pet_skip_info_add_type: extract out addition of skip condition scops
[pet.git] / pet.cc
blobd082866f660204f1c77990f7d4ae4169bf8c9970
1 /*
2 * Copyright 2011 Leiden University. All rights reserved.
3 * Copyright 2012-2014 Ecole Normale Superieure. All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 *
9 * 1. Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above
13 * copyright notice, this list of conditions and the following
14 * disclaimer in the documentation and/or other materials provided
15 * with the distribution.
17 * THIS SOFTWARE IS PROVIDED BY LEIDEN UNIVERSITY ''AS IS'' AND ANY
18 * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
19 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
20 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL LEIDEN UNIVERSITY OR
21 * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
22 * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
23 * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA,
24 * OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
27 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29 * The views and conclusions contained in the software and documentation
30 * are those of the authors and should not be interpreted as
31 * representing official policies, either expressed or implied, of
32 * Leiden University.
33 */
35 #include "config.h"
37 #include <stdlib.h>
38 #include <map>
39 #include <vector>
40 #include <iostream>
41 #ifdef HAVE_ADT_OWNINGPTR_H
42 #include <llvm/ADT/OwningPtr.h>
43 #else
44 #include <memory>
45 #endif
46 #include <llvm/Support/raw_ostream.h>
47 #include <llvm/Support/ManagedStatic.h>
48 #include <llvm/Support/Host.h>
49 #include <clang/Basic/Version.h>
50 #include <clang/Basic/FileSystemOptions.h>
51 #include <clang/Basic/FileManager.h>
52 #include <clang/Basic/TargetOptions.h>
53 #include <clang/Basic/TargetInfo.h>
54 #include <clang/Driver/Compilation.h>
55 #include <clang/Driver/Driver.h>
56 #include <clang/Driver/Tool.h>
57 #include <clang/Frontend/CompilerInstance.h>
58 #include <clang/Frontend/CompilerInvocation.h>
59 #ifdef HAVE_BASIC_DIAGNOSTICOPTIONS_H
60 #include <clang/Basic/DiagnosticOptions.h>
61 #else
62 #include <clang/Frontend/DiagnosticOptions.h>
63 #endif
64 #include <clang/Frontend/TextDiagnosticPrinter.h>
65 #ifdef HAVE_LEX_HEADERSEARCHOPTIONS_H
66 #include <clang/Lex/HeaderSearchOptions.h>
67 #else
68 #include <clang/Frontend/HeaderSearchOptions.h>
69 #endif
70 #include <clang/Frontend/LangStandard.h>
71 #ifdef HAVE_LEX_PREPROCESSOROPTIONS_H
72 #include <clang/Lex/PreprocessorOptions.h>
73 #else
74 #include <clang/Frontend/PreprocessorOptions.h>
75 #endif
76 #include <clang/Frontend/FrontendOptions.h>
77 #include <clang/Frontend/Utils.h>
78 #include <clang/Lex/HeaderSearch.h>
79 #include <clang/Lex/Preprocessor.h>
80 #include <clang/Lex/Pragma.h>
81 #include <clang/AST/ASTContext.h>
82 #include <clang/AST/ASTConsumer.h>
83 #include <clang/Sema/Sema.h>
84 #include <clang/Sema/SemaDiagnostic.h>
85 #include <clang/Parse/Parser.h>
86 #include <clang/Parse/ParseAST.h>
88 #include <isl/ctx.h>
89 #include <isl/constraint.h>
91 #include <pet.h>
93 #include "options.h"
94 #include "scan.h"
95 #include "print.h"
97 #define ARRAY_SIZE(array) (sizeof(array)/sizeof(*array))
99 using namespace std;
100 using namespace clang;
101 using namespace clang::driver;
103 #ifdef HAVE_ADT_OWNINGPTR_H
104 #define unique_ptr llvm::OwningPtr
105 #endif
107 /* Called if we found something we didn't expect in one of the pragmas.
108 * We'll provide more informative warnings later.
110 static void unsupported(Preprocessor &PP, SourceLocation loc)
112 DiagnosticsEngine &diag = PP.getDiagnostics();
113 unsigned id = diag.getCustomDiagID(DiagnosticsEngine::Warning,
114 "unsupported");
115 DiagnosticBuilder B = diag.Report(loc, id);
118 static int get_int(const char *s)
120 return s[0] == '"' ? atoi(s + 1) : atoi(s);
123 static ValueDecl *get_value_decl(Sema &sema, Token &token)
125 IdentifierInfo *name;
126 Decl *decl;
128 if (token.isNot(tok::identifier))
129 return NULL;
131 name = token.getIdentifierInfo();
132 decl = sema.LookupSingleName(sema.TUScope, name,
133 token.getLocation(), Sema::LookupOrdinaryName);
134 return decl ? cast_or_null<ValueDecl>(decl) : NULL;
137 /* Handle pragmas of the form
139 * #pragma value_bounds identifier lower_bound upper_bound
141 * For each such pragma, add a mapping
142 * { identifier[] -> [i] : lower_bound <= i <= upper_bound }
143 * to value_bounds.
