[6d6e829] | 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 | // ResolveAssertions.cc -- |
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| 8 | // |
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| 9 | // Author : Aaron B. Moss |
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| 10 | // Created On : Fri Oct 05 13:46:00 2018 |
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[7d01cf44] | 11 | // Last Modified By : Andrew Beach |
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| 12 | // Last Modified On : Thu Aug 8 16:47:00 2019 |
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| 13 | // Update Count : 3 |
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[6d6e829] | 14 | // |
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| 15 | |
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| 16 | #include "ResolveAssertions.h" |
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| 17 | |
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[b3bd772] | 18 | #include <algorithm> // for sort |
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[83ab931] | 19 | #include <cassert> // for assertf |
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| 20 | #include <list> // for list |
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[b3bd772] | 21 | #include <memory> // for unique_ptr |
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[4d2d45f9] | 22 | #include <sstream> // for ostringstream |
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| 23 | #include <string> // for string |
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[83ab931] | 24 | #include <unordered_map> // for unordered_map, unordered_multimap |
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| 25 | #include <utility> // for move |
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| 26 | #include <vector> // for vector |
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| 27 | |
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[5bf3976] | 28 | #include "AdjustExprType.hpp" // for adjustExprType |
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[83ab931] | 29 | #include "Alternative.h" // for Alternative, AssertionItem, AssertionList |
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| 30 | #include "Common/FilterCombos.h" // for filterCombos |
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[4d2d45f9] | 31 | #include "Common/Indenter.h" // for Indenter |
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[d76c588] | 32 | #include "GenPoly/GenPoly.h" // for getFunctionType |
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[fed6a0f] | 33 | #include "ResolvExpr/AlternativeFinder.h" // for computeConversionCost |
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[83ab931] | 34 | #include "ResolvExpr/RenameVars.h" // for renameTyVars |
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[5bf3976] | 35 | #include "SpecCost.hpp" // for specCost |
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[83ab931] | 36 | #include "SymTab/Indexer.h" // for Indexer |
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[b3bd772] | 37 | #include "SymTab/Mangler.h" // for Mangler |
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[83ab931] | 38 | #include "SynTree/Expression.h" // for InferredParams |
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| 39 | #include "TypeEnvironment.h" // for TypeEnvironment, etc. |
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| 40 | #include "Unify.h" // for unify |
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[6d6e829] | 41 | |
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| 42 | namespace ResolvExpr { |
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| 43 | /// Unified assertion candidate |
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| 44 | struct AssnCandidate { |
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| 45 | SymTab::Indexer::IdData cdata; ///< Satisfying declaration |
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| 46 | Type* adjType; ///< Satisfying type |
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| 47 | TypeEnvironment env; ///< Post-unification environment |
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| 48 | AssertionSet have; ///< Post-unification have-set |
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| 49 | AssertionSet need; ///< Post-unification need-set |
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| 50 | OpenVarSet openVars; ///< Post-unification open-var set |
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[0b00df0] | 51 | UniqueId resnSlot; ///< Slot for any recursive assertion IDs |
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[6d6e829] | 52 | |
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[aaeacf4] | 53 | AssnCandidate( const SymTab::Indexer::IdData& cdata, Type* adjType, TypeEnvironment&& env, |
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| 54 | AssertionSet&& have, AssertionSet&& need, OpenVarSet&& openVars, UniqueId resnSlot ) |
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| 55 | : cdata(cdata), adjType(adjType), env(std::move(env)), have(std::move(have)), |
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[0b00df0] | 56 | need(std::move(need)), openVars(std::move(openVars)), resnSlot(resnSlot) {} |
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[6d6e829] | 57 | }; |
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| 58 | |
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| 59 | /// List of candidate assertion resolutions |
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| 60 | using CandidateList = std::vector<AssnCandidate>; |
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| 61 | |
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| 62 | /// Reference to single deferred item |
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| 63 | struct DeferRef { |
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[052cd71] | 64 | const DeclarationWithType* decl; |
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| 65 | const AssertionSetValue& info; |
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[6d6e829] | 66 | const AssnCandidate& match; |
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| 67 | }; |
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| 68 | |
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| 69 | /// Wrapper for the deferred items from a single assertion resolution. |
