1 //===--- LeftRightQualifierAlignmentFixer.cpp -------------------*- C++--*-===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 ///
9 /// \file
10 /// This file implements LeftRightQualifierAlignmentFixer, a TokenAnalyzer that
11 /// enforces either left or right const depending on the style.
12 ///
13 //===----------------------------------------------------------------------===//
14 
15 #include "QualifierAlignmentFixer.h"
16 #include "FormatToken.h"
17 #include "llvm/Support/Debug.h"
18 #include "llvm/Support/Regex.h"
19 
20 #include <algorithm>
21 
22 #define DEBUG_TYPE "format-qualifier-alignment-fixer"
23 
24 namespace clang {
25 namespace format {
26 
27 QualifierAlignmentFixer::QualifierAlignmentFixer(
28     const Environment &Env, const FormatStyle &Style, StringRef &Code,
29     ArrayRef<tooling::Range> Ranges, unsigned FirstStartColumn,
30     unsigned NextStartColumn, unsigned LastStartColumn, StringRef FileName)
31     : TokenAnalyzer(Env, Style), Code(Code), Ranges(Ranges),
32       FirstStartColumn(FirstStartColumn), NextStartColumn(NextStartColumn),
33       LastStartColumn(LastStartColumn), FileName(FileName) {
34   std::vector<std::string> LeftOrder;
35   std::vector<std::string> RightOrder;
36   std::vector<tok::TokenKind> ConfiguredQualifierTokens;
37   PrepareLeftRightOrdering(Style.QualifierOrder, LeftOrder, RightOrder,
38                            ConfiguredQualifierTokens);
39 
40   // Handle the left and right Alignment Seperately
41   for (const auto &Qualifier : LeftOrder) {
42     Passes.emplace_back(
43         [&, Qualifier, ConfiguredQualifierTokens](const Environment &Env) {
44           return LeftRightQualifierAlignmentFixer(Env, Style, Qualifier,
45                                                   ConfiguredQualifierTokens,
46                                                   /*RightAlign=*/false)
47               .process();
48         });
49   }
50   for (const auto &Qualifier : RightOrder) {
51     Passes.emplace_back(
52         [&, Qualifier, ConfiguredQualifierTokens](const Environment &Env) {
53           return LeftRightQualifierAlignmentFixer(Env, Style, Qualifier,
54                                                   ConfiguredQualifierTokens,
55                                                   /*RightAlign=*/true)
56               .process();
57         });
58   }
59 }
60 
61 std::pair<tooling::Replacements, unsigned> QualifierAlignmentFixer::analyze(
62     TokenAnnotator &Annotator, SmallVectorImpl<AnnotatedLine *> &AnnotatedLines,
63     FormatTokenLexer &Tokens) {
64   auto Env = Environment::make(Code, FileName, Ranges, FirstStartColumn,
65                                NextStartColumn, LastStartColumn);
66   if (!Env)
67     return {};
68   llvm::Optional<std::string> CurrentCode = None;
69   tooling::Replacements Fixes;
70   for (size_t I = 0, E = Passes.size(); I < E; ++I) {
71     std::pair<tooling::Replacements, unsigned> PassFixes = Passes[I](*Env);
72     auto NewCode = applyAllReplacements(
73         CurrentCode ? StringRef(*CurrentCode) : Code, PassFixes.first);
74     if (NewCode) {
75       Fixes = Fixes.merge(PassFixes.first);
76       if (I + 1 < E) {
77         CurrentCode = std::move(*NewCode);
78         Env = Environment::make(
79             *CurrentCode, FileName,
80             tooling::calculateRangesAfterReplacements(Fixes, Ranges),
81             FirstStartColumn, NextStartColumn, LastStartColumn);
82         if (!Env)
83           return {};
84       }
85     }
86   }
87 
88   // Don't make replacements that replace nothing.
