| 1 | //
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| 2 | // Cforall Version 1.0.0 Copyright (C) 2015 University of Waterloo
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| 3 | //
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| 4 | // The contents of this file are covered under the licence agreement in the
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| 5 | // file "LICENCE" distributed with Cforall.
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| 6 | //
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| 7 | // SatisfyAssertions.cpp --
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| 8 | //
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| 9 | // Author           : Aaron B. Moss
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| 10 | // Created On       : Mon Jun 10 17:45:00 2019
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| 11 | // Last Modified By : Andrew Beach
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| 12 | // Last Modified On : Tue Oct  1 13:56:00 2019
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| 13 | // Update Count     : 2
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| 14 | //
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| 15 | 
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| 16 | #include "SatisfyAssertions.hpp"
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| 17 | 
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| 18 | #include <algorithm>
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| 19 | #include <cassert>
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| 20 | #include <sstream>
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| 21 | #include <string>
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| 22 | #include <unordered_map>
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| 23 | #include <vector>
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| 24 | 
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| 25 | #include "Candidate.hpp"
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| 26 | #include "CandidateFinder.hpp"
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| 27 | #include "Cost.h"
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| 28 | #include "RenameVars.h"
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| 29 | #include "typeops.h"
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| 30 | #include "Unify.h"
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| 31 | #include "AST/Decl.hpp"
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| 32 | #include "AST/Expr.hpp"
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| 33 | #include "AST/Node.hpp"
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| 34 | #include "AST/Pass.hpp"
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| 35 | #include "AST/Print.hpp"
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| 36 | #include "AST/SymbolTable.hpp"
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| 37 | #include "AST/TypeEnvironment.hpp"
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| 38 | #include "Common/FilterCombos.h"
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| 39 | #include "Common/Indenter.h"
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| 40 | #include "GenPoly/GenPoly.h"
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| 41 | #include "SymTab/Mangler.h"
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| 42 | 
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| 43 | namespace ResolvExpr {
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| 44 | 
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| 45 | // in CandidateFinder.cpp; unique ID for assertion satisfaction
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| 46 | extern UniqueId globalResnSlot;
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| 47 | 
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| 48 | namespace {
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| 49 |         /// Post-unification assertion satisfaction candidate
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| 50 |         struct AssnCandidate {
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| 51 |                 ast::SymbolTable::IdData cdata;  ///< Satisfying declaration
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| 52 |                 ast::ptr< ast::Type > adjType;   ///< Satisfying type
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| 53 |                 ast::TypeEnvironment env;        ///< Post-unification environment
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| 54 |                 ast::AssertionSet have;          ///< Post-unification have-set
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| 55 |                 ast::AssertionSet need;          ///< Post-unification need-set
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| 56 |                 ast::OpenVarSet open;            ///< Post-unification open-var-set
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| 57 |                 ast::UniqueId resnSlot;          ///< Slot for any recursive assertion IDs
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| 58 | 
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| 59 |                 AssnCandidate( 
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| 60 |                         const ast::SymbolTable::IdData c, const ast::Type * at, ast::TypeEnvironment && e, 
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| 61 |                         ast::AssertionSet && h, ast::AssertionSet && n, ast::OpenVarSet && o, ast::UniqueId rs )
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| 62 |                 : cdata( c ), adjType( at ), env( std::move( e ) ), have( std::move( h ) ), 
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| 63 |                   need( std::move( n ) ), open( std::move( o ) ), resnSlot( rs ) {}
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| 64 |         };
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| 65 | 
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| 66 |         /// List of assertion satisfaction candidates
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| 67 |         using AssnCandidateList = std::vector< AssnCandidate >;
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| 68 | 
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| 69 |         /// Reference to a single deferred item
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| 70 |         struct DeferRef {
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| 71 |                 const ast::DeclWithType * decl;
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| 72 |                 const ast::AssertionSetValue & info;
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| 73 |                 const AssnCandidate & match;
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| 74 |         };
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| 75 |         
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| 76 |         /// Wrapper for the deferred items from a single assertion satisfaction. 
