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- Core/SilverSightCore.lean: 200-line minimal core * 8 Hachimoji states (classification alphabet) * Receipt format (core-library interface) * AVM transition function delta : S x I -> S' * TIC axiom (derived, not driver) * Loop invariant: computation generates time * Library interface: Library := String -> Receipt * Receipt validators (format, consistency, state validity) - docs/LIBRARY_MANIFEST.md: 8-library architecture map * LexLib, SearchLib, MetricLib, QUBOLib * StructureLib, PVGSLib, EventLib, AuditLib * Key rule: libraries import core only, never each other - docs/RRC_PLACEMENT.md: RRCLib positioning * RRC is its own library (not AuditLib, not SearchLib) * 3 gates: type, projection, merge (H-KdF polynomial evaluation) * Meta-level: receipts about receipts (hash chain) * Rainbow = 3 color channels, Compiler = receipt -> verdict
161 lines
6 KiB
Markdown
161 lines
6 KiB
Markdown
# RRC (Rainbow Raccoon Compiler) — Library Placement
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## What RRC Actually Is
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From `PVGS_DQ_Bridge_fixed.lean` §4:
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```lean
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structure RRCEvidence where
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typeWitness : ℚ
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projectionWitness : ℚ
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mergeWitness : ℚ
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typeAdmissible : Prop -- gate 1: type check
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projectionAdmissible : Prop -- gate 2: projection check
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mergeAdmissible : Prop -- gate 3: merge check
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def kernelEvidence (x m y n : ℕ) : RRCEvidence
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theorem goormaghtigh_passes_rrc -- known solutions pass
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theorem unknown_fails_rrc -- unknown solutions fail (Goormaghtigh)
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```
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RRC is a **receipt compiler** — it takes receipts and compiles them through
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three gates. Each gate is a semantic validation:
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| Gate | What it checks | Physical meaning |
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|------|---------------|------------------|
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| **Type** | `|witness| < 1/x` | Is the expression structurally valid? |
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| **Projection** | `|witness| < 1/(xm)` | Does it project cleanly onto the manifold? |
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| **Merge** | `|R1-R2|/(R1+R2) < 10⁻⁶` | Can two receipts coexist without collision? |
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## Where It Fits: Its Own Library
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RRC is NOT AuditLib. AuditLib checks receipt *format* (well-formedness).
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RRC checks receipt *semantics* (mathematical validity through polynomial gates).
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```
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SilverSightCore.lean
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│
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┌───────────┼───────────┐
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│ │ │
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LexLib SearchLib StructureLib
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│ │ │
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└───────────┼───────────┘
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│
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Receipt produced
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│
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┌───────────┼───────────┐
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│ │ │
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AuditLib RRCLib EventLib
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(format) (semantics) (count)
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│ │ │
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└───────────┴───────────┘
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│
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Core.accept / reject
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```
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## RRCLib — Rainbow Raccoon Compiler Library
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**Type signature:**
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```lean
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-- RRCLib.lean
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import SilverSightCore
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-- Compile a receipt through RRC gates
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def RRCLib.compile (r : Receipt) : RRCResult
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-- Gate verdicts
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structure RRCResult where
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typeGate : GateVerdict
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projectionGate : GateVerdict
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mergeGate : GateVerdict
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compiled : Bool -- all gates pass
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deriving Repr
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inductive GateVerdict
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| Pass -- witness below threshold
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| Fail -- witness above threshold
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| Borderline -- within 10% of threshold (needs human)
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deriving DecidableEq, Repr
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```
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**What RRCLib does NOT do:**
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- Does NOT produce the initial receipt (that's SearchLib/LexLib)
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- Does NOT count TIC (that's EventLib)
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- Does NOT check receipt format (that's AuditLib)
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- Does NOT compute the Finsler metric (that's MetricLib)
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**What RRCLib DOES do:**
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- Takes an existing receipt
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- Evaluates the H-KdF polynomial at the receipt's parameters
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- Checks three gate thresholds
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- Returns Pass/Fail/Borderline for each gate
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- The receipt is **admissible** only if all three gates Pass
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## The Key Insight
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RRC is a **compiler** because:
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- Input: receipt (source code)
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- Process: three-pass gate evaluation (compilation passes)
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- Output: compiled result with verdicts (executable decision)
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The "Rainbow" part: each gate filters a different **color** (aspect) of the receipt:
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- Type = red channel (structural validity)
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- Projection = green channel (manifold fit)
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- Merge = blue channel (collision freedom)
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All three must be clear for the receipt to be white (valid).
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## RRC as Meta-Library
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RRC can also validate receipts ABOUT receipts (meta-recursion):
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```lean
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-- Receipt from RRCLib about another receipt
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def RRCLib.metaCompile (r : Receipt) (rrcReceipt : Receipt) : RRCResult
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```
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This is how you get the self-indexing property: RRC receipts about RRC receipts,
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forming a hash chain (which is what `pvgs_receipt_hash.py` implements).
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## Current Code Location
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Your `PVGS_DQ_Bridge_fixed.lean` §4 (`hermitianRRCKernel` through
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`rrc_characterizes_goormaghtigh`) becomes:
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```
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SilverSight/
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├── Core/
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│ └── SilverSightCore.lean ← 200 lines, never changes
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├── Library/
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│ ├── LexLib.lean ← your token work
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│ ├── SearchLib.lean ← your chaos game work
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│ ├── MetricLib.lean ← your Finsler work
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│ ├── QUBOLib.lean ← your QUBO/QAOA work
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│ ├── StructureLib.lean ← your ChiralitySpace work
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│ ├── PVGSLib.lean ← your PVGS bridge work
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│ ├── EventLib.lean ← your TIC counting work
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│ ├── AuditLib.lean ← format validation
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│ └── RRCLib.lean ← §4 of PVGS_DQ_Bridge_fixed.lean
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│ ├── RRCGates.lean -- gate definitions
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│ ├── RRCKernel.lean -- hermitianRRCKernel
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│ ├── RRCEvidence.lean -- RRCEvidence structure
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│ └── RRCLib/ -- NEW: RRC as standalone library
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│ ├── RRCReceipt.lean -- receipt validation
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│ ├── RRCMeta.lean -- meta-receipt validation
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│ └── RRCHashChain.lean -- from pvgs_receipt_hash.py
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└── Orchestrator/
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└── SilverSight.lean -- composes everything
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```
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## Summary
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| Question | Answer |
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|----------|--------|
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| Is RRC AuditLib? | No — AuditLib checks format, RRC checks semantics |
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| Is RRC SearchLib? | No — SearchLib finds basins, RRC validates receipts |
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| Is RRC its own library? | **Yes** — RRCLib, importing only Core |
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| What does RRC compile? | Receipts through 3 polynomial gates |
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| Why "Rainbow"? | 3 gates = 3 color channels = white if all pass |
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| Why "Raccoon"? | Because raccoons wash everything before accepting it |
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| Why "Compiler"? | Source receipt → gate passes → compiled verdict |
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