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<?xml version="1.0" encoding="UTF-8"?>
<HyperKittyConstraintDSL version="1.0">
  <Meta>
    <System>HK-OS</System>
    <Mode>DETERMINISTIC-CONSTRAINT-BUILD</Mode>
    <Output>PROOF_BACKED_ARTIFACT</Output>
    <TruthPolicy>STATIC_DECLARATION_ONLY NO_FAKE_RUNTIME_STATE</TruthPolicy>
  </Meta>

  <BooleanKernel>
    <Primitive name="NAND"><![CDATA[NAND(a,b) = 1 - a*b]]></Primitive>
    <Derived name="NOT">NAND(x,x)</Derived>
    <Derived name="AND">NAND(NAND(a,b), NAND(a,b))</Derived>
    <Derived name="OR">NAND(NAND(a,a), NAND(b,b))</Derived>
    <Derived name="IMPLIES">OR(NOT(a), b)</Derived>
    <Derived name="EQUAL">AND(IMPLIES(a,b), IMPLIES(b,a))</Derived>
    <Derived name="XOR">AND(OR(a,b), NOT(AND(a,b)))</Derived>
  </BooleanKernel>

  <GlyphTypeSystem>
    <Unit symbol="StateSpace"          name="StateSpace"/>
    <Unit symbol="LedgerLog"           name="LedgerLog"/>
    <Unit symbol="TransitionQuery"     name="TransitionQuery"/>
    <Unit symbol="InvariantConstraint" name="InvariantConstraint"/>
    <Unit symbol="StateTransform"      name="StateTransform"/>
    <Unit symbol="ConservedQuantity"   name="ConservedQuantity"/>
    <Unit symbol="ValidityProof"       name="ValidityProof"/>
    <Unit symbol="ReconciliationInterface" name="ReconciliationInterface"/>
  </GlyphTypeSystem>

  <AgentModel>
    <Agent>
      <Field name="id"      type="String"/>
      <Field name="role"    type="GlyphUnit"/>
      <Field name="entropy" refinement="0 &lt;= entropy &lt;= 0.20"/>
      <Field name="trusted" type="Boolean"/>
      <Field name="active"  type="Boolean"/>
    </Agent>
    <Invariant>active(agent) =&gt; trusted(agent)</Invariant>
    <Invariant>entropy(agent) &lt;= 0.20</Invariant>
  </AgentModel>

  <DAG>
    <Node id="StateSpace"/>
    <Node id="LedgerLog"/>
    <Node id="TransitionQuery"/>
    <Node id="StateTransform"/>
    <Node id="InvariantConstraint"/>
    <Node id="ConservedQuantity"/>
    <Node id="ValidityProof"/>
    <Node id="ReconciliationInterface"/>
    <Edge from="StateSpace"          to="LedgerLog"/>
    <Edge from="LedgerLog"           to="TransitionQuery"/>
    <Edge from="TransitionQuery"     to="StateTransform"/>
    <Edge from="StateTransform"      to="InvariantConstraint"/>
    <Edge from="InvariantConstraint" to="ConservedQuantity"/>
    <Edge from="ConservedQuantity"   to="ValidityProof"/>
    <Edge from="ValidityProof"       to="ReconciliationInterface"/>
  </DAG>

  <TransformationEngine>
    <Template language="XSLT">
      <Rule><![CDATA[
        INPUT_STATE: U_t = (S_t, L_t, C_t)
        APPLY_TEMPLATE: T_{e_i}(S_t) -> S_{t+1}
        GENERATE_CANDIDATE: l_i = (S_t, e_i, S_{t+1}, tau_i)
        VALIDATE_CONSTRAINTS:
          I(S_t) == I(S_{t+1}) AND
          dA + dE == dL + dR AND
          V(l_i) == 1
        HASH_OUTPUT: SHA3-256(l_i || L_t)
      ]]></Rule>
    </Template>
    <Multiplicity>
      <Expansion>candidates = transform(agent_state, n)</Expansion>
      <Constraint>accept(c) = entropy(c) &lt;= 0.20 AND proof(c) = true</Constraint>
    </Multiplicity>
  </TransformationEngine>