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| 77 |         /// Acts like an indexed list of DeferRef
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| 78 |         struct DeferItem {
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| 79 |                 const ast::DeclWithType * decl;
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| 80 |                 const ast::AssertionSetValue & info;
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| 81 |                 AssnCandidateList matches;
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| 82 | 
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| 83 |                 DeferItem( 
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| 84 |                         const ast::DeclWithType * d, const ast::AssertionSetValue & i, AssnCandidateList && ms )
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| 85 |                 : decl( d ), info( i ), matches( std::move( ms ) ) {}
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| 86 | 
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| 87 |                 bool empty() const { return matches.empty(); }
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| 88 | 
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| 89 |                 AssnCandidateList::size_type size() const { return matches.size(); }
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| 90 | 
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| 91 |                 DeferRef operator[] ( unsigned i ) const { return { decl, info, matches[i] }; }
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| 92 |         };
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| 93 | 
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| 94 |         /// List of deferred satisfaction items
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| 95 |         using DeferList = std::vector< DeferItem >;
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| 96 | 
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| 97 |         /// Set of assertion satisfactions, grouped by resolution ID
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| 98 |         using InferCache = std::unordered_map< ast::UniqueId, ast::InferredParams >;
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| 99 | 
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| 100 |         /// Lexicographically-ordered vector of costs.
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| 101 |         /// Lexicographic order comes from default operator< on std::vector.
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| 102 |         using CostVec = std::vector< Cost >;
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| 103 | 
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| 104 |         /// Flag for state iteration
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| 105 |         enum IterateFlag { IterateState };
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| 106 | 
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| 107 |         /// Intermediate state for satisfying a set of assertions
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| 108 |         struct SatState {
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| 109 |                 CandidateRef cand;          ///< Candidate assertion is rooted on
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| 110 |                 ast::AssertionList need;    ///< Assertions to find
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| 111 |                 ast::AssertionSet newNeed;  ///< Recursive assertions from current satisfied assertions
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| 112 |                 DeferList deferred;         ///< Deferred matches
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| 113 |                 InferCache inferred;        ///< Cache of already-inferred assertions
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| 114 |                 CostVec costs;              ///< Disambiguating costs of recursive assertion satisfaction
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| 115 |                 ast::SymbolTable symtab;    ///< Name lookup (depends on previous assertions)
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| 116 | 
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| 117 |                 /// Initial satisfaction state for a candidate
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| 118 |                 SatState( CandidateRef & c, const ast::SymbolTable & syms )
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| 119 |                 : cand( c ), need(), newNeed(), deferred(), inferred(), costs{ Cost::zero }, 
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| 120 |                   symtab( syms ) { need.swap( c->need ); }
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| 121 |                 
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| 122 |                 /// Update satisfaction state for next step after previous state
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| 123 |                 SatState( SatState && o, IterateFlag )
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| 124 |                 : cand( std::move( o.cand ) ), need( o.newNeed.begin(), o.newNeed.end() ), newNeed(), 
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| 125 |                   deferred(), inferred( std::move( o.inferred ) ), costs( std::move( o.costs ) ), 
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| 126 |                   symtab( o.symtab ) { costs.emplace_back( Cost::zero ); }
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| 127 |                 
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| 128 |                 /// Field-wise next step constructor
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| 129 |                 SatState(
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| 130 |                         CandidateRef && c, ast::AssertionSet && nn, InferCache && i, CostVec && cs, 
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| 131 |                         ast::SymbolTable && syms )
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| 132 |                 : cand( std::move( c ) ), need( nn.begin(), nn.end() ), newNeed(), deferred(), 
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| 133 |                   inferred( std::move( i ) ), costs( std::move( cs ) ), symtab( std::move( syms ) )
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| 134 |                   { costs.emplace_back( Cost::zero ); }
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| 135 |         };
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| 136 | 
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| 137 |         /// Adds a captured assertion to the symbol table
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| 138 |         void addToSymbolTable( const ast::AssertionSet & have, ast::SymbolTable & symtab ) {
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| 139 |                 for ( auto & i : have ) {
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| 140 |                         if ( i.second.isUsed ) { symtab.addId( i.first ); }
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| 141 |                 }
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| 142 |         }