145 struct PragmaValueBoundsHandler : public PragmaHandler {
146 Sema &sema;
147 isl_ctx *ctx;
148 isl_union_map *value_bounds;
150 PragmaValueBoundsHandler(isl_ctx *ctx, Sema &sema) :
151 PragmaHandler("value_bounds"), ctx(ctx), sema(sema) {
152 isl_space *space = isl_space_params_alloc(ctx, 0);
153 value_bounds = isl_union_map_empty(space);
156 ~PragmaValueBoundsHandler() {
157 isl_union_map_free(value_bounds);
160 virtual void HandlePragma(Preprocessor &PP,
161 PragmaIntroducerKind Introducer,
162 Token &ScopTok) {
163 isl_id *id;
164 isl_space *dim;
165 isl_map *map;
166 ValueDecl *vd;
167 Token token;
168 int lb;
169 int ub;
171 PP.Lex(token);
172 vd = get_value_decl(sema, token);
173 if (!vd) {
174 unsupported(PP, token.getLocation());
175 return;
178 PP.Lex(token);
179 if (!token.isLiteral()) {
180 unsupported(PP, token.getLocation());
181 return;
184 lb = get_int(token.getLiteralData());
186 PP.Lex(token);
187 if (!token.isLiteral()) {
188 unsupported(PP, token.getLocation());
189 return;
192 ub = get_int(token.getLiteralData());
194 dim = isl_space_alloc(ctx, 0, 0, 1);
195 map = isl_map_universe(dim);
196 map = isl_map_lower_bound_si(map, isl_dim_out, 0, lb);
197 map = isl_map_upper_bound_si(map, isl_dim_out, 0, ub);
198 id = isl_id_alloc(ctx, vd->getName().str().c_str(), vd);
199 map = isl_map_set_tuple_id(map, isl_dim_in, id);
201 value_bounds = isl_union_map_add_map(value_bounds, map);
205 /* Given a variable declaration, check if it has an integer initializer
206 * and if so, add a parameter corresponding to the variable to "value"
207 * with its value fixed to the integer initializer and return the result.
209 static __isl_give isl_set *extract_initialization(__isl_take isl_set *value,
210 ValueDecl *decl)
212 VarDecl *vd;
213 Expr *expr;
214 IntegerLiteral *il;
215 isl_val *v;
216 isl_ctx *ctx;
217 isl_id *id;
218 isl_space *space;
219 isl_set *set;
221 vd = cast<VarDecl>(decl);
222 if (!vd)
223 return value;
224 if (!vd->getType()->isIntegerType())
225 return value;
226 expr = vd->getInit();
227 if (!expr)
228 return value;
229 il = cast<IntegerLiteral>(expr);
230 if (!il)
231 return value;
233 ctx = isl_set_get_ctx(value);
234 id = isl_id_alloc(ctx, vd->getName().str().c_str(), vd);
235 space = isl_space_params_alloc(ctx, 1);
236 space = isl_space_set_dim_id(space, isl_dim_param, 0, id);
237 set = isl_set_universe(space);
239 v = PetScan::extract_int(ctx, il);
240 set = isl_set_fix_val(set, isl_dim_param, 0, v);
242 return isl_set_intersect(value, set);
245 /* Handle pragmas of the form
247 * #pragma parameter identifier lower_bound
248 * and
249 * #pragma parameter identifier lower_bound upper_bound
251 * For each such pragma, intersect the context with the set
252 * [identifier] -> { [] : lower_bound <= identifier <= upper_bound }
254 struct PragmaParameterHandler : public PragmaHandler {
255 Sema &sema;
256 isl_set *&context;
257 isl_set *&context_value;
259 PragmaParameterHandler(Sema &sema, isl_set *&context,
260 isl_set *&context_value) :
261 PragmaHandler("parameter"), sema(sema), context(context),
262 context_value(context_value) {}
264 virtual void HandlePragma(Preprocessor &PP,
265 PragmaIntroducerKind Introducer,
266 Token &ScopTok) {
267 isl_id *id;
268 isl_ctx *ctx = isl_set_get_ctx(context);
269 isl_space *dim;
270 isl_set *set;
271 ValueDecl *vd;
272 Token token;
273 int lb;
274 int ub;
275 bool has_ub = false;
277 PP.Lex(token);
278 vd = get_value_decl(sema, token);
279 if (!vd) {
280 unsupported(PP, token.getLocation());
281 return;
284 PP.Lex(token);
285 if (!token.isLiteral()) {
286 unsupported(PP, token.getLocation());
287 return;
290 lb = get_int(token.getLiteralData());
292 PP.Lex(token);
293 if (token.isLiteral()) {
294 has_ub = true;
295 ub = get_int(token.getLiteralData());
296 } else if (token.isNot(tok::eod)) {
297 unsupported(PP, token.getLocation());
298 return;
301 id = isl_id_alloc(ctx, vd->getName().str().c_str(), vd);
302 dim = isl_space_params_alloc(ctx, 1);
303 dim = isl_space_set_dim_id(dim, isl_dim_param, 0, id);
305 set = isl_set_universe(dim);
307 set = isl_set_lower_bound_si(set, isl_dim_param, 0, lb);
308 if (has_ub)
309 set = isl_set_upper_bound_si(set, isl_dim_param, 0, ub);
311 context = isl_set_intersect(context, set);
313 context_value = extract_initialization(context_value, vd);
317 /* Handle pragmas of the form
319 * #pragma pencil independent
321 * For each such pragma, add an entry to the "independent" vector.