89   tooling::Replacements NonNoOpFixes;
90 
91   for (const tooling::Replacement &Fix : Fixes) {
92     StringRef OriginalCode = Code.substr(Fix.getOffset(), Fix.getLength());
93 
94     if (!OriginalCode.equals(Fix.getReplacementText())) {
95       auto Err = NonNoOpFixes.add(Fix);
96       if (Err)
97         llvm::errs() << "Error adding replacements : "
98                      << llvm::toString(std::move(Err)) << "\n";
99     }
100   }
101   return {NonNoOpFixes, 0};
102 }
103 
104 static void replaceToken(const SourceManager &SourceMgr,
105                          tooling::Replacements &Fixes,
106                          const CharSourceRange &Range, std::string NewText) {
107   auto Replacement = tooling::Replacement(SourceMgr, Range, NewText);
108   auto Err = Fixes.add(Replacement);
109 
110   if (Err)
111     llvm::errs() << "Error while rearranging Qualifier : "
112                  << llvm::toString(std::move(Err)) << "\n";
113 }
114 
115 static void removeToken(const SourceManager &SourceMgr,
116                         tooling::Replacements &Fixes,
117                         const FormatToken *First) {
118   auto Range = CharSourceRange::getCharRange(First->getStartOfNonWhitespace(),
119                                              First->Tok.getEndLoc());
120   replaceToken(SourceMgr, Fixes, Range, "");
121 }
122 
123 static void insertQualifierAfter(const SourceManager &SourceMgr,
124                                  tooling::Replacements &Fixes,
125                                  const FormatToken *First,
126                                  const std::string &Qualifier) {
127   FormatToken *Next = First->Next;
128   if (!Next)
129     return;
130   auto Range = CharSourceRange::getCharRange(Next->getStartOfNonWhitespace(),
131                                              Next->Tok.getEndLoc());
132 
133   std::string NewText = " " + Qualifier + " ";
134   NewText += Next->TokenText;
135   replaceToken(SourceMgr, Fixes, Range, NewText);
136 }
137 
138 static void insertQualifierBefore(const SourceManager &SourceMgr,
139                                   tooling::Replacements &Fixes,
140                                   const FormatToken *First,
141                                   const std::string &Qualifier) {
142   auto Range = CharSourceRange::getCharRange(First->getStartOfNonWhitespace(),
143                                              First->Tok.getEndLoc());
144 
145   std::string NewText = " " + Qualifier + " ";
146   NewText += First->TokenText;
147 
148   replaceToken(SourceMgr, Fixes, Range, NewText);
149 }
150 
151 static bool endsWithSpace(const std::string &s) {
152   if (s.empty())
153     return false;
154   return isspace(s.back());
155 }
156 
157 static bool startsWithSpace(const std::string &s) {
158   if (s.empty())
159     return false;
160   return isspace(s.front());
161 }
162 
163 static void rotateTokens(const SourceManager &SourceMgr,
164                          tooling::Replacements &Fixes, const FormatToken *First,
165                          const FormatToken *Last, bool Left) {
166   auto *End = Last;
167   auto *Begin = First;
168   if (!Left) {
169     End = Last->Next;
170     Begin = First->Next;
171   }
172 
173   std::string NewText;
174   // If we are rotating to the left we move the Last token to the front.
175   if (Left) {
176     NewText += Last->TokenText;
177     NewText += " ";
178   }
179 
180   // Then move through the other tokens.
181   auto *Tok = Begin;
182   while (Tok != End) {
183     if (!NewText.empty() && !endsWithSpace(NewText))
184       NewText += " ";
185 
186     NewText += Tok->TokenText;
187     Tok = Tok->Next;
188   }
189 
190   // If we are rotating to the right we move the first token to the back.
191   if (!Left) {
192     if (!NewText.empty() && !startsWithSpace(NewText))
193       NewText += " ";
194     NewText += First->TokenText;
195   }
196 
197   auto Range = CharSourceRange::getCharRange(First->getStartOfNonWhitespace(),
198                                              Last->Tok.getEndLoc());
199 
200   replaceToken(SourceMgr, Fixes, Range, NewText);
201 }
202 
203 const FormatToken *LeftRightQualifierAlignmentFixer::analyzeRight(
204     const SourceManager &SourceMgr, const AdditionalKeywords &Keywords,
205     tooling::Replacements &Fixes, const FormatToken *Tok,
206     const std::string &Qualifier, tok::TokenKind QualifierType) {
207   // We only need to think about streams that begin with a qualifier.