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| 143 | 
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| 144 |         /// Binds a single assertion, updating satisfaction state
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| 145 |         void bindAssertion( 
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| 146 |                 const ast::DeclWithType * decl, const ast::AssertionSetValue & info, CandidateRef & cand, 
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| 147 |                 AssnCandidate & match, InferCache & inferred
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| 148 |         ) {
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| 149 |                 const ast::DeclWithType * candidate = match.cdata.id;
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| 150 |                 assertf( candidate->uniqueId, 
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| 151 |                         "Assertion candidate does not have a unique ID: %s", toString( candidate ).c_str() );
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| 152 |                 
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| 153 |                 ast::Expr * varExpr = match.cdata.combine( cand->expr->location, cand->cvtCost );
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| 154 |                 varExpr->result = match.adjType;
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| 155 |                 if ( match.resnSlot ) { varExpr->inferred.resnSlots().emplace_back( match.resnSlot ); }
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| 156 | 
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| 157 |                 // place newly-inferred assertion in proper location in cache
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| 158 |                 inferred[ info.resnSlot ][ decl->uniqueId ] = ast::ParamEntry{
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| 159 |                         candidate->uniqueId, candidate, match.adjType, decl->get_type(), varExpr };
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| 160 |         }
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| 161 | 
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| 162 |         /// Satisfy a single assertion
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| 163 |         bool satisfyAssertion( ast::AssertionList::value_type & assn, SatState & sat ) {
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| 164 |                 // skip unused assertions
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| 165 |                 if ( ! assn.second.isUsed ) return true;
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| 166 | 
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| 167 |                 // find candidates that unify with the desired type
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| 168 |                 AssnCandidateList matches;
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| 169 |                 for ( const ast::SymbolTable::IdData & cdata : sat.symtab.lookupId( assn.first->name ) ) {
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| 170 |                         const ast::DeclWithType * candidate = cdata.id;
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| 171 | 
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| 172 |                         // ignore deleted candidates.
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| 173 |                         // NOTE: this behavior is different from main resolver.
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| 174 |                         // further investigations might be needed to determine
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| 175 |                         // if we should implement the same rule here
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| 176 |                         // (i.e. error if unique best match is deleted)
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| 177 |                         if (candidate->isDeleted) continue;
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| 178 | 
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| 179 |                         // build independent unification context for candidate
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| 180 |                         ast::AssertionSet have, newNeed;
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| 181 |                         ast::TypeEnvironment newEnv{ sat.cand->env };
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| 182 |                         ast::OpenVarSet newOpen{ sat.cand->open };
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| 183 |                         ast::ptr< ast::Type > toType = assn.first->get_type();
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| 184 |                         ast::ptr< ast::Type > adjType = 
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| 185 |                                 renameTyVars( adjustExprType( candidate->get_type(), newEnv, sat.symtab ) );
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| 186 | 
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| 187 |                         // only keep candidates which unify
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| 188 |                         if ( unify( toType, adjType, newEnv, newNeed, have, newOpen, sat.symtab ) ) {
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| 189 |                                 // set up binding slot for recursive assertions
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| 190 |                                 ast::UniqueId crntResnSlot = 0;
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| 191 |                                 if ( ! newNeed.empty() ) {
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| 192 |                                         crntResnSlot = ++globalResnSlot;
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| 193 |                                         for ( auto & a : newNeed ) { a.second.resnSlot = crntResnSlot; }
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| 194 |                                 }
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| 195 | 
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| 196 |                                 matches.emplace_back( 
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| 197 |                                         cdata, adjType, std::move( newEnv ), std::move( have ), std::move( newNeed ),
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| 198 |                                         std::move( newOpen ), crntResnSlot );
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| 199 |                         }
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| 200 |                 }
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| 201 | 
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| 202 |                 // break if no satisfying match
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| 203 |                 if ( matches.empty() ) return false;
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| 204 | 
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| 205 |                 // defer if too many satisfying matches
