xref: /freebsd/contrib/llvm-project/clang/lib/Format/FormatToken.cpp (revision 63f537551380d2dab29fa402ad1269feae17e594)
1 //===--- FormatToken.cpp - Format C++ code --------------------------------===//
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 specific functions of \c FormatTokens and their
11 /// roles.
12 ///
13 //===----------------------------------------------------------------------===//
14 
15 #include "FormatToken.h"
16 #include "ContinuationIndenter.h"
17 #include "llvm/ADT/SmallVector.h"
18 #include "llvm/Support/Debug.h"
19 #include <climits>
20 
21 namespace clang {
22 namespace format {
23 
24 const char *getTokenTypeName(TokenType Type) {
25   static const char *const TokNames[] = {
26 #define TYPE(X) #X,
27       LIST_TOKEN_TYPES
28 #undef TYPE
29       nullptr};
30 
31   if (Type < NUM_TOKEN_TYPES)
32     return TokNames[Type];
33   llvm_unreachable("unknown TokenType");
34   return nullptr;
35 }
36 
37 // FIXME: This is copy&pasted from Sema. Put it in a common place and remove
38 // duplication.
39 bool FormatToken::isSimpleTypeSpecifier() const {
40   switch (Tok.getKind()) {
41   case tok::kw_short:
42   case tok::kw_long:
43   case tok::kw___int64:
44   case tok::kw___int128:
45   case tok::kw_signed:
46   case tok::kw_unsigned:
47   case tok::kw_void:
48   case tok::kw_char:
49   case tok::kw_int:
50   case tok::kw_half:
51   case tok::kw_float:
52   case tok::kw_double:
53   case tok::kw___bf16:
54   case tok::kw__Float16:
55   case tok::kw___float128:
56   case tok::kw___ibm128:
57   case tok::kw_wchar_t:
58   case tok::kw_bool:
59 #define TRANSFORM_TYPE_TRAIT_DEF(_, Trait) case tok::kw___##Trait:
60 #include "clang/Basic/TransformTypeTraits.def"
61   case tok::annot_typename:
62   case tok::kw_char8_t:
63   case tok::kw_char16_t:
64   case tok::kw_char32_t:
65   case tok::kw_typeof:
66   case tok::kw_decltype:
67   case tok::kw__Atomic:
68     return true;
69   default:
70     return false;
71   }
72 }
73 
74 bool FormatToken::isTypeOrIdentifier() const {
75   return isSimpleTypeSpecifier() || Tok.isOneOf(tok::kw_auto, tok::identifier);
76 }
77 
78 bool FormatToken::opensBlockOrBlockTypeList(const FormatStyle &Style) const {
79   // C# Does not indent object initialisers as continuations.
80   if (is(tok::l_brace) && getBlockKind() == BK_BracedInit && Style.isCSharp())
81     return true;
82   if (is(TT_TemplateString) && opensScope())
83     return true;
84   return is(TT_ArrayInitializerLSquare) || is(TT_ProtoExtensionLSquare) ||
85          (is(tok::l_brace) &&
86           (getBlockKind() == BK_Block || is(TT_DictLiteral) ||
87            (!Style.Cpp11BracedListStyle && NestingLevel == 0))) ||
88          (is(tok::less) && (Style.Language == FormatStyle::LK_Proto ||
89                             Style.Language == FormatStyle::LK_TextProto));
90 }
91 
92 TokenRole::~TokenRole() {}
93 
94 void TokenRole::precomputeFormattingInfos(const FormatToken *Token) {}
95 
96 unsigned CommaSeparatedList::formatAfterToken(LineState &State,
97                                               ContinuationIndenter *Indenter,
98                                               bool DryRun) {
99   if (State.NextToken == nullptr || !State.NextToken->Previous)
100     return 0;
101 
102   if (Formats.size() == 1)
103     return 0; // Handled by formatFromToken
104 
105   // Ensure that we start on the opening brace.
106   const FormatToken *LBrace =
107       State.NextToken->Previous->getPreviousNonComment();
108   if (!LBrace || !LBrace->isOneOf(tok::l_brace, TT_ArrayInitializerLSquare) ||
109       LBrace->is(BK_Block) || LBrace->is(TT_DictLiteral) ||
110       LBrace->Next->is(TT_DesignatedInitializerPeriod)) {
111     return 0;
112   }
113 
114   // Calculate the number of code points we have to format this list. As the
115   // first token is already placed, we have to subtract it.
116   unsigned RemainingCodePoints =
117       Style.ColumnLimit - State.Column + State.NextToken->Previous->ColumnWidth;
118 
119   // Find the best ColumnFormat, i.e. the best number of columns to use.
