source: src/Parser/StatementNode.cpp@ 3eb5f993

Last change on this file since 3eb5f993 was c92bdcc, checked in by Andrew Beach <ajbeach@…>, 17 months ago

Updated the rest of the names in src/ (except for the generated files).

  • Property mode set to 100644
File size: 18.2 KB
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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.cpp -- Transform from parse data-structures to AST data-structures, usually deleting the parse
8// data-structure after the transformation.
9//
10// Author : Rodolfo G. Esteves
11// Created On : Sat May 16 14:59:41 2015
12// Last Modified By : Peter A. Buhr
13// Last Modified On : Fri Aug 11 11:44:15 2023
14// Update Count : 429
15//
16
17#include "StatementNode.hpp"
18
19#include <cassert> // for assert, strict_dynamic_cast, assertf
20#include <memory> // for unique_ptr
21#include <string> // for string
22
23#include "AST/Label.hpp" // for Label
24#include "AST/Stmt.hpp" // for Stmt, AsmStmt, BranchStmt, CaseCla...
25#include "Common/SemanticError.hpp"// for SemanticError
26#include "Common/Utility.hpp" // for maybeMoveBuild, maybeBuild
27#include "DeclarationNode.hpp" // for DeclarationNode
28#include "ExpressionNode.hpp" // for ExpressionNode
29#include "ParserUtility.hpp" // for notZeroExpr
30
31class Declaration;
32
33using namespace std;
34
35// Some helpers for cases that really want a single node but check for lists.
36static const ast::Stmt * buildMoveSingle( StatementNode * node ) {
37 std::vector<ast::ptr<ast::Stmt>> list;
38 buildMoveList( node, list );
39 assertf( list.size() == 1, "CFA Internal Error: Extra/Missing Nodes" );
40 return list.front().release();
41}
42
43static const ast::Stmt * buildMoveOptional( StatementNode * node ) {
44 std::vector<ast::ptr<ast::Stmt>> list;
45 buildMoveList( node, list );
46 assertf( list.size() <= 1, "CFA Internal Error: Extra Nodes" );
47 return list.empty() ? nullptr : list.front().release();
48}
49
50StatementNode::StatementNode( DeclarationNode * decl ) {
51 assert( decl );
52 DeclarationNode * agg = decl->extractAggregate();
53 if ( agg ) {
54 StatementNode * nextStmt = new StatementNode(
55 new ast::DeclStmt( decl->location, maybeBuild( decl ) ) );
56 next = nextStmt;
57 if ( decl->next ) {
58 next->next = new StatementNode( decl->next );
59 decl->next = nullptr;
60 } // if
61 } else {
62 if ( decl->next ) {
63 next = new StatementNode( decl->next );
64 decl->next = nullptr;
65 } // if
66 agg = decl;
67 } // if
68 // Local copy to avoid accessing the pointer after it is moved from.
