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177 lines
6.1 KiB
C++
177 lines
6.1 KiB
C++
// Copyright 2014 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "tools/gn/c_include_iterator.h"
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#include "base/logging.h"
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#include "base/macros.h"
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#include "base/strings/string_util.h"
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#include "tools/gn/input_file.h"
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#include "tools/gn/location.h"
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namespace {
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enum IncludeType {
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INCLUDE_NONE,
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INCLUDE_SYSTEM, // #include <...>
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INCLUDE_USER // #include "..."
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};
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// Returns a new string piece referencing the same buffer as the argument, but
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// with leading space trimmed. This only checks for space and tab characters
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// since we're dealing with lines in C source files.
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base::StringPiece TrimLeadingWhitespace(const base::StringPiece& str) {
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size_t new_begin = 0;
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while (new_begin < str.size() &&
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(str[new_begin] == ' ' || str[new_begin] == '\t'))
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new_begin++;
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return str.substr(new_begin);
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}
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// We don't want to count comment lines and preprocessor lines toward our
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// "max lines to look at before giving up" since the beginnings of some files
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// may have a lot of comments.
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//
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// We only handle C-style "//" comments since this is the normal commenting
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// style used in Chrome, and do so pretty stupidly. We don't want to write a
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// full C++ parser here, we're just trying to get a good heuristic for checking
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// the file.
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//
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// We assume the line has leading whitespace trimmed. We also assume that empty
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// lines have already been filtered out.
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bool ShouldCountTowardNonIncludeLines(const base::StringPiece& line) {
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if (base::StartsWith(line, "//", base::CompareCase::SENSITIVE))
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return false; // Don't count comments.
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if (base::StartsWith(line, "/*", base::CompareCase::SENSITIVE) ||
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base::StartsWith(line, " *", base::CompareCase::SENSITIVE))
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return false; // C-style comment blocks with stars along the left side.
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if (base::StartsWith(line, "#", base::CompareCase::SENSITIVE))
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return false; // Don't count preprocessor.
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if (base::ContainsOnlyChars(line, base::kWhitespaceASCII))
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return false; // Don't count whitespace lines.
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return true; // Count everything else.
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}
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// Given a line, checks to see if it looks like an include or import and
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// extract the path. The type of include is returned. Returns INCLUDE_NONE on
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// error or if this is not an include line.
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//
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// The 1-based character number on the line that the include was found at
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// will be filled into *begin_char.
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IncludeType ExtractInclude(const base::StringPiece& line,
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base::StringPiece* path,
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int* begin_char) {
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static const char kInclude[] = "#include";
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static const size_t kIncludeLen = arraysize(kInclude) - 1; // No null.
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static const char kImport[] = "#import";
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static const size_t kImportLen = arraysize(kImport) - 1; // No null.
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base::StringPiece trimmed = TrimLeadingWhitespace(line);
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if (trimmed.empty())
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return INCLUDE_NONE;
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base::StringPiece contents;
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if (base::StartsWith(trimmed, base::StringPiece(kInclude, kIncludeLen),
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base::CompareCase::SENSITIVE))
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contents = TrimLeadingWhitespace(trimmed.substr(kIncludeLen));
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else if (base::StartsWith(trimmed, base::StringPiece(kImport, kImportLen),
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base::CompareCase::SENSITIVE))
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contents = TrimLeadingWhitespace(trimmed.substr(kImportLen));
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if (contents.empty())
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return INCLUDE_NONE;
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IncludeType type = INCLUDE_NONE;
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char terminating_char = 0;
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if (contents[0] == '"') {
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type = INCLUDE_USER;
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terminating_char = '"';
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} else if (contents[0] == '<') {
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type = INCLUDE_SYSTEM;
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terminating_char = '>';
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} else {
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return INCLUDE_NONE;
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}
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// Count everything to next "/> as the contents.
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size_t terminator_index = contents.find(terminating_char, 1);
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if (terminator_index == base::StringPiece::npos)
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return INCLUDE_NONE;
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*path = contents.substr(1, terminator_index - 1);
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// Note: one based so we do "+ 1".
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*begin_char = static_cast<int>(path->data() - line.data()) + 1;
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return type;
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}
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// Returns true if this line has a "nogncheck" comment associated with it.
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bool HasNoCheckAnnotation(const base::StringPiece& line) {
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return line.find("nogncheck") != base::StringPiece::npos;
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}
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} // namespace
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const int CIncludeIterator::kMaxNonIncludeLines = 10;
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CIncludeIterator::CIncludeIterator(const InputFile* input)
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: input_file_(input),
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file_(input->contents()),
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offset_(0),
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line_number_(0),
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lines_since_last_include_(0) {
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}
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CIncludeIterator::~CIncludeIterator() {
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}
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bool CIncludeIterator::GetNextIncludeString(base::StringPiece* out,
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LocationRange* location) {
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base::StringPiece line;
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int cur_line_number = 0;
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while (lines_since_last_include_ <= kMaxNonIncludeLines &&
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GetNextLine(&line, &cur_line_number)) {
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base::StringPiece include_contents;
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int begin_char;
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IncludeType type = ExtractInclude(line, &include_contents, &begin_char);
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if (type == INCLUDE_USER && !HasNoCheckAnnotation(line)) {
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// Only count user includes for now.
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*out = include_contents;
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*location = LocationRange(
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Location(input_file_,
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cur_line_number,
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begin_char,
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-1 /* TODO(scottmg): Is this important? */),
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Location(input_file_,
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cur_line_number,
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begin_char + static_cast<int>(include_contents.size()),
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-1 /* TODO(scottmg): Is this important? */));
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lines_since_last_include_ = 0;
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return true;
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}
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if (ShouldCountTowardNonIncludeLines(line))
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lines_since_last_include_++;
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}
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return false;
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}
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bool CIncludeIterator::GetNextLine(base::StringPiece* line, int* line_number) {
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if (offset_ == file_.size())
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return false;
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size_t begin = offset_;
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while (offset_ < file_.size() && file_[offset_] != '\n')
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offset_++;
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line_number_++;
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*line = file_.substr(begin, offset_ - begin);
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*line_number = line_number_;
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// If we didn't hit EOF, skip past the newline for the next one.
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if (offset_ < file_.size())
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offset_++;
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return true;
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}
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