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| 70 | /// Acts like indexed list of DeferRef |
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| 71 | struct DeferItem { |
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[052cd71] | 72 | const DeclarationWithType* decl; |
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| 73 | const AssertionSetValue& info; |
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| 74 | CandidateList matches; |
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[6d6e829] | 75 | |
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[85dac33] | 76 | DeferItem( const DeclarationWithType* decl, const AssertionSetValue& info, CandidateList&& matches ) |
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[052cd71] | 77 | : decl(decl), info(info), matches(std::move(matches)) {} |
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[6d6e829] | 78 | |
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[052cd71] | 79 | bool empty() const { return matches.empty(); } |
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[6d6e829] | 80 | |
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[052cd71] | 81 | CandidateList::size_type size() const { return matches.size(); } |
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[4d2d45f9] | 82 | |
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[052cd71] | 83 | DeferRef operator[] ( unsigned i ) const { return { decl, info, matches[i] }; } |
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[6d6e829] | 84 | }; |
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| 85 | |
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| 86 | /// List of deferred resolution items |
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| 87 | using DeferList = std::vector<DeferItem>; |
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| 88 | |
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[aaeacf4] | 89 | /// Combo iterator that combines candidates into an output list, merging their environments. |
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[6d6e829] | 90 | /// Rejects an appended candidate if the environments cannot be merged. |
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| 91 | class CandidateEnvMerger { |
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| 92 | /// Current list of merged candidates |
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| 93 | std::vector<DeferRef> crnt; |
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| 94 | /// Stack of environments to support backtracking |
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| 95 | std::vector<TypeEnvironment> envs; |
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| 96 | /// Stack of open variables to support backtracking |
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| 97 | std::vector<OpenVarSet> varSets; |
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| 98 | /// Indexer to use for merges |
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| 99 | const SymTab::Indexer& indexer; |
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[aaeacf4] | 100 | |
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[6d6e829] | 101 | public: |
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| 102 | /// The merged environment/open variables and the list of candidates |
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| 103 | struct OutType { |
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| 104 | TypeEnvironment env; |
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| 105 | OpenVarSet openVars; |
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| 106 | std::vector<DeferRef> assns; |
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[c519942] | 107 | Cost cost; |
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[6d6e829] | 108 | |
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[aaeacf4] | 109 | OutType( const TypeEnvironment& env, const OpenVarSet& openVars, |
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[6d6e829] | 110 | const std::vector<DeferRef>& assns ) |
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[c519942] | 111 | : env(env), openVars(openVars), assns(assns), cost(Cost::infinity) {} |
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[6d6e829] | 112 | }; |
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| 113 | |
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[aaeacf4] | 114 | CandidateEnvMerger( const TypeEnvironment& env, const OpenVarSet& openVars, |
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[6d6e829] | 115 | const SymTab::Indexer& indexer ) |
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| 116 | : crnt(), envs{ env }, varSets{ openVars }, indexer(indexer) {} |
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| 117 | |
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| 118 | bool append( DeferRef i ) { |
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| 119 | TypeEnvironment env = envs.back(); |
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| 120 | OpenVarSet openVars = varSets.back(); |
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| 121 | mergeOpenVars( openVars, i.match.openVars ); |
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| 122 | |
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| 123 | if ( ! env.combine( i.match.env, openVars, indexer ) ) return false; |
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| 124 | |
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| 125 | crnt.emplace_back( i ); |
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| 126 | envs.emplace_back( env ); |
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| 127 | varSets.emplace_back( openVars ); |
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| 128 | return true; |
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| 129 | } |
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| 130 | |
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| 131 | void backtrack() { |
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| 132 | crnt.pop_back(); |
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| 133 | envs.pop_back(); |
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| 134 | varSets.pop_back(); |
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| 135 | } |
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| 136 | |
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| 137 | OutType finalize() { return { envs.back(), varSets.back(), crnt }; } |