323 struct PragmaPencilHandler : public PragmaHandler {
324 std::vector<Independent> &independent;
326 PragmaPencilHandler(std::vector<Independent> &independent) :
327 PragmaHandler("pencil"), independent(independent) {}
329 virtual void HandlePragma(Preprocessor &PP,
330 PragmaIntroducerKind Introducer,
331 Token &PencilTok) {
332 Token token;
333 IdentifierInfo *info;
335 PP.Lex(token);
336 if (token.isNot(tok::identifier))
337 return;
339 info = token.getIdentifierInfo();
340 if (!info->isStr("independent"))
341 return;
343 PP.Lex(token);
344 if (token.isNot(tok::eod))
345 return;
347 SourceManager &SM = PP.getSourceManager();
348 SourceLocation sloc = PencilTok.getLocation();
349 unsigned line = SM.getExpansionLineNumber(sloc);
350 independent.push_back(Independent(line));
354 #ifdef HAVE_TRANSLATELINECOL
356 /* Return a SourceLocation for line "line", column "col" of file "FID".
358 SourceLocation translateLineCol(SourceManager &SM, FileID FID, unsigned line,
359 unsigned col)
361 return SM.translateLineCol(FID, line, col);
364 #else
366 /* Return a SourceLocation for line "line", column "col" of file "FID".
368 SourceLocation translateLineCol(SourceManager &SM, FileID FID, unsigned line,
369 unsigned col)
371 return SM.getLocation(SM.getFileEntryForID(FID), line, col);
374 #endif
376 /* List of pairs of #pragma scop and #pragma endscop locations.
378 struct ScopLocList {
379 std::vector<ScopLoc> list;
381 /* Add a new start (#pragma scop) location to the list.
382 * If the last #pragma scop did not have a matching
383 * #pragma endscop then overwrite it.
385 void add_start(unsigned line, unsigned start) {
386 ScopLoc loc;
388 loc.start_line = line;
389 loc.start = start;
390 if (list.size() == 0 || list[list.size() - 1].end != 0)
391 list.push_back(loc);
392 else
393 list[list.size() - 1] = loc;
396 /* Set the end location (#pragma endscop) of the last pair
397 * in the list.
398 * If there is no such pair of if the end of that pair
399 * is already set, then ignore the spurious #pragma endscop.
401 void add_end(unsigned end) {
402 if (list.size() == 0 || list[list.size() - 1].end != 0)
403 return;
404 list[list.size() - 1].end = end;
408 /* Handle pragmas of the form
410 * #pragma scop
412 * In particular, store the location of the line containing
413 * the pragma in the list "scops".
415 struct PragmaScopHandler : public PragmaHandler {
416 ScopLocList &scops;
418 PragmaScopHandler(ScopLocList &scops) :
419 PragmaHandler("scop"), scops(scops) {}
421 virtual void HandlePragma(Preprocessor &PP,
422 PragmaIntroducerKind Introducer,
423 Token &ScopTok) {
424 SourceManager &SM = PP.getSourceManager();
425 SourceLocation sloc = ScopTok.getLocation();
426 int line = SM.getExpansionLineNumber(sloc);
427 sloc = translateLineCol(SM, SM.getFileID(sloc), line, 1);
428 scops.add_start(line, SM.getFileOffset(sloc));
432 /* Handle pragmas of the form
434 * #pragma endscop
436 * In particular, store the location of the line following the one containing
437 * the pragma in the list "scops".
439 struct PragmaEndScopHandler : public PragmaHandler {
440 ScopLocList &scops;
442 PragmaEndScopHandler(ScopLocList &scops) :
443 PragmaHandler("endscop"), scops(scops) {}
445 virtual void HandlePragma(Preprocessor &PP,
446 PragmaIntroducerKind Introducer,
447 Token &EndScopTok) {
448 SourceManager &SM = PP.getSourceManager();
449 SourceLocation sloc = EndScopTok.getLocation();
450 int line = SM.getExpansionLineNumber(sloc);
451 sloc = translateLineCol(SM, SM.getFileID(sloc), line + 1, 1);
452 scops.add_end(SM.getFileOffset(sloc));
456 /* Handle pragmas of the form
458 * #pragma live-out identifier, identifier, ...
460 * Each identifier on the line is stored in live_out.
