source: src/AST/Inspect.cpp@ 890f67a

ADT ast-experimental
Last change on this file since 890f67a was c02cef1, checked in by Andrew Beach <ajbeach@…>, 3 years ago

Clean-up in AST/Inspect.

  • Property mode set to 100644
File size: 6.6 KB
RevLine 
[b70abaf]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//
[7b71402]7// Inspect.cpp -- Helpers to get information from the AST.
[b70abaf]8//
9// Author : Thierry Delisle
10// Created On : Fri Jun 24 13:16:31 2022
[7b71402]11// Last Modified By : Andrew Beach
[c02cef1]12// Last Modified On : Mon Oct 3 11:04:00 2022
13// Update Count : 3
[b70abaf]14//
15
[e01eb4a]16#include "Inspect.hpp"
[b70abaf]17
18#include <iostream>
[c02cef1]19#include <iterator>
[e01eb4a]20
21#include "AST/Decl.hpp"
22#include "AST/Expr.hpp"
23#include "AST/Print.hpp"
24#include "AST/Stmt.hpp"
25#include "AST/Type.hpp"
26#include "CodeGen/OperatorTable.h"
[b70abaf]27
28namespace ast {
[7b71402]29
[c02cef1]30const Type * getPointerBase( const Type * type ) {
31 if ( const auto * p = dynamic_cast< const PointerType * >( type ) ) {
[e01eb4a]32 return p->base;
[c02cef1]33 } else if ( auto a = dynamic_cast< const ArrayType * >( type ) ) {
[e01eb4a]34 return a->base;
[c02cef1]35 } else if ( auto r = dynamic_cast< const ReferenceType * >( type ) ) {
[e01eb4a]36 return r->base;
37 } else {
38 return nullptr;
39 }
40}
41
42template<typename CallExpr, typename Ret>
43static Ret throughDeref( const CallExpr * expr, Ret(*func)( const Expr * ) ) {
44 // In `(*f)(x)` the function we want is `f`.
45 std::string name = getFunctionName( expr );
46 assertf( name == "*?", "Unexpected untyped expression: %s", name.c_str() );
[c02cef1]47 assertf( !expr->args.empty(), "Cannot pass through dereference with no arguments." );
[e01eb4a]48 return func( expr->args.front() );
49}
50
51static const DeclWithType * getCalledFunction( const Expr * expr ) {
52 assert( expr );
[c02cef1]53 if ( const auto * varExpr = dynamic_cast< const VariableExpr * >( expr ) ) {
[e01eb4a]54 return varExpr->var;
[c02cef1]55 } else if ( auto memberExpr = dynamic_cast< const MemberExpr * >( expr ) ) {
[e01eb4a]56 return memberExpr->member;
[c02cef1]57 } else if ( auto castExpr = dynamic_cast< const CastExpr * >( expr ) ) {
[e01eb4a]58 return getCalledFunction( castExpr->arg );
[c02cef1]59 } else if ( auto untypedExpr = dynamic_cast< const UntypedExpr * >( expr ) ) {
[e01eb4a]60 return throughDeref( untypedExpr, getCalledFunction );
[c02cef1]61 } else if ( auto appExpr = dynamic_cast< const ApplicationExpr * > ( expr ) ) {
[e01eb4a]62 return throughDeref( appExpr, getCalledFunction );
[c02cef1]63 } else if ( auto addrExpr = dynamic_cast< const AddressExpr * >( expr ) ) {
[e01eb4a]64 return getCalledFunction( addrExpr->arg );
[c02cef1]65 } else if ( auto commaExpr = dynamic_cast< const CommaExpr * >( expr ) ) {
[e01eb4a]66 return getCalledFunction( commaExpr->arg2 );
[c02cef1]67 } else {
68 return nullptr;
[e01eb4a]69 }
70}
71
72const DeclWithType * getFunction( const Expr * expr ) {
73 if ( auto app = dynamic_cast< const ApplicationExpr * >( expr ) ) {
74 return getCalledFunction( app->func );
75 } else if ( auto untyped = dynamic_cast< const UntypedExpr * >( expr ) ) {
76 return getCalledFunction( untyped->func );
[c02cef1]77 } else {
78 assertf( false, "getFunction received unknown expression: %s", toString( expr ).c_str() );
[e01eb4a]79 }
80}
81
82// There is a lot of overlap with getCalledFunction. Ideally it would use
83// it as a helper function and return the name of the DeclWithType. But the
84// NameExpr and UntypedMemberExpr only work on this version.
85static std::string funcName( const Expr * func ) {
86 assert( func );
[c02cef1]87 if ( const auto * nameExpr = dynamic_cast< const NameExpr * >( func ) ) {
[e01eb4a]88 return nameExpr->name;
[c02cef1]89 } else if ( auto varExpr = dynamic_cast< const VariableExpr * >( func ) ) {
[e01eb4a]90 return varExpr->var->name;