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| 138 | }; |
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| 139 | |
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[aaeacf4] | 140 | /// Comparator for CandidateEnvMerger outputs that sums their costs and caches the stored |
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[fbecee5] | 141 | /// sums |
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| 142 | struct CandidateCost { |
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| 143 | using Element = CandidateEnvMerger::OutType; |
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| 144 | private: |
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| 145 | const SymTab::Indexer& indexer; ///< Indexer for costing |
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| 146 | |
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| 147 | public: |
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| 148 | CandidateCost( const SymTab::Indexer& indexer ) : indexer(indexer) {} |
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| 149 | |
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| 150 | /// reports the cost of an element |
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[c519942] | 151 | Cost get( Element& x ) const { |
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| 152 | // check cached cost |
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| 153 | if ( x.cost != Cost::infinity ) return x.cost; |
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| 154 | |
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| 155 | // generate cost |
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| 156 | Cost k = Cost::zero; |
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| 157 | for ( const auto& assn : x.assns ) { |
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[d76c588] | 158 | // compute conversion cost from satisfying decl to assertion |
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[aaeacf4] | 159 | k += computeConversionCost( |
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[7d01cf44] | 160 | assn.match.adjType, assn.decl->get_type(), false, indexer, x.env ); |
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[aaeacf4] | 161 | |
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[c519942] | 162 | // mark vars+specialization cost on function-type assertions |
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[d76c588] | 163 | FunctionType* func = GenPoly::getFunctionType( assn.match.cdata.id->get_type() ); |
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[c519942] | 164 | if ( ! func ) continue; |
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[aaeacf4] | 165 | |
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[c519942] | 166 | for ( DeclarationWithType* formal : func->parameters ) { |
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| 167 | k.decSpec( specCost( formal->get_type() ) ); |
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| 168 | } |
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| 169 | k.incVar( func->forall.size() ); |
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| 170 | for ( TypeDecl* td : func->forall ) { |
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| 171 | k.decSpec( td->assertions.size() ); |
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[fbecee5] | 172 | } |
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| 173 | } |
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[c519942] | 174 | |
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| 175 | // cache and return |
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| 176 | x.cost = k; |
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| 177 | return k; |
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[fbecee5] | 178 | } |
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[aaeacf4] | 179 | |
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[fbecee5] | 180 | /// compares elements by cost |
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[c519942] | 181 | bool operator() ( Element& a, Element& b ) const { |
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[fbecee5] | 182 | return get( a ) < get( b ); |
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| 183 | } |
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| 184 | }; |
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| 185 | |
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[0b00df0] | 186 | /// Set of assertion resolutions, grouped by resolution ID |
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| 187 | using InferCache = std::unordered_map< UniqueId, InferredParams >; |
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| 188 | |
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[b408364] | 189 | /// Lexicographically-ordered vector of costs |
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| 190 | using CostVec = std::vector< Cost >; |
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| 191 | |
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| 192 | int compare( const CostVec & a, const CostVec & b ) { |
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| 193 | unsigned i = 0; |
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| 194 | do { |
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| 195 | // lex-compare where shorter one is less |
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| 196 | if ( i == a.size() ) { |
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| 197 | return i == b.size() ? 0 : -1; |
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| 198 | } |
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| 199 | if ( i == b.size() /* && i < a.size() */ ) return 1; |
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[6f096d2] | 200 | |
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[b408364] | 201 | int c = a[i].compare( b[i] ); |
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| 202 | if ( c != 0 ) return c; |
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| 203 | } while ( ++i ); |
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| 204 | assert(!"unreachable"); |
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| 205 | } |
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| 206 | |
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| 207 | bool operator< ( const CostVec & a, const CostVec & b ) { return compare( a, b ) < 0; } |
