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_wchar_t: 57 case tok::kw_bool: 58 case tok::kw___underlying_type: 59 case tok::annot_typename: 60 case tok::kw_char8_t: 61 case tok::kw_char16_t: 62 case tok::kw_char32_t: 63 case tok::kw_typeof: 64 case tok::kw_decltype: 65 return true; 66 default: 67 return false; 68 } 69 } 70 71 TokenRole::~TokenRole() {} 72 73 void TokenRole::precomputeFormattingInfos(const FormatToken *Token) {} 74 75 unsigned CommaSeparatedList::formatAfterToken(LineState &State, 76 ContinuationIndenter *Indenter, 77 bool DryRun) { 78 if (State.NextToken == nullptr || !State.NextToken->Previous) 79 return 0; 80 81 if (Formats.size() == 1) 82 return 0; // Handled by formatFromToken 83 84 // Ensure that we start on the opening brace. 85 const FormatToken *LBrace = 86 State.NextToken->Previous->getPreviousNonComment(); 87 if (!LBrace || !LBrace->isOneOf(tok::l_brace, TT_ArrayInitializerLSquare) || 88 LBrace->BlockKind == BK_Block || LBrace->getType() == TT_DictLiteral || 89 LBrace->Next->getType() == TT_DesignatedInitializerPeriod) 90 return 0; 91 92 // Calculate the number of code points we have to format this list. As the 93 // first token is already placed, we have to subtract it. 94 unsigned RemainingCodePoints = 95 Style.ColumnLimit - State.Column + State.NextToken->Previous->ColumnWidth; 96 97 // Find the best ColumnFormat, i.e. the best number of columns to use. 98 const ColumnFormat *Format = getColumnFormat(RemainingCodePoints); 99 100 // If no ColumnFormat can be used, the braced list would generally be 101 // bin-packed. Add a severe penalty to this so that column layouts are 102 // preferred if possible. 103 if (!Format) 104 return 10000; 105 106 // Format the entire list. 107 unsigned Penalty = 0; 108 unsigned Column = 0; 109 unsigned Item = 0; 110 while (State.NextToken != LBrace->MatchingParen) { 111 bool NewLine = false; 112 unsigned ExtraSpaces = 0; 113 114 // If the previous token was one of our commas, we are now on the next item. 115 if (Item < Commas.size() && State.NextToken->Previous == Commas[Item]) { 116 if (!State.NextToken->isTrailingComment()) { 117 ExtraSpaces += Format->ColumnSizes[Column] - ItemLengths[Item]; 118 ++Column; 119 } 120 ++Item; 121 } 122 123 if (Column == Format->Columns || State.NextToken->MustBreakBefore) { 124 Column = 0; 125 NewLine = true; 126 } 127 128 // Place token using the continuation indenter and store the penalty. 129 Penalty += Indenter->addTokenToState(State, NewLine, DryRun, ExtraSpaces); 130 } 131 return Penalty; 132 } 133 134 unsigned CommaSeparatedList::formatFromToken(LineState &State, 135 ContinuationIndenter *Indenter, 136 bool DryRun) { 137 // Formatting with 1 Column isn't really a column layout, so we don't need the 138 // special logic here. We can just avoid bin packing any of the parameters. 139 if (Formats.size() == 1 || HasNestedBracedList) 140 State.Stack.back().AvoidBinPacking = true; 141 return 0; 142 } 143 144 // Returns the lengths in code points between Begin and End (both included), 145 // assuming that the entire sequence is put on a single line. 146 static unsigned CodePointsBetween(const FormatToken *Begin, 147 const FormatToken *End) { 148 assert(End->TotalLength >= Begin->TotalLength); 149 return End->TotalLength - Begin->TotalLength + Begin->ColumnWidth; 150 } 151 152 void CommaSeparatedList::precomputeFormattingInfos(const FormatToken *Token) { 153 // FIXME: At some point we might want to do this for other lists, too. 154 if (!Token->MatchingParen || 155 !Token->isOneOf(tok::l_brace, TT_ArrayInitializerLSquare)) 156 return; 157 158 // In C++11 braced list style, we should not format in columns unless they 159 // have many items (20 or more) or we allow bin-packing of function call 160 // arguments. 161 if (Style.Cpp11BracedListStyle && !Style.BinPackArguments && 162 Commas.size() < 19) 163 return; 164 165 // Limit column layout for JavaScript array initializers to 20 or more items 166 // for now to introduce it carefully. We can become more aggressive if this 167 // necessary. 168 if (Token->is(TT_ArrayInitializerLSquare) && Commas.size() < 19) 169 return; 170 171 // Column format doesn't really make sense if we don't align after brackets. 172 if (Style.AlignAfterOpenBracket == FormatStyle::BAS_DontAlign) 173 return; 174 175 FormatToken *ItemBegin = Token->Next; 176 while (ItemBegin->isTrailingComment()) 177 ItemBegin = ItemBegin->Next; 178 SmallVector<bool, 8> MustBreakBeforeItem; 179 180 // The lengths of an item if it is put at the end of the line. This includes 181 // trailing comments which are otherwise ignored for column alignment. 