// Copyright 2008, Google Inc. // All rights reserved. // // Redistribution and use in source and binary forms, with or without // modification, are permitted provided that the following conditions are // met: // // * Redistributions of source code must retain the above copyright // notice, this list of conditions and the following disclaimer. // * Redistributions in binary form must reproduce the above // copyright notice, this list of conditions and the following disclaimer // in the documentation and/or other materials provided with the // distribution. // * Neither the name of Google Inc. nor the names of its // contributors may be used to endorse or promote products derived from // this software without specific prior written permission. // // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR // A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT // OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. // Copied from strings/stringpiece.cc with modifications #include #include #include "base/string_piece.h" typedef StringPiece::size_type size_type; std::ostream& operator<<(std::ostream& o, const StringPiece& piece) { o.write(piece.data(), static_cast(piece.size())); return o; } bool operator==(const StringPiece& x, const StringPiece& y) { if (x.size() != y.size()) return false; return StringPiece::wordmemcmp(x.data(), y.data(), x.size()) == 0; } void StringPiece::CopyToString(std::string* target) const { target->assign(!empty() ? data() : "", size()); } void StringPiece::AppendToString(std::string* target) const { if (!empty()) target->append(data(), size()); } size_type StringPiece::copy(char* buf, size_type n, size_type pos) const { size_type ret = std::min(length_ - pos, n); memcpy(buf, ptr_ + pos, ret); return ret; } size_type StringPiece::find(const StringPiece& s, size_type pos) const { if (pos > length_) return npos; const char* result = std::search(ptr_ + pos, ptr_ + length_, s.ptr_, s.ptr_ + s.length_); const size_type xpos = result - ptr_; return xpos + s.length_ <= length_ ? xpos : npos; } size_type StringPiece::find(char c, size_type pos) const { if (pos >= length_) return npos; const char* result = std::find(ptr_ + pos, ptr_ + length_, c); return result != ptr_ + length_ ? result - ptr_ : npos; } size_type StringPiece::rfind(const StringPiece& s, size_type pos) const { if (length_ < s.length_) return npos; if (s.empty()) return std::min(length_, pos); const char* last = ptr_ + std::min(length_ - s.length_, pos) + s.length_; const char* result = std::find_end(ptr_, last, s.ptr_, s.ptr_ + s.length_); return result != last ? result - ptr_ : npos; } size_type StringPiece::rfind(char c, size_type pos) const { if (length_ == 0) return npos; for (size_type i = std::min(pos, length_ - 1); ; --i) { if (ptr_[i] == c) return i; if (i == 0) break; } return npos; } // For each character in characters_wanted, sets the index corresponding // to the ASCII code of that character to 1 in table. This is used by // the find_.*_of methods below to tell whether or not a character is in // the lookup table in constant time. // The argument `table' must be an array that is large enough to hold all // the possible values of an unsigned char. Thus it should be be declared // as follows: // bool table[UCHAR_MAX + 1] static inline void BuildLookupTable(const StringPiece& characters_wanted, bool* table) { const size_type length = characters_wanted.length(); const char* const data = characters_wanted.data(); for (size_type i = 0; i < length; ++i) { table[static_cast(data[i])] = true; } } size_type StringPiece::find_first_of(const StringPiece& s, size_type pos) const { if (length_ == 0 || s.length_ == 0) return npos; // Avoid the cost of BuildLookupTable() for a single-character search. if (s.length_ == 1) return find_first_of(s.ptr_[0], pos); bool lookup[UCHAR_MAX + 1] = { false }; BuildLookupTable(s, lookup); for (size_type i = pos; i < length_; ++i) { if (lookup[static_cast(ptr_[i])]) { return i; } } return npos; } size_type StringPiece::find_first_not_of(const StringPiece& s, size_type pos) const { if (length_ == 0) return npos; if (s.length_ == 0) return 0; // Avoid the cost of BuildLookupTable() for a single-character search. if (s.length_ == 1) return find_first_not_of(s.ptr_[0], pos); bool lookup[UCHAR_MAX + 1] = { false }; BuildLookupTable(s, lookup); for (size_type i = pos; i < length_; ++i) { if (!lookup[static_cast(ptr_[i])]) { return i; } } return npos; } size_type StringPiece::find_first_not_of(char c, size_type pos) const { if (length_ == 0) return npos; for (; pos < length_; ++pos) { if (ptr_[pos] != c) { return pos; } } return npos; } size_type StringPiece::find_last_of(const StringPiece& s, size_type pos) const { if (length_ == 0 || s.length_ == 0) return npos; // Avoid the cost of BuildLookupTable() for a single-character search. if (s.length_ == 1) return find_last_of(s.ptr_[0], pos); bool lookup[UCHAR_MAX + 1] = { false }; BuildLookupTable(s, lookup); for (size_type i = std::min(pos, length_ - 1); ; --i) { if (lookup[static_cast(ptr_[i])]) return i; if (i == 0) break; } return npos; } size_type StringPiece::find_last_not_of(const StringPiece& s, size_type pos) const { if (length_ == 0) return npos; size_type i = std::min(pos, length_ - 1); if (s.length_ == 0) return i; // Avoid the cost of BuildLookupTable() for a single-character search. if (s.length_ == 1) return find_last_not_of(s.ptr_[0], pos); bool lookup[UCHAR_MAX + 1] = { false }; BuildLookupTable(s, lookup); for (; ; --i) { if (!lookup[static_cast(ptr_[i])]) return i; if (i == 0) break; } return npos; } size_type StringPiece::find_last_not_of(char c, size_type pos) const { if (length_ == 0) return npos; for (size_type i = std::min(pos, length_ - 1); ; --i) { if (ptr_[i] != c) return i; if (i == 0) break; } return npos; } StringPiece StringPiece::substr(size_type pos, size_type n) const { if (pos > length_) pos = length_; if (n > length_ - pos) n = length_ - pos; return StringPiece(ptr_ + pos, n); } const StringPiece::size_type StringPiece::npos = size_type(-1);