69 CodeLocation declLocation = agg->location;
70 stmt.reset( new ast::DeclStmt( declLocation, maybeMoveBuild( agg ) ) );
71} // StatementNode::StatementNode
72
73StatementNode * StatementNode::add_label(
74 const CodeLocation & location,
75 const std::string * name,
76 DeclarationNode * attr ) {
77 stmt->labels.emplace_back( location,
78 *name,
79 attr ? std::move( attr->attributes )
80 : std::vector<ast::ptr<ast::Attribute>>{} );
81 delete attr;
82 delete name;
83 return this;
84}
85
86ClauseNode * ClauseNode::append_last_case( StatementNode * stmt ) {
87 ClauseNode * prev = this;
88 // find end of list and maintain previous pointer
89 for ( ClauseNode * curr = prev; curr != nullptr; curr = curr->next ) {
90 ClauseNode * node = curr;
91 assert( dynamic_cast<ast::CaseClause *>( node->clause.get() ) );
92 prev = curr;
93 } // for
94 ClauseNode * node = prev;
95 // convert from StatementNode list to Statement list
96 std::vector<ast::ptr<ast::Stmt>> stmts;
97 buildMoveList( stmt, stmts );
98 // splice any new Statements to end of current Statements
99 auto caseStmt = strict_dynamic_cast<ast::CaseClause *>( node->clause.get() );
100 for ( auto const & newStmt : stmts ) {
101 caseStmt->stmts.emplace_back( newStmt );
102 }
103 stmts.clear();
104 return this;
105} // ClauseNode::append_last_case
106
107ast::Stmt * build_expr( CodeLocation const & location, ExpressionNode * ctl ) {
108 if ( ast::Expr * e = maybeMoveBuild( ctl ) ) {
109 return new ast::ExprStmt( location, e );
110 } else {
111 return new ast::NullStmt( location );
112 }
113} // build_expr
114
115static ast::Expr * build_if_control( CondCtl * ctl,
116 std::vector<ast::ptr<ast::Stmt>> & inits ) {
117 assert( inits.empty() );
118 if ( nullptr != ctl->init ) {
119 buildMoveList( ctl->init, inits );
120 } // if
121
122 ast::Expr * cond = nullptr;
123 if ( ctl->condition ) {
124 cond = maybeMoveBuild( ctl->condition );
125 } else {
126 for ( ast::ptr<ast::Stmt> & stmt : inits ) {
127 // build the && of all of the declared variables compared against 0
128 auto declStmt = stmt.strict_as<ast::DeclStmt>();
129 auto dwt = declStmt->decl.strict_as<ast::DeclWithType>();
130 ast::Expr * nze = new ast::VariableExpr( dwt->location, dwt );
131 cond = cond ? new ast::LogicalExpr( dwt->location, cond, nze, ast::AndExpr ) : nze;
132 }
133 }
134 delete ctl;
135 return cond;
136} // build_if_control
137
138ast::Stmt * build_if( const CodeLocation & location, CondCtl * ctl, StatementNode * then, StatementNode * else_ ) {
139 std::vector<ast::ptr<ast::Stmt>> astinit; // maybe empty
140 ast::Expr * astcond = build_if_control( ctl, astinit ); // ctl deleted, cond/init set
141
142 ast::Stmt const * astthen = buildMoveSingle( then );
143 ast::Stmt const * astelse = buildMoveOptional( else_ );
144
145 return new ast::IfStmt( location, astcond, astthen, astelse,
146 std::move( astinit )
147 );
148} // build_if
149
150ast::Stmt * build_switch( const CodeLocation & location, bool isSwitch, ExpressionNode * ctl, ClauseNode * stmt ) {
151 std::vector<ast::ptr<ast::CaseClause>> aststmt;
152 buildMoveList( stmt, aststmt );
153 // If it is not a switch it is a choose statement.
154 if ( ! isSwitch ) {
155 for ( ast::ptr<ast::CaseClause> & stmt : aststmt ) {
156 // Code after "case" is the end of case list.
157 if ( !stmt->stmts.empty() ) {
158 auto mutStmt = ast::mutate( stmt.get() );
159 // I believe the stmts are actually always one block.