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| 206 |                 if ( matches.size() > 1 ) {
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| 207 |                         sat.deferred.emplace_back( assn.first, assn.second, std::move( matches ) );
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| 208 |                         return true;
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| 209 |                 }
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| 210 | 
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| 211 |                 // otherwise bind unique match in ongoing scope
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| 212 |                 AssnCandidate & match = matches.front();
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| 213 |                 addToSymbolTable( match.have, sat.symtab );
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| 214 |                 sat.newNeed.insert( match.need.begin(), match.need.end() );
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| 215 |                 sat.cand->env = std::move( match.env );
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| 216 |                 sat.cand->open = std::move( match.open );
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| 217 | 
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| 218 |                 bindAssertion( assn.first, assn.second, sat.cand, match, sat.inferred );
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| 219 |                 return true;
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| 220 |         }
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| 221 | 
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| 222 |         /// Map of candidate return types to recursive assertion satisfaction costs
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| 223 |         using PruneMap = std::unordered_map< std::string, CostVec >;
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| 224 | 
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| 225 |         /// Gets the pruning key for a candidate (derived from environment-adjusted return type)
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| 226 |         std::string pruneKey( const Candidate & cand ) {
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| 227 |                 ast::ptr< ast::Type > resType = cand.expr->result;
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| 228 |                 cand.env.apply( resType );
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| 229 |                 return Mangle::mangle( resType, Mangle::typeMode() );
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| 230 |         }
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| 231 | 
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| 232 |         /// Associates inferred parameters with an expression
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| 233 |         struct InferMatcher final {
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| 234 |                 InferCache & inferred;
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| 235 | 
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| 236 |                 InferMatcher( InferCache & inferred ) : inferred( inferred ) {}
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| 237 | 
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| 238 |                 const ast::Expr * postvisit( const ast::Expr * expr ) {
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| 239 |                         // Skip if no slots to find
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| 240 |                         if ( !expr->inferred.hasSlots() ) return expr;
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| 241 |                         // if ( expr->inferred.mode != ast::Expr::InferUnion::Slots ) return expr;
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| 242 |                         std::vector<UniqueId> missingSlots;
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| 243 |                         // find inferred parameters for resolution slots
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| 244 |                         ast::InferredParams * newInferred = new ast::InferredParams();
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| 245 |                         for ( UniqueId slot : expr->inferred.resnSlots() ) {
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| 246 |                                 // fail if no matching assertions found
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| 247 |                                 auto it = inferred.find( slot );
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| 248 |                                 if ( it == inferred.end() ) {
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| 249 |                                         // std::cerr << "missing assertion " << slot << std::endl;
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| 250 |                                         missingSlots.push_back(slot);
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| 251 |                                         continue;
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| 252 |                                 }
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| 253 | 
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| 254 |                                 // place inferred parameters into new map
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| 255 |                                 for ( auto & entry : it->second ) {
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| 256 |                                         // recurse on inferParams of resolved expressions
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| 257 |                                         entry.second.expr = postvisit( entry.second.expr );
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| 258 |                                         auto res = newInferred->emplace( entry );
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| 259 |                                         assert( res.second && "all assertions newly placed" );
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| 260 |                                 }
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| 261 |                         }
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| 262 | 
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| 263 |                         ast::Expr * ret = mutate( expr );
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| 264 |                         ret->inferred.set_inferParams( newInferred );
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| 265 |                         if (!missingSlots.empty()) ret->inferred.resnSlots() = missingSlots;
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| 266 |                         return ret;
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| 267 |                 }
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| 268 |         };
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| 269 | 
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| 270 |         /// Replace ResnSlots with InferParams and add alternative to output list, if it meets pruning 
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| 271 |         /// threshold.
