source: src/Tuples/Explode.h@ fd642d2

ADT arm-eh ast-experimental enum forall-pointer-decay jacob/cs343-translation jenkins-sandbox new-ast new-ast-unique-expr pthread-emulation qualifiedEnum
Last change on this file since fd642d2 was 7870799, checked in by Thierry Delisle <tdelisle@…>, 6 years ago

Cast cost and conversion cost now take constant parameters.
This required supporting visiting const node.
The PassVisitor can now visit const nodes but not when using the Indexer

  • Property mode set to 100644
File size: 10.1 KB
Line 
1//
2// Cforall Version 1.0.0 Copyright (C) 2015 University of Waterloo
3//
4// The contents of this file are covered under the licence agreement in the
5// file "LICENCE" distributed with Cforall.
6//
7// Explode.h --
8//
9// Author : Rob Schluntz
10// Created On : Wed Nov 9 13:12:24 2016
11// Last Modified By : Andrew Beach
12// Last Modified On : Mon Jun 17 14:36:00 2019
13// Update Count : 4
14//
15
16#pragma once
17
18#include <iterator> // for back_inserter, back_insert_iterator
19#include <utility> // for forward
20
21#include "AST/Expr.hpp"
22#include "ResolvExpr/Alternative.h" // for Alternative, AltList
23#include "ResolvExpr/Candidate.hpp" // for Candidate, CandidateList
24#include "ResolvExpr/ExplodedActual.h" // for ExplodedActual
25#include "ResolvExpr/ExplodedArg.hpp" // for ExplodedArg
26#include "SynTree/Expression.h" // for Expression, UniqueExpr, AddressExpr
27#include "SynTree/Type.h" // for TupleType, Type
28#include "Tuples.h" // for maybeImpure
29
30namespace ast {
31 class SymbolTable;
32}
33
34namespace SymTab {
35class Indexer;
36} // namespace SymTab
37
38namespace Tuples {
39 Expression * distributeReference( Expression * );
40
41 static inline CastExpr * isReferenceCast( Expression * expr ) {
42 if ( CastExpr * castExpr = dynamic_cast< CastExpr * >( expr ) ) {
43 if ( dynamic_cast< ReferenceType * >( castExpr->result ) ) {
44 return castExpr;
45 }
46 }
47 return nullptr;
48 }
49
50 /// Append alternative to an OutputIterator of Alternatives
51 template<typename OutputIterator>
52 void append( OutputIterator out, Expression* expr, const ResolvExpr::TypeEnvironment& env,
53 const ResolvExpr::OpenVarSet& openVars, const ResolvExpr::AssertionList& need,
54 const ResolvExpr::Cost& cost, const ResolvExpr::Cost& cvtCost ) {
55 *out++ = ResolvExpr::Alternative{ expr, env, openVars, need, cost, cvtCost };
56 }
57
58 /// Append alternative to an ExplodedActual
59 static inline void append( ResolvExpr::ExplodedActual& ea, Expression* expr,
60 const ResolvExpr::TypeEnvironment&, const ResolvExpr::OpenVarSet&,
61 const ResolvExpr::AssertionList&, const ResolvExpr::Cost&, const ResolvExpr::Cost& ) {
62 ea.exprs.emplace_back( expr );
63 /// xxx -- merge environment, openVars, need, cost?
64 }
65
66 /// helper function used by explode
67 template< typename Output >
68 void explodeUnique( Expression * expr, const ResolvExpr::Alternative & alt,
69 const SymTab::Indexer & indexer, Output&& out, bool isTupleAssign ) {
70 if ( isTupleAssign ) {
71 // tuple assignment needs CastExprs to be recursively exploded to easily get at all of the components
72 if ( CastExpr * castExpr = isReferenceCast( expr ) ) {
73 ResolvExpr::AltList alts;
74 explodeUnique(
75 castExpr->get_arg(), alt, indexer, back_inserter( alts ), isTupleAssign );
76 for ( ResolvExpr::Alternative & alt : alts ) {
77 // distribute reference cast over all components
78 append( std::forward<Output>(out), distributeReference( alt.release_expr() ),
79 alt.env, alt.openVars, alt.need, alt.cost, alt.cvtCost );
80 }
81 // in tuple assignment, still need to handle the other cases, but only if not already handled here (don't want to output too many alternatives)
82 return;
83 }
84 }
85 Type * res = expr->get_result()->stripReferences();
86 if ( TupleType * tupleType = dynamic_cast< TupleType * > ( res ) ) {
87 if ( TupleExpr * tupleExpr = dynamic_cast< TupleExpr * >( expr ) ) {
88 // can open tuple expr and dump its exploded components
89 for ( Expression * expr : tupleExpr->get_exprs() ) {
90 explodeUnique( expr, alt, indexer, std::forward<Output>(out), isTupleAssign );
91 }
92 } else {
93 // tuple type, but not tuple expr - recursively index into its components.
