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https://github.com/carbon-language/carbon-lang.git
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Per [the design](https://docs.carbon-lang.dev/docs/design/lexical_conventions/), `x.1.2` should lex as `(x.1).2`, not as `x.(1.2)`.
434 lines
16 KiB
C++
434 lines
16 KiB
C++
// Part of the Carbon Language project, under the Apache License v2.0 with LLVM
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// Exceptions. See /LICENSE for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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#include "toolchain/lex/tokenized_buffer.h"
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#include <algorithm>
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#include <cmath>
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#include "common/check.h"
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#include "common/string_helpers.h"
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#include "llvm/ADT/StringRef.h"
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#include "llvm/Support/Format.h"
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#include "llvm/Support/FormatVariadic.h"
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#include "toolchain/base/shared_value_stores.h"
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#include "toolchain/diagnostics/diagnostic_emitter.h"
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#include "toolchain/lex/character_set.h"
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#include "toolchain/lex/numeric_literal.h"
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#include "toolchain/lex/string_literal.h"
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namespace Carbon::Lex {
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auto TokenizedBuffer::GetLine(TokenIndex token) const -> LineIndex {
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return FindLineIndex(GetTokenInfo(token).byte_offset());
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}
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auto TokenizedBuffer::GetLineNumber(TokenIndex token) const -> int {
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return GetLine(token).index + 1;
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}
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auto TokenizedBuffer::GetColumnNumber(TokenIndex token) const -> int {
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const auto& token_info = GetTokenInfo(token);
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const auto& line_info = GetLineInfo(FindLineIndex(token_info.byte_offset()));
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return token_info.byte_offset() - line_info.start + 1;
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}
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auto TokenizedBuffer::GetEndLoc(TokenIndex token) const
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-> std::pair<LineIndex, int> {
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auto line = GetLine(token);
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int column = GetColumnNumber(token);
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auto token_text = GetTokenText(token);
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if (auto [before_newline, after_newline] = token_text.rsplit('\n');
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before_newline.size() == token_text.size()) {
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// Token fits on one line, advance the column number.
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column += before_newline.size();
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} else {
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// Token contains newlines.
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line.index += before_newline.count('\n') + 1;
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column = 1 + after_newline.size();
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}
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return {line, column};
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}
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auto TokenizedBuffer::GetTokenText(TokenIndex token) const -> llvm::StringRef {
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const auto& token_info = GetTokenInfo(token);
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llvm::StringRef fixed_spelling = token_info.kind().fixed_spelling();
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if (!fixed_spelling.empty()) {
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return fixed_spelling;
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}
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if (token_info.kind() == TokenKind::Error) {
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return source_->text().substr(token_info.byte_offset(),
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token_info.error_length());
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}
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// Refer back to the source text to preserve oddities like radix or digit
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// separators the author included.
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if (token_info.kind() == TokenKind::IntLiteral ||
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token_info.kind() == TokenKind::RealLiteral) {
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std::optional<NumericLiteral> relexed_token =
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NumericLiteral::Lex(source_->text().substr(token_info.byte_offset()),
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token_info.kind() == TokenKind::RealLiteral);
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CARBON_CHECK(relexed_token, "Could not reform numeric literal token.");
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return relexed_token->text();
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}
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// Refer back to the source text to find the original spelling, including
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// escape sequences etc.
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if (token_info.kind() == TokenKind::StringLiteral) {
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std::optional<StringLiteral> relexed_token =
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StringLiteral::Lex(source_->text().substr(token_info.byte_offset()));
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CARBON_CHECK(relexed_token, "Could not reform string literal token.");
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return relexed_token->text();
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}
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// Refer back to the source text to avoid needing to reconstruct the
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// spelling from the size.
