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671 lines
25 KiB
671 lines
25 KiB
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#ifndef BASE_LOGGING_H_ |
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#define BASE_LOGGING_H_ |
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#include <cassert> |
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#include <string> |
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#include <cstring> |
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#include <sstream> |
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#include "quipper/base/macros.h" |
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#include "quipper/base/basictypes.h" |
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// |
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// Logging macros designed to mimic those used in chromium_org/base. |
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// |
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// Instructions |
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// ------------ |
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// |
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// Make a bunch of macros for logging. The way to log things is to stream |
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// things to LOG(<a particular severity level>). E.g., |
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// |
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// LOG(INFO) << "Found " << num_cookies << " cookies"; |
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// |
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// You can also do conditional logging: |
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// |
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// LOG_IF(INFO, num_cookies > 10) << "Got lots of cookies"; |
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// |
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// The CHECK(condition) macro is active in both debug and release builds and |
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// effectively performs a LOG(FATAL) which terminates the process and |
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// generates a crashdump unless a debugger is attached. |
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// |
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// There are also "debug mode" logging macros like the ones above: |
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// |
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// DLOG(INFO) << "Found cookies"; |
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// |
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// DLOG_IF(INFO, num_cookies > 10) << "Got lots of cookies"; |
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// |
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// All "debug mode" logging is compiled away to nothing for non-debug mode |
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// compiles. LOG_IF and development flags also work well together |
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// because the code can be compiled away sometimes. |
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// |
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// We also have |
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// |
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// LOG_ASSERT(assertion); |
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// DLOG_ASSERT(assertion); |
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// |
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// which is syntactic sugar for {,D}LOG_IF(FATAL, assert fails) << assertion; |
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// |
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// There are "verbose level" logging macros. They look like |
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// |
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// VLOG(1) << "I'm printed when you run the program with --v=1 or more"; |
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// VLOG(2) << "I'm printed when you run the program with --v=2 or more"; |
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// |
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// These always log at the INFO log level (when they log at all). |
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// The verbose logging can also be turned on module-by-module. For instance, |
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// --vmodule=profile=2,icon_loader=1,browser_*=3,*/chromeos/*=4 --v=0 |
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// will cause: |
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// a. VLOG(2) and lower messages to be printed from profile.{h,cc} |
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// b. VLOG(1) and lower messages to be printed from icon_loader.{h,cc} |
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// c. VLOG(3) and lower messages to be printed from files prefixed with |
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// "browser" |
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// d. VLOG(4) and lower messages to be printed from files under a |
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// "chromeos" directory. |
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// e. VLOG(0) and lower messages to be printed from elsewhere |
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// |
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// The wildcarding functionality shown by (c) supports both '*' (match |
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// 0 or more characters) and '?' (match any single character) |
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// wildcards. Any pattern containing a forward or backward slash will |
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// be tested against the whole pathname and not just the module. |
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// E.g., "*/foo/bar/*=2" would change the logging level for all code |
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// in source files under a "foo/bar" directory. |
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// |
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// There's also VLOG_IS_ON(n) "verbose level" condition macro. To be used as |
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// |
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// if (VLOG_IS_ON(2)) { |
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// // do some logging preparation and logging |
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// // that can't be accomplished with just VLOG(2) << ...; |
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// } |
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// |
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// There is also a VLOG_IF "verbose level" condition macro for sample |
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// cases, when some extra computation and preparation for logs is not |
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// needed. |
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// |