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| 272 |         void finalizeAssertions( 
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| 273 |                 CandidateRef & cand, InferCache & inferred, PruneMap & thresholds, CostVec && costs, 
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| 274 |                 CandidateList & out 
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| 275 |         ) {
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| 276 |                 // prune if cheaper alternative for same key has already been generated
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| 277 |                 std::string key = pruneKey( *cand );
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| 278 |                 auto it = thresholds.find( key );
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| 279 |                 if ( it != thresholds.end() ) {
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| 280 |                         if ( it->second < costs ) return;
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| 281 |                 } else {
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| 282 |                         thresholds.emplace_hint( it, key, std::move( costs ) );
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| 283 |                 }
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| 284 | 
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| 285 |                 // replace resolution slots with inferred parameters, add to output
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| 286 |                 ast::Pass< InferMatcher > matcher{ inferred };
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| 287 |                 cand->expr = cand->expr->accept( matcher );
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| 288 |                 out.emplace_back( cand );
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| 289 |         }
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| 290 | 
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| 291 |         /// Combo iterator that combines candidates into an output list, merging their environments. 
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| 292 |         /// Rejects an appended candidate if environments cannot be merged. See `Common/FilterCombos.h` 
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| 293 |         /// for description of "combo iterator".
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| 294 |         class CandidateEnvMerger {
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| 295 |                 /// Current list of merged candidates
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| 296 |                 std::vector< DeferRef > crnt;
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| 297 |                 /// Stack of environments to support backtracking
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| 298 |                 std::vector< ast::TypeEnvironment > envs;
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| 299 |                 /// Stack of open variables to support backtracking
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| 300 |                 std::vector< ast::OpenVarSet > opens;
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| 301 |                 /// Symbol table to use for merges
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| 302 |                 const ast::SymbolTable & symtab;
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| 303 | 
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| 304 |         public:
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| 305 |                 /// The merged environment/open variables and the list of candidates
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| 306 |                 struct OutType {
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| 307 |                         ast::TypeEnvironment env;
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| 308 |                         ast::OpenVarSet open;
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| 309 |                         std::vector< DeferRef > assns;
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| 310 |                         Cost cost;
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| 311 | 
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| 312 |                         OutType(
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| 313 |                                 const ast::TypeEnvironment & e, const ast::OpenVarSet & o,
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| 314 |                                 const std::vector< DeferRef > & as, const ast::SymbolTable & symtab )
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| 315 |                         : env( e ), open( o ), assns( as ), cost( Cost::zero ) {
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| 316 |                                 // compute combined conversion cost
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| 317 |                                 for ( const DeferRef & assn : assns ) {
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| 318 |                                         // compute conversion cost from satisfying decl to assertion
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| 319 |                                         cost += computeConversionCost(
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| 320 |                                                 assn.match.adjType, assn.decl->get_type(), false, symtab, env );
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| 321 | 
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| 322 |                                         // mark vars+specialization on function-type assertions
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| 323 |                                         const ast::FunctionType * func =
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| 324 |                                                 GenPoly::getFunctionType( assn.match.cdata.id->get_type() );
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| 325 |                                         if ( ! func ) continue;
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| 326 | 
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| 327 |                                         for ( const auto & param : func->params ) {
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| 328 |                                                 cost.decSpec( specCost( param ) );
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| 329 |                                         }
