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docs(plans): add SilverSight completion pipeline design
Adds 6-Documentation/docs/plans/SilverSight_completion_pipeline.md, describing the full phase plan from the current core Semantics state to a verified SilverSight 1.0: Core completion, Research Stack triage/port, corpus build, mathematical models, shim rewrite, hardware extraction, applications, documentation, and claim-state promotion.
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6-Documentation/docs/plans/SilverSight_completion_pipeline.md
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# SilverSight Completion Pipeline
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**Status:** Design draft — to be approved before execution
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**Version:** 0.1
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**Date:** 2026-06-21
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**Ground truth:** Lean 4 (`/tmp/SilverSight`) + Research Stack documentation (`/home/allaun/Research Stack`)
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---
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## 1. Current State
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The SilverSight core rebas has reached the end of its **Phase 0/1 boundary**:
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- ✅ YaFF-inspired `Semantics` core exists and compiles:
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- `Schema.lean`, `Layout.lean`, `WireFormat.lean`, `View.lean`, `LayoutBridge.lean`, `CanalLayout.lean`
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- ✅ `lake build` green: 2987 jobs, 0 errors
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- ✅ Q16_16 roundtrip proven across Python, C, and Lean
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- ✅ Repo hygiene scripts active: glossary lint, doc sync, project map generator
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- ✅ Specification drafted in `6-Documentation/docs/specs/SilverSight_Spec.md`
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- ⬜ Product-type encoders not yet implemented
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- ⬜ DynamicCanal physics not linked to layout selection
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- ⬜ Research Stack theorems not triaged or ported
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- ⬜ No claim-state manifest exists yet
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- ⬜ Extraction targets (Python/Rust/Verilog) not generated from Lean
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This pipeline describes the shortest safe path from the current state to a
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**completed SilverSight 1.0**: a fully-Lean-grounded system with searchable
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concepts, verified compression receipts, substrate-extractable hardware
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specifications, and promotion-ready documentation.
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---
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## 2. Design Principles
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1. **Lean is the source of truth.** Every decision, cost, gate, and receipt
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invariant is defined and proved in Lean. Python, Rust, and Verilog are
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extraction targets only.
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2. **No `sorry` in the main build.** Proof holes live in quarantined modules
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with a `TODO(lean-port)` ticket and human sign-off.
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3. **No `Float` in compute paths.** `Q0_16` is the default scalar. `Q16_16` is
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allowed only with a theorem-backed justification.
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4. **Receipts are the compressed state.** A receipt is not metadata; it is the
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encoding. Invertibility of a receipt is the definition of lossless
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transformation.
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5. **Promotion is gated.** Claims advance only through the claim-state ladder
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with reproducible evidence and reviewer provenance.
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6. **Library method.** `Core/` defines contracts; libraries implement them.
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Libraries never import other libraries.
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---
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## 3. Claim-State Ladder
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Every claim, module, and receipt advances through exactly these states:
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| State | Meaning | Exit gate |
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|---|---|---|
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| `BEAUTIFUL_PROVISIONAL` | Intuition captured in a spec or stub. | Spec reviewed; module skeleton compiles. |
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| `CALIBRATED_ENGINEERING_DELTA` | Implementation exists with `#eval` witnesses or unit tests. | `lake build` / `py_compile` / roundtrip tests pass. |
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| `REVIEWED` | Independent review (LLM or human) confirms no logic leakage and no float. | Review receipt emitted and signed. |
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| `VERIFIED` | A Lean theorem or hardware receipt proves the claim. | `lake build` green; theorem or instrument receipt present. |
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No claim may skip a state. Promotion out of `BEAUTIFUL_PROVISIONAL` requires a
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Lean module or spec section; out of `CALIBRATED_ENGINEERING_DELTA` requires a
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checkable artifact; out of `REVIEWED` requires a reviewer provenance receipt;
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out of `VERIFIED` requires a theorem or live-hardware receipt.