120   const ColumnFormat *Format = getColumnFormat(RemainingCodePoints);
121 
122   // If no ColumnFormat can be used, the braced list would generally be
123   // bin-packed. Add a severe penalty to this so that column layouts are
124   // preferred if possible.
125   if (!Format)
126     return 10000;
127 
128   // Format the entire list.
129   unsigned Penalty = 0;
130   unsigned Column = 0;
131   unsigned Item = 0;
132   while (State.NextToken != LBrace->MatchingParen) {
133     bool NewLine = false;
134     unsigned ExtraSpaces = 0;
135 
136     // If the previous token was one of our commas, we are now on the next item.
137     if (Item < Commas.size() && State.NextToken->Previous == Commas[Item]) {
138       if (!State.NextToken->isTrailingComment()) {
139         ExtraSpaces += Format->ColumnSizes[Column] - ItemLengths[Item];
140         ++Column;
141       }
142       ++Item;
143     }
144 
145     if (Column == Format->Columns || State.NextToken->MustBreakBefore) {
146       Column = 0;
147       NewLine = true;
148     }
149 
150     // Place token using the continuation indenter and store the penalty.
151     Penalty += Indenter->addTokenToState(State, NewLine, DryRun, ExtraSpaces);
152   }
153   return Penalty;
154 }
155 
156 unsigned CommaSeparatedList::formatFromToken(LineState &State,
157                                              ContinuationIndenter *Indenter,
158                                              bool DryRun) {
159   // Formatting with 1 Column isn't really a column layout, so we don't need the
160   // special logic here. We can just avoid bin packing any of the parameters.
161   if (Formats.size() == 1 || HasNestedBracedList)
162     State.Stack.back().AvoidBinPacking = true;
163   return 0;
164 }
165 
166 // Returns the lengths in code points between Begin and End (both included),
167 // assuming that the entire sequence is put on a single line.
168 static unsigned CodePointsBetween(const FormatToken *Begin,
169                                   const FormatToken *End) {
170   assert(End->TotalLength >= Begin->TotalLength);
171   return End->TotalLength - Begin->TotalLength + Begin->ColumnWidth;
172 }
173 
174 void CommaSeparatedList::precomputeFormattingInfos(const FormatToken *Token) {
175   // FIXME: At some point we might want to do this for other lists, too.
176   if (!Token->MatchingParen ||
177       !Token->isOneOf(tok::l_brace, TT_ArrayInitializerLSquare)) {
178     return;
179   }
180 
181   // In C++11 braced list style, we should not format in columns unless they
182   // have many items (20 or more) or we allow bin-packing of function call
183   // arguments.
184   if (Style.Cpp11BracedListStyle && !Style.BinPackArguments &&
185       Commas.size() < 19) {
186     return;
187   }
188 
189   // Limit column layout for JavaScript array initializers to 20 or more items
190   // for now to introduce it carefully. We can become more aggressive if this
191   // necessary.
192   if (Token->is(TT_ArrayInitializerLSquare) && Commas.size() < 19)
193     return;
194 
195   // Column format doesn't really make sense if we don't align after brackets.
196   if (Style.AlignAfterOpenBracket == FormatStyle::BAS_DontAlign)
197     return;
198 
199   FormatToken *ItemBegin = Token->Next;
200   while (ItemBegin->isTrailingComment())
201     ItemBegin = ItemBegin->Next;
202   SmallVector<bool, 8> MustBreakBeforeItem;
203 
204   // The lengths of an item if it is put at the end of the line. This includes
205   // trailing comments which are otherwise ignored for column alignment.
206   SmallVector<unsigned, 8> EndOfLineItemLength;
207   MustBreakBeforeItem.reserve(Commas.size() + 1);
208   EndOfLineItemLength.reserve(Commas.size() + 1);
209   ItemLengths.reserve(Commas.size() + 1);
210 
211   bool HasSeparatingComment = false;
212   for (unsigned i = 0, e = Commas.size() + 1; i != e; ++i) {
213     assert(ItemBegin);
214     // Skip comments on their own line.
215     while (ItemBegin->HasUnescapedNewline && ItemBegin->isTrailingComment()) {
216       ItemBegin = ItemBegin->Next;
217       HasSeparatingComment = i > 0;
218     }
219 
220     MustBreakBeforeItem.push_back(ItemBegin->MustBreakBefore);
221     if (ItemBegin->is(tok::l_brace))
222       HasNestedBracedList = true;
223     const FormatToken *ItemEnd = nullptr;
224     if (i == Commas.size()) {
225       ItemEnd = Token->MatchingParen;
226       const FormatToken *NonCommentEnd = ItemEnd->getPreviousNonComment();
227       ItemLengths.push_back(CodePointsBetween(ItemBegin, NonCommentEnd));
228       if (Style.Cpp11BracedListStyle &&
229           !ItemEnd->Previous->isTrailingComment()) {
230         // In Cpp11 braced list style, the } and possibly other subsequent
231         // tokens will need to stay on a line with the last element.
