source: src/Parser/StatementNode.cc @ fcc88a4

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Last change on this file since fcc88a4 was d180746, checked in by Thierry Delisle <tdelisle@…>, 7 years ago

Big header cleaning pass - commit 2

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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// StatementNode.cc --
8//
9// Author           : Rodolfo G. Esteves
10// Created On       : Sat May 16 14:59:41 2015
11// Last Modified By : Peter A. Buhr
12// Last Modified On : Tue Jul 11 21:23:15 2017
13// Update Count     : 331
14//
15
16#include <cassert>                 // for assert, safe_dynamic_cast, assertf
17#include <list>                    // for list
18#include <memory>                  // for unique_ptr
19#include <string>                  // for string
20
21#include "Common/SemanticError.h"  // for SemanticError
22#include "Common/utility.h"        // for maybeMoveBuild, maybeBuild
23#include "ParseNode.h"             // for StatementNode, ExpressionNode, bui...
24#include "SynTree/Expression.h"    // for Expression, ConstantExpr
25#include "SynTree/Label.h"         // for Label, noLabels
26#include "SynTree/Statement.h"     // for Statement, BranchStmt, CaseStmt
27#include "parserutility.h"         // for notZeroExpr
28
29class Declaration;
30
31using namespace std;
32
33
34StatementNode::StatementNode( DeclarationNode *decl ) {
35        assert( decl );
36        DeclarationNode *agg = decl->extractAggregate();
37        if ( agg ) {
38                StatementNode *nextStmt = new StatementNode( new DeclStmt( noLabels, maybeBuild< Declaration >( decl ) ) );
39                set_next( nextStmt );
40                if ( decl->get_next() ) {
41                        get_next()->set_next( new StatementNode( dynamic_cast< DeclarationNode * >(decl->get_next()) ) );
42                        decl->set_next( 0 );
43                } // if
44        } else {
45                if ( decl->get_next() ) {
46                        set_next( new StatementNode( dynamic_cast< DeclarationNode * >( decl->get_next() ) ) );
47                        decl->set_next( 0 );
48                } // if
49                agg = decl;
50        } // if
51        stmt.reset( new DeclStmt( noLabels, maybeMoveBuild< Declaration >(agg) ) );
52} // StatementNode::StatementNode
53
54StatementNode *StatementNode::append_last_case( StatementNode *stmt ) {
55        StatementNode *prev = this;
56        // find end of list and maintain previous pointer
57        for ( StatementNode * curr = prev; curr != nullptr; curr = (StatementNode *)curr->get_next() ) {
58                StatementNode *node = safe_dynamic_cast< StatementNode * >(curr);
59                assert( dynamic_cast< CaseStmt * >(node->stmt.get()) );
60                prev = curr;
61        } // for
62        // convert from StatementNode list to Statement list
63        StatementNode *node = dynamic_cast< StatementNode * >(prev);
64        std::list< Statement * > stmts;
65        buildMoveList( stmt, stmts );
66        // splice any new Statements to end of current Statements
67        CaseStmt * caseStmt = dynamic_cast< CaseStmt * >(node->stmt.get());
68        caseStmt->get_statements().splice( caseStmt->get_statements().end(), stmts );
69        return this;
70}
71
72Statement *build_expr( ExpressionNode *ctl ) {
73        Expression *e = maybeMoveBuild< Expression >( ctl );
74
75        if ( e )
76                return new ExprStmt( noLabels, e );
77        else
78                return new NullStmt( noLabels );
79}
80
81Statement *build_if( ExpressionNode *ctl, StatementNode *then_stmt, StatementNode *else_stmt ) {
82        Statement *thenb, *elseb = 0;
83        std::list< Statement * > branches;
84        buildMoveList< Statement, StatementNode >( then_stmt, branches );
85        assert( branches.size() == 1 );
86        thenb = branches.front();
87
88        if ( else_stmt ) {
89                std::list< Statement * > branches;
90                buildMoveList< Statement, StatementNode >( else_stmt, branches );
91                assert( branches.size() == 1 );
92                elseb = branches.front();
93        } // if
94        return new IfStmt( noLabels, notZeroExpr( maybeMoveBuild< Expression >(ctl) ), thenb, elseb );
95}
96
97Statement *build_switch( ExpressionNode *ctl, StatementNode *stmt ) {
98        std::list< Statement * > branches;
99        buildMoveList< Statement, StatementNode >( stmt, branches );
100        // branches.size() == 0 for switch (...) {}, i.e., no declaration or statements
101        return new SwitchStmt( noLabels, maybeMoveBuild< Expression >(ctl), branches );
102}
103Statement *build_case( ExpressionNode *ctl ) {
104        std::list< Statement * > branches;
105        return new CaseStmt( noLabels, maybeMoveBuild< Expression >(ctl), branches );
106}
107Statement *build_default() {
108        std::list< Statement * > branches;
109        return new CaseStmt( noLabels, nullptr, branches, true );
110}
111