462 struct PragmaLiveOutHandler : public PragmaHandler {
463 Sema &sema;
464 set<ValueDecl *> &live_out;
466 PragmaLiveOutHandler(Sema &sema, set<ValueDecl *> &live_out) :
467 PragmaHandler("live"), sema(sema), live_out(live_out) {}
469 virtual void HandlePragma(Preprocessor &PP,
470 PragmaIntroducerKind Introducer,
471 Token &ScopTok) {
472 Token token;
474 PP.Lex(token);
475 if (token.isNot(tok::minus))
476 return;
477 PP.Lex(token);
478 if (token.isNot(tok::identifier) ||
479 !token.getIdentifierInfo()->isStr("out"))
480 return;
482 PP.Lex(token);
483 while (token.isNot(tok::eod)) {
484 ValueDecl *vd;
486 vd = get_value_decl(sema, token);
487 if (!vd) {
488 unsupported(PP, token.getLocation());
489 return;
491 live_out.insert(vd);
492 PP.Lex(token);
493 if (token.is(tok::comma))
494 PP.Lex(token);
499 /* For each array in "scop", set its value_bounds property
500 * based on the infofrmation in "value_bounds" and
501 * mark it as live_out if it appears in "live_out".
503 static void update_arrays(struct pet_scop *scop,
504 __isl_take isl_union_map *value_bounds, set<ValueDecl *> &live_out)
506 set<ValueDecl *>::iterator lo_it;
507 isl_ctx *ctx = isl_union_map_get_ctx(value_bounds);
509 if (!scop) {
510 isl_union_map_free(value_bounds);
511 return;
514 for (int i = 0; i < scop->n_array; ++i) {
515 isl_id *id;
516 isl_space *space;
517 isl_map *bounds;
518 ValueDecl *decl;
519 pet_array *array = scop->arrays[i];
521 id = isl_set_get_tuple_id(array->extent);
522 decl = (ValueDecl *)isl_id_get_user(id);
524 space = isl_space_alloc(ctx, 0, 0, 1);
525 space = isl_space_set_tuple_id(space, isl_dim_in, id);
527 bounds = isl_union_map_extract_map(value_bounds, space);
528 if (!isl_map_plain_is_empty(bounds))
529 array->value_bounds = isl_map_range(bounds);
530 else
531 isl_map_free(bounds);
533 lo_it = live_out.find(decl);
534 if (lo_it != live_out.end())
535 array->live_out = 1;
538 isl_union_map_free(value_bounds);
541 /* Extract a pet_scop (if any) from each appropriate function.
542 * Each detected scop is passed to "fn".
543 * When autodetecting, at most one scop is extracted from each function.
544 * If "function" is not NULL, then we only extract a pet_scop if the
545 * name of the function matches.
546 * If "autodetect" is false, then we only extract if we have seen
547 * scop and endscop pragmas and if these are situated inside the function
548 * body.
550 struct PetASTConsumer : public ASTConsumer {
551 Preprocessor &PP;
552 ASTContext &ast_context;
553 DiagnosticsEngine &diags;
554 ScopLocList &scops;
555 std::vector<Independent> independent;
556 const char *function;
557 pet_options *options;
558 isl_ctx *ctx;
559 isl_set *context;
560 isl_set *context_value;
561 set<ValueDecl *> live_out;
562 PragmaValueBoundsHandler *vb_handler;
563 int (*fn)(struct pet_scop *scop, void *user);
564 void *user;
565 bool error;
567 PetASTConsumer(isl_ctx *ctx, Preprocessor &PP, ASTContext &ast_context,
568 DiagnosticsEngine &diags, ScopLocList &scops,
569 const char *function, pet_options *options,
570 int (*fn)(struct pet_scop *scop, void *user), void *user) :
571 ctx(ctx), PP(PP), ast_context(ast_context), diags(diags),
572 scops(scops), function(function), options(options),
573 vb_handler(NULL), fn(fn), user(user), error(false)
575 isl_space *space;
576 space = isl_space_params_alloc(ctx, 0);
577 context = isl_set_universe(isl_space_copy(space));
578 context_value = isl_set_universe(space);
581 ~PetASTConsumer() {
582 isl_set_free(context);
583 isl_set_free(context_value);
586 void handle_value_bounds(Sema *sema) {
587 vb_handler = new PragmaValueBoundsHandler(ctx, *sema);
588 PP.AddPragmaHandler(vb_handler);
591 /* Add all pragma handlers to this->PP.
593 void add_pragma_handlers(Sema *sema) {
594 PP.AddPragmaHandler(new PragmaParameterHandler(*sema, context,
595 context_value));
596 PP.AddPragmaHandler(new PragmaPencilHandler(independent));
597 handle_value_bounds(sema);
600 __isl_give isl_union_map *get_value_bounds() {
601 return isl_union_map_copy(vb_handler->value_bounds);
604 /* Pass "scop" to "fn" after performing some postprocessing.