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// VLOG_IF(1, (size > 1024)) |
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// << "I'm printed when size is more than 1024 and when you run the " |
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// "program with --v=1 or more"; |
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// |
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// We also override the standard 'assert' to use 'DLOG_ASSERT'. |
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// |
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// Lastly, there is: |
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// |
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// PLOG(ERROR) << "Couldn't do foo"; |
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// DPLOG(ERROR) << "Couldn't do foo"; |
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// PLOG_IF(ERROR, cond) << "Couldn't do foo"; |
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// DPLOG_IF(ERROR, cond) << "Couldn't do foo"; |
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// PCHECK(condition) << "Couldn't do foo"; |
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// DPCHECK(condition) << "Couldn't do foo"; |
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// |
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// which append the last system error to the message in string form (taken from |
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// GetLastError() on Windows and errno on POSIX). |
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// |
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// The supported severity levels for macros that allow you to specify one |
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// are (in increasing order of severity) INFO, WARNING, ERROR, and FATAL. |
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// |
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// Very important: logging a message at the FATAL severity level causes |
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// the program to terminate (after the message is logged). |
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// |
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// There is the special severity of DFATAL, which logs FATAL in debug mode, |
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// ERROR in normal mode. |
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#define BASE_EXPORT |
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namespace logging { |
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// Sets the log level. Anything at or above this level will be written to the |
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// log file/displayed to the user (if applicable). Anything below this level |
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// will be silently ignored. The log level defaults to 0 (everything is logged |
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// up to level INFO) if this function is not called. |
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// Note that log messages for VLOG(x) are logged at level -x, so setting |
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// the min log level to negative values enables verbose logging. |
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BASE_EXPORT void SetMinLogLevel(int level); |
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// Gets the current log level. |
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BASE_EXPORT int GetMinLogLevel(); |
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// Gets the VLOG default verbosity level. |
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BASE_EXPORT int GetVlogVerbosity(); |
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typedef int LogSeverity; |
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const LogSeverity LOG_VERBOSE = -1; // This is level 1 verbosity |
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// Note: the log severities are used to index into the array of names, |
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// see log_severity_names. |
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const LogSeverity LOG_INFO = 0; |
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const LogSeverity LOG_WARNING = 1; |
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const LogSeverity LOG_ERROR = 2; |
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const LogSeverity LOG_FATAL = 3; |
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const LogSeverity LOG_NUM_SEVERITIES = 4; |
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// A few definitions of macros that don't generate much code. These are used |
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// by LOG() and LOG_IF, etc. Since these are used all over our code, it's |
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// better to have compact code for these operations. |
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#define COMPACT_GOOGLE_LOG_EX_INFO(ClassName, ...) \ |
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logging::ClassName(__FILE__, __LINE__, logging::LOG_INFO , ##__VA_ARGS__) |
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#define COMPACT_GOOGLE_LOG_EX_WARNING(ClassName, ...) \ |
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logging::ClassName(__FILE__, __LINE__, logging::LOG_WARNING , ##__VA_ARGS__) |
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#define COMPACT_GOOGLE_LOG_EX_ERROR(ClassName, ...) \ |
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logging::ClassName(__FILE__, __LINE__, logging::LOG_ERROR , ##__VA_ARGS__) |
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#define COMPACT_GOOGLE_LOG_EX_FATAL(ClassName, ...) \ |
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logging::ClassName(__FILE__, __LINE__, logging::LOG_FATAL , ##__VA_ARGS__) |
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#define COMPACT_GOOGLE_LOG_EX_DFATAL(ClassName, ...) \ |
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logging::ClassName(__FILE__, __LINE__, logging::LOG_DFATAL , ##__VA_ARGS__) |
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#define COMPACT_GOOGLE_LOG_INFO \ |
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COMPACT_GOOGLE_LOG_EX_INFO(LogMessage) |
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#define COMPACT_GOOGLE_LOG_WARNING \ |
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COMPACT_GOOGLE_LOG_EX_WARNING(LogMessage) |
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#define COMPACT_GOOGLE_LOG_ERROR \ |
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COMPACT_GOOGLE_LOG_EX_ERROR(LogMessage) |
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#define COMPACT_GOOGLE_LOG_FATAL \ |
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COMPACT_GOOGLE_LOG_EX_FATAL(LogMessage) |
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#define COMPACT_GOOGLE_LOG_DFATAL \ |
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COMPACT_GOOGLE_LOG_EX_DFATAL(LogMessage) |
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// As special cases, we can assume that LOG_IS_ON(FATAL) always holds. Also, |
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// LOG_IS_ON(DFATAL) always holds in debug mode. In particular, CHECK()s will |