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| 330 | 
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| 331 |                                         cost.incVar( func->forall.size() );
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| 332 | 
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| 333 |                                         for ( const ast::TypeDecl * td : func->forall ) {
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| 334 |                                                 cost.decSpec( td->assertions.size() );
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| 335 |                                         }
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| 336 |                                 }
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| 337 |                         }
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| 338 | 
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| 339 |                         bool operator< ( const OutType & o ) const { return cost < o.cost; }
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| 340 |                 };
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| 341 | 
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| 342 |                 CandidateEnvMerger(
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| 343 |                         const ast::TypeEnvironment & env, const ast::OpenVarSet & open,
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| 344 |                         const ast::SymbolTable & syms )
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| 345 |                 : crnt(), envs{ env }, opens{ open }, symtab( syms ) {}
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| 346 | 
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| 347 |                 bool append( DeferRef i ) {
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| 348 |                         ast::TypeEnvironment env = envs.back();
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| 349 |                         ast::OpenVarSet open = opens.back();
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| 350 |                         mergeOpenVars( open, i.match.open );
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| 351 | 
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| 352 |                         if ( ! env.combine( i.match.env, open, symtab ) ) return false;
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| 353 | 
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| 354 |                         crnt.emplace_back( i );
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| 355 |                         envs.emplace_back( std::move( env ) );
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| 356 |                         opens.emplace_back( std::move( open ) );
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| 357 |                         return true;
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| 358 |                 }
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| 359 | 
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| 360 |                 void backtrack() {
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| 361 |                         crnt.pop_back();
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| 362 |                         envs.pop_back();
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| 363 |                         opens.pop_back();
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| 364 |                 }
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| 365 | 
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| 366 |                 OutType finalize() { return { envs.back(), opens.back(), crnt, symtab }; }
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| 367 |         };
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| 368 | 
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| 369 |         /// Limit to depth of recursion of assertion satisfaction
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| 370 |         static const int recursionLimit = 4;
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| 371 |         /// Maximum number of simultaneously-deferred assertions to attempt concurrent satisfaction of
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| 372 |         static const int deferLimit = 10;
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| 373 | } // anonymous namespace
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| 374 | 
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| 375 | void satisfyAssertions( 
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| 376 |         CandidateRef & cand, const ast::SymbolTable & symtab, CandidateList & out, 
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| 377 |         std::vector<std::string> & errors
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| 378 | ) {
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| 379 |         // finish early if no assertions to satisfy
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| 380 |         if ( cand->need.empty() ) {
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| 381 |                 out.emplace_back( cand );
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| 382 |                 return;
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| 383 |         }
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| 384 | 
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| 385 |         // build list of possible combinations of satisfying declarations
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| 386 |         std::vector< SatState > sats{ SatState{ cand, symtab } };
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| 387 |         std::vector< SatState > nextSats{};
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| 388 | 
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| 389 |         // pruning thresholds by result type of output candidates.
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| 390 |         // Candidates *should* be generated in sorted order, so no need to retroactively prune
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| 391 |         PruneMap thresholds;
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| 392 | 
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| 393 |         // satisfy assertions in breadth-first order over the recursion tree of assertion satisfaction.
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| 394 |         // Stop recursion at a limited number of levels deep to avoid infinite loops.