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---
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## 4. Phase Overview
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| Phase | Goal | Deliverable | Build gate |
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|---|---|---|---|
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| 1 | Finish Core Semantics | Product encoders, `DynamicCanal` link, `Receipt`/`Bind` | `lake build SilverSightCore` |
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| 2 | Triage & Port Research Stack | Inventory, keep/delete/transform list, ported theorems | `lake build SilverSightFormal` |
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| 3 | Build Search Space Corpus | Corpus250, PIST matrix builder, concept index | `lake build SilverSightRRC` + fixture emit |
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| 4 | Port Mathematical Models | Braid/eigensolid compression, physics manifolds | `lake build SilverSightFormal` |
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| 5 | Rewrite Shims | Pure-I/O Python scripts, no decision logic | `py_compile` + pytest |
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| 6 | Hardware Extraction | Verilog from Lean, FPGA receipts, 1-Wire mapping | Hardware receipt + bitstream hash |
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| 7 | Applications | CAD harness, LLM review emitter, dashboard wiring | End-to-end smoke tests |
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| 8 | Documentation & Promotion | Specs, claim manifests, evidence DAGs | Review + signed manifest |
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---
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## 5. Phase 1 — Finish Core Semantics
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**Goal:** Make the schema/layout/wireformat stack useful for real structured
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objects and link it to substrate physics.
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### 5.1 Product-Type Encodings
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Implement certified `WireFormat` and `LayoutBridge` instances for fixed-size
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product types so that braid states, fixture rows, and receipts can be encoded
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without marshalling through JSON.
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```text
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Core/SilverSight/Semantics/
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ProductSchema.lean -- Schema instance for tuples / structures
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ProductWireFormat.lean -- Row-major, columnar, compact encoders
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ProductLayoutBridge.lean-- rowMajor <-> columnar <-> compact bridges
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```
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**Required theorems:**
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- `product_encode_size` — encoded product size equals sum of field sizes.
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- `product_roundTrip` — decode after encode is identity.
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- `bridge_product_correct` — layout bridge preserves product encoding.
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**Example target:** `BraidState` (8 strands × fixed fields) encoded to a 64-byte
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row-major `ByteArray`.
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### 5.2 DynamicCanal Integration
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Move `CanalRegime` from a free-standing enum to a physics-backed decision:
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```text
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formal/CoreFormalism/DynamicCanal/
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Regime.lean -- CanalRegime + classifyRegime from pressure
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Lane.lean -- Lane geometry and λ_eff(P)
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Timing.lean -- Timing parameters derived from canal state
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```
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**Link:** `CanalLayout.chooseLayout` calls `DynamicCanal.classifyRegime` to
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override the cost-based choice when the substrate is in `stressed` or `throat`.
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**Required theorem:** `regime_override_preserves_cost_bound` — a regime override
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never selects a layout more than a documented ε factor worse than the pure cost
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optimum.
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### 5.3 Receipt and Bind Core
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Implement the receipt type and the `bind` primitive that composes gates:
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```text
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Core/SilverSight/
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Receipt.lean -- Receipt schema, wellFormed, validation
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Bind.lean -- bind : Gate a b -> Gate b c -> Gate a c
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Core/SilverSightCore.lean -- integrate Receipt and bind into the invariant center
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```
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**Required theorems:**
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- `Receipt.wellFormed_decidable`
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- `bind_associative`
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- `bind_identity_left` / `bind_identity_right`
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### 5.4 Fixed-Point Completion
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Ensure `Q0_16` is the default dimensionless scalar and `Q16_16` is available
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with a documented reason. Remove any remaining `Float` from core compute paths.
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**Verification:**
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```bash
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lake build SilverSightCore
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lake build SilverSightFormal
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python3 tests/test_q16_roundtrip.py
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.lake/build/bin/q16-roundtrip
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```
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---
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## 6. Phase 2 — Triage and Port Research Stack Theorems
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**Goal:** Decide what survives from Research Stack and port it cleanly.