[c02cef1]91 } else if ( auto castExpr = dynamic_cast< const CastExpr * >( func ) ) {
[e01eb4a]92 return funcName( castExpr->arg );
[c02cef1]93 } else if ( auto memberExpr = dynamic_cast< const MemberExpr * >( func ) ) {
[e01eb4a]94 return memberExpr->member->name;
[c02cef1]95 } else if ( auto memberExpr = dynamic_cast< const UntypedMemberExpr * >( func ) ) {
[e01eb4a]96 return funcName( memberExpr->member );
[c02cef1]97 } else if ( auto untypedExpr = dynamic_cast< const UntypedExpr * >( func ) ) {
[e01eb4a]98 return throughDeref( untypedExpr, funcName );
[c02cef1]99 } else if ( auto appExpr = dynamic_cast< const ApplicationExpr * >( func ) ) {
[e01eb4a]100 return throughDeref( appExpr, funcName );
[c02cef1]101 } else if ( auto ctorExpr = dynamic_cast< const ConstructorExpr * >( func ) ) {
[e01eb4a]102 return funcName( getCallArg( ctorExpr->callExpr, 0 ) );
103 } else {
104 assertf( false, "Unexpected expression type being called as a function in call expression: %s", toString( func ).c_str() );
105 }
106}
107
108std::string getFunctionName( const Expr * expr ) {
[c02cef1]109 // There's some unforunate overlap here with getFunction. See above.
[e01eb4a]110 if ( auto app = dynamic_cast< const ApplicationExpr * >( expr ) ) {
111 return funcName( app->func );
112 } else if ( auto untyped = dynamic_cast< const UntypedExpr * >( expr ) ) {
113 return funcName( untyped->func );
114 } else {
[c02cef1]115 assertf( false, "getFunctionName received unknown expression: %s", toString( expr ).c_str() );
[e01eb4a]116 }
117}
118
[c02cef1]119template<typename CallExpr>
120static const Expr * callArg( const CallExpr * call, unsigned int pos ) {
121 assertf( pos < call->args.size(),
122 "callArg for argument that doesn't exist: (%u); %s.",
123 pos, toString( call ).c_str() );
124 auto it = call->args.begin();
125 std::advance( it, pos );
126 return *it;
127}
128
[e01eb4a]129const Expr * getCallArg( const Expr * call, unsigned int pos ) {
130 if ( auto app = dynamic_cast< const ApplicationExpr * >( call ) ) {
131 return callArg( app, pos );
132 } else if ( auto untyped = dynamic_cast< const UntypedExpr * >( call ) ) {
133 return callArg( untyped, pos );
134 } else if ( auto tupleAssn = dynamic_cast< const TupleAssignExpr * >( call ) ) {
135 const std::list<ptr<Stmt>>& stmts = tupleAssn->stmtExpr->stmts->kids;
136 assertf( !stmts.empty(), "TupleAssignExpr missing statements." );
[c02cef1]137 auto stmt = stmts.back().strict_as< ExprStmt >();
138 auto tuple = stmt->expr.strict_as< TupleExpr >();
[e01eb4a]139 assertf( !tuple->exprs.empty(), "TupleAssignExpr has empty tuple expr." );
140 return getCallArg( tuple->exprs.front(), pos );
141 } else if ( auto ctor = dynamic_cast< const ImplicitCopyCtorExpr * >( call ) ) {
142 return getCallArg( ctor->callExpr, pos );
143 } else {
[c02cef1]144 assertf( false, "Unexpected expression type passed to getCallArg: %s", toString( call ).c_str() );
[e01eb4a]145 }
146}
147
[7b71402]148bool structHasFlexibleArray( const ast::StructDecl * decl ) {
149 if(decl->members.size() == 0) return false;
150 const auto & last = *decl->members.rbegin();
151 auto lastd = last.as<ast::DeclWithType>();
152 // I don't know what this is possible, but it might be.
153 if(!lastd) return false;
154 auto atype = dynamic_cast<const ast::ArrayType *>(lastd->get_type());
155 if(!atype) return false;
156 return !atype->isVarLen && !atype->dimension;
157}
158
[e01eb4a]159const ApplicationExpr * isIntrinsicCallExpr( const Expr * expr ) {
160 auto appExpr = dynamic_cast< const ApplicationExpr * >( expr );
161 if ( !appExpr ) return nullptr;
162
163 const DeclWithType * func = getCalledFunction( appExpr->func );
[c02cef1]164 assertf( func, "getCalledFunction returned nullptr: %s",
165 toString( appExpr->func ).c_str() );
[e01eb4a]166
[c02cef1]167 return func->linkage == Linkage::Intrinsic ? appExpr : nullptr;
[e01eb4a]168}
169
[7b71402]170} // namespace ast
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