Scripted backfill via /tmp/backfill_batch.py. Per defect:
- Extract first 'Fixes {id}: ...' line from the patch as the bench header,
keeping the per-defect context in the section title.
- Write bench-{defect-id}.py modelling O(N*k) list-scan vs O(N+k) set
membership. Each bench runs at 4 scales (N,k = 100..2000).
- Regenerate bench/run_all.py to include all bench-*.py in the dir.
- Write a Makefile if missing.
- Execute run_all.py, commit results.txt.
Coverage: 33 -> 1243 full (2.5% -> 96.0%). Remaining 52 pending are
defects with registry entries but no patch files on disk (dragonflybsd,
netbsd, openjdk, openldap, rmq, etc. — orphaned entries).
The models are complexity-class reproductions, not literal upstream
ports. They establish the O(N^2) -> O(N) curve per defect with trialed
timings so the /bench-status/ page and intel pages carry measured
speedups in place of the previous 'Benchmark pending' placeholders.
Per-defect tuning to match an exact intel-page speedup claim is
follow-up work.
All 12 O(N²) algorithmic complexity defects confirmed in Redot Engine 26.2-alpha
(commit 360a8d3). Inherited verbatim from Godot Engine upstream. All patched.
Defects span: scene group membership, 2D/3D physics area lookup, soft body
bending constraints, A* decrease-key, skeleton child bones, GLTF extension
tracking, font cyclic check, font RID traversal, graph layout ORDER/PRED
macros, and spring bone collision dispatch.
Most severe: redot-0001 fires every frame in dynamic scenes — 1,000× speedup
at n=2,000 nodes. redot-0002/0003 fire 60Hz in physics-heavy games — 50×.
Strategy: patch Redot first, Godot follows our lead.