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### 6.1 Inventory
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Run the existing inventory scripts to produce a machine-readable map:
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```bash
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cd /home/allaun/Research Stack
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python3 scripts/inventory_everything.py # Postgres + Gremlin + repo
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python3 extraction/generate_porting_candidates.py # if available
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cd /tmp/SilverSight
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python3 docs/generate_research_stack_usage_map.py # cross-reference usage
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python3 docs/generate_porting_candidates.py # produce keep/delete/transform list
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```
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**Output:**
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- `extraction/all_concepts_merged.json` (Research Stack)
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- `docs/research_stack_triage_report.md` (SilverSight)
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### 6.2 Triage Rules
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Apply the spec rules:
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| Action | Criterion |
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|---|---|
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| **Keep** | Compiles under `lake build`; has a theorem or `#eval` witness; no `Float` in compute path. |
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| **Delete** | Duplicate `Q16_16`, demo scripts, SaaS integrations, unproven Python decision logic. |
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| **Transform** | Python shims → pure I/O; markdown specs → structured sections; Rust/Verilog → extraction targets. |
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| **Quarantine** | Contains `sorry` or `unsafe` and is not on the critical path; mark `TODO(lean-port)`. |
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### 6.3 Port Order
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1. Fixed-point and numeric lemmas (`Semantics.FixedPoint` family).
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2. Sidon sets and interaction graphs (`SidonSets.lean`, `InteractionGraphSidon.lean`).
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3. Braid dynamics (`BraidStrand.lean`, `BraidCross.lean`, `BraidEigensolid.lean`).
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4. Sieve lemmas and weak-axis CRT (`SieveLemmas.lean`).
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5. Remaining physics modules only if needed by Phase 4 compression claims.
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### 6.4 Module Destination Map
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| Research Stack module | SilverSight destination | Notes |
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|---|---|---|
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| `Semantics.FixedPoint.lean` | `Core/SilverSight/FixedPoint.lean` | Already canonical. |
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| `Semantics.SidonSets.lean` | `formal/CoreFormalism/SidonSets.lean` | Keep. |
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| `Semantics.InteractionGraphSidon.lean` | `formal/CoreFormalism/InteractionGraphSidon.lean` | Keep. |
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| `Semantics.SieveLemmas.lean` | `formal/CoreFormalism/SieveLemmas.lean` | Keep. |
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| `Semantics.Braid*.lean` | `formal/CoreFormalism/Braid*.lean` | Keep. |
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| `Semantics.RRC.*.lean` | `formal/SilverSight/RRC/*.lean` | Port selectively. |
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| `Semantics.AVMIsa.*.lean` | `formal/SilverSight/AVMIsa/*.lean` | Already present; reconcile diffs. |
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| `4-Infrastructure/shim/*.py` | `python/` or delete | Strip decision logic. |
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### 6.5 Verification
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```bash
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lake build SilverSightFormal # must stay green after each ported module
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lake build SilverSightRRC # must stay green after RRC ports
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```
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---
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## 7. Phase 3 — Build Search Space Corpus
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**Goal:** Produce the 250-equation corpus and the PIST matrix pipeline so that
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RRC alignment has real inputs.
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### 7.1 Corpus250 Builder
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Create or port the 250-equation fixture corpus as a pure data module:
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```text
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formal/SilverSight/RRC/Corpus250.lean -- 250 FixtureRow values
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python/pist_matrix_builder.py -- generate 8x8 strand matrices
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python/build_corpus250.py -- merge PIST labels into FixtureRows
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```
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**Rules:**
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- Equations are raw text; no admissibility logic in Python.
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- `pistProxyLabel` / `pistExactLabel` are populated only when PIST predictions exist.
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- Alignment status remains `missingPrediction` until labels are present.