160 auto stmts = mutStmt->stmts.front().get_and_mutate();
161 auto block = strict_dynamic_cast<ast::CompoundStmt *>( stmts );
162 block->kids.push_back( new ast::BranchStmt( block->location,
163 ast::BranchStmt::Break,
164 ast::Label( block->location ) ) );
165 stmt = mutStmt;
166 } // if
167 } // for
168 } // if
169 // aststmt.size() == 0 for switch (...) {}, i.e., no declaration or statements
170 return new ast::SwitchStmt( location,
171 maybeMoveBuild( ctl ), std::move( aststmt ) );
172} // build_switch
173
174ast::CaseClause * build_case( const CodeLocation & location, ExpressionNode * ctl ) {
175 // stmt starts empty and then added to
176 auto expr = maybeMoveBuild( ctl );
177 return new ast::CaseClause( location, expr, {} );
178} // build_case
179
180ast::CaseClause * build_default( const CodeLocation & location ) {
181 // stmt starts empty and then added to
182 return new ast::CaseClause( location, nullptr, {} );
183} // build_default
184
185ast::Stmt * build_while( const CodeLocation & location, CondCtl * ctl, StatementNode * stmt, StatementNode * else_ ) {
186 std::vector<ast::ptr<ast::Stmt>> astinit; // maybe empty
187 ast::Expr * astcond = build_if_control( ctl, astinit ); // ctl deleted, cond/init set
188
189 return new ast::WhileDoStmt( location,
190 astcond,
191 buildMoveSingle( stmt ),
192 buildMoveOptional( else_ ),
193 std::move( astinit ),
194 ast::While
195 );
196} // build_while
197
198ast::Stmt * build_do_while( const CodeLocation & location, ExpressionNode * ctl, StatementNode * stmt, StatementNode * else_ ) {
199 // do-while cannot have declarations in the contitional, so init is always empty
200 return new ast::WhileDoStmt( location,
201 maybeMoveBuild( ctl ),
202 buildMoveSingle( stmt ),
203 buildMoveOptional( else_ ),
204 {},
205 ast::DoWhile
206 );
207} // build_do_while
208
209ast::Stmt * build_for( const CodeLocation & location, ForCtrl * forctl, StatementNode * stmt, StatementNode * else_ ) {
210 std::vector<ast::ptr<ast::Stmt>> astinit; // maybe empty
211 buildMoveList( forctl->init, astinit );
212
213 ast::Expr * astcond = nullptr; // maybe empty
214 astcond = maybeMoveBuild( forctl->condition );
215
216 ast::Expr * astincr = nullptr; // maybe empty
217 astincr = maybeMoveBuild( forctl->change );
218 delete forctl;
219
220 return new ast::ForStmt( location,
221 std::move( astinit ),
222 astcond,
223 astincr,
224 buildMoveSingle( stmt ),
225 buildMoveOptional( else_ )
226 );
227} // build_for
228
229ast::Stmt * build_branch( const CodeLocation & location, ast::BranchStmt::Kind kind ) {
230 return new ast::BranchStmt( location,
231 kind,
232 ast::Label( location )
233 );
234} // build_branch
235
236ast::Stmt * build_branch( const CodeLocation & location, string * identifier, ast::BranchStmt::Kind kind ) {
237 ast::Stmt * ret = new ast::BranchStmt( location,
238 kind,
239 ast::Label( location, *identifier )
240 );
241 delete identifier; // allocated by lexer
242 return ret;
243} // build_branch
244
245ast::Stmt * build_computedgoto( ExpressionNode * ctl ) {
246 ast::Expr * expr = maybeMoveBuild( ctl );
247 return new ast::BranchStmt( expr->location, expr );
248} // build_computedgoto
249
250ast::Stmt * build_return( const CodeLocation & location, ExpressionNode * ctl ) {
251 std::vector<ast::ptr<ast::Expr>> exps;
252 buildMoveList( ctl, exps );
253 return new ast::ReturnStmt( location,
254 exps.size() > 0 ? exps.back().release() : nullptr
255 );
256} // build_return
257
258static ast::Stmt * build_throw_stmt(
259 const CodeLocation & location,
260 ExpressionNode * ctl,
261 ast::ExceptionKind kind ) {
262 std::vector<ast::ptr<ast::Expr>> exps;
263 buildMoveList( ctl, exps );
264 assertf( exps.size() < 2, "CFA internal error: leaking memory" );
265 return new ast::ThrowStmt( location,