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| 395 |         for ( unsigned level = 0; level < recursionLimit; ++level ) {
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| 396 |                 // for each current mutually-compatible set of assertions
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| 397 |                 for ( SatState & sat : sats ) {
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| 398 |                         // stop this branch if a better option is already found
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| 399 |                         auto it = thresholds.find( pruneKey( *sat.cand ) );
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| 400 |                         if ( it != thresholds.end() && it->second < sat.costs ) goto nextSat;
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| 401 | 
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| 402 |                         // make initial pass at matching assertions
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| 403 |                         for ( auto & assn : sat.need ) {
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| 404 |                                 // fail early if any assertion is not satisfiable
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| 405 |                                 if ( ! satisfyAssertion( assn, sat ) ) {
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| 406 |                                         Indenter tabs{ 3 };
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| 407 |                                         std::ostringstream ss;
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| 408 |                                         ss << tabs << "Unsatisfiable alternative:\n";
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| 409 |                                         print( ss, *sat.cand, ++tabs );
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| 410 |                                         ss << (tabs-1) << "Could not satisfy assertion:\n";
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| 411 |                                         ast::print( ss, assn.first, tabs );
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| 412 | 
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| 413 |                                         errors.emplace_back( ss.str() );
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| 414 |                                         goto nextSat;
 | 
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| 415 |                                 }
 | 
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| 416 |                         }
 | 
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| 417 | 
 | 
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| 418 |                         if ( sat.deferred.empty() ) {
 | 
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| 419 |                                 // either add successful match or push back next state
 | 
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| 420 |                                 if ( sat.newNeed.empty() ) {
 | 
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| 421 |                                         finalizeAssertions( 
 | 
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| 422 |                                                 sat.cand, sat.inferred, thresholds, std::move( sat.costs ), out );
 | 
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| 423 |                                 } else {
 | 
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| 424 |                                         nextSats.emplace_back( std::move( sat ), IterateState );
 | 
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| 425 |                                 }
 | 
|---|
| 426 |                         } else if ( sat.deferred.size() > deferLimit ) {
 | 
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| 427 |                                 // too many deferred assertions to attempt mutual compatibility
 | 
|---|
| 428 |                                 Indenter tabs{ 3 };
 | 
|---|
| 429 |                                 std::ostringstream ss;
 | 
|---|
| 430 |                                 ss << tabs << "Unsatisfiable alternative:\n";
 | 
|---|
| 431 |                                 print( ss, *sat.cand, ++tabs );
 | 
|---|
| 432 |                                 ss << (tabs-1) << "Too many non-unique satisfying assignments for assertions:\n";
 | 
|---|
| 433 |                                 for ( const auto & d : sat.deferred ) {
 | 
|---|
| 434 |                                         ast::print( ss, d.decl, tabs );
 | 
|---|
| 435 |                                 }
 | 
|---|
| 436 | 
 | 
|---|
| 437 |                                 errors.emplace_back( ss.str() );
 | 
|---|
| 438 |                                 goto nextSat;
 | 
|---|
| 439 |                         } else {
 | 
|---|
| 440 |                                 // combine deferred assertions by mutual compatibility
 | 
|---|
| 441 |                                 std::vector< CandidateEnvMerger::OutType > compatible = filterCombos(
 | 
|---|
| 442 |                                         sat.deferred, CandidateEnvMerger{ sat.cand->env, sat.cand->open, sat.symtab } );
 | 
|---|
| 443 |                                 
 | 
|---|
| 444 |                                 // fail early if no mutually-compatible assertion satisfaction