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### 7.2 Concept Index
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Generate a searchable concept index:
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```text
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python/inventory_concepts.py
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→ docs/concepts.json
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→ docs/concepts.md
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```
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Each concept gets a stable ID:
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```text
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silversight_<type>_<source_hash>_<name_hash>
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```
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### 7.3 RRC Emit Fixture Executable
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Ensure `exe/RrcEmitFixture.lean` emits the full corpus as AVM-stamped JSON:
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```bash
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lake build rrc-emit-fixture
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.lake/build/bin/rrc-emit-fixture > /tmp/rrc_fixture_emitted.json
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python3 python/validate_rrc_predictions.py /tmp/rrc_fixture_emitted.json
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```
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**Verification:**
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```bash
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lake build SilverSightRRC
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lake build rrc-emit-fixture
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python3 -m py_compile python/*.py
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python3 python/validate_rrc_predictions.py /tmp/rrc_fixture_emitted.json
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```
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---
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## 8. Phase 4 — Port Mathematical Models
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**Goal:** Prove the compression and physics claims that justify SilverSight.
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### 8.1 Braid / Eigensolid Compression
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Port the braid dynamics and prove the two compressor theorems:
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```text
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formal/CoreFormalism/
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BraidEigensolid.lean -- eigensolid_convergence
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BraidReceipt.lean -- receipt_invertible
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```
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**Required theorems:**
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- `eigensolid_convergence` — `crossStep` reaches a fixed point.
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- `receipt_invertible` — given the receipt, the original state is reconstructible
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within bounded error, including gaps/timing/absence.
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### 8.2 Physics Models (Optional)
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Only port physics manifolds if they feed a receipt claim:
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- `ManifoldStructures.lean` / `CausalGeometry.lean` / `ExoticSpacetime.lean`
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- Migrate to canonical `Semantics.FixedPoint.Q16_16` using the
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`PhysicsScalarBridge` pattern.
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**Verification:**
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```bash
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lake build SilverSightFormal
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```
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---
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## 9. Phase 5 — Rewrite Shims
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**Goal:** Convert all Python scripts to pure I/O wrappers.
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### 9.1 Decision-Logic Removal
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For every Python file in `python/` and `qubo/`:
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1. Identify functions that branch on admissibility, cost, or classification.
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2. Move the decision to Lean.
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3. Replace Python logic with:
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- JSON read/write
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- subprocess call to `lake exe <gate>`
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- result formatting
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### 9.2 New/Updated Shims
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```text
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python/
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q16_canonical.py # reference implementation (already pure)
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sidon_address.py # raw Sidon label generation
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pist_matrix_builder.py # raw 8x8 counts
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build_corpus250.py # merge only; no alignment logic
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validate_rrc_predictions.py # schema check only
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emit_review_receipt.py # call Lean emitter, store JSON
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inventory_concepts.py # generate concept index
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qubo/
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qubo_builder.py # format QUBO matrix; solver call
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finsler_metric.py # format metric; no routing decision
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qaoa_adapter.py # format adapter inputs
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```
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### 9.3 Verification
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```bash
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python3 -m py_compile python/*.py qubo/*.py tests/*.py
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python3 -m pytest tests/ # if pytest available
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```
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---
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## 10. Phase 6 — Hardware Extraction
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**Goal:** Generate substrate implementations from Lean and collect hardware
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receipts.
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### 10.1 1-Wire Mapping
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Formalize the 1-Wire trit VM in Lean:
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```text
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formal/CoreFormalism/DynamicCanal/
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LanePayload.lean -- trit VM state
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OneWire.lean -- pulse ↔ trit ↔ canal regime mapping
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```
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### 10.2 Verilog Extraction
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For combinational circuits derived from Lean `def`s, generate Verilog:
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```text
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hardware/
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verilog/
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braid_cross_step.v -- generated from BraidCross.crossStep
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q16_add_sat.v -- generated from FixedPoint.add
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```
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**Rule:** Verilog is an extraction target. The authoritative definition remains
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in Lean.