112Statement *build_while( ExpressionNode *ctl, StatementNode *stmt, bool kind ) {
113        std::list< Statement * > branches;
114        buildMoveList< Statement, StatementNode >( stmt, branches );
115        assert( branches.size() == 1 );
116        return new WhileStmt( noLabels, notZeroExpr( maybeMoveBuild< Expression >(ctl) ), branches.front(), kind );
117}
118
119Statement *build_for( ForCtl *forctl, StatementNode *stmt ) {
120        std::list< Statement * > branches;
121        buildMoveList< Statement, StatementNode >( stmt, branches );
122        assert( branches.size() == 1 );
123
124        std::list< Statement * > init;
125        if ( forctl->init != 0 ) {
126                buildMoveList( forctl->init, init );
127        } // if
128
129        Expression *cond = 0;
130        if ( forctl->condition != 0 )
131                cond = notZeroExpr( maybeMoveBuild< Expression >(forctl->condition) );
132
133        Expression *incr = 0;
134        if ( forctl->change != 0 )
135                incr = maybeMoveBuild< Expression >(forctl->change);
136
137        delete forctl;
138        return new ForStmt( noLabels, init, cond, incr, branches.front() );
139}
140
141Statement *build_branch( BranchStmt::Type kind ) {
142        Statement * ret = new BranchStmt( noLabels, "", kind );
143        return ret;
144}
145Statement *build_branch( std::string *identifier, BranchStmt::Type kind ) {
146        Statement * ret = new BranchStmt( noLabels, *identifier, kind );
147        delete identifier;                                                                      // allocated by lexer
148        return ret;
149}
150Statement *build_computedgoto( ExpressionNode *ctl ) {
151        return new BranchStmt( noLabels, maybeMoveBuild< Expression >(ctl), BranchStmt::Goto );
152}
153
154Statement *build_return( ExpressionNode *ctl ) {
155        std::list< Expression * > exps;
156        buildMoveList( ctl, exps );
157        return new ReturnStmt( noLabels, exps.size() > 0 ? exps.back() : nullptr );
158}
159
160Statement *build_throw( ExpressionNode *ctl ) {
161        std::list< Expression * > exps;
162        buildMoveList( ctl, exps );
163        assertf( exps.size() < 2, "This means we are leaking memory");
164        return new ThrowStmt( noLabels, ThrowStmt::Terminate, !exps.empty() ? exps.back() : nullptr );
165}
166
167Statement *build_resume( ExpressionNode *ctl ) {
168        std::list< Expression * > exps;
169        buildMoveList( ctl, exps );
170        assertf( exps.size() < 2, "This means we are leaking memory");
171        return new ThrowStmt( noLabels, ThrowStmt::Resume, !exps.empty() ? exps.back() : nullptr );
172}
173
174Statement *build_resume_at( ExpressionNode *ctl, ExpressionNode *target ) {
175        (void)ctl;
176        (void)target;
177        assertf( false, "resume at (non-local throw) is not yet supported," );
178}
179
180Statement *build_try( StatementNode *try_stmt, StatementNode *catch_stmt, StatementNode *finally_stmt ) {
181        std::list< CatchStmt * > branches;
182        buildMoveList< CatchStmt, StatementNode >( catch_stmt, branches );
183        CompoundStmt *tryBlock = safe_dynamic_cast< CompoundStmt * >(maybeMoveBuild< Statement >(try_stmt));
184        FinallyStmt *finallyBlock = dynamic_cast< FinallyStmt * >(maybeMoveBuild< Statement >(finally_stmt) );
185        return new TryStmt( noLabels, tryBlock, branches, finallyBlock );
186}
187Statement *build_catch( CatchStmt::Kind kind, DeclarationNode *decl, ExpressionNode *cond, StatementNode *body ) {
188        std::list< Statement * > branches;
189        buildMoveList< Statement, StatementNode >( body, branches );
190        assert( branches.size() == 1 );
191        return new CatchStmt( noLabels, kind, maybeMoveBuild< Declaration >(decl), maybeMoveBuild< Expression >(cond), branches.front() );
192}
193Statement *build_finally( StatementNode *stmt ) {
194        std::list< Statement * > branches;
195        buildMoveList< Statement, StatementNode >( stmt, branches );
196        assert( branches.size() == 1 );
197        return new FinallyStmt( noLabels, dynamic_cast< CompoundStmt * >( branches.front() ) );
198}
199
200Statement *build_compound( StatementNode *first ) {
201        CompoundStmt *cs = new CompoundStmt( noLabels );
202        buildMoveList( first, cs->get_kids() );
203        return cs;
204}
205
206Statement *build_asmstmt( bool voltile, ConstantExpr *instruction, ExpressionNode *output, ExpressionNode *input, ExpressionNode *clobber, LabelNode *gotolabels ) {
207        std::list< Expression * > out, in;
208        std::list< ConstantExpr * > clob;
209
210        buildMoveList( output, out );
211        buildMoveList( input, in );
212        buildMoveList( clobber, clob );
213        return new AsmStmt( noLabels, voltile, instruction, out, in, clob, gotolabels ? gotolabels->labels : noLabels );
214}
215
216// Local Variables: //
217// tab-width: 4 //
218// mode: c++ //
219// compile-command: "make install" //
220// End: //
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