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if (token_info.kind().is_sized_type_literal()) {
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llvm::StringRef suffix = source_->text()
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.substr(token_info.byte_offset() + 1)
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.take_while(IsDecimalDigit);
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return llvm::StringRef(suffix.data() - 1, suffix.size() + 1);
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}
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if (token_info.kind() == TokenKind::FileStart ||
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token_info.kind() == TokenKind::FileEnd) {
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return llvm::StringRef();
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}
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CARBON_CHECK(token_info.kind() == TokenKind::Identifier, "{0}",
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token_info.kind());
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return value_stores_->identifiers().Get(token_info.ident_id());
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}
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auto TokenizedBuffer::GetIdentifier(TokenIndex token) const -> IdentifierId {
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const auto& token_info = GetTokenInfo(token);
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CARBON_CHECK(token_info.kind() == TokenKind::Identifier, "{0}",
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token_info.kind());
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return token_info.ident_id();
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}
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auto TokenizedBuffer::GetIntLiteral(TokenIndex token) const -> IntId {
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const auto& token_info = GetTokenInfo(token);
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CARBON_CHECK(token_info.kind() == TokenKind::IntLiteral, "{0}",
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token_info.kind());
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return token_info.int_id();
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}
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auto TokenizedBuffer::GetRealLiteral(TokenIndex token) const -> RealId {
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const auto& token_info = GetTokenInfo(token);
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CARBON_CHECK(token_info.kind() == TokenKind::RealLiteral, "{0}",
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token_info.kind());
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return token_info.real_id();
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}
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auto TokenizedBuffer::GetStringLiteralValue(TokenIndex token) const
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-> StringLiteralValueId {
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const auto& token_info = GetTokenInfo(token);
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CARBON_CHECK(token_info.kind() == TokenKind::StringLiteral, "{0}",
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token_info.kind());
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return token_info.string_literal_id();
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}
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auto TokenizedBuffer::GetTypeLiteralSize(TokenIndex token) const -> IntId {
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const auto& token_info = GetTokenInfo(token);
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CARBON_CHECK(token_info.kind().is_sized_type_literal(), "{0}",
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token_info.kind());
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return token_info.int_id();
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}
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auto TokenizedBuffer::GetMatchedClosingToken(TokenIndex opening_token) const
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-> TokenIndex {
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const auto& opening_token_info = GetTokenInfo(opening_token);
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CARBON_CHECK(opening_token_info.kind().is_opening_symbol(), "{0}",
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opening_token_info.kind());
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return opening_token_info.closing_token_index();
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}
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auto TokenizedBuffer::GetMatchedOpeningToken(TokenIndex closing_token) const
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-> TokenIndex {
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const auto& closing_token_info = GetTokenInfo(closing_token);
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CARBON_CHECK(closing_token_info.kind().is_closing_symbol(), "{0}",
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closing_token_info.kind());
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return closing_token_info.opening_token_index();
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}
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auto TokenizedBuffer::IsRecoveryToken(TokenIndex token) const -> bool {
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if (recovery_tokens_.empty()) {
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return false;
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}
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return recovery_tokens_[token.index];
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}
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auto TokenizedBuffer::GetNextLine(LineIndex line) const -> LineIndex {
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LineIndex next(line.index + 1);
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CARBON_DCHECK(static_cast<size_t>(next.index) < line_infos_.size());
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return next;
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}
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auto TokenizedBuffer::GetPrevLine(LineIndex line) const -> LineIndex {
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CARBON_CHECK(line.index > 0);
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return LineIndex(line.index - 1);
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}
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auto TokenizedBuffer::GetIndentColumnNumber(LineIndex line) const -> int {
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return GetLineInfo(line).indent + 1;
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}
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auto TokenizedBuffer::PrintWidths::Widen(const PrintWidths& widths) -> void {
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index = std::max(widths.index, index);
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kind = std::max(widths.kind, kind);
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column = std::max(widths.column, column);
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line = std::max(widths.line, line);
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indent = std::max(widths.indent, indent);
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}
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// Compute the printed width of a number. When numbers are printed in decimal,
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// the number of digits needed is one more than the log-base-10 of the
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// value. We handle a value of `zero` explicitly.
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//
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// This routine requires its argument to be *non-negative*.