  <QuantumConstraintLayer>
    <Operator>
      <Name>SymmetricOperator</Name>
      <Rule>Q = (Q + transpose(Q))/2</Rule>
    </Operator>
    <Entropy>
      <Metric>Shannon_Nats</Metric>
      <Formula>H = -sum(p ln p)</Formula>
      <Bound>H &lt;= 0.20</Bound>
    </Entropy>
    <Routing>Reject states violating entropy constraint.</Routing>
  </QuantumConstraintLayer>

  <StateModel name="UniverseLedger">
    <Component name="S_t" type="SystemState">
      <Field name="conserved"   type="Map_Resource_Quantity"/>
      <Field name="energy"      type="Quantity"/>
      <Field name="obligations" type="Map_Commitment_Quantity"/>
      <Field name="released"    type="Map_Output_Quantity"/>
    </Component>
    <Component name="L_t" type="LedgerLog">
      <Field name="entries" type="List_JournalEntry"/>
      <Invariant>entries ordered by tau_i</Invariant>
    </Component>
    <Component name="C_t" type="ConstraintSet">
      <Field name="invariants"        type="List_InvariantFunction"/>
      <Field name="conservation_laws" type="List_ConservationLaw"/>
    </Component>
  </StateModel>

  <TransitionModel>
    <Event name="e_i" type="TransitionEvent">
      <Field name="delta_A" type="Quantity"/>
      <Field name="delta_E" type="Quantity"/>
      <Field name="delta_L" type="Quantity"/>
      <Field name="delta_R" type="Quantity"/>
      <Field name="tau"     type="Timestamp"/>
    </Event>
    <Transform name="T_ei">
      <Precondition>V(l_i) = 1</Precondition>
      <Postcondition>
        S_{t+1}.conserved   = S_t.conserved   + dA
        S_{t+1}.energy      = S_t.energy      + dE
        S_{t+1}.obligations = S_t.obligations + dL
        S_{t+1}.released    = S_t.released    + dR
      </Postcondition>
    </Transform>
  </TransitionModel>

  <InvariantLayer>
    <Invariant name="AccountingBalance">
      <Formula>dA + dE = dL + dR</Formula>
    </Invariant>
    <Invariant name="StateInvariant">
      <Formula>I(S_t) = I(S_{t+1})</Formula>
    </Invariant>
    <Invariant name="ConservationLaw">
      <Formula>forall q in ConservedQuantities: q(S_t) == q(S_{t+1})</Formula>
    </Invariant>
  </InvariantLayer>

  <ValidityPredicate name="V">
    <Signature>JournalEntry -&gt; Boolean</Signature>
    <Rule><![CDATA[
      V(l_i) = 1 IFF:
        (dA + dE == dL + dR) AND
        (forall f in C_t: f(S_t) == f(S_{t+1})) AND
        (entropy(l_i) <= 0.20) AND
        (proof(l_i) == true)
    ]]></Rule>
  </ValidityPredicate>

  <Algorithm name="UniverseLedgerStep">
    <Step id="1">S_t --T_{e_i}--> S_{t+1}</Step>
    <Step id="2">S_{t+1} --Record--> l_i = (S_t, e_i, S_{t+1}, tau_i)</Step>
    <Step id="3">L_{t+1} = L_t union {l_i}</Step>
    <Step id="4">V(l_i) ? Valid : Invalid</Step>
    <Step id="5">Valid -&gt; Reconcile(L_{t+1}) -&gt; Commit</Step>
  </Algorithm>

  <ProofOutput>
    <Required>RepositoryAudit SchemaHash RuleHash TransformHash ConstraintGraph ValidationResult ArtifactHash</Required>
  </ProofOutput>

  <ReconciliationProtocol>
    <Phase name="Audit">     <Action>Verify all l_i in L_t satisfy V(l_i) = 1</Action></Phase>
    <Phase name="Balance">   <Action>Sum(dA) + Sum(dE) == Sum(dL) + Sum(dR) over L_t</Action></Phase>
    <Phase name="Invariant"> <Action>forall f in C_t: f(S_0) == f(S_t)</Action></Phase>
    <Phase name="Commit">    <Action>Hash(L_t) -&gt; WORM_Chain</Action></Phase>
  </ReconciliationProtocol>
</HyperKittyConstraintDSL>