605 * In particular, add the context and value_bounds constraints
606 * speficied through pragmas, add reference identifiers and
607 * reset user pointers on parameters and tuple ids.
609 void call_fn(pet_scop *scop) {
610 if (!scop)
611 return;
612 if (diags.hasErrorOccurred()) {
613 pet_scop_free(scop);
614 return;
616 scop->context = isl_set_intersect(scop->context,
617 isl_set_copy(context));
618 scop->context_value = isl_set_intersect(scop->context_value,
619 isl_set_copy(context_value));
621 update_arrays(scop, get_value_bounds(), live_out);
623 scop = pet_scop_add_ref_ids(scop);
624 scop = pet_scop_anonymize(scop);
626 if (fn(scop, user) < 0)
627 error = true;
630 /* For each explicitly marked scop (using pragmas),
631 * extract the scop and call "fn" on it if it is inside "fd".
633 void scan_scops(FunctionDecl *fd) {
634 unsigned start, end;
635 vector<ScopLoc>::iterator it;
636 isl_union_map *vb = vb_handler->value_bounds;
637 SourceManager &SM = PP.getSourceManager();
638 pet_scop *scop;
640 if (scops.list.size() == 0)
641 return;
643 start = SM.getFileOffset(fd->getLocStart());
644 end = SM.getFileOffset(fd->getLocEnd());
646 for (it = scops.list.begin(); it != scops.list.end(); ++it) {
647 ScopLoc loc = *it;
648 if (!loc.end)
649 continue;
650 if (start > loc.end)
651 continue;
652 if (end < loc.start)
653 continue;
654 PetScan ps(PP, ast_context, loc, options,
655 isl_union_map_copy(vb), independent);
656 scop = ps.scan(fd);
657 call_fn(scop);
661 virtual HandleTopLevelDeclReturn HandleTopLevelDecl(DeclGroupRef dg) {
662 DeclGroupRef::iterator it;
664 if (error)
665 return HandleTopLevelDeclContinue;
667 for (it = dg.begin(); it != dg.end(); ++it) {
668 isl_union_map *vb = vb_handler->value_bounds;
669 FunctionDecl *fd = dyn_cast<clang::FunctionDecl>(*it);
670 if (!fd)
671 continue;
672 if (!fd->hasBody())
673 continue;
674 if (function &&
675 fd->getNameInfo().getAsString() != function)
676 continue;
677 if (options->autodetect) {
678 ScopLoc loc;
679 pet_scop *scop;
680 PetScan ps(PP, ast_context, loc, options,
681 isl_union_map_copy(vb),
682 independent);
683 scop = ps.scan(fd);
684 call_fn(scop);
685 continue;
687 scan_scops(fd);
690 return HandleTopLevelDeclContinue;
694 static const char *ResourceDir =
695 CLANG_PREFIX "/lib/clang/" CLANG_VERSION_STRING;
697 static const char *implicit_functions[] = {
698 "min", "max", "intMod", "intCeil", "intFloor", "ceild", "floord",
699 "__pencil_kill"
702 static bool is_implicit(const IdentifierInfo *ident)
704 const char *name = ident->getNameStart();
705 for (int i = 0; i < ARRAY_SIZE(implicit_functions); ++i)
706 if (!strcmp(name, implicit_functions[i]))
707 return true;
708 return false;
711 /* Ignore implicit function declaration warnings on
712 * "min", "max", "ceild" and "floord" as we detect and handle these
713 * in PetScan.
715 struct MyDiagnosticPrinter : public TextDiagnosticPrinter {
716 const DiagnosticOptions *DiagOpts;
717 #ifdef HAVE_BASIC_DIAGNOSTICOPTIONS_H
718 MyDiagnosticPrinter(DiagnosticOptions *DO) :
719 TextDiagnosticPrinter(llvm::errs(), DO) {}
720 virtual DiagnosticConsumer *clone(DiagnosticsEngine &Diags) const {
721 return new MyDiagnosticPrinter(&Diags.getDiagnosticOptions());
723 #else
724 MyDiagnosticPrinter(const DiagnosticOptions &DO) :
725 DiagOpts(&DO), TextDiagnosticPrinter(llvm::errs(), DO) {}
726 virtual DiagnosticConsumer *clone(DiagnosticsEngine &Diags) const {
727 return new MyDiagnosticPrinter(*DiagOpts);
729 #endif
730 virtual void HandleDiagnostic(DiagnosticsEngine::Level level,
731 const DiagnosticInfo &info) {
732 if (info.getID() == diag::ext_implicit_function_decl &&
733 info.getNumArgs() == 1 &&
734 info.getArgKind(0) == DiagnosticsEngine::ak_identifierinfo &&
735 is_implicit(info.getArgIdentifier(0)))
736 /* ignore warning */;
737 else
738 TextDiagnosticPrinter::HandleDiagnostic(level, info);
742 #ifdef USE_ARRAYREF
744 #ifdef HAVE_CXXISPRODUCTION
745 static Driver *construct_driver(const char *binary, DiagnosticsEngine &Diags)
747 return new Driver(binary, llvm::sys::getDefaultTargetTriple(),
748 "", false, false, Diags);
750 #elif defined(HAVE_ISPRODUCTION)
751 static Driver *construct_driver(const char *binary, DiagnosticsEngine &Diags)
753 return new Driver(binary, llvm::sys::getDefaultTargetTriple(),
754 "", false, Diags);
756 #elif defined(DRIVER_CTOR_TAKES_DEFAULTIMAGENAME)
757 static Driver *construct_driver(const char *binary, DiagnosticsEngine &Diags)
759 return new Driver(binary, llvm::sys::getDefaultTargetTriple(),
760 "", Diags);
762 #else
763 static Driver *construct_driver(const char *binary, DiagnosticsEngine &Diags)
765 return new Driver(binary, llvm::sys::getDefaultTargetTriple(), Diags);
767 #endif
769 /* Clang changed its API from 3.5 to 3.6, we fix this with a simple overloaded
770 * function here.