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static auto ComputeDecimalPrintedWidth(int number) -> int {
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CARBON_CHECK(number >= 0, "Negative numbers are not supported.");
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if (number == 0) {
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return 1;
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}
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return static_cast<int>(std::log10(number)) + 1;
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}
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auto TokenizedBuffer::GetTokenPrintWidths(TokenIndex token) const
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-> PrintWidths {
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PrintWidths widths = {};
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widths.index = ComputeDecimalPrintedWidth(token_infos_.size());
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widths.kind = GetKind(token).name().size();
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widths.line = ComputeDecimalPrintedWidth(GetLineNumber(token));
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widths.column = ComputeDecimalPrintedWidth(GetColumnNumber(token));
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widths.indent =
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ComputeDecimalPrintedWidth(GetIndentColumnNumber(GetLine(token)));
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return widths;
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}
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auto TokenizedBuffer::Print(llvm::raw_ostream& output_stream,
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bool omit_file_boundary_tokens) const -> void {
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output_stream << "- filename: " << source_->filename() << "\n"
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<< " tokens:\n";
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PrintWidths widths = {};
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widths.index = ComputeDecimalPrintedWidth((token_infos_.size()));
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for (TokenIndex token : tokens()) {
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widths.Widen(GetTokenPrintWidths(token));
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}
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for (TokenIndex token : tokens()) {
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if (omit_file_boundary_tokens) {
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auto kind = GetKind(token);
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if (kind == TokenKind::FileStart || kind == TokenKind::FileEnd) {
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continue;
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}
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}
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PrintToken(output_stream, token, widths);
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output_stream << "\n";
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}
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}
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auto TokenizedBuffer::PrintToken(llvm::raw_ostream& output_stream,
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TokenIndex token) const -> void {
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PrintToken(output_stream, token, {});
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}
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auto TokenizedBuffer::PrintToken(llvm::raw_ostream& output_stream,
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TokenIndex token, PrintWidths widths) const
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-> void {
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widths.Widen(GetTokenPrintWidths(token));
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int token_index = token.index;
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const auto& token_info = GetTokenInfo(token);
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LineIndex line_index = FindLineIndex(token_info.byte_offset());
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llvm::StringRef token_text = GetTokenText(token);
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// Output the main chunk using one format string. We have to do the
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// justification manually in order to use the dynamically computed widths
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// and get the quotes included.
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output_stream << llvm::formatv(
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" - { index: {0}, kind: {1}, line: {2}, column: {3}, indent: {4}, "
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"spelling: '{5}'",
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llvm::format_decimal(token_index, widths.index),
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llvm::right_justify(
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llvm::formatv("'{0}'", token_info.kind().name()).str(),
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widths.kind + 2),
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llvm::format_decimal(GetLineNumber(token), widths.line),
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llvm::format_decimal(GetColumnNumber(token), widths.column),
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llvm::format_decimal(GetIndentColumnNumber(line_index), widths.indent),
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token_text);
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switch (token_info.kind()) {
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case TokenKind::Identifier:
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output_stream << ", identifier: " << GetIdentifier(token).index;
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break;
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case TokenKind::IntLiteral:
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output_stream << ", value: `";
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value_stores_->ints()
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.Get(GetIntLiteral(token))
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.print(output_stream, /*isSigned=*/false);
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output_stream << "`";
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break;
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case TokenKind::RealLiteral:
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output_stream << ", value: `"
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<< value_stores_->reals().Get(GetRealLiteral(token)) << "`";
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break;
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case TokenKind::StringLiteral:
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output_stream << ", value: `"
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<< value_stores_->string_literal_values().Get(
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GetStringLiteralValue(token))
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<< "`";
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break;
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default:
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if (token_info.kind().is_opening_symbol()) {
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output_stream << ", closing_token: "
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<< GetMatchedClosingToken(token).index;
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} else if (token_info.kind().is_closing_symbol()) {
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output_stream << ", opening_token: "
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<< GetMatchedOpeningToken(token).index;
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}
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break;
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}
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if (token_info.has_leading_space()) {
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output_stream << ", has_leading_space: true";
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}
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if (IsRecoveryToken(token)) {
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output_stream << ", recovery: true";
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}
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output_stream << " }";
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}
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// Find the line index corresponding to a specific byte offset within the source
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// text for this tokenized buffer.
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//
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// This takes advantage of the lines being sorted by their starting byte offsets
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// to do a binary search for the line that contains the provided offset.
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auto TokenizedBuffer::FindLineIndex(int32_t byte_offset) const -> LineIndex {
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CARBON_DCHECK(!line_infos_.empty());
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const auto* line_it =
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llvm::partition_point(line_infos_, [byte_offset](LineInfo line_info) {
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return line_info.start <= byte_offset;
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});
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--line_it;
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// If this isn't the first line but it starts past the end of the source, then
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// this is a synthetic line added for simplicity of lexing. Step back one
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// further to find the last non-synthetic line.
