v0.5 groundwork: true-shape compaction plan and polygon clearance primitives - #9
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Add steel-cutlist, a deterministic 1D bar-nesting engine for long products (beams, HSS, angles, pipe) that packs required member lengths onto purchasable mill lengths with explicit kerf and end-trim allowances. - Strategy portfolio per designation+grade group: mixed-stock greedy plus each single-stock-length restriction, ranked by unplaced count, total stock length, known cost, then bar count. - Independent post-placement verification (overcommitment, material mismatch, duplicate or missing instances) gates publication. - Weights resolve from explicit plf or the bundled AISC database; unknown weights surface as warnings, never silent zeros. - Publishes manifested runs: bar diagrams, purchase summary, drop candidates, rfq_linear.json handoff, and a cutting_list.csv emitted only for verified fully placed runs. - Register cutlist_partial/cutlist_verified package statuses and add a versioned cutlist-result schema. Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
Wire the steel-cutlist engine into the review-gated estimate pipeline and carry its results into the draft RFQ workbook. - Member items (designation + length, no plate geometry) now optimize onto configurable mill lengths (--mill-lengths-ft, default 40,50,60) with cut-list kerf, end-trim, and drop-threshold settings. - Cut-list validation errors, verifier findings, and unplaced members gate the pipeline exactly like nest blockers; a member longer than every mill length blocks the run as cutlist_partial. - Ready runs publish cutlist-result.json, rfq-linear.json, a verified cutting_list.csv, and reference bar diagrams alongside the nest artifacts. - The RFQ compiler accepts a validated linear handoff (--linear on the standalone CLI) and renders a LINEAR STOCK / CUT-LIST REFERENCE section, with staleness checks against the estimate identity. Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
- Add CHANGELOG.md with dated release history from the git record. - README: cut-list section, skill table row, workflow diagram, prompts. - steel-estimate and steel-rfq SKILL.md document the cut-list stage and the --linear handoff; steel-nest description defers long products to steel-cutlist to keep trigger boundaries unambiguous. - Bump package and runtime versions to 0.3.0 and ship CHANGELOG.md in the npm package. Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
- A negative member quantity now records its finding and publishes a structured blocked run instead of crashing instance expansion. - Members without a grade are excluded from pipeline cut-list optimization with an explicit warning, restoring the pre-cutlist review_required outcome instead of hard-blocking the estimate. - Blocked runs report verification.status 'not_run' rather than claiming a verification that never executed; schema updated. - rfq_linear rows carry their own stock group's utilization instead of the job-wide blend. - --mill-lengths-ft rejects non-finite entries as a usage error and no longer double-wraps its own failure message. - Display formatting is decimal-exact, so cutting_list.csv preserves sixteenth-inch lengths instead of rounding at six significant digits. - Deduplicate is_sha256, missing_optional_modules, and normalize_designation into the shared pi_steel package; nest, takeoff, and cutlist now share one copy. - Hoist the placed-instance set out of the per-unplaced-row loop. Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
Extend the estimate-package contract with stock_form 'linear' entries so vendor lengths and on-hand sticks flow into cut-list optimization. - Schema: additive linearStock variant (designation, grade, length_ft, quantity, optional unlimited for purchasable supply, and the same hash-bound reviewer_confirmation as plate stock). - Validation: unlimited on-hand linear stock is a blocker; new eligible_on_hand_linear_stock and linear_purchasable_stock helpers mirror the plate gating. - Engine: stock entries carry stock_kind; on-hand stock must be finite and carries no cost basis, reports as cost_basis 'on_hand', and never degrades cost-known status. The portfolio now ranks by purchased length first (on-hand consumption is free), then known cost, purchased bars, and total length, so confirmed sticks eliminate purchases whenever they genuinely can. - Pipeline: declared purchasable linear lengths replace the default mill lengths for their designation+grade group; confirmed on-hand sticks join as finite inventory; plate nesting skips linear entries. - Purchase summaries, rfq_linear rows, bar reports, and the text report label on_hand rows explicitly. Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
The full-render smoke caught two problems with the cut-list additions: - cutting_list.csv was published with geometry_verified readiness even when the overall run was review_required (e.g. irregular plate geometry), breaking the invariant that non-ready runs carry no verified-authority artifacts. The verified cutting list now requires the whole run to be ready, mirroring burn-DXF suppression, with a base-tier regression assertion. - The workbook PDF page-count assertions assumed one total page, but the linear reference section grows the sheet and pagination varies by LibreOffice version (24.2 renders one page where CI renders two). The smoke test now asserts the actual contract: uniform page width (one page wide), all words within their own page bounds, document-order section ordering across pages, page-1 logo bounds, and a sanity cap on total pages. Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
- Reject non-boolean 'unlimited' values with an invalid_unlimited_flag finding instead of coercing truthy strings into unlimited supply, which could understate purchase requirements. - Include stock_kind in generated stock identities so anonymous on-hand and purchasable rows of the same designation, grade, and length no longer collide as duplicates. - README: list channels and tube among supported cut-list member types, matching the changelog. Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
- Small designation+grade groups (up to 12 pieces) now run a deterministic branch-and-bound search over complete bar assignments, seeded and pruned by the portfolio rank with a fixed node budget; it only ever replaces the greedy plan with a strictly better one. On the classic best-fit-decreasing failure (5,5,4,4,3,3,3,3 onto capacity 10) it finds the 3-bar optimum where the greedy needs 4. - The ranking objective is now economically honest: when every stock entry in a group carries a known cost basis, lowest purchase cost decides before purchased length (buying cheaper beats buying shorter); unpriced groups keep the least-purchased-length objective. Without prices, the exact search finds a 230 ft plan on the reference case where the greedy bought 240 ft. - output-contract.md documents cutlist artifacts and cutlist_partial; the estimate-package example gains member items and vendor linear stock; version 0.3.1. Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