94 // if expr type is reference, convert to value type
95 Expression * arg = expr->clone();
96 if ( Tuples::maybeImpureIgnoreUnique( arg ) ) {
97 // expressions which may contain side effects require a single unique instance of the expression.
98 arg = new UniqueExpr( arg );
99 }
100 // cast reference to value type to facilitate further explosion
101 if ( dynamic_cast<ReferenceType *>( arg->get_result() ) ) {
102 arg = new CastExpr( arg, tupleType->clone() );
103 }
104 for ( unsigned int i = 0; i < tupleType->size(); i++ ) {
105 TupleIndexExpr * idx = new TupleIndexExpr( arg->clone(), i );
106 explodeUnique( idx, alt, indexer, std::forward<Output>(out), isTupleAssign );
107 delete idx;
108 }
109 delete arg;
110 }
111 } else {
112 // atomic (non-tuple) type - output a clone of the expression in a new alternative
113 append( std::forward<Output>(out), expr->clone(), alt.env, alt.openVars, alt.need,
114 alt.cost, alt.cvtCost );
115 }
116 }
117
118 /// expands a tuple-valued alternative into multiple alternatives, each with a non-tuple-type
119 template< typename Output >
120 void explode( const ResolvExpr::Alternative &alt, const SymTab::Indexer & indexer,
121 Output&& out, bool isTupleAssign = false ) {
122 explodeUnique( alt.expr, alt, indexer, std::forward<Output>(out), isTupleAssign );
123 }
124
125 // explode list of alternatives
126 template< typename AltIterator, typename Output >
127 void explode( AltIterator altBegin, AltIterator altEnd, const SymTab::Indexer & indexer,
128 Output&& out, bool isTupleAssign = false ) {
129 for ( ; altBegin != altEnd; ++altBegin ) {
130 explode( *altBegin, indexer, std::forward<Output>(out), isTupleAssign );
131 }
132 }
133
134 template< typename Output >
135 void explode( const ResolvExpr::AltList & alts, const SymTab::Indexer & indexer, Output&& out,
136 bool isTupleAssign = false ) {
137 explode( alts.begin(), alts.end(), indexer, std::forward<Output>(out), isTupleAssign );
138 }
139
140const ast::Expr * distributeReference( const ast::Expr * );
141
142/// Append candidate to an OutputIterator of Candidates.
143template<typename OutputIterator>
144void append( OutputIterator out, const ast::Expr * expr, const ast::TypeEnvironment & env,
145 const ast::OpenVarSet & open, const ast::AssertionList & need,
146 const ResolvExpr::Cost & cost, const ResolvExpr::Cost & cvtCost ) {
147 ast::TypeEnvironment copyEnv = env;
148 ast::OpenVarSet copyOpen = open;
149 ast::AssertionSet set;
150 mergeAssertionSet( set, need );
151 *out++ = std::make_shared<ResolvExpr::Candidate>( expr, std::move( copyEnv ),
152 std::move( copyOpen ), std::move( set ), cost, cvtCost );
153}
154
155/// Append candidate to an ExplodedArg.
156static inline void append( ResolvExpr::ExplodedArg& ea, const ast::Expr * expr,
157 const ast::TypeEnvironment&, const ast::OpenVarSet&,
158 const ast::AssertionList&, const ResolvExpr::Cost&, const ResolvExpr::Cost& ) {
159 // I'm not sure why most of the arguments are unused. But they were in the old version.
160 ea.exprs.emplace_back( expr );
161}
162
163/// Check if the expression is a cast to a reference type, return it if it is.