772 struct ClangAPI {
773 static Job *command(Job *J) { return J; }
774 static Job *command(Job &J) { return &J; }
777 /* Create a CompilerInvocation object that stores the command line
778 * arguments constructed by the driver.
779 * The arguments are mainly useful for setting up the system include
780 * paths on newer clangs and on some platforms.
782 static CompilerInvocation *construct_invocation(const char *filename,
783 DiagnosticsEngine &Diags)
785 const char *binary = CLANG_PREFIX"/bin/clang";
786 const unique_ptr<Driver> driver(construct_driver(binary, Diags));
787 std::vector<const char *> Argv;
788 Argv.push_back(binary);
789 Argv.push_back(filename);
790 const unique_ptr<Compilation> compilation(
791 driver->BuildCompilation(llvm::ArrayRef<const char *>(Argv)));
792 JobList &Jobs = compilation->getJobs();
793 if (Jobs.size() < 1)
794 return NULL;
796 Command *cmd = cast<Command>(ClangAPI::command(*Jobs.begin()));
797 if (strcmp(cmd->getCreator().getName(), "clang"))
798 return NULL;
800 const ArgStringList *args = &cmd->getArguments();
802 CompilerInvocation *invocation = new CompilerInvocation;
803 CompilerInvocation::CreateFromArgs(*invocation, args->data() + 1,
804 args->data() + args->size(),
805 Diags);
806 return invocation;
809 #else
811 static CompilerInvocation *construct_invocation(const char *filename,
812 DiagnosticsEngine &Diags)
814 return NULL;
817 #endif
819 #ifdef HAVE_BASIC_DIAGNOSTICOPTIONS_H
821 static MyDiagnosticPrinter *construct_printer(CompilerInstance *Clang)
823 return new MyDiagnosticPrinter(new DiagnosticOptions());
826 #else
828 static MyDiagnosticPrinter *construct_printer(CompilerInstance *Clang)
830 return new MyDiagnosticPrinter(Clang->getDiagnosticOpts());
833 #endif
835 #ifdef CREATETARGETINFO_TAKES_SHARED_PTR
837 static TargetInfo *create_target_info(CompilerInstance *Clang,
838 DiagnosticsEngine &Diags)
840 shared_ptr<TargetOptions> TO = Clang->getInvocation().TargetOpts;
841 TO->Triple = llvm::sys::getDefaultTargetTriple();
842 return TargetInfo::CreateTargetInfo(Diags, TO);
845 #elif defined(CREATETARGETINFO_TAKES_POINTER)
847 static TargetInfo *create_target_info(CompilerInstance *Clang,
848 DiagnosticsEngine &Diags)
850 TargetOptions &TO = Clang->getTargetOpts();
851 TO.Triple = llvm::sys::getDefaultTargetTriple();
852 return TargetInfo::CreateTargetInfo(Diags, &TO);
855 #else
857 static TargetInfo *create_target_info(CompilerInstance *Clang,
858 DiagnosticsEngine &Diags)
860 TargetOptions &TO = Clang->getTargetOpts();
861 TO.Triple = llvm::sys::getDefaultTargetTriple();
862 return TargetInfo::CreateTargetInfo(Diags, TO);
865 #endif
867 #ifdef CREATEDIAGNOSTICS_TAKES_ARG
869 static void create_diagnostics(CompilerInstance *Clang)
871 Clang->createDiagnostics(0, NULL);
874 #else
876 static void create_diagnostics(CompilerInstance *Clang)
878 Clang->createDiagnostics();
881 #endif
883 #ifdef CREATEPREPROCESSOR_TAKES_TUKIND
885 static void create_preprocessor(CompilerInstance *Clang)
887 Clang->createPreprocessor(TU_Complete);
890 #else
892 static void create_preprocessor(CompilerInstance *Clang)
894 Clang->createPreprocessor();
897 #endif
899 #ifdef ADDPATH_TAKES_4_ARGUMENTS
901 void add_path(HeaderSearchOptions &HSO, string Path)
903 HSO.AddPath(Path, frontend::Angled, false, false);
906 #else
908 void add_path(HeaderSearchOptions &HSO, string Path)
910 HSO.AddPath(Path, frontend::Angled, true, false, false);
913 #endif
915 #ifdef HAVE_SETMAINFILEID
917 static void create_main_file_id(SourceManager &SM, const FileEntry *file)
919 SM.setMainFileID(SM.createFileID(file, SourceLocation(),
920 SrcMgr::C_User));
923 #else
925 static void create_main_file_id(SourceManager &SM, const FileEntry *file)
927 SM.createMainFileID(file);
930 #endif
932 /* Add pet specific predefines to the preprocessor.