The branch-and-bound now branches over leaving each piece unplaced (stock_exhausted) in addition to every placement, so when finite stock cannot hold everything it finds the partial plan stranding the fewest members instead of falling back to the greedy's weaker cut. Pruning compares (unplaced, primary objective) lexicographically — both grow monotonically along a path — and the never-worse guarantee is unchanged. Adds docstrings to the search internals and a regression test where the greedy strands three pieces but the optimum strands two. Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
Two capacity-10 bars with pieces 8,6,4,4,4: the exact search strands only the 8 where the greedy stranded two 4s. Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
Irregular plate parts may now carry geometry.outline — a simple-polygon vertex list in the part's local frame whose bounding box matches the declared size. - Exact shoelace areas and weights replace hand-declared estimates, reported as the new outline_exact approximation status. - Holes are verified against the true profile: a hole inside the bounding box but in a notch now blocks instead of passing. - Layouts and reference DXFs draw the real outline (with the bounding box dotted for context); placement stays by bounding box and burn-DXF suppression for irregular parts is unchanged. - Outline validation (>=3 finite vertices, non-crossing edges, positive area, bbox spanning 0..width x 0..height, declared-area consistency) runs in both the canonical validator and the direct nesting engine; polygon helpers live in the shared geometry module. - Schemas: estimate-package geometry.outline, nest-result placement outline and outline_exact enum. Version 0.4.0. Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
Address review findings on the outline feature: - polygon_is_simple now rejects repeated vertices and ANY contact between non-adjacent edges (endpoint touches and collinear overlaps included, not just proper crossings), so reused-boundary and pinched rings can no longer claim exact areas or reach reference DXFs. - Fallback source identities include the outline when one is present, so two legacy parts sharing a name and bounding box but different profiles no longer collide as duplicates; identities for parts without outlines stay byte-stable. - The nest-result placement outline schema now permits only an empty list or three-plus vertex pairs, matching what the engine emits. Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
Design for the first placement-quality milestone on outlined irregular parts: deterministic left-then-down profile compaction after bounding-box packing, gated by an independent polygon-clearance verifier that discards any compacted plate it cannot prove. Burn eligibility and review gating are unchanged; full NFP nesting stays out of scope. Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
U1 of the true-shape compaction plan: exact polygon-polygon minimum distance (zero on any contact or overlap, bounding-box early exit per edge pair), overlap detection, rectangle-as-polygon adapter, and usable-area containment, with unit tests covering touching, nested, diagonal, and notch-adjacent cases. No behavior change to placement or verification yet. Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
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📝 WalkthroughWalkthroughThe change documents a true-shape compaction plan and adds polygon geometry utilities. The utilities detect overlap, calculate minimum distance, generate outlines, and verify containment. Tests cover separated, touching, overlapping, nested, diagonal, and concave polygons. ChangesTrue-shape compaction
Estimated code review effort: 3 (Moderate) | ~20 minutes Merge Risk: 🔵 Low · up to This PR adds polygon-clearance primitives and documents future compaction behavior without changing current placement output. The documented slide algorithm is not reliable for concave profiles and should be corrected before compaction implementation proceeds; the current changes are otherwise mergeable with explicit owner follow-up. 🚥 Pre-merge checks | ✅ 5✅ Passed checks (5 passed)
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In `@docs/plans/2026-08-23-002-feat-true-shape-compaction-plan.md`:
- Around line 90-95: The placement slide algorithm must not rely solely on
binary search because clearance can be non-monotonic for concave profiles.
Replace the binary-search-only step in the placement sweep with interval
scanning and refinement for continuous sliding, or enumerate feasible intervals
when only the final position matters, then select the largest valid offset; also
add a concave alternating-clearance fixture before U2.
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docs/plans/2026-08-23-002-feat-true-shape-compaction-plan.mdskills/_shared/pi_steel/geometry_verify.pytests/test_outline_geometry.py
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Review caught that clearance along a slide is non-monotonic for concave profiles, so binary search over the offset is unsound. The compaction slide is a continuous motion: fixed-step scan from the current position and stop one step before the first clearance violation. U2 gains a required concave alternating-clearance fixture proving the scan cannot tunnel through a blocking neighbor into a later clear interval. Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
🤖 Lab Code Review (draft opinion)
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Co-Authored-By: Claude <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
Summary
Groundwork for the next placement-quality milestone, following the repo's plan-then-build convention.
Plan document
docs/plans/2026-08-23-002-feat-true-shape-compaction-plan.mddesigns v0.5: a deterministic post-placement compaction pass that slides outlined irregular parts toward the plate origin until their true profiles (not their bounding boxes) reach kerf+gap clearance — recovering the plate area that bounding-box packing wastes on interlockable shapes like L-gussets.Safety posture is explicit and unchanged from v0.4.0:
review_requiredgating for irregular parts are untouched,This PR is the natural place to veto or redirect the approach before the heavy geometry lands.
U1: polygon clearance primitives (implemented)
Shared, behavior-neutral geometry in
pi_steel.geometry_verify:polygon_min_distance— exact minimum distance between simple polygons, zero on any contact/overlap, with a per-edge-pair bounding-box early exit,polygons_overlap,polygon_within_rect, andrect_outlineso mixed rect/irregular plates verify uniformly.No placement or verification behavior changes yet — the compactor (U2) and verifier gate (U3) build on these in follow-up work.
Test plan
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https://claude.ai/code/session_01MquyTzVAPKpV1V8Vt3XxnJ
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Summary by CodeRabbit
New Features
Tests