Sprints 46-58 implement the cross-language porting foundation: language-to-IR adapters, equivalence checking, gate validation, legacy ingestion, managed/dynamic families, low-level/logic-actor semantics, debug workflow tooling, AST-native family tools, Rust/CPP raising tools, system-level orchestration, query family, and porting gates. Sprint 59 adds the governance layer (policy packs, review boards, waiver packets, ambiguity triage, decision ledger) with the whetstone_review_porting_decision MCP tool. Also includes: sprint plans 46-130, MCP taskitem pipeline scripts, CLAUDE.md, docs, and full test matrix (steps 689-828). Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
21 lines
2.1 KiB
C++
21 lines
2.1 KiB
C++
// Step 774: Macro boundary + hygienic expansion packet model (10 tests)
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#include "ast_native/MacroHygieneBoundary.h"
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#include <iostream>
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static int p=0,f=0;
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#define T(n) { std::cout<<" "<<#n<<"... "; }
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#define P() { std::cout<<"PASS\n"; ++p; }
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#define F(m) { std::cout<<"FAIL: "<<m<<"\n"; ++f; }
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#define C(c,m) if(!(c)){F(m);return;}
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static ASTNativeLoweringPacket mk(bool macro){ASTNativeLoweringPacket p; p.macroLike=macro; return p;}
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void t1(){T(boundary_present_with_macro);auto x=MacroHygieneBoundaryModel::classify(mk(true),"lisp");C(x.macroBoundaryPresent,"boundary");P();}
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void t2(){T(boundary_absent_without_macro);auto x=MacroHygieneBoundaryModel::classify(mk(false),"lisp");C(!x.macroBoundaryPresent,"boundary");P();}
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void t3(){T(scheme_hygienic_default);auto x=MacroHygieneBoundaryModel::classify(mk(true),"scheme");C(x.hygienicByDefault,"hyg");P();}
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void t4(){T(lisp_not_hygienic_default);auto x=MacroHygieneBoundaryModel::classify(mk(true),"lisp");C(!x.hygienicByDefault,"hyg");P();}
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void t5(){T(policy_no_macro);auto x=MacroHygieneBoundaryModel::classify(mk(false),"lisp");C(x.expansionPolicy=="no_macro_expansion","policy");P();}
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void t6(){T(policy_hygienic);auto x=MacroHygieneBoundaryModel::classify(mk(true),"scheme");C(x.expansionPolicy=="hygienic_expansion","policy");P();}
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void t7(){T(policy_guarded);auto x=MacroHygieneBoundaryModel::classify(mk(true),"elisp");C(x.expansionPolicy=="guarded_expansion","policy");P();}
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void t8(){T(risk_levels);auto x=MacroHygieneBoundaryModel::classify(mk(true),"elisp");C(x.expansionRisk==2,"risk");P();}
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void t9(){T(json_shape);auto j=MacroHygieneBoundaryModel::toJson(MacroHygieneBoundaryModel::classify(mk(true),"scheme"));C(j.contains("expansion_policy")&&j.contains("expansion_risk"),"shape");P();}
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void t10(){T(deterministic);auto a=MacroHygieneBoundaryModel::toJson(MacroHygieneBoundaryModel::classify(mk(true),"scheme")).dump();auto b=MacroHygieneBoundaryModel::toJson(MacroHygieneBoundaryModel::classify(mk(true),"scheme")).dump();C(a==b,"det");P();}
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int main(){std::cout<<"Step 774: MacroHygieneBoundary\n";t1();t2();t3();t4();t5();t6();t7();t8();t9();t10();std::cout<<"\nResults: "<<p<<"/"<<(p+f)<<" passed\n";return f?1:0;}
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