v1.4.0 adds the complete GH-001 through GH-025 public Shorts derivative archive to the existing Greg Hill / Floored dossier. The public presentation is a flooring brochure, while the archival and machine-readable layers preserve exact publication evidence, transcript status, provenance, qualifications, and parent-recording context.
Core checks
Complete GH-001 through GH-025 sequence; no numbered gaps.
All 25 Shorts confirmed Public / Published and 0:36.
Publication dates span May 23 through June 5, 2025.
Exact GH-020 title recovered from Studio evidence.
One shared cleaner frame is preserved and displayed as the brochure cover and record header.
Original player-context capture and four Studio evidence captures are preserved.
Exact titles, descriptions, URLs, supplied transcripts, and transcript gaps are preserved.
Every record is aligned to the existing timestamped parent transcript.
GH-008, GH-023, GH-024, and GH-025 document absent Short transcripts without invention.
Six brochure systems are both human-readable and machine-readable.
Per-record JSON, JSON Schema, JSON/CSV registers, subject index, people/organization index, evidence manifest, and fixity are present.
Parent dossier, category index, Collection Index, and Record Collection landing page provide prominent access.
Financial, interpersonal, competition, and “The Leary” claims remain attributed and qualified.
Parent-URL discrepancy remains documented rather than silently resolved.
Package counts
Item
Count
Complete package files
1054
GH derivative records
25
Shared visual captures
2
Studio evidence captures
4
JSON files
96
CSV files
45
PNG files
121
PDF files
21
Changed/new files from v1.3.1
174
Deleted files
0
Longest internal relative path
168 characters
Longest packaged path
186 characters
Fixity
Derivative-level SHA-256 manifest verifies.
Complete Record Collection SHA-256 manifest verifies.
Result
The v1.4.0 package satisfies the Lititz BMX visual and archival standards: the brochure presentation is memorable and navigable, while the underlying records remain exact, attributed, machine-readable, and reproducible.