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if (line_it != line_infos_.begin() &&
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line_it->start == static_cast<int32_t>(source_->text().size())) {
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--line_it;
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}
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CARBON_DCHECK(line_it->start <= byte_offset);
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return LineIndex(line_it - line_infos_.begin());
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}
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auto TokenizedBuffer::GetLineInfo(LineIndex line) -> LineInfo& {
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return line_infos_[line.index];
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}
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auto TokenizedBuffer::GetLineInfo(LineIndex line) const -> const LineInfo& {
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return line_infos_[line.index];
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}
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auto TokenizedBuffer::AddLine(LineInfo info) -> LineIndex {
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line_infos_.push_back(info);
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return LineIndex(static_cast<int>(line_infos_.size()) - 1);
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}
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auto TokenizedBuffer::IsAfterComment(TokenIndex token,
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CommentIndex comment_index) const -> bool {
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const auto& comment_data = comments_[comment_index.index];
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return GetTokenInfo(token).byte_offset() > comment_data.start;
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}
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auto TokenizedBuffer::GetCommentText(CommentIndex comment_index) const
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-> llvm::StringRef {
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const auto& comment_data = comments_[comment_index.index];
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return source_->text().substr(comment_data.start, comment_data.length);
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}
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auto TokenizedBuffer::AddComment(int32_t indent, int32_t start, int32_t end)
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-> void {
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if (!comments_.empty()) {
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auto& comment = comments_.back();
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if (comment.start + comment.length + indent == start) {
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comment.length = end - comment.start;
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return;
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}
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}
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comments_.push_back({.start = start, .length = end - start});
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}
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auto TokenizedBuffer::CollectMemUsage(MemUsage& mem_usage,
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llvm::StringRef label) const -> void {
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mem_usage.Collect(MemUsage::ConcatLabel(label, "allocator_"), allocator_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "token_infos_"), token_infos_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "line_infos_"), line_infos_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "comments_"), comments_);
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}
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auto TokenizedBuffer::SourceBufferDiagnosticConverter::ConvertLoc(
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const char* loc, ContextFnT /*context_fn*/) const -> DiagnosticLoc {
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CARBON_CHECK(StringRefContainsPointer(buffer_->source_->text(), loc),
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"location not within buffer");
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int32_t offset = loc - buffer_->source_->text().begin();
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// Find the first line starting after the given location.
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const auto* next_line_it = llvm::partition_point(
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buffer_->line_infos_,
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[offset](const LineInfo& line) { return line.start <= offset; });
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// Step back one line to find the line containing the given position.
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CARBON_CHECK(next_line_it != buffer_->line_infos_.begin(),
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"location precedes the start of the first line");
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const auto* line_it = std::prev(next_line_it);
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int line_number = line_it - buffer_->line_infos_.begin();
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int column_number = offset - line_it->start;
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// Grab the line from the buffer by slicing from this line to the next
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// minus the newline. When on the last line, instead use the start to the end
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// of the buffer.
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llvm::StringRef text = buffer_->source_->text();
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llvm::StringRef line = next_line_it != buffer_->line_infos_.end()
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? text.slice(line_it->start, next_line_it->start)
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: text.substr(line_it->start);
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// Remove a newline at the end of the line if present.
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// TODO: This should expand to remove all vertical whitespace bytes at the
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// tail of the line such as CR+LF, etc.
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line.consume_back("\n");
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return {.filename = buffer_->source_->filename(),
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.line = line,
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.line_number = line_number + 1,
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.column_number = column_number + 1};
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}
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auto TokenDiagnosticConverter::ConvertLoc(TokenIndex token,
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ContextFnT context_fn) const
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-> DiagnosticLoc {
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// Map the token location into a position within the source buffer.
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const auto& token_info = buffer_->GetTokenInfo(token);
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const char* token_start =
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buffer_->source_->text().begin() + token_info.byte_offset();
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// Find the corresponding file location.
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// TODO: Should we somehow indicate in the diagnostic location if this token
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// is a recovery token that doesn't correspond to the original source?
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DiagnosticLoc loc =
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TokenizedBuffer::SourceBufferDiagnosticConverter(buffer_).ConvertLoc(
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token_start, context_fn);
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loc.length = buffer_->GetTokenText(token).size();
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return loc;
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}
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} // namespace Carbon::Lex
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