, but was rediscovered and added to the wiki. Source
    • Shawn Ligocki simulated 1RB1RA_0RC1RC_1LD0LF_0LE1LE_1RA0LB_---0LC (bbch) out to one additional Collatz reset, demonstrating that (if they halt, which they probviously should) they will have sigma scores >1010107.
    • This algorithm has near linear runtime (in the number of iterations simulated), but also linear memory growth since the parameters grow exponentially. This memory limit seems to be the main bottleneck to simulating Antihydra and other Consistent Collatz iterations further. There has been some discussion on more efficient memory usage or a distributed algorithm to support further scaling, but no results are available yet.
  • Andrew Wade claims to have proven that BB(432) is independent of ZF. Source
  • Piecewise Affine Functions (PAF) were explored as a generalization of the BMO1 rules:
    • @Bard proved that 3 dimension PAF are Turing complete.[1]
    • @star proved that 2 dimension PAF are Turing complete.[2][3]
    • Shawn Ligocki wrote up a proof sketch that 2-region PAF are Turing complete.[4]
    • It was discovered that Amir Ben-Amram had already proven both of these results in 2015 (both the 2-dim and the 2-region results).
    • BMO1 is a 2-dim, 2-region PAF so this provides some sense for the difficulty of the problem.
    • This introduces a new type of Cryptids separate from previous Collatz-like ones.
  • @coda shared a mechanical implementation of Antihydra[5] and @zts439 3d-printed a prototype.[6]
  • @vonhust created a fast TM simulator that averages 2 billion steps / s. It uses fixed-block Macro Machines with each block bit-packed into integers. It is about 10x faster than direct simulators across most TMs.[7]

TODO: Before July

BB Adjacent.

TODO: Before July

In the News.

TODO: Before July

BB Adjacent

TODO. Register machines, General Recursive Functions, Fractran progress.

Holdouts

  • BB(6):
    • There are 14 holdouts left to simulate up to 1e12 steps, and 312 to simulate up to 1e13 steps[1]. The two lists can be found here.
  • BB(3,4):
    • XnoobSpeakable continued reducing the number of holdouts with Stage 8 of Phase 2, by reducing it from 15,136,283 to 14,518,243 TMs. This is a 4.08% reduction.
  • BB(2,7):
    • Terry Ligocki enumerated 10K more subtasks, increasing the number of holdouts to 150,662,006 and making 50K of the 1 million subtasks enumerated or 5%.