934 * We mimic the way <command line> is handled inside clang.
936 void add_predefines(Preprocessor &PP)
938 string s;
940 s = PP.getPredefines();
941 s += "# 1 \"<pet>\" 1\n"
942 "void __pencil_assume(int assumption);\n"
943 "#define pencil_access(f) annotate(\"pencil_access(\" #f \")\")\n"
944 "# 1 \"<built-in>\" 2\n";
945 PP.setPredefines(s);
948 /* Extract a pet_scop from each function in the C source file called "filename".
949 * Each detected scop is passed to "fn".
950 * If "function" is not NULL, only extract a pet_scop from the function
951 * with that name.
952 * If "autodetect" is set, extract any pet_scop we can find.
953 * Otherwise, extract the pet_scop from the region delimited
954 * by "scop" and "endscop" pragmas.
956 * We first set up the clang parser and then try to extract the
957 * pet_scop from the appropriate function(s) in PetASTConsumer.
959 static int foreach_scop_in_C_source(isl_ctx *ctx,
960 const char *filename, const char *function, pet_options *options,
961 int (*fn)(struct pet_scop *scop, void *user), void *user)
963 CompilerInstance *Clang = new CompilerInstance();
964 create_diagnostics(Clang);
965 DiagnosticsEngine &Diags = Clang->getDiagnostics();
966 Diags.setSuppressSystemWarnings(true);
967 CompilerInvocation *invocation = construct_invocation(filename, Diags);
968 if (invocation)
969 Clang->setInvocation(invocation);
970 Diags.setClient(construct_printer(Clang));
971 Clang->createFileManager();
972 Clang->createSourceManager(Clang->getFileManager());
973 TargetInfo *target = create_target_info(Clang, Diags);
974 Clang->setTarget(target);
975 CompilerInvocation::setLangDefaults(Clang->getLangOpts(), IK_C,
976 LangStandard::lang_unspecified);
977 HeaderSearchOptions &HSO = Clang->getHeaderSearchOpts();
978 HSO.ResourceDir = ResourceDir;
979 for (int i = 0; i < options->n_path; ++i)
980 add_path(HSO, options->paths[i]);
981 PreprocessorOptions &PO = Clang->getPreprocessorOpts();
982 for (int i = 0; i < options->n_define; ++i)
983 PO.addMacroDef(options->defines[i]);
984 create_preprocessor(Clang);
985 Preprocessor &PP = Clang->getPreprocessor();
986 add_predefines(PP);
988 ScopLocList scops;
990 const FileEntry *file = Clang->getFileManager().getFile(filename);
991 if (!file)
992 isl_die(ctx, isl_error_unknown, "unable to open file",
993 do { delete Clang; return -1; } while (0));
994 create_main_file_id(Clang->getSourceManager(), file);
996 Clang->createASTContext();
997 PetASTConsumer consumer(ctx, PP, Clang->getASTContext(), Diags,
998 scops, function, options, fn, user);
999 Sema *sema = new Sema(PP, Clang->getASTContext(), consumer);
1001 if (!options->autodetect) {
1002 PP.AddPragmaHandler(new PragmaScopHandler(scops));
1003 PP.AddPragmaHandler(new PragmaEndScopHandler(scops));
1004 PP.AddPragmaHandler(new PragmaLiveOutHandler(*sema,
1005 consumer.live_out));
1008 consumer.add_pragma_handlers(sema);
1010 Diags.getClient()->BeginSourceFile(Clang->getLangOpts(), &PP);
1011 ParseAST(*sema);
1012 Diags.getClient()->EndSourceFile();
1014 delete sema;
1015 delete Clang;
1017 return consumer.error ? -1 : 0;
1020 /* Extract a pet_scop from each function in the C source file called "filename".
1021 * Each detected scop is passed to "fn".
1023 * This wrapper around foreach_scop_in_C_source is mainly used to ensure
1024 * that all objects on the stack (of that function) are destroyed before we
1025 * call llvm_shutdown.