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| 208 | |
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[6d6e829] | 209 | /// Flag for state iteration |
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| 210 | enum IterateFlag { IterateState }; |
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| 211 | |
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| 212 | /// State needed to resolve a set of assertions |
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| 213 | struct ResnState { |
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[0b00df0] | 214 | Alternative alt; ///< Alternative assertion is rooted on |
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| 215 | AssertionList need; ///< Assertions to find |
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| 216 | AssertionSet newNeed; ///< New assertions for current resolutions |
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| 217 | DeferList deferred; ///< Deferred matches |
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| 218 | InferCache inferred; ///< Cache of already-inferred parameters |
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[b408364] | 219 | CostVec costs; ///< Costs of recursive assertion satisfaction for disambiguation |
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[0b00df0] | 220 | SymTab::Indexer& indexer; ///< Name lookup (depends on previous assertions) |
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[6d6e829] | 221 | |
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| 222 | /// Initial resolution state for an alternative |
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[6f096d2] | 223 | ResnState( Alternative & a, SymTab::Indexer & indexer ) |
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[b408364] | 224 | : alt(a), need(), newNeed(), deferred(), inferred(), costs{ Cost::zero }, indexer(indexer) { |
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[6d6e829] | 225 | need.swap( a.need ); |
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| 226 | } |
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| 227 | |
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| 228 | /// Updated resolution state with new need-list |
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[6f096d2] | 229 | ResnState( ResnState && o, IterateFlag ) |
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[aaeacf4] | 230 | : alt(std::move(o.alt)), need(o.newNeed.begin(), o.newNeed.end()), newNeed(), deferred(), |
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[b408364] | 231 | inferred(std::move(o.inferred)), costs(o.costs), indexer(o.indexer) { |
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| 232 | costs.emplace_back( Cost::zero ); |
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| 233 | } |
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[6d6e829] | 234 | }; |
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| 235 | |
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| 236 | /// Binds a single assertion, updating resolution state |
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[6f096d2] | 237 | void bindAssertion( const DeclarationWithType * decl, AssertionSetValue info, Alternative & alt, |
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| 238 | AssnCandidate & match, InferCache & inferred ) { |
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[aaeacf4] | 239 | |
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[6f096d2] | 240 | const DeclarationWithType * candidate = match.cdata.id; |
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| 241 | assertf( candidate->uniqueId, "Assertion candidate does not have a unique ID: %s", toString( candidate ).c_str() ); |
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[6d6e829] | 242 | |
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[6f096d2] | 243 | Expression * varExpr = match.cdata.combine( alt.cvtCost ); |
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[2c187378] | 244 | delete varExpr->result; |
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| 245 | varExpr->result = match.adjType->clone(); |
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[0b00df0] | 246 | if ( match.resnSlot ) { varExpr->resnSlots.push_back( match.resnSlot ); } |
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[6d6e829] | 247 | |
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[0b00df0] | 248 | // place newly-inferred assertion in proper place in cache |
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| 249 | inferred[ info.resnSlot ][ decl->get_uniqueId() ] = ParamEntry{ |
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[6f096d2] | 250 | candidate->uniqueId, candidate->clone(), match.adjType->clone(), decl->get_type()->clone(), |
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[9aaacc27] | 251 | varExpr }; |
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[6d6e829] | 252 | } |
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| 253 | |
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| 254 | /// Adds a captured assertion to the symbol table |
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[6f096d2] | 255 | void addToIndexer( AssertionSet & assertSet, SymTab::Indexer & indexer ) { |
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[e1f7eef] | 256 | for ( auto& i : assertSet ) { |
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| 257 | if ( i.second.isUsed ) { |
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| 258 | indexer.addId( i.first ); |
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[6d6e829] | 259 | } |
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| 260 | } |
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| 261 | } |
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| 262 | |
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[0b00df0] | 263 | // in AlternativeFinder.cc; unique ID for assertion resolutions |
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| 264 | extern UniqueId globalResnSlot; |
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| 265 | |
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[6d6e829] | 266 | /// Resolve a single assertion, in context |
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[6f096d2] | 267 | bool resolveAssertion( AssertionItem & assn, ResnState & resn ) { |
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[6d6e829] | 268 | // skip unused assertions |