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// always fire if they fail. |
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#define LOG_IS_ON(severity) \ |
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((::logging::LOG_ ## severity) >= ::logging::GetMinLogLevel()) |
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#define VLOG_IS_ON(verboselevel) false |
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// Helper macro which avoids evaluating the arguments to a stream if |
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// the condition doesn't hold. |
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#define LAZY_STREAM(stream, condition) \ |
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!(condition) ? (void) 0 : ::logging::LogMessageVoidify() & (stream) /* NOLINT */ |
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// We use the preprocessor's merging operator, "##", so that, e.g., |
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// LOG(INFO) becomes the token COMPACT_GOOGLE_LOG_INFO. There's some funny |
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// subtle difference between ostream member streaming functions (e.g., |
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// ostream::operator<<(int) and ostream non-member streaming functions |
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// (e.g., ::operator<<(ostream&, string&): it turns out that it's |
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// impossible to stream something like a string directly to an unnamed |
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// ostream. We employ a neat hack by calling the stream() member |
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// function of LogMessage which seems to avoid the problem. |
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#define LOG_STREAM(severity) COMPACT_GOOGLE_LOG_ ## severity.stream() |
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#define LOG(severity) LAZY_STREAM(LOG_STREAM(severity), LOG_IS_ON(severity)) |
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#define LOG_IF(severity, condition) \ |
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LAZY_STREAM(LOG_STREAM(severity), LOG_IS_ON(severity) && (condition)) |
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// The VLOG macros log with negative verbosities. |
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#define VLOG_STREAM(verbose_level) \ |
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logging::LogMessage(__FILE__, __LINE__, -(verbose_level)).stream() |
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#define VLOG(verbose_level) \ |
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LAZY_STREAM(VLOG_STREAM(verbose_level), VLOG_IS_ON(verbose_level)) |
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#define VLOG_IF(verbose_level, condition) \ |
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LAZY_STREAM(VLOG_STREAM(verbose_level), \ |
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VLOG_IS_ON(verbose_level) && (condition)) |
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// TODO(akalin): Add more VLOG variants, e.g. VPLOG. |
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#define LOG_ASSERT(condition) \ |
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LOG_IF(FATAL, !(condition)) << "Assert failed: " #condition ". " |
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#define SYSLOG_ASSERT(condition) \ |
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SYSLOG_IF(FATAL, !(condition)) << "Assert failed: " #condition ". " |
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#define PLOG(severity) \ |
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LAZY_STREAM(PLOG_STREAM(severity), LOG_IS_ON(severity)) |
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#define PLOG_IF(severity, condition) \ |
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LAZY_STREAM(PLOG_STREAM(severity), LOG_IS_ON(severity) && (condition)) |
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// The actual stream used isn't important. |
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#define EAT_STREAM_PARAMETERS \ |
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true ? (void) 0 : ::logging::LogMessageVoidify() & LOG_STREAM(FATAL) /* NOLINT */ |
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// CHECK dies with a fatal error if condition is not true. It is *not* |
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// controlled by NDEBUG, so the check will be executed regardless of |
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// compilation mode. |
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// |
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// We make sure CHECK et al. always evaluates their arguments, as |
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// doing CHECK(FunctionWithSideEffect()) is a common idiom. |
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#define CHECK(condition) \ |
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LAZY_STREAM(LOG_STREAM(FATAL), !(condition)) \ |
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<< "Check failed: " #condition ". " |
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#define PCHECK(condition) \ |
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LAZY_STREAM(PLOG_STREAM(FATAL), !(condition)) \ |
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<< "Check failed: " #condition ". " |
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// Helper macro for binary operators. |
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// Don't use this macro directly in your code, use CHECK_EQ et al below. |
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// |
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// TODO(akalin): Rewrite this so that constructs like if (...) |
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// CHECK_EQ(...) else { ... } work properly. |
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#define CHECK_OP(name, op, val1, val2) \ |
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if (std::string* _result = \ |
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logging::Check##name##Impl((val1), (val2), \ |
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#val1 " " #op " " #val2)) \ |
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logging::LogMessage(__FILE__, __LINE__, _result).stream() |
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// Build the error message string. This is separate from the "Impl" |
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// function template because it is not performance critical and so can |
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// be out of line, while the "Impl" code should be inline. Caller |
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// takes ownership of the returned string. |
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template<class t1, class t2> |
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std::string* MakeCheckOpString(const t1& v1, const t2& v2, const char* names) { |
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std::ostringstream ss; |