182 SmallVector<unsigned, 8> EndOfLineItemLength; 183 184 bool HasSeparatingComment = false; 185 for (unsigned i = 0, e = Commas.size() + 1; i != e; ++i) { 186 // Skip comments on their own line. 187 while (ItemBegin->HasUnescapedNewline && ItemBegin->isTrailingComment()) { 188 ItemBegin = ItemBegin->Next; 189 HasSeparatingComment = i > 0; 190 } 191 192 MustBreakBeforeItem.push_back(ItemBegin->MustBreakBefore); 193 if (ItemBegin->is(tok::l_brace)) 194 HasNestedBracedList = true; 195 const FormatToken *ItemEnd = nullptr; 196 if (i == Commas.size()) { 197 ItemEnd = Token->MatchingParen; 198 const FormatToken *NonCommentEnd = ItemEnd->getPreviousNonComment(); 199 ItemLengths.push_back(CodePointsBetween(ItemBegin, NonCommentEnd)); 200 if (Style.Cpp11BracedListStyle && 201 !ItemEnd->Previous->isTrailingComment()) { 202 // In Cpp11 braced list style, the } and possibly other subsequent 203 // tokens will need to stay on a line with the last element. 204 while (ItemEnd->Next && !ItemEnd->Next->CanBreakBefore) 205 ItemEnd = ItemEnd->Next; 206 } else { 207 // In other braced lists styles, the "}" can be wrapped to the new line. 208 ItemEnd = Token->MatchingParen->Previous; 209 } 210 } else { 211 ItemEnd = Commas[i]; 212 // The comma is counted as part of the item when calculating the length. 213 ItemLengths.push_back(CodePointsBetween(ItemBegin, ItemEnd)); 214 215 // Consume trailing comments so the are included in EndOfLineItemLength. 216 if (ItemEnd->Next && !ItemEnd->Next->HasUnescapedNewline && 217 ItemEnd->Next->isTrailingComment()) 218 ItemEnd = ItemEnd->Next; 219 } 220 EndOfLineItemLength.push_back(CodePointsBetween(ItemBegin, ItemEnd)); 221 // If there is a trailing comma in the list, the next item will start at the 222 // closing brace. Don't create an extra item for this. 223 if (ItemEnd->getNextNonComment() == Token->MatchingParen) 224 break; 225 ItemBegin = ItemEnd->Next; 226 } 227 228 // Don't use column layout for lists with few elements and in presence of 229 // separating comments. 230 if (Commas.size() < 5 || HasSeparatingComment) 231 return; 232 233 if (Token->NestingLevel != 0 && Token->is(tok::l_brace) && Commas.size() < 19) 234 return; 235 236 // We can never place more than ColumnLimit / 3 items in a row (because of the 237 // spaces and the comma). 238 unsigned MaxItems = Style.ColumnLimit / 3; 239 std::vector<unsigned> MinSizeInColumn; 240 MinSizeInColumn.reserve(MaxItems); 241 for (unsigned Columns = 1; Columns <= MaxItems; ++Columns) { 242 ColumnFormat Format; 243 Format.Columns = Columns; 244 Format.ColumnSizes.resize(Columns); 245 MinSizeInColumn.assign(Columns, UINT_MAX); 246 Format.LineCount = 1; 247 bool HasRowWithSufficientColumns = false; 248 unsigned Column = 0; 249 for (unsigned i = 0, e = ItemLengths.size(); i != e; ++i) { 250 assert(i < MustBreakBeforeItem.size()); 251 if (MustBreakBeforeItem[i] || Column == Columns) { 252 ++Format.LineCount; 253 Column = 0; 254 } 255 if (Column == Columns - 1) 256 HasRowWithSufficientColumns = true; 257 unsigned Length = 258 (Column == Columns - 1) ? EndOfLineItemLength[i] : ItemLengths[i]; 259 Format.ColumnSizes[Column] = std::max(Format.ColumnSizes[Column], Length); 260 MinSizeInColumn[Column] = std::min(MinSizeInColumn[Column], Length); 261 ++Column; 262 } 263 // If all rows are terminated early (e.g. by trailing comments), we don't 264 // need to look further. 265 if (!HasRowWithSufficientColumns) 266 break; 267 Format.TotalWidth = Columns - 1; // Width of the N-1 spaces. 268 269 for (unsigned i = 0; i < Columns; ++i) 270 Format.TotalWidth += Format.ColumnSizes[i]; 271 272 // Don't use this Format, if the difference between the longest and shortest 273 // element in a column exceeds a threshold to avoid excessive spaces. 274 if ([&] { 275 for (unsigned i = 0; i < Columns - 1; ++i) 276 if (Format.ColumnSizes[i] - MinSizeInColumn[i] > 10) 277 return true; 278 return false; 279 }()) 280 continue; 281 282 // Ignore layouts that are bound to violate the column limit. 283 if (Format.TotalWidth > Style.ColumnLimit && Columns > 1) 284 continue; 285 286 Formats.push_back(Format); 287 } 288 } 289 290 const CommaSeparatedList::ColumnFormat * 291 CommaSeparatedList::getColumnFormat(unsigned RemainingCharacters) const { 292 const ColumnFormat *BestFormat = nullptr; 293 for (SmallVector<ColumnFormat, 4>::const_reverse_iterator 294 I = Formats.rbegin(), 295 E = Formats.rend(); 296 I != E; ++I) { 297 if (I->TotalWidth <= RemainingCharacters || I->Columns == 1) { 298 if (BestFormat && I->LineCount > BestFormat->LineCount) 299 break; 300 BestFormat = &*I; 301 } 302 } 303 return BestFormat; 304 } 305 306 } // namespace format 307 } // namespace clang 308