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| 269 | if ( ! assn.info.isUsed ) return true; |
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| 270 | |
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[052cd71] | 271 | // lookup candidates for this assertion |
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| 272 | std::list< SymTab::Indexer::IdData > candidates; |
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| 273 | resn.indexer.lookupId( assn.decl->name, candidates ); |
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| 274 | |
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| 275 | // find the candidates that unify with the desired type |
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| 276 | CandidateList matches; |
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[6f096d2] | 277 | for ( const auto & cdata : candidates ) { |
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| 278 | const DeclarationWithType * candidate = cdata.id; |
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[052cd71] | 279 | |
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[2fb35df] | 280 | // ignore deleted candidates. |
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| 281 | // NOTE: this behavior is different from main resolver. |
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| 282 | // further investigations might be needed to determine |
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| 283 | // if we should implement the same rule here |
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| 284 | // (i.e. error if unique best match is deleted) |
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| 285 | if (candidate->isDeleted) continue; |
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| 286 | |
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| 287 | // build independent unification context. for candidate |
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[052cd71] | 288 | AssertionSet have, newNeed; |
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| 289 | TypeEnvironment newEnv{ resn.alt.env }; |
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| 290 | OpenVarSet newOpenVars{ resn.alt.openVars }; |
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[6f096d2] | 291 | Type * adjType = candidate->get_type()->clone(); |
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[052cd71] | 292 | adjustExprType( adjType, newEnv, resn.indexer ); |
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| 293 | renameTyVars( adjType ); |
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| 294 | |
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| 295 | // keep unifying candidates |
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[aaeacf4] | 296 | if ( unify( assn.decl->get_type(), adjType, newEnv, newNeed, have, newOpenVars, |
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[052cd71] | 297 | resn.indexer ) ) { |
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| 298 | // set up binding slot for recursive assertions |
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| 299 | UniqueId crntResnSlot = 0; |
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| 300 | if ( ! newNeed.empty() ) { |
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| 301 | crntResnSlot = ++globalResnSlot; |
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| 302 | for ( auto& a : newNeed ) { |
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| 303 | a.second.resnSlot = crntResnSlot; |
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[0b00df0] | 304 | } |
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[2fd9f24] | 305 | } |
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[e1f7eef] | 306 | |
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[aaeacf4] | 307 | matches.emplace_back( cdata, adjType, std::move(newEnv), std::move(have), |
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[052cd71] | 308 | std::move(newNeed), std::move(newOpenVars), crntResnSlot ); |
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| 309 | } else { |
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| 310 | delete adjType; |
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| 311 | } |
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[6d6e829] | 312 | } |
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| 313 | |
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| 314 | // break if no suitable assertion |
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| 315 | if ( matches.empty() ) return false; |
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| 316 | |
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| 317 | // defer if too many suitable assertions |
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| 318 | if ( matches.size() > 1 ) { |
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[052cd71] | 319 | resn.deferred.emplace_back( assn.decl, assn.info, std::move(matches) ); |
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[6d6e829] | 320 | return true; |
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| 321 | } |
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| 322 | |
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| 323 | // otherwise bind current match in ongoing scope |
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| 324 | AssnCandidate& match = matches.front(); |
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| 325 | addToIndexer( match.have, resn.indexer ); |
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| 326 | resn.newNeed.insert( match.need.begin(), match.need.end() ); |
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[052cd71] | 327 | resn.alt.env = std::move(match.env); |
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| 328 | resn.alt.openVars = std::move(match.openVars); |
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[6d6e829] | 329 | |
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[0b00df0] | 330 | bindAssertion( assn.decl, assn.info, resn.alt, match, resn.inferred ); |
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[6d6e829] | 331 | return true; |
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| 332 | } |
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| 333 | |
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[0b00df0] | 334 | /// Associates inferred parameters with an expression |
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| 335 | struct InferMatcher { |