232         while (ItemEnd->Next && !ItemEnd->Next->CanBreakBefore)
233           ItemEnd = ItemEnd->Next;
234       } else {
235         // In other braced lists styles, the "}" can be wrapped to the new line.
236         ItemEnd = Token->MatchingParen->Previous;
237       }
238     } else {
239       ItemEnd = Commas[i];
240       // The comma is counted as part of the item when calculating the length.
241       ItemLengths.push_back(CodePointsBetween(ItemBegin, ItemEnd));
242 
243       // Consume trailing comments so the are included in EndOfLineItemLength.
244       if (ItemEnd->Next && !ItemEnd->Next->HasUnescapedNewline &&
245           ItemEnd->Next->isTrailingComment()) {
246         ItemEnd = ItemEnd->Next;
247       }
248     }
249     EndOfLineItemLength.push_back(CodePointsBetween(ItemBegin, ItemEnd));
250     // If there is a trailing comma in the list, the next item will start at the
251     // closing brace. Don't create an extra item for this.
252     if (ItemEnd->getNextNonComment() == Token->MatchingParen)
253       break;
254     ItemBegin = ItemEnd->Next;
255   }
256 
257   // Don't use column layout for lists with few elements and in presence of
258   // separating comments.
259   if (Commas.size() < 5 || HasSeparatingComment)
260     return;
261 
262   if (Token->NestingLevel != 0 && Token->is(tok::l_brace) && Commas.size() < 19)
263     return;
264 
265   // We can never place more than ColumnLimit / 3 items in a row (because of the
266   // spaces and the comma).
267   unsigned MaxItems = Style.ColumnLimit / 3;
268   SmallVector<unsigned> MinSizeInColumn;
269   MinSizeInColumn.reserve(MaxItems);
270   for (unsigned Columns = 1; Columns <= MaxItems; ++Columns) {
271     ColumnFormat Format;
272     Format.Columns = Columns;
273     Format.ColumnSizes.resize(Columns);
274     MinSizeInColumn.assign(Columns, UINT_MAX);
275     Format.LineCount = 1;
276     bool HasRowWithSufficientColumns = false;
277     unsigned Column = 0;
278     for (unsigned i = 0, e = ItemLengths.size(); i != e; ++i) {
279       assert(i < MustBreakBeforeItem.size());
280       if (MustBreakBeforeItem[i] || Column == Columns) {
281         ++Format.LineCount;
282         Column = 0;
283       }
284       if (Column == Columns - 1)
285         HasRowWithSufficientColumns = true;
286       unsigned Length =
287           (Column == Columns - 1) ? EndOfLineItemLength[i] : ItemLengths[i];
288       Format.ColumnSizes[Column] = std::max(Format.ColumnSizes[Column], Length);
289       MinSizeInColumn[Column] = std::min(MinSizeInColumn[Column], Length);
290       ++Column;
291     }
292     // If all rows are terminated early (e.g. by trailing comments), we don't
293     // need to look further.
294     if (!HasRowWithSufficientColumns)
295       break;
296     Format.TotalWidth = Columns - 1; // Width of the N-1 spaces.
297 
298     for (unsigned i = 0; i < Columns; ++i)
299       Format.TotalWidth += Format.ColumnSizes[i];
300 
301     // Don't use this Format, if the difference between the longest and shortest
302     // element in a column exceeds a threshold to avoid excessive spaces.
303     if ([&] {
304           for (unsigned i = 0; i < Columns - 1; ++i)
305             if (Format.ColumnSizes[i] - MinSizeInColumn[i] > 10)
306               return true;
307           return false;
308         }()) {
309       continue;
310     }
311 
312     // Ignore layouts that are bound to violate the column limit.
313     if (Format.TotalWidth > Style.ColumnLimit && Columns > 1)
314       continue;
315 
316     Formats.push_back(Format);
317   }
318 }
319 
320 const CommaSeparatedList::ColumnFormat *
321 CommaSeparatedList::getColumnFormat(unsigned RemainingCharacters) const {
322   const ColumnFormat *BestFormat = nullptr;
323   for (const ColumnFormat &Format : llvm::reverse(Formats)) {
324     if (Format.TotalWidth <= RemainingCharacters || Format.Columns == 1) {
325       if (BestFormat && Format.LineCount > BestFormat->LineCount)
326         break;
327       BestFormat = &Format;
328     }
329   }
330   return BestFormat;
331 }
332 
333 } // namespace format
334 } // namespace clang
335