208   if (!Tok->is(QualifierType))
209     return Tok;
210   // Don't concern yourself if nothing follows the qualifier.
211   if (!Tok->Next)
212     return Tok;
213   if (LeftRightQualifierAlignmentFixer::isPossibleMacro(Tok->Next))
214     return Tok;
215 
216   FormatToken *Qual = Tok->Next;
217   FormatToken *LastQual = Qual;
218   while (Qual && isQualifierOrType(Qual, ConfiguredQualifierTokens)) {
219     LastQual = Qual;
220     Qual = Qual->Next;
221   }
222   if (LastQual && Qual != LastQual) {
223     rotateTokens(SourceMgr, Fixes, Tok, LastQual, /*Left=*/false);
224     Tok = LastQual;
225   } else if (Tok->startsSequence(QualifierType, tok::identifier,
226                                  TT_TemplateOpener)) {
227     // Read from the TemplateOpener to
228     // TemplateCloser as in const ArrayRef<int> a; const ArrayRef<int> &a;
229     FormatToken *EndTemplate = Tok->Next->Next->MatchingParen;
230     if (EndTemplate) {
231       // Move to the end of any template class members e.g.
232       // `Foo<int>::iterator`.
233       if (EndTemplate->startsSequence(TT_TemplateCloser, tok::coloncolon,
234                                       tok::identifier))
235         EndTemplate = EndTemplate->Next->Next;
236     }
237     if (EndTemplate && EndTemplate->Next &&
238         !EndTemplate->Next->isOneOf(tok::equal, tok::l_paren)) {
239       insertQualifierAfter(SourceMgr, Fixes, EndTemplate, Qualifier);
240       // Remove the qualifier.
241       removeToken(SourceMgr, Fixes, Tok);
242       return Tok;
243     }
244   } else if (Tok->startsSequence(QualifierType, tok::identifier)) {
245     FormatToken *Next = Tok->Next;
246     // The case  `const Foo` -> `Foo const`
247     // The case  `const Foo *` -> `Foo const *`
248     // The case  `const Foo &` -> `Foo const &`
249     // The case  `const Foo &&` -> `Foo const &&`
250     // The case  `const std::Foo &&` -> `std::Foo const &&`
251     // The case  `const std::Foo<T> &&` -> `std::Foo<T> const &&`
252     while (Next && Next->isOneOf(tok::identifier, tok::coloncolon))
253       Next = Next->Next;
254     if (Next && Next->is(TT_TemplateOpener)) {
255       Next = Next->MatchingParen;
256       // Move to the end of any template class members e.g.
257       // `Foo<int>::iterator`.
258       if (Next && Next->startsSequence(TT_TemplateCloser, tok::coloncolon,
259                                        tok::identifier))
260         return Tok;
261       assert(Next && "Missing template opener");
262       Next = Next->Next;
263     }
264     if (Next && Next->isOneOf(tok::star, tok::amp, tok::ampamp) &&
265         !Tok->Next->isOneOf(Keywords.kw_override, Keywords.kw_final)) {
266       if (Next->Previous && !Next->Previous->is(QualifierType)) {
267         insertQualifierAfter(SourceMgr, Fixes, Next->Previous, Qualifier);
268         removeToken(SourceMgr, Fixes, Tok);
269       }
270       return Next;
271     }
272   }
273 
274   return Tok;
275 }
276 
277 const FormatToken *LeftRightQualifierAlignmentFixer::analyzeLeft(
278     const SourceManager &SourceMgr, const AdditionalKeywords &Keywords,
279     tooling::Replacements &Fixes, const FormatToken *Tok,
280     const std::string &Qualifier, tok::TokenKind QualifierType) {
281   // if Tok is an identifier and possibly a macro then don't convert.