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ss << names << " (" << v1 << " vs. " << v2 << ")"; |
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std::string* msg = new std::string(ss.str()); |
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return msg; |
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} |
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// MSVC doesn't like complex extern templates and DLLs. |
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#if !defined(COMPILER_MSVC) |
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// Commonly used instantiations of MakeCheckOpString<>. Explicitly instantiated |
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// in logging.cc. |
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extern template BASE_EXPORT std::string* MakeCheckOpString<int, int>( |
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const int&, const int&, const char* names); |
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extern template BASE_EXPORT |
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std::string* MakeCheckOpString<unsigned long, unsigned long>( |
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const unsigned long&, const unsigned long&, const char* names); |
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extern template BASE_EXPORT |
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std::string* MakeCheckOpString<unsigned long, unsigned int>( |
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const unsigned long&, const unsigned int&, const char* names); |
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extern template BASE_EXPORT |
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std::string* MakeCheckOpString<unsigned int, unsigned long>( |
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const unsigned int&, const unsigned long&, const char* names); |
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extern template BASE_EXPORT |
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std::string* MakeCheckOpString<std::string, std::string>( |
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const std::string&, const std::string&, const char* name); |
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#endif |
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// Helper functions for CHECK_OP macro. |
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// The (int, int) specialization works around the issue that the compiler |
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// will not instantiate the template version of the function on values of |
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// unnamed enum type - see comment below. |
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#define DEFINE_CHECK_OP_IMPL(name, op) \ |
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template <class t1, class t2> \ |
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inline std::string* Check##name##Impl(const t1& v1, const t2& v2, \ |
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const char* names) { \ |
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if (v1 op v2) return NULL; \ |
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else return MakeCheckOpString(v1, v2, names); \ |
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} \ |
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inline std::string* Check##name##Impl(int v1, int v2, const char* names) { \ |
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if (v1 op v2) return NULL; \ |
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else return MakeCheckOpString(v1, v2, names); \ |
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} |
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DEFINE_CHECK_OP_IMPL(EQ, ==) |
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DEFINE_CHECK_OP_IMPL(NE, !=) |
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DEFINE_CHECK_OP_IMPL(LE, <=) |
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DEFINE_CHECK_OP_IMPL(LT, < ) |
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DEFINE_CHECK_OP_IMPL(GE, >=) |
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DEFINE_CHECK_OP_IMPL(GT, > ) |
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#undef DEFINE_CHECK_OP_IMPL |
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#define CHECK_EQ(val1, val2) CHECK_OP(EQ, ==, val1, val2) |
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#define CHECK_NE(val1, val2) CHECK_OP(NE, !=, val1, val2) |
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#define CHECK_LE(val1, val2) CHECK_OP(LE, <=, val1, val2) |
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#define CHECK_LT(val1, val2) CHECK_OP(LT, < , val1, val2) |
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#define CHECK_GE(val1, val2) CHECK_OP(GE, >=, val1, val2) |
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#define CHECK_GT(val1, val2) CHECK_OP(GT, > , val1, val2) |
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#if defined(NDEBUG) |
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#define ENABLE_DLOG 0 |
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#else |
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#define ENABLE_DLOG 1 |
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#endif |
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#if defined(NDEBUG) && !defined(DCHECK_ALWAYS_ON) |
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#define DCHECK_IS_ON 0 |
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#else |
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#define DCHECK_IS_ON 1 |
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#endif |
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// Definitions for DLOG et al. |
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#if ENABLE_DLOG |
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#define DLOG_IS_ON(severity) LOG_IS_ON(severity) |
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#define DLOG_IF(severity, condition) LOG_IF(severity, condition) |
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#define DLOG_ASSERT(condition) LOG_ASSERT(condition) |
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#define DPLOG_IF(severity, condition) PLOG_IF(severity, condition) |
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#define DVLOG_IF(verboselevel, condition) VLOG_IF(verboselevel, condition) |
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#define DVPLOG_IF(verboselevel, condition) VPLOG_IF(verboselevel, condition) |
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#else // ENABLE_DLOG |
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// If ENABLE_DLOG is off, we want to avoid emitting any references to |
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// |condition| (which may reference a variable defined only if NDEBUG |
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// is not defined). Contrast this with DCHECK et al., which has |
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// different behavior. |
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#define DLOG_IS_ON(severity) false |
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#define DLOG_IF(severity, condition) EAT_STREAM_PARAMETERS |