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| 336 | InferCache& inferred; |
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| 337 | |
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| 338 | InferMatcher( InferCache& inferred ) : inferred( inferred ) {} |
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| 339 | |
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| 340 | Expression* postmutate( Expression* expr ) { |
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[40290497] | 341 | // defer missing inferred parameters until they are hopefully found later |
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| 342 | std::vector<UniqueId> missingSlots; |
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[0b00df0] | 343 | // place inferred parameters into resolution slots |
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| 344 | for ( UniqueId slot : expr->resnSlots ) { |
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| 345 | // fail if no matching parameters found |
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[40290497] | 346 | auto it = inferred.find( slot ); |
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| 347 | if ( it == inferred.end() ) { |
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| 348 | missingSlots.push_back( slot ); |
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| 349 | continue; |
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| 350 | } |
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| 351 | InferredParams& inferParams = it->second; |
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[aaeacf4] | 352 | |
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[0b00df0] | 353 | // place inferred parameters into proper place in expression |
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| 354 | for ( auto& entry : inferParams ) { |
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| 355 | // recurse on inferParams of resolved expressions |
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| 356 | entry.second.expr = postmutate( entry.second.expr ); |
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| 357 | // xxx - look at entry.second.inferParams? |
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[462a7c7] | 358 | auto res = expr->inferParams.emplace( entry.first, entry.second ); |
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| 359 | assert(res.second); |
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[0b00df0] | 360 | } |
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| 361 | } |
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| 362 | |
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| 363 | // clear resolution slots and return |
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[40290497] | 364 | expr->resnSlots.swap( missingSlots ); |
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[0b00df0] | 365 | return expr; |
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| 366 | } |
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| 367 | }; |
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| 368 | |
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[b408364] | 369 | /// Map of alternative return types to recursive assertion satisfaction costs |
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| 370 | using PruneMap = std::unordered_map<std::string, CostVec>; |
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| 371 | |
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| 372 | /// Gets the pruning key for an alternative |
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| 373 | std::string pruneKey( const Alternative & alt ) { |
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| 374 | Type* resType = alt.expr->result->clone(); |
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| 375 | alt.env.apply( resType ); |
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| 376 | std::string resKey = SymTab::Mangler::mangleType( resType ); |
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| 377 | delete resType; |
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[1d760934] | 378 | return resKey; |
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[b408364] | 379 | } |
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[6f096d2] | 380 | |
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| 381 | /// Replace resnSlots with inferParams and add alternative to output list, if meets pruning |
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[b408364] | 382 | /// threshold. |
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| 383 | void finalizeAssertions( ResnState& resn, PruneMap & pruneThresholds, AltList& out ) { |
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| 384 | // prune if cheaper alternative for same key has already been generated |
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| 385 | std::string resKey = pruneKey( resn.alt ); |
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| 386 | auto it = pruneThresholds.find( resKey ); |
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| 387 | if ( it != pruneThresholds.end() ) { |
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| 388 | if ( it->second < resn.costs ) return; |
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| 389 | } else { |
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| 390 | pruneThresholds.emplace_hint( it, resKey, resn.costs ); |
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| 391 | } |
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| 392 | |
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| 393 | // replace resolution slots with inferred params, add to output |
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| 394 | PassVisitor<InferMatcher> matcher{ resn.inferred }; |
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| 395 | resn.alt.expr = resn.alt.expr->acceptMutator( matcher ); |
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| 396 | out.emplace_back( resn.alt ); |
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[0b00df0] | 397 | } |
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| 398 | |
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| 399 | /// Limit to depth of recursion of assertion satisfaction |
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[aca6a54c] | 400 | static const int recursionLimit = 7; |
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[d3b2c32a] | 401 | /// Maximum number of simultaneously-deferred assertions to attempt concurrent satisfaction of |