282   if (LeftRightQualifierAlignmentFixer::isPossibleMacro(Tok))
283     return Tok;
284 
285   const FormatToken *Qual = Tok;
286   const FormatToken *LastQual = Qual;
287   while (Qual && isQualifierOrType(Qual, ConfiguredQualifierTokens)) {
288     LastQual = Qual;
289     Qual = Qual->Next;
290     if (Qual && Qual->is(QualifierType))
291       break;
292   }
293 
294   if (!Qual)
295     return Tok;
296 
297   if (LastQual && Qual != LastQual && Qual->is(QualifierType)) {
298     rotateTokens(SourceMgr, Fixes, Tok, Qual, /*Left=*/true);
299     Tok = Qual->Next;
300   } else if (Tok->startsSequence(tok::identifier, QualifierType)) {
301     if (Tok->Next->Next && Tok->Next->Next->isOneOf(tok::identifier, tok::star,
302                                                     tok::amp, tok::ampamp)) {
303       // Don't swap `::iterator const` to `::const iterator`.
304       if (!Tok->Previous ||
305           (Tok->Previous && !Tok->Previous->is(tok::coloncolon))) {
306         rotateTokens(SourceMgr, Fixes, Tok, Tok->Next, /*Left=*/true);
307         Tok = Tok->Next;
308       }
309     }
310   }
311   if (Tok->is(TT_TemplateOpener) && Tok->Next &&
312       (Tok->Next->is(tok::identifier) || Tok->Next->isSimpleTypeSpecifier()) &&
313       Tok->Next->Next && Tok->Next->Next->is(QualifierType))
314     rotateTokens(SourceMgr, Fixes, Tok->Next, Tok->Next->Next, /*Left=*/true);
315   if (Tok->startsSequence(tok::identifier) && Tok->Next) {
316     if (Tok->Previous &&
317         Tok->Previous->isOneOf(tok::star, tok::ampamp, tok::amp))
318       return Tok;
319     const FormatToken *Next = Tok->Next;
320     // The case  `std::Foo<T> const` -> `const std::Foo<T> &&`
321     while (Next && Next->isOneOf(tok::identifier, tok::coloncolon))
322       Next = Next->Next;
323     if (Next && Next->Previous &&
324         Next->Previous->startsSequence(tok::identifier, TT_TemplateOpener)) {
325       // Read from to the end of the TemplateOpener to
326       // TemplateCloser const ArrayRef<int> a; const ArrayRef<int> &a;
327       if (Next->is(tok::comment) && Next->getNextNonComment())
328         Next = Next->getNextNonComment();
329       assert(Next->MatchingParen && "Missing template closer");
330       Next = Next->MatchingParen->Next;
331 
332       // Move to the end of any template class members e.g.
333       // `Foo<int>::iterator`.
334       if (Next && Next->startsSequence(tok::coloncolon, tok::identifier))
335         Next = Next->Next->Next;
336       if (Next && Next->is(QualifierType)) {
337         // Remove the const.
338         insertQualifierBefore(SourceMgr, Fixes, Tok, Qualifier);
339         removeToken(SourceMgr, Fixes, Next);
340         return Next;
341       }
342     }
343     if (Next && Next->Next &&
344         Next->Next->isOneOf(tok::amp, tok::ampamp, tok::star)) {
345       if (Next->is(QualifierType)) {
346         // Remove the qualifier.
347         insertQualifierBefore(SourceMgr, Fixes, Tok, Qualifier);
348         removeToken(SourceMgr, Fixes, Next);
349         return Next;
350       }
351     }
352   }
353   return Tok;
354 }
355 
356 tok::TokenKind LeftRightQualifierAlignmentFixer::getTokenFromQualifier(
357     const std::string &Qualifier) {
358   // Don't let 'type' be an identifier, but steal typeof token.