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#define DLOG_ASSERT(condition) EAT_STREAM_PARAMETERS |
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#define DPLOG_IF(severity, condition) EAT_STREAM_PARAMETERS |
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#define DVLOG_IF(verboselevel, condition) EAT_STREAM_PARAMETERS |
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#define DVPLOG_IF(verboselevel, condition) EAT_STREAM_PARAMETERS |
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#endif // ENABLE_DLOG |
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// DEBUG_MODE is for uses like |
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// if (DEBUG_MODE) foo.CheckThatFoo(); |
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// instead of |
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// #ifndef NDEBUG |
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// foo.CheckThatFoo(); |
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// #endif |
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// |
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// We tie its state to ENABLE_DLOG. |
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enum { DEBUG_MODE = ENABLE_DLOG }; |
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#undef ENABLE_DLOG |
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#define DLOG(severity) \ |
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LAZY_STREAM(LOG_STREAM(severity), DLOG_IS_ON(severity)) |
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#define DPLOG(severity) \ |
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LAZY_STREAM(PLOG_STREAM(severity), DLOG_IS_ON(severity)) |
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#define DVLOG(verboselevel) DVLOG_IF(verboselevel, VLOG_IS_ON(verboselevel)) |
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#define DVPLOG(verboselevel) DVPLOG_IF(verboselevel, VLOG_IS_ON(verboselevel)) |
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// Definitions for DCHECK et al. |
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#if DCHECK_IS_ON |
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#define COMPACT_GOOGLE_LOG_EX_DCHECK(ClassName, ...) \ |
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COMPACT_GOOGLE_LOG_EX_FATAL(ClassName , ##__VA_ARGS__) |
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#define COMPACT_GOOGLE_LOG_DCHECK COMPACT_GOOGLE_LOG_FATAL |
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const LogSeverity LOG_DCHECK = LOG_FATAL; |
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#else // DCHECK_IS_ON |
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// These are just dummy values. |
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#define COMPACT_GOOGLE_LOG_EX_DCHECK(ClassName, ...) \ |
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COMPACT_GOOGLE_LOG_EX_INFO(ClassName , ##__VA_ARGS__) |
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#define COMPACT_GOOGLE_LOG_DCHECK COMPACT_GOOGLE_LOG_INFO |
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const LogSeverity LOG_DCHECK = LOG_INFO; |
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#endif // DCHECK_IS_ON |
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// DCHECK et al. make sure to reference |condition| regardless of |
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// whether DCHECKs are enabled; this is so that we don't get unused |
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// variable warnings if the only use of a variable is in a DCHECK. |
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// This behavior is different from DLOG_IF et al. |
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#define DCHECK(condition) \ |
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LAZY_STREAM(LOG_STREAM(DCHECK), DCHECK_IS_ON && !(condition)) \ |
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<< "Check failed: " #condition ". " |
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#define DPCHECK(condition) \ |
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LAZY_STREAM(PLOG_STREAM(DCHECK), DCHECK_IS_ON && !(condition)) \ |
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<< "Check failed: " #condition ". " |
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// Helper macro for binary operators. |
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// Don't use this macro directly in your code, use DCHECK_EQ et al below. |
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#define DCHECK_OP(name, op, val1, val2) \ |
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if (DCHECK_IS_ON) \ |
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if (std::string* _result = \ |
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logging::Check##name##Impl((val1), (val2), \ |
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#val1 " " #op " " #val2)) \ |
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logging::LogMessage( \ |
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__FILE__, __LINE__, ::logging::LOG_DCHECK, \ |
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_result).stream() |
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// Equality/Inequality checks - compare two values, and log a |
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// LOG_DCHECK message including the two values when the result is not |
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// as expected. The values must have operator<<(ostream, ...) |
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// defined. |
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// |
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// You may append to the error message like so: |
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// DCHECK_NE(1, 2) << ": The world must be ending!"; |
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// |
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// We are very careful to ensure that each argument is evaluated exactly |
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// once, and that anything which is legal to pass as a function argument is |
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// legal here. In particular, the arguments may be temporary expressions |
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// which will end up being destroyed at the end of the apparent statement, |
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// for example: |
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// DCHECK_EQ(string("abc")[1], 'b'); |
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// |
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// WARNING: These may not compile correctly if one of the arguments is a pointer |
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// and the other is NULL. To work around this, simply static_cast NULL to the |
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// type of the desired pointer. |
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#define DCHECK_EQ(val1, val2) DCHECK_OP(EQ, ==, val1, val2) |
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#define DCHECK_NE(val1, val2) DCHECK_OP(NE, !=, val1, val2) |
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#define DCHECK_LE(val1, val2) DCHECK_OP(LE, <=, val1, val2) |