266 kind,
267 !exps.empty() ? exps.back().release() : nullptr,
268 (ast::Expr *)nullptr
269 );
270}
271
272ast::Stmt * build_throw( const CodeLocation & loc, ExpressionNode * ctl ) {
273 return build_throw_stmt( loc, ctl, ast::Terminate );
274} // build_throw
275
276ast::Stmt * build_resume( const CodeLocation & loc, ExpressionNode * ctl ) {
277 return build_throw_stmt( loc, ctl, ast::Resume );
278} // build_resume
279
280ast::Stmt * build_resume_at( ExpressionNode * ctl, ExpressionNode * target ) {
281 (void)ctl;
282 (void)target;
283 assertf( false, "resume at (non-local throw) is not yet supported," );
284} // build_resume_at
285
286ast::Stmt * build_try( const CodeLocation & location, StatementNode * try_, ClauseNode * catch_, ClauseNode * finally_ ) {
287 std::vector<ast::ptr<ast::CatchClause>> aststmt;
288 buildMoveList( catch_, aststmt );
289 ast::CompoundStmt * tryBlock = strict_dynamic_cast<ast::CompoundStmt *>( maybeMoveBuild( try_ ) );
290 ast::FinallyClause * finallyBlock = nullptr;
291 if ( finally_ ) {
292 finallyBlock = dynamic_cast<ast::FinallyClause *>( finally_->clause.release() );
293 }
294 return new ast::TryStmt( location,
295 tryBlock,
296 std::move( aststmt ),
297 finallyBlock
298 );
299} // build_try
300
301ast::CatchClause * build_catch( const CodeLocation & location, ast::ExceptionKind kind, DeclarationNode * decl, ExpressionNode * cond, StatementNode * body ) {
302 return new ast::CatchClause( location,
303 kind,
304 maybeMoveBuild( decl ),
305 maybeMoveBuild( cond ),
306 buildMoveSingle( body )
307 );
308} // build_catch
309
310ast::FinallyClause * build_finally( const CodeLocation & location, StatementNode * stmt ) {
311 return new ast::FinallyClause( location,
312 strict_dynamic_cast<const ast::CompoundStmt *>(
313 buildMoveSingle( stmt )
314 )
315 );
316} // build_finally
317
318ast::SuspendStmt * build_suspend( const CodeLocation & location, StatementNode * then, ast::SuspendStmt::Kind kind ) {
319 return new ast::SuspendStmt( location,
320 strict_dynamic_cast<const ast::CompoundStmt *, nullptr>(
321 buildMoveOptional( then )
322 ),
323 kind
324 );
325} // build_suspend
326
327ast::WaitForStmt * build_waitfor( const CodeLocation & location, ast::WaitForStmt * existing, ExpressionNode * when, ExpressionNode * targetExpr, StatementNode * stmt ) {
328 auto clause = new ast::WaitForClause( location );
329 clause->target = maybeBuild( targetExpr );
330 clause->stmt = maybeMoveBuild( stmt );
331 clause->when_cond = maybeMoveBuild( when );
332
333 ExpressionNode * next = targetExpr->next;
334 targetExpr->next = nullptr;
335 buildMoveList( next, clause->target_args );
336
337 delete targetExpr;
338
339 existing->clauses.insert( existing->clauses.begin(), clause );
340
341 return existing;
342} // build_waitfor
343
344ast::WaitForStmt * build_waitfor_else( const CodeLocation & location, ast::WaitForStmt * existing, ExpressionNode * when, StatementNode * stmt ) {
345 existing->else_stmt = maybeMoveBuild( stmt );
346 existing->else_cond = maybeMoveBuild( when );
347
348 (void)location;
349 return existing;
350} // build_waitfor_else
351
352ast::WaitForStmt * build_waitfor_timeout( const CodeLocation & location, ast::WaitForStmt * existing, ExpressionNode * when, ExpressionNode * timeout, StatementNode * stmt ) {
353 existing->timeout_time = maybeMoveBuild( timeout );
354 existing->timeout_stmt = maybeMoveBuild( stmt );
355 existing->timeout_cond = maybeMoveBuild( when );
356
357 (void)location;
358 return existing;
359} // build_waitfor_timeout
360
361ast::WaitUntilStmt::ClauseNode * build_waituntil_clause( const CodeLocation & loc, ExpressionNode * when, ExpressionNode * targetExpr, StatementNode * stmt ) {
362 ast::WhenClause * clause = new ast::WhenClause( loc );