359   return llvm::StringSwitch<tok::TokenKind>(Qualifier)
360       .Case("type", tok::kw_typeof)
361       .Case("const", tok::kw_const)
362       .Case("volatile", tok::kw_volatile)
363       .Case("static", tok::kw_static)
364       .Case("inline", tok::kw_inline)
365       .Case("constexpr", tok::kw_constexpr)
366       .Case("restrict", tok::kw_restrict)
367       .Default(tok::identifier);
368 }
369 
370 LeftRightQualifierAlignmentFixer::LeftRightQualifierAlignmentFixer(
371     const Environment &Env, const FormatStyle &Style,
372     const std::string &Qualifier,
373     const std::vector<tok::TokenKind> &QualifierTokens, bool RightAlign)
374     : TokenAnalyzer(Env, Style), Qualifier(Qualifier), RightAlign(RightAlign),
375       ConfiguredQualifierTokens(QualifierTokens) {}
376 
377 std::pair<tooling::Replacements, unsigned>
378 LeftRightQualifierAlignmentFixer::analyze(
379     TokenAnnotator &Annotator, SmallVectorImpl<AnnotatedLine *> &AnnotatedLines,
380     FormatTokenLexer &Tokens) {
381   tooling::Replacements Fixes;
382   const AdditionalKeywords &Keywords = Tokens.getKeywords();
383   const SourceManager &SourceMgr = Env.getSourceManager();
384   AffectedRangeMgr.computeAffectedLines(AnnotatedLines);
385 
386   tok::TokenKind QualifierToken = getTokenFromQualifier(Qualifier);
387   assert(QualifierToken != tok::identifier && "Unrecognised Qualifier");
388 
389   for (AnnotatedLine *Line : AnnotatedLines) {
390     FormatToken *First = Line->First;
391     const auto *Last = Line->Last;
392 
393     for (const auto *Tok = First; Tok && Tok != Last && Tok->Next;
394          Tok = Tok->Next) {
395       if (Tok->is(tok::comment))
396         continue;
397       if (RightAlign)
398         Tok = analyzeRight(SourceMgr, Keywords, Fixes, Tok, Qualifier,
399                            QualifierToken);
400       else
401         Tok = analyzeLeft(SourceMgr, Keywords, Fixes, Tok, Qualifier,
402                           QualifierToken);
403     }
404   }
405   return {Fixes, 0};
406 }
407 
408 void QualifierAlignmentFixer::PrepareLeftRightOrdering(
409     const std::vector<std::string> &Order, std::vector<std::string> &LeftOrder,
410     std::vector<std::string> &RightOrder,
411     std::vector<tok::TokenKind> &Qualifiers) {
412 
413   // Depending on the position of type in the order you need
414   // To iterate forward or backward through the order list as qualifier
415   // can push through each other.
416   // The Order list must define the position of "type" to signify
417   assert(llvm::is_contained(Order, "type") &&
418          "QualifierOrder must contain type");
419   // Split the Order list by type and reverse the left side.
420 
421   bool left = true;
422   for (const auto &s : Order) {
423     if (s == "type") {
424       left = false;
425       continue;
426     }
427 
428     tok::TokenKind QualifierToken =
429         LeftRightQualifierAlignmentFixer::getTokenFromQualifier(s);
430     if (QualifierToken != tok::kw_typeof && QualifierToken != tok::identifier)
431       Qualifiers.push_back(QualifierToken);
432 
433     if (left)
434       // Reverse the order for left aligned items.
435       LeftOrder.insert(LeftOrder.begin(), s);
436     else
437       RightOrder.push_back(s);
438   }
439 }
440 
441 bool LeftRightQualifierAlignmentFixer::isQualifierOrType(
442     const FormatToken *Tok, const std::vector<tok::TokenKind> &specifiedTypes) {
443   return Tok && (Tok->isSimpleTypeSpecifier() || Tok->is(tok::kw_auto) ||
444                  llvm::is_contained(specifiedTypes, Tok->Tok.getKind()));
445 }
446 
447 // If a token is an identifier and it's upper case, it could
448 // be a macro and hence we need to be able to ignore it.
449 bool LeftRightQualifierAlignmentFixer::isPossibleMacro(const FormatToken *Tok) {
450   if (!Tok)
451     return false;
452   if (!Tok->is(tok::identifier))
453     return false;
454   if (Tok->TokenText.upper() == Tok->TokenText.str())
455     return true;
456   return false;
457 }
458 
459 } // namespace format
460 } // namespace clang
461