1027 static int pet_foreach_scop_in_C_source(isl_ctx *ctx,
1028 const char *filename, const char *function,
1029 int (*fn)(struct pet_scop *scop, void *user), void *user)
1031 int r;
1032 pet_options *options;
1033 bool allocated = false;
1035 options = isl_ctx_peek_pet_options(ctx);
1036 if (!options) {
1037 options = pet_options_new_with_defaults();
1038 allocated = true;
1041 r = foreach_scop_in_C_source(ctx, filename, function, options,
1042 fn, user);
1043 llvm::llvm_shutdown();
1045 if (allocated)
1046 pet_options_free(options);
1048 return r;
1051 /* Store "scop" into the address pointed to by "user".
1052 * Return -1 to indicate that we are not interested in any further scops.
1053 * This function should therefore not be called a second call
1054 * so in principle there is no need to check if we have already set *user.
1056 static int set_first_scop(pet_scop *scop, void *user)
1058 pet_scop **p = (pet_scop **) user;
1060 if (!*p)
1061 *p = scop;
1062 else
1063 pet_scop_free(scop);
1065 return -1;
1068 /* Extract a pet_scop from the C source file called "filename".
1069 * If "function" is not NULL, extract the pet_scop from the function
1070 * with that name.
1072 * We start extracting scops from every function and then abort
1073 * as soon as we have extracted one scop.
1075 struct pet_scop *pet_scop_extract_from_C_source(isl_ctx *ctx,
1076 const char *filename, const char *function)
1078 pet_scop *scop = NULL;
1080 pet_foreach_scop_in_C_source(ctx, filename, function,
1081 &set_first_scop, &scop);
1083 return scop;
1086 /* Internal data structure for pet_transform_C_source
1088 * transform is the function that should be called to print a scop
1089 * in is the input source file
1090 * out is the output source file
1091 * end is the offset of the end of the previous scop (zero if we have not
1092 * found any scop yet)
1093 * p is a printer that prints to out.
1095 struct pet_transform_data {
1096 __isl_give isl_printer *(*transform)(__isl_take isl_printer *p,
1097 struct pet_scop *scop, void *user);
1098 void *user;
1100 FILE *in;
1101 FILE *out;
1102 unsigned end;
1103 isl_printer *p;
1106 /* This function is called each time a scop is detected.
1108 * We first copy the input text code from the end of the previous scop
1109 * until the start of "scop" and then print the scop itself through
1110 * a call to data->transform. We set up the printer to print
1111 * the transformed code with the same (initial) indentation as
1112 * the original code.
1113 * Finally, we keep track of the end of "scop" so that we can
1114 * continue copying when we find the next scop.
1116 * Before calling data->transform, we store a pointer to the original
1117 * input file in the extended scop in case the user wants to call
1118 * pet_scop_print_original from the callback.
1120 static int pet_transform(struct pet_scop *scop, void *user)
1122 struct pet_transform_data *data = (struct pet_transform_data *) user;
1123 unsigned start;
1125 start = pet_loc_get_start(scop->loc);
1126 if (copy(data->in, data->out, data->end, start) < 0)
1127 goto error;
1128 data->end = pet_loc_get_end(scop->loc);
1129 scop = pet_scop_set_input_file(scop, data->in);
1130 data->p = isl_printer_set_indent_prefix(data->p,
1131 pet_loc_get_indent(scop->loc));
1132 data->p = data->transform(data->p, scop, data->user);
1133 if (!data->p)
1134 return -1;
1135 return 0;
1136 error:
1137 pet_scop_free(scop);
1138 return -1;
1141 /* Transform the C source file "input" by rewriting each scop
1142 * through a call to "transform".
1143 * When autodetecting scops, at most one scop per function is rewritten.
1144 * The transformed C code is written to "output".
1146 * For each scop we find, we first copy the input text code
1147 * from the end of the previous scop (or the beginning of the file
1148 * in case of the first scop) until the start of the scop
1149 * and then print the scop itself through a call to "transform".
1150 * At the end we copy everything from the end of the final scop
1151 * until the end of the input file to "output".
1153 int pet_transform_C_source(isl_ctx *ctx, const char *input, FILE *out,
1154 __isl_give isl_printer *(*transform)(__isl_take isl_printer *p,
1155 struct pet_scop *scop, void *user), void *user)
1157 struct pet_transform_data data;
1158 int r;
1160 data.in = stdin;
1161 data.out = out;
1162 if (input && strcmp(input, "-")) {
1163 data.in = fopen(input, "r");
1164 if (!data.in)
1165 isl_die(ctx, isl_error_unknown, "unable to open file",
1166 return -1);
1169 data.p = isl_printer_to_file(ctx, data.out);
1170 data.p = isl_printer_set_output_format(data.p, ISL_FORMAT_C);
1172 data.transform = transform;
1173 data.user = user;
1174 data.end = 0;
1175 r = pet_foreach_scop_in_C_source(ctx, input, NULL,
1176 &pet_transform, &data);
1178 isl_printer_free(data.p);
1179 if (!data.p)
1180 r = -1;
1181 if (r == 0 && copy(data.in, data.out, data.end, -1) < 0)
1182 r = -1;
1184 if (data.in != stdin)
1185 fclose(data.in);
1187 return r;