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| 402 | static const int deferLimit = 10; |
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[6d6e829] | 403 | |
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[4d2d45f9] | 404 | void resolveAssertions( Alternative& alt, const SymTab::Indexer& indexer, AltList& out, std::list<std::string>& errors ) { |
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[6d6e829] | 405 | // finish early if no assertions to resolve |
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| 406 | if ( alt.need.empty() ) { |
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| 407 | out.emplace_back( alt ); |
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| 408 | return; |
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| 409 | } |
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| 410 | |
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| 411 | // build list of possible resolutions |
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| 412 | using ResnList = std::vector<ResnState>; |
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| 413 | SymTab::Indexer root_indexer{ indexer }; |
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| 414 | ResnList resns{ ResnState{ alt, root_indexer } }; |
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| 415 | ResnList new_resns{}; |
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[6f096d2] | 416 | |
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[b408364] | 417 | // Pruning thresholds by result type of the output alternatives. |
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| 418 | // Alternatives *should* be generated in sorted order, so no need to retroactively prune |
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| 419 | PruneMap thresholds; |
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[6d6e829] | 420 | |
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| 421 | // resolve assertions in breadth-first-order up to a limited number of levels deep |
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| 422 | for ( unsigned level = 0; level < recursionLimit; ++level ) { |
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| 423 | // scan over all mutually-compatible resolutions |
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| 424 | for ( auto& resn : resns ) { |
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[b408364] | 425 | // stop this branch if already found a better option |
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| 426 | auto it = thresholds.find( pruneKey( resn.alt ) ); |
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| 427 | if ( it != thresholds.end() && it->second < resn.costs ) goto nextResn; |
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| 428 | |
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[6d6e829] | 429 | // make initial pass at matching assertions |
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| 430 | for ( auto& assn : resn.need ) { |
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| 431 | // fail early if any assertion is not resolvable |
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[052cd71] | 432 | if ( ! resolveAssertion( assn, resn ) ) { |
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[99d4584] | 433 | Indenter tabs{ 3 }; |
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[4d2d45f9] | 434 | std::ostringstream ss; |
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| 435 | ss << tabs << "Unsatisfiable alternative:\n"; |
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| 436 | resn.alt.print( ss, ++tabs ); |
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[d3b2c32a] | 437 | ss << (tabs-1) << "Could not satisfy assertion:\n"; |
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| 438 | assn.decl->print( ss, tabs ); |
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[aaeacf4] | 439 | |
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[4d2d45f9] | 440 | errors.emplace_back( ss.str() ); |
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| 441 | goto nextResn; |
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| 442 | } |
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[6d6e829] | 443 | } |
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| 444 | |
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| 445 | if ( resn.deferred.empty() ) { |
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| 446 | // either add successful match or push back next state |
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| 447 | if ( resn.newNeed.empty() ) { |
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[b408364] | 448 | finalizeAssertions( resn, thresholds, out ); |
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[6d6e829] | 449 | } else { |
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| 450 | new_resns.emplace_back( std::move(resn), IterateState ); |
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| 451 | } |
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[d3b2c32a] | 452 | } else if ( resn.deferred.size() > deferLimit ) { |
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| 453 | // too many deferred assertions to attempt mutual compatibility |
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| 454 | Indenter tabs{ 3 }; |
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| 455 | std::ostringstream ss; |
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| 456 | ss << tabs << "Unsatisfiable alternative:\n"; |
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| 457 | resn.alt.print( ss, ++tabs ); |
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| 458 | ss << (tabs-1) << "Too many non-unique satisfying assignments for " |
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| 459 | "assertions:\n"; |
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| 460 | for ( const auto& d : resn.deferred ) { |
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| 461 | d.decl->print( ss, tabs ); |
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| 462 | } |
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| 463 | |
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| 464 | errors.emplace_back( ss.str() ); |
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| 465 | goto nextResn; |
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[6d6e829] | 466 | } else { |