363 clause->when_cond = maybeMoveBuild( when );
364 clause->stmt = maybeMoveBuild( stmt );
365 clause->target = maybeMoveBuild( targetExpr );
366 return new ast::WaitUntilStmt::ClauseNode( clause );
367}
368ast::WaitUntilStmt::ClauseNode * build_waituntil_else( const CodeLocation & loc, ExpressionNode * when, StatementNode * stmt ) {
369 ast::WhenClause * clause = new ast::WhenClause( loc );
370 clause->when_cond = maybeMoveBuild( when );
371 clause->stmt = maybeMoveBuild( stmt );
372 return new ast::WaitUntilStmt::ClauseNode( ast::WaitUntilStmt::ClauseNode::Op::ELSE, clause );
373}
374
375ast::WaitUntilStmt * build_waituntil_stmt( const CodeLocation & loc, ast::WaitUntilStmt::ClauseNode * root ) {
376 ast::WaitUntilStmt * retStmt = new ast::WaitUntilStmt( loc );
377 retStmt->predicateTree = root;
378
379 // iterative tree traversal
380 std::vector<ast::WaitUntilStmt::ClauseNode *> nodeStack; // stack needed for iterative traversal
381 ast::WaitUntilStmt::ClauseNode * currNode = nullptr;
382 ast::WaitUntilStmt::ClauseNode * lastInternalNode = nullptr;
383 ast::WaitUntilStmt::ClauseNode * cleanup = nullptr; // used to cleanup removed else/timeout
384 nodeStack.push_back(root);
385
386 do {
387 currNode = nodeStack.back();
388 nodeStack.pop_back(); // remove node since it will be processed
389
390 switch (currNode->op) {
391 case ast::WaitUntilStmt::ClauseNode::LEAF:
392 retStmt->clauses.push_back(currNode->leaf);
393 break;
394 case ast::WaitUntilStmt::ClauseNode::ELSE:
395 retStmt->else_stmt = currNode->leaf->stmt
396 ? ast::deepCopy( currNode->leaf->stmt )
397 : nullptr;
398 retStmt->else_cond = currNode->leaf->when_cond
399 ? ast::deepCopy( currNode->leaf->when_cond )
400 : nullptr;
401
402 delete currNode->leaf;
403 break;
404 case ast::WaitUntilStmt::ClauseNode::TIMEOUT:
405 retStmt->timeout_time = currNode->leaf->target
406 ? ast::deepCopy( currNode->leaf->target )
407 : nullptr;
408 retStmt->timeout_stmt = currNode->leaf->stmt
409 ? ast::deepCopy( currNode->leaf->stmt )
410 : nullptr;
411 retStmt->timeout_cond = currNode->leaf->when_cond
412 ? ast::deepCopy( currNode->leaf->when_cond )
413 : nullptr;
414
415 delete currNode->leaf;
416 break;
417 default:
418 nodeStack.push_back( currNode->right ); // process right after left
419 nodeStack.push_back( currNode->left );
420
421 // Cut else/timeout out of the tree
422 if ( currNode->op == ast::WaitUntilStmt::ClauseNode::LEFT_OR ) {
423 if ( lastInternalNode )
424 lastInternalNode->right = currNode->left;
425 else // if not set then root is LEFT_OR
426 retStmt->predicateTree = currNode->left;
427
428 currNode->left = nullptr;
429 cleanup = currNode;
430 }
431
432 lastInternalNode = currNode;
433 break;
434 }
435 } while ( !nodeStack.empty() );
436
437 if ( cleanup ) delete cleanup;
438
439 return retStmt;
440}
441
442ast::Stmt * build_with( const CodeLocation & location, ExpressionNode * exprs, StatementNode * stmt ) {
443 std::vector<ast::ptr<ast::Expr>> e;
444 buildMoveList( exprs, e );
445 ast::Stmt * s = maybeMoveBuild( stmt );
446 return new ast::DeclStmt( location, new ast::WithStmt( location, std::move( e ), s ) );
447} // build_with
448
449ast::Stmt * build_compound( const CodeLocation & location, StatementNode * first ) {
450 auto cs = new ast::CompoundStmt( location );
451 buildMoveList( first, cs->kids );
452 return cs;
453} // build_compound
454
455// A single statement in a control structure is always converted to a compound statement so subsequent generated code
456// can be placed within this compound statement. Otherwise, code generation has to constantly check for a single
457// statement and wrap it into a compound statement to insert additional code. Hence, all control structures have a
458// conical form for code generation.