164static inline const ast::CastExpr * isReferenceCast( const ast::Expr * expr ) {
165 if ( const ast::CastExpr * cast = dynamic_cast< const ast::CastExpr * >( expr ) ) {
166 if ( dynamic_cast< const ast::ReferenceType * >( cast->result.get() ) ) {
167 return cast;
168 }
169 }
170 return nullptr;
171}
172
173/// helper function (indirectely) used by explode
174template< typename Output >
175void explodeRecursive(
176 const ast::CastExpr *, const ResolvExpr::Candidate &,
177 const ast::SymbolTable &, Output &&
178) {
179}
180
181/// helper function used by explode
182template< typename Output >
183void explodeUnique(
184 const ast::ptr< ast::Expr > & expr, const ResolvExpr::Candidate & arg,
185 const ast::SymbolTable & symtab, Output && out, bool isTupleAssign
186) {
187 // Tuple assignment can use a faster method if it is cast. Uses recursive exploding.
188 if ( isTupleAssign ) if ( const ast::CastExpr * castExpr = isReferenceCast( expr ) ) {
189 ResolvExpr::CandidateList candidates;
190 explodeUnique( castExpr->arg, arg, symtab, back_inserter( candidates ), true );
191 for ( ResolvExpr::CandidateRef & cand : candidates ) {
192 // Distribute the reference cast over all components of the candidate.
193 append( std::forward<Output>(out), distributeReference( cand->expr ), cand->env,
194 cand->open, cand->need, cand->cost, cand->cvtCost );
195 }
196 return;
197 }
198 const ast::Type * res = expr->result->stripReferences();
199 if ( const ast::TupleType * tupleType = dynamic_cast< const ast::TupleType * >( res ) ) {
200 if ( const ast::ptr< ast::TupleExpr > & tupleExpr = expr.as< ast::TupleExpr >() ) {
201 // Open the tuple expr and continue on its components.
202 for ( const ast::Expr * expr : tupleExpr->exprs ) {
203 explodeUnique( expr, arg, symtab, std::forward<Output>(out), isTupleAssign );
204 }
205 } else {
206 ast::ptr< ast::Expr > local = expr;
207 // Expressions which may have side effects require a single unique instance.
208 if ( Tuples::maybeImpureIgnoreUnique( local ) ) {
209 local = new ast::UniqueExpr( local->location, local );
210 }
211 // Cast a reference away to a value-type to allow further explosion.
212 if ( dynamic_cast< const ast::ReferenceType *>( local->result.get() ) ) {
213 local = new ast::CastExpr{ local, tupleType };
214 }
215 // Now we have to go across the tuple via indexing.
216 for ( unsigned int i = 0 ; i < tupleType->size() ; ++i ) {
217 ast::TupleIndexExpr * idx = new ast::TupleIndexExpr( local->location, local, i );
218 explodeUnique( idx, arg, symtab, std::forward<Output>(out), isTupleAssign );
219 // TODO: We need more input to figure out the exact lifetimes of these types.
220 // delete idx;
221 }
222 // delete local;
223 }
224 } else {
225 // For atomic/non-tuple types, no explosion is used.
226 append( std::forward<Output>(out), expr, arg.env, arg.open, arg.need, arg.cost,
227 arg.cvtCost );
228 }
229}
230
231/// expands a tuple-valued candidate into multiple candidates, each with a non-tuple type
232template< typename Output >
233void explode(
234 const ResolvExpr::Candidate & arg, const ast::SymbolTable & symtab, Output && out,
235 bool isTupleAssign = false
236) {
237 explodeUnique( arg.expr, arg, symtab, std::forward< Output >( out ), isTupleAssign );
238}
239
240/// explode list of candidates into flattened list of candidates
241template< typename Output >
242void explode(
243 const ResolvExpr::CandidateList & cands, const ast::SymbolTable & symtab, Output && out,
244 bool isTupleAssign = false
245) {
246 for ( const ResolvExpr::CandidateRef & cand : cands ) {
247 explode( *cand, symtab, std::forward< Output >( out ), isTupleAssign );
248 }
249}
250
251} // namespace Tuples
252
253// Local Variables: //
254// tab-width: 4 //
255// mode: c++ //
256// compile-command: "make install" //
257// End: //
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