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[b3bd772] | 467 | // resolve deferred assertions by mutual compatibility |
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[6d6e829] | 468 | std::vector<CandidateEnvMerger::OutType> compatible = filterCombos( |
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[aaeacf4] | 469 | resn.deferred, |
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[6d6e829] | 470 | CandidateEnvMerger{ resn.alt.env, resn.alt.openVars, resn.indexer } ); |
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[4d2d45f9] | 471 | // fail early if no mutually-compatible assertion satisfaction |
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| 472 | if ( compatible.empty() ) { |
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[99d4584] | 473 | Indenter tabs{ 3 }; |
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[4d2d45f9] | 474 | std::ostringstream ss; |
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| 475 | ss << tabs << "Unsatisfiable alternative:\n"; |
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| 476 | resn.alt.print( ss, ++tabs ); |
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[d3b2c32a] | 477 | ss << (tabs-1) << "No mutually-compatible satisfaction for assertions:\n"; |
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[4d2d45f9] | 478 | for ( const auto& d : resn.deferred ) { |
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[052cd71] | 479 | d.decl->print( ss, tabs ); |
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[4d2d45f9] | 480 | } |
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| 481 | |
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| 482 | errors.emplace_back( ss.str() ); |
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| 483 | goto nextResn; |
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| 484 | } |
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[b408364] | 485 | // sort by cost for overall pruning |
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[b3bd772] | 486 | CandidateCost coster{ resn.indexer }; |
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| 487 | std::sort( compatible.begin(), compatible.end(), coster ); |
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| 488 | |
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| 489 | for ( auto& compat : compatible ) { |
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[6d6e829] | 490 | ResnState new_resn = resn; |
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| 491 | |
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| 492 | // add compatible assertions to new resolution state |
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| 493 | for ( DeferRef r : compat.assns ) { |
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| 494 | AssnCandidate match = r.match; |
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| 495 | addToIndexer( match.have, new_resn.indexer ); |
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| 496 | new_resn.newNeed.insert( match.need.begin(), match.need.end() ); |
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| 497 | |
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[052cd71] | 498 | bindAssertion( r.decl, r.info, new_resn.alt, match, new_resn.inferred ); |
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[6d6e829] | 499 | } |
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| 500 | |
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| 501 | // set mutual environment into resolution state |
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| 502 | new_resn.alt.env = std::move(compat.env); |
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| 503 | new_resn.alt.openVars = std::move(compat.openVars); |
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| 504 | |
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[b408364] | 505 | // mark cost of this path |
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| 506 | new_resn.costs.back() += compat.cost; |
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| 507 | |
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[6d6e829] | 508 | // either add sucessful match or push back next state |
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| 509 | if ( new_resn.newNeed.empty() ) { |
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[b408364] | 510 | finalizeAssertions( new_resn, thresholds, out ); |
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[6d6e829] | 511 | } else { |
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| 512 | new_resns.emplace_back( std::move(new_resn), IterateState ); |
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| 513 | } |
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| 514 | } |
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| 515 | } |
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| 516 | nextResn:; } |
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| 517 | |
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| 518 | // finish or reset for next round |
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| 519 | if ( new_resns.empty() ) return; |
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| 520 | resns.swap( new_resns ); |
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| 521 | new_resns.clear(); |
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| 522 | } |
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[aaeacf4] | 523 | |
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[6d6e829] | 524 | // exceeded recursion limit if reaches here |
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| 525 | if ( out.empty() ) { |
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| 526 | SemanticError( alt.expr->location, "Too many recursive assertions" ); |
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| 527 | } |
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| 528 | } |
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| 529 | } // namespace ResolvExpr |
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| 530 | |
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| 531 | // Local Variables: // |
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| 532 | // tab-width: 4 // |
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| 533 | // mode: c++ // |
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| 534 | // compile-command: "make install" // |
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| 535 | // End: // |
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