459StatementNode * maybe_build_compound( const CodeLocation & location, StatementNode * first ) {
460 // Optimization: if the control-structure statement is a compound statement, do not wrap it.
461 // e.g., if (...) {...} do not wrap the existing compound statement.
462 if ( !dynamic_cast<ast::CompoundStmt *>( first->stmt.get() ) ) { // unique_ptr
463 return new StatementNode( build_compound( location, first ) );
464 } // if
465 return first;
466} // maybe_build_compound
467
468// Question
469ast::Stmt * build_asm( const CodeLocation & location, bool is_volatile, ExpressionNode * instruction, ExpressionNode * output, ExpressionNode * input, ExpressionNode * clobber, LabelNode * gotolabels ) {
470 std::vector<ast::ptr<ast::Expr>> out, in;
471 std::vector<ast::ptr<ast::ConstantExpr>> clob;
472
473 buildMoveList( output, out );
474 buildMoveList( input, in );
475 buildMoveList( clobber, clob );
476 return new ast::AsmStmt( location,
477 is_volatile,
478 maybeMoveBuild( instruction ),
479 std::move( out ),
480 std::move( in ),
481 std::move( clob ),
482 gotolabels ? gotolabels->labels : std::vector<ast::Label>()
483 );
484} // build_asm
485
486ast::Stmt * build_directive( const CodeLocation & location, string * directive ) {
487 auto stmt = new ast::DirectiveStmt( location, *directive );
488 delete directive;
489 return stmt;
490} // build_directive
491
492ast::Stmt * build_mutex( const CodeLocation & location, ExpressionNode * exprs, StatementNode * stmt ) {
493 std::vector<ast::ptr<ast::Expr>> expList;
494 buildMoveList( exprs, expList );
495 ast::Stmt * body = maybeMoveBuild( stmt );
496 return new ast::MutexStmt( location, body, std::move( expList ) );
497} // build_mutex
498
499ast::Stmt * build_corun( const CodeLocation & location, StatementNode * stmt ) {
500 ast::Stmt * body = maybeMoveBuild( stmt );
501 return new ast::CorunStmt( location, body );
502} // build_corun
503
504ast::Stmt * build_cofor( const CodeLocation & location, ForCtrl * forctl, StatementNode * stmt ) {
505 std::vector<ast::ptr<ast::Stmt>> astinit; // maybe empty
506 buildMoveList( forctl->init, astinit );
507
508 ast::Expr * astcond = nullptr; // maybe empty
509 astcond = maybeMoveBuild( forctl->condition );
510
511 ast::Expr * astincr = nullptr; // maybe empty
512 astincr = maybeMoveBuild( forctl->change );
513 delete forctl;
514
515 return new ast::CoforStmt( location,
516 std::move( astinit ),
517 astcond,
518 astincr,
519 buildMoveSingle( stmt )
520 );
521} // build_cofor
522
523// Local Variables: //
524// tab-width: 4 //
525// mode: c++ //
526// compile-command: "make install" //
527// End: //
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