 | 
|---|
| 445 |                                 if ( compatible.empty() ) {
 | 
|---|
| 446 |                                         Indenter tabs{ 3 };
 | 
|---|
| 447 |                                         std::ostringstream ss;
 | 
|---|
| 448 |                                         ss << tabs << "Unsatisfiable alternative:\n";
 | 
|---|
| 449 |                                         print( ss, *sat.cand, ++tabs );
 | 
|---|
| 450 |                                         ss << (tabs-1) << "No mutually-compatible satisfaction for assertions:\n";
 | 
|---|
| 451 |                                         for ( const auto& d : sat.deferred ) {
 | 
|---|
| 452 |                                                 ast::print( ss, d.decl, tabs );
 | 
|---|
| 453 |                                         }
 | 
|---|
| 454 | 
 | 
|---|
| 455 |                                         errors.emplace_back( ss.str() );
 | 
|---|
| 456 |                                         goto nextSat;
 | 
|---|
| 457 |                                 }
 | 
|---|
| 458 | 
 | 
|---|
| 459 |                                 // sort by cost (for overall pruning order)
 | 
|---|
| 460 |                                 std::sort( compatible.begin(), compatible.end() );
 | 
|---|
| 461 | 
 | 
|---|
| 462 |                                 // process mutually-compatible combinations
 | 
|---|
| 463 |                                 for ( auto & compat : compatible ) {
 | 
|---|
| 464 |                                         // set up next satisfaction state
 | 
|---|
| 465 |                                         CandidateRef nextCand = std::make_shared<Candidate>(
 | 
|---|
| 466 |                                                 sat.cand->expr, std::move( compat.env ), std::move( compat.open ), 
 | 
|---|
| 467 |                                                 ast::AssertionSet{} /* need moved into satisfaction state */,
 | 
|---|
| 468 |                                                 sat.cand->cost, sat.cand->cvtCost );
 | 
|---|
| 469 | 
 | 
|---|
| 470 |                                         ast::AssertionSet nextNewNeed{ sat.newNeed };
 | 
|---|
| 471 |                                         InferCache nextInferred{ sat.inferred };
 | 
|---|
| 472 |                                         
 | 
|---|
| 473 |                                         CostVec nextCosts{ sat.costs };
 | 
|---|
| 474 |                                         nextCosts.back() += compat.cost;
 | 
|---|
| 475 |                                                                 
 | 
|---|
| 476 |                                         ast::SymbolTable nextSymtab{ sat.symtab };
 | 
|---|
| 477 | 
 | 
|---|
| 478 |                                         // add compatible assertions to new satisfaction state
 | 
|---|
| 479 |                                         for ( DeferRef r : compat.assns ) {
 | 
|---|
| 480 |                                                 AssnCandidate match = r.match;
 | 
|---|
| 481 |                                                 addToSymbolTable( match.have, nextSymtab );
 | 
|---|
| 482 |                                                 nextNewNeed.insert( match.need.begin(), match.need.end() );
 | 
|---|
| 483 | 
 | 
|---|
| 484 |                                                 bindAssertion( r.decl, r.info, nextCand, match, nextInferred );
 | 
|---|
| 485 |                                         }
 | 
|---|
| 486 | 
 | 
|---|
| 487 |                                         // either add successful match or push back next state
 | 
|---|
| 488 |                                         if ( nextNewNeed.empty() ) {
 | 
|---|
| 489 |                                                 finalizeAssertions( 
 | 
|---|
| 490 |                                                         nextCand, nextInferred, thresholds, std::move( nextCosts ), out );
 | 
|---|
| 491 |                                         } else {
 | 
|---|
| 492 |                                                 nextSats.emplace_back( 
 | 
|---|
| 493 |                                                         std::move( nextCand ), std::move( nextNewNeed ), 
 | 
|---|
| 494 |                                                         std::move( nextInferred ), std::move( nextCosts ), 
 | 
|---|
| 495 |                                                         std::move( nextSymtab ) );
 | 
|---|
| 496 |                                         }
 | 
|---|
| 497 |                                 }
 | 
|---|
| 498 |                         }
 | 
|---|
| 499 |                 nextSat:; }
 | 
|---|
| 500 | 
 | 
|---|
| 501 |                 // finish or reset for next round
 | 
|---|
| 502 |                 if ( nextSats.empty() ) return;
 | 
|---|
| 503 |                 sats.swap( nextSats );
 | 
|---|
| 504 |                 nextSats.clear();
 | 
|---|
| 505 |         }
 | 
|---|
| 506 |         
 | 
|---|
| 507 |         // exceeded recursion limit if reaches here
 | 
|---|
| 508 |         if ( out.empty() ) {
 | 
|---|
| 509 |                 SemanticError( cand->expr->location, "Too many recursive assertions" );
 | 
|---|
| 510 |         }
 | 
|---|
| 511 | }
 | 
|---|
| 512 | 
 | 
|---|
| 513 | } // namespace ResolvExpr
 | 
|---|
| 514 | 
 | 
|---|
| 515 | // Local Variables: //
 | 
|---|
| 516 | // tab-width: 4 //
 | 
|---|
| 517 | // mode: c++ //
 | 
|---|
| 518 | // compile-command: "make install" //
 | 
|---|
| 519 | // End: //
 | 
|---|