MJ Football Playbook - Verification and discovery
MJ Football Playbook / Indigo
MJ Physics Engineering | Bangel Language | MJos Operating System
Owned and operated by Michael Bangel | Clearwater, Florida
VERIFICATION AND DISCOVERY
Episodic recall and physics-football playbook projection preserve source curves, command history and selection identities.
OBSERVED IN THIS PASS
Source/document inspection supplied identity, scope, references and documentary contract.
SPECIFIC ASSERTION TO EXECUTE
Another coordinate frame or a later-unavailable observation must not enter the current recall decision.
EXPECTED BOUNDARY
Return a physics-play analysis projection with its evidence or HOLD a context mismatch. Similarity is not calibrated probability or coaching approval.
EVIDENCE RECORD REQUIREMENT
Fix test identity, source revision, input, expected assertion and applicable contract before execution. Preserve command, environment, observed outcome, exit status, transcript and artifact hashes. Report failed, held and skipped cases.
EXECUTION STATUS
Not run by authoring this sequence. Historical test counts remain historical. This new Indigo record follows recovered overview rules; native tests and results remain authoritative.
DISCOVERY NAMES
MJ-Playbook-Projection/0.1.0
These names aid search; current compiler naming remains Elsa.
SOURCE STATUS AND LIMITS
Current source inspected; these documentary bindings do not report newly executed software or physical tests.
Recovered status: implementation_source.
Use only the exact named source scope; a documentary sequence is not deployment or an authority grant.
SOURCE REFERENCES
- plugins/mj_memory_recall/README.md · line 1
https://github.com/Mjos23/bangel-language/blob/229548f13a4856455b3d30d408cf845fb5b557fc/plugins/mj_memory_recall/README.md#L1
- plugins/mj_memory_recall/README.md · line 53
https://github.com/Mjos23/bangel-language/blob/229548f13a4856455b3d30d408cf845fb5b557fc/plugins/mj_memory_recall/README.md#L53
RECOVERED HISTORICAL CONTEXT
- Historical scope: Maps football playbook geometry and actor paths into comparative prediction and neural node-space overlays.