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### 10.3 FPGA Receipts
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Burn a bitstream and collect a hardware receipt:
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```json
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{
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"schema": "hardware_fpga_receipt_v1",
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"bitstream_hash": "sha256:...",
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"uart_beacon": "...",
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"continuous_state": "...",
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"gate": "q16_add_sat",
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"result": "passed"
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}
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```
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**Verification:**
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- Bitstream hash matches generated Verilog source hash.
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- UART beacon observed.
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- Continuous state verification (not just exit code).
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---
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## 11. Phase 7 — Applications
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**Goal:** Wire user-facing tools to the verified core without leaking logic.
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### 11.1 CAD Harness
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- Text-to-CAD pipeline calls Lean geometry gate.
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- Python only formats inputs and renders outputs.
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### 11.2 LLM Review Emitter
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- `python/emit_review_receipt.py` calls the canonical review emitter.
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- Review receipts include `answer_sha256` and are verifiable.
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### 11.3 Dashboard
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- Hermes dashboard displays receipt state, build status, and concept index.
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- No decision logic in the dashboard.
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---
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## 12. Phase 8 — Documentation and Promotion
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**Goal:** Produce the final evidence package and promote claims to `VERIFIED`.
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### 12.1 Spec Completion
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Finalize:
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- `6-Documentation/docs/specs/SilverSight_Spec.md`
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- `docs/ARCHITECTURE.md`
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- `docs/TESTING.md`
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- `docs/GLOSSARY.md`
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### 12.2 Claim-State Manifest
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|
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Create a machine-readable manifest:
|
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|
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```text
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docs/claims/
|
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manifest_v1.json -- every claim, current state, evidence URLs
|
||||
manifest_v1.md -- human-readable summary
|
||||
```
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Each entry:
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```json
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{
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"claim_id": "silversight_claim_eigensolid_convergence",
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"state": "VERIFIED",
|
||||
"evidence": ["formal/CoreFormalism/BraidEigensolid.lean:theorem eigensolid_convergence"],
|
||||
"reviewer": "...",
|
||||
"promoted_at": "..."
|
||||
}
|
||||
```
|
||||
|
||||
### 12.3 Evidence DAG
|
||||
|
||||
Build a directed acyclic graph of evidence:
|
||||
|
||||
```text
|
||||
docs/claims/evidence_dag.dot
|
||||
```
|
||||
|
||||
