// Copyright (c) 2012 The Chromium Authors. All rights reserved. // Use of this source code is governed by a BSD-style license that can be // found in the LICENSE file. #include "third_party/libjingle/overrides/talk/base/logging.h" #if defined(OS_MACOSX) #include #endif // OS_MACOSX #include #include "base/string_util.h" #include "third_party/libjingle/source/talk/base/stream.h" #include "third_party/libjingle/source/talk/base/stringencode.h" #include "third_party/libjingle/source/talk/base/stringutils.h" // LOG_E can't call VLOG directly like LOG_V can since VLOG expands into usage // of the __FILE__ macro (for filtering) and the actual VLOG call from LOG_E // happens inside LogEHelper. Note that the second parameter to the LAZY_STREAM // macro is true since the filter check is already done for LOG_E. #define LOG_E_BASE(file_name, line_number, sev) \ LAZY_STREAM(logging::LogMessage(file_name, line_number, \ -sev).stream(), true) namespace talk_base { ///////////////////////////////////////////////////////////////////////////// // Constant Labels ///////////////////////////////////////////////////////////////////////////// const char* FindLabel(int value, const ConstantLabel entries[]) { for (int i = 0; entries[i].label; ++i) { if (value == entries[i].value) return entries[i].label; } return 0; } std::string ErrorName(int err, const ConstantLabel* err_table) { if (err == 0) return "No error"; if (err_table != 0) { if (const char * value = FindLabel(err, err_table)) return value; } char buffer[16]; base::snprintf(buffer, sizeof(buffer), "0x%08x", err); return buffer; } ///////////////////////////////////////////////////////////////////////////// // LogEHelper ///////////////////////////////////////////////////////////////////////////// // Summarizes LOG_E messages as strings. static std::string GenerateExtra(LogErrorContext err_ctx, int err, const char* module) { if (err_ctx != ERRCTX_NONE) { std::ostringstream tmp; tmp << ": "; tmp << "[0x" << std::setfill('0') << std::hex << std::setw(8) << err << "]"; switch (err_ctx) { case ERRCTX_ERRNO: tmp << " " << strerror(err); break; #if defined(OS_WIN) case ERRCTX_HRESULT: { char msgbuf[256]; DWORD flags = FORMAT_MESSAGE_FROM_SYSTEM; HMODULE hmod = GetModuleHandleA(module); if (hmod) flags |= FORMAT_MESSAGE_FROM_HMODULE; if (DWORD len = FormatMessageA( flags, hmod, err, MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT), msgbuf, sizeof(msgbuf) / sizeof(msgbuf[0]), NULL)) { while ((len > 0) && isspace(static_cast(msgbuf[len-1]))) { msgbuf[--len] = 0; } tmp << " " << msgbuf; } break; } #endif // OS_WIN #if defined(OS_MACOSX) case ERRCTX_OSSTATUS: { tmp << " " << nonnull(GetMacOSStatusErrorString(err), "Unknown error"); if (const char* desc = GetMacOSStatusCommentString(err)) { tmp << ": " << desc; } break; } #endif // OS_MACOSX default: break; } return tmp.str(); } return ""; } LogEHelper::LogEHelper(const char* file, int line, LoggingSeverity severity, LogErrorContext err_ctx, int err, const char* module) : file_name_(file), line_(line), severity_(severity) { extra_ = GenerateExtra(err_ctx, err, module); } LogEHelper::~LogEHelper() { print_stream_ << extra_; const std::string& str = print_stream_.str(); LOG_E_BASE(file_name_.c_str(), line_, severity_) << str; } // Note: this function is a copy from the overriden libjingle implementation. void LogMultiline(LoggingSeverity level, const char* label, bool input, const void* data, size_t len, bool hex_mode, LogMultilineState* state) { if (!LOG_CHECK_LEVEL_V(level)) return; const char * direction = (input ? " << " : " >> "); // NULL data means to flush our count of unprintable characters. if (!data) { if (state && state->unprintable_count_[input]) { LOG_V(level) << label << direction << "## " << state->unprintable_count_[input] << " consecutive unprintable ##"; state->unprintable_count_[input] = 0; } return; } // The ctype classification functions want unsigned chars. const unsigned char* udata = static_cast(data); if (hex_mode) { const size_t LINE_SIZE = 24; char hex_line[LINE_SIZE * 9 / 4 + 2], asc_line[LINE_SIZE + 1]; while (len > 0) { memset(asc_line, ' ', sizeof(asc_line)); memset(hex_line, ' ', sizeof(hex_line)); size_t line_len = _min(len, LINE_SIZE); for (size_t i = 0; i < line_len; ++i) { unsigned char ch = udata[i]; asc_line[i] = isprint(ch) ? ch : '.'; hex_line[i*2 + i/4] = hex_encode(ch >> 4); hex_line[i*2 + i/4 + 1] = hex_encode(ch & 0xf); } asc_line[sizeof(asc_line)-1] = 0; hex_line[sizeof(hex_line)-1] = 0; LOG_V(level) << label << direction << asc_line << " " << hex_line << " "; udata += line_len; len -= line_len; } return; } size_t consecutive_unprintable = state ? state->unprintable_count_[input] : 0; const unsigned char* end = udata + len; while (udata < end) { const unsigned char* line = udata; const unsigned char* end_of_line = strchrn(udata, end - udata, '\n'); if (!end_of_line) { udata = end_of_line = end; } else { udata = end_of_line + 1; } bool is_printable = true; // If we are in unprintable mode, we need to see a line of at least // kMinPrintableLine characters before we'll switch back. const ptrdiff_t kMinPrintableLine = 4; if (consecutive_unprintable && ((end_of_line - line) < kMinPrintableLine)) { is_printable = false; } else { // Determine if the line contains only whitespace and printable // characters. bool is_entirely_whitespace = true; for (const unsigned char* pos = line; pos < end_of_line; ++pos) { if (isspace(*pos)) continue; is_entirely_whitespace = false; if (!isprint(*pos)) { is_printable = false; break; } } // Treat an empty line following unprintable data as unprintable. if (consecutive_unprintable && is_entirely_whitespace) { is_printable = false; } } if (!is_printable) { consecutive_unprintable += (udata - line); continue; } // Print out the current line, but prefix with a count of prior unprintable // characters. if (consecutive_unprintable) { LOG_V(level) << label << direction << "## " << consecutive_unprintable << " consecutive unprintable ##"; consecutive_unprintable = 0; } // Strip off trailing whitespace. while ((end_of_line > line) && isspace(*(end_of_line-1))) { --end_of_line; } // Filter out any private data std::string substr(reinterpret_cast(line), end_of_line - line); std::string::size_type pos_private = substr.find("Email"); if (pos_private == std::string::npos) { pos_private = substr.find("Passwd"); } if (pos_private == std::string::npos) { LOG_V(level) << label << direction << substr; } else { LOG_V(level) << label << direction << "## omitted for privacy ##"; } } if (state) { state->unprintable_count_[input] = consecutive_unprintable; } } } // namespace talk_base