Each node is a theorem, receipt, or review; edges are dependency arrows.
|
||||
|
||||
### 12.4 Final Review
|
||||
|
||||
- Independent review of all `REVIEWED` claims.
|
||||
- Signed review receipts.
|
||||
- Promotion to `VERIFIED` only after review.
|
||||
|
||||
---
|
||||
|
||||
## 13. Verification Gates by Phase
|
||||
|
||||
| Phase | Lean build | Python | Receipt / hardware | Review |
|
||||
|---|---|---|---|---|
|
||||
| 1 | `lake build` green | `py_compile` | N/A | Spec review |
|
||||
| 2 | `lake build SilverSightFormal` green | N/A | N/A | Triage report |
|
||||
| 3 | `lake build SilverSightRRC` + fixture emit | `validate_rrc_predictions.py` | AVM-stamped JSON | Corpus review |
|
||||
| 4 | `lake build SilverSightFormal` | N/A | Compression receipts | Theorem review |
|
||||
| 5 | N/A | `py_compile` + pytest | N/A | Shim audit |
|
||||
| 6 | Verilog generated | N/A | FPGA receipt | Hardware review |
|
||||
| 7 | N/A | smoke tests | Review receipts | UX review |
|
||||
| 8 | N/A | N/A | Claim manifest | Final sign-off |
|
||||
|
||||
---
|
||||
|
||||
## 14. Continuous Integration
|
||||
|
||||
The existing GitHub workflows must cover the full pipeline:
|
||||
|
||||
```text
|
||||
.github/workflows/
|
||||
lean-check.yml -- lake build on push
|
||||
python-check.yml -- py_compile + pytest
|
||||
doc-sync.yml -- glossary lint + check_doc_sync
|
||||
q16-roundtrip.yml -- Python/C/Lean roundtrip
|
||||
rrc-emit-check.yml -- emit fixture + validate
|
||||
hardware-receipt.yml -- check FPGA receipts (manual trigger)
|
||||
```
|
||||
|
||||
---
|
||||
|
||||
## 15. Risks and Mitigations
|
||||
|
||||
| Risk | Mitigation |
|
||||
|---|---|
|
||||
| Research Stack modules have `sorry` | Quarantine; do not block main build. |
|
||||
| Duplicate `Q16_16` definitions | Unify to `Semantics.FixedPoint.Q16_16`; bridge old code. |
|
||||
| Python decision logic leaks back | Shim audit checklist; enforce via `python/check_for_decision_logic.py`. |
|
||||
| Hardware receipts cannot be collected | Document software witness vs. live-hardware distinction; keep claims bounded. |
|
||||
| Mathlib version drift | Pin toolchain in `lean-toolchain`; vendor `.lake` if necessary. |
|
||||
| Claim promotion by hand | Manifest is the only promotion authority; manual edits require reviewer signature. |
|
||||
|
||||
---
|
||||
|
||||
## 16. Open Questions to Resolve Before Execution
|
||||
|
||||
1. Should the 250-equation corpus be regenerated from Research Stack data or
|
||||
rewritten for SilverSight?
|
||||
2. Is AVM rebuilt in Phase 1, or does the existing AVM ISA remain canonical?
|
||||
3. Which physics modules are required for 1.0 vs. deferred to 1.1?
|
||||
4. Which FPGA board is the hardware extraction target?
|
||||
5. Who are the human reviewers for the `REVIEWED` → `VERIFIED` transitions?
|
||||
|
||||
---
|
||||
|
||||
## 17. Immediate Next Steps
|
||||
|
||||
If this pipeline is approved, the first executable batch is:
|
||||
|
||||
1. **Phase 1.1** — Implement `ProductSchema.lean`, `ProductWireFormat.lean`, and
|
||||
`ProductLayoutBridge.lean` with a `BraidState` instance.
|
||||
2. **Phase 1.2** — Link `CanalLayout.chooseLayout` to
|
||||
`CoreFormalism.DynamicCanal.classifyRegime`.
|
||||
3. **Phase 1.3** — Implement `Core/SilverSight/Receipt.lean` and
|
||||
`Core/SilverSight/Bind.lean`.
|
||||
4. **Phase 2.1** — Run Research Stack inventory and produce
|
||||
`docs/research_stack_triage_report.md`.
|
||||
|
||||
Each step is a separate commit with its own build baseline and claim-state
|
||||
update.
|
||||
|
||||
---
|
||||
|
||||
## 18. Acceptance Criteria for SilverSight 1.0
|
||||
|
||||
- `lake build` passes with zero errors across `SilverSightCore`,
|
||||
`SilverSightFormal`, and `SilverSightRRC`.
|
||||
- No `sorry` in the main import path.
|
||||
- No `Float` in core compute paths.
|
||||
- All Python shims pass `py_compile` and contain no admissibility logic.
|
||||
- The 250-equation RRC corpus emits AVM-stamped JSON that validates.
|
||||
- Braid compression has `eigensolid_convergence` and `receipt_invertible`
|
||||
theorems.
|
||||
- At least one hardware receipt (FPGA or 1-Wire) is present with bitstream hash
|
||||
and continuous-state evidence.
|
||||
- A claim-state manifest exists with every in-scope claim at `VERIFIED`.
|
||||
- All documentation is in sync: `glossary_lint.py` and `check_doc_sync.py` pass.
|
||||
Loading…
Add table
Reference in a new issue