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#define DCHECK_LT(val1, val2) DCHECK_OP(LT, < , val1, val2) |
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#define DCHECK_GE(val1, val2) DCHECK_OP(GE, >=, val1, val2) |
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#define DCHECK_GT(val1, val2) DCHECK_OP(GT, > , val1, val2) |
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#if defined(NDEBUG) && defined(OS_CHROMEOS) |
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#define NOTREACHED() LOG(ERROR) << "NOTREACHED() hit in " << \ |
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__FUNCTION__ << ". " |
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#else |
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#define NOTREACHED() DCHECK(false) |
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#endif |
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// Redefine the standard assert to use our nice log files |
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#undef assert |
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#define assert(x) DLOG_ASSERT(x) |
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// This class more or less represents a particular log message. You |
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// create an instance of LogMessage and then stream stuff to it. |
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// When you finish streaming to it, ~LogMessage is called and the |
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// full message gets streamed to the appropriate destination. |
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// |
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// You shouldn't actually use LogMessage's constructor to log things, |
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// though. You should use the LOG() macro (and variants thereof) |
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// above. |
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class BASE_EXPORT LogMessage { |
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public: |
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// Used for LOG(severity). |
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LogMessage(const char* file, int line, LogSeverity severity); |
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// Used for CHECK_EQ(), etc. Takes ownership of the given string. |
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// Implied severity = LOG_FATAL. |
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LogMessage(const char* file, int line, std::string* result); |
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// Used for DCHECK_EQ(), etc. Takes ownership of the given string. |
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LogMessage(const char* file, int line, LogSeverity severity, |
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std::string* result); |
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~LogMessage(); |
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std::ostream& stream() { return stream_; } |
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private: |
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void Init(const char* file, int line); |
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|
|
LogSeverity severity_; |
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std::ostringstream stream_; |
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size_t message_start_; // Offset of the start of the message (past prefix |
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// info). |
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// The file and line information passed in to the constructor. |
|
const char* file_; |
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const int line_; |
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|
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#if defined(OS_WIN) |
|
// Stores the current value of GetLastError in the constructor and restores |
|
// it in the destructor by calling SetLastError. |
|
// This is useful since the LogMessage class uses a lot of Win32 calls |
|
// that will lose the value of GLE and the code that called the log function |
|
// will have lost the thread error value when the log call returns. |
|
class SaveLastError { |
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public: |
|
SaveLastError(); |
|
~SaveLastError(); |
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|
|
unsigned long get_error() const { return last_error_; } |
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|
|
protected: |
|
unsigned long last_error_; |
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}; |
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|
|
SaveLastError last_error_; |
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#endif |
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|
|
DISALLOW_COPY_AND_ASSIGN(LogMessage); |
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}; |
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|
|
// A non-macro interface to the log facility; (useful |
|
// when the logging level is not a compile-time constant). |
|
inline void LogAtLevel(int const log_level, std::string const &msg) { |
|
LogMessage(__FILE__, __LINE__, log_level).stream() << msg; |
|
} |
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|
|
// This class is used to explicitly ignore values in the conditional |
|
// logging macros. This avoids compiler warnings like "value computed |
|
// is not used" and "statement has no effect". |
|
class LogMessageVoidify { |
|
public: |
|
LogMessageVoidify() { } |
|
// This has to be an operator with a precedence lower than << but |
|
// higher than ?: |
|
void operator&(std::ostream&) { } |
|
}; |
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|
|
#if defined(OS_WIN) |
|
typedef unsigned long SystemErrorCode; |
|
#elif defined(OS_POSIX) |
|
typedef int SystemErrorCode; |
|
#endif |
|
|
|
// Alias for ::GetLastError() on Windows and errno on POSIX. Avoids having to |
|
// pull in windows.h just for GetLastError() and DWORD. |
|
BASE_EXPORT SystemErrorCode GetLastSystemErrorCode(); |
|
BASE_EXPORT std::string SystemErrorCodeToString(SystemErrorCode error_code); |
|
|
|
#if defined(OS_WIN) |
|
// Appends a formatted system message of the GetLastError() type. |
|
class BASE_EXPORT Win32ErrorLogMessage { |
|
public: |
|
Win32ErrorLogMessage(const char* file, |
|
int line, |
|
LogSeverity severity, |
|
SystemErrorCode err); |
|
|
|
// Appends the error message before destructing the encapsulated class. |
|
~Win32ErrorLogMessage(); |
|
|
|
std::ostream& stream() { return log_message_.stream(); } |
|
|
|
private: |
|
SystemErrorCode err_; |
|
LogMessage log_message_; |
|
|
|
DISALLOW_COPY_AND_ASSIGN(Win32ErrorLogMessage); |
|
}; |
|
#elif defined(OS_POSIX) |
|
// Appends a formatted system message of the errno type |
|
class BASE_EXPORT ErrnoLogMessage { |
|
public: |
|
ErrnoLogMessage(const char* file, |
|
int line, |
|
LogSeverity severity, |
|
SystemErrorCode err); |
|
|
|
// Appends the error message before destructing the encapsulated class. |
|
~ErrnoLogMessage(); |
|
|
|
std::ostream& stream() { return log_message_.stream(); } |
|
|
|
private: |
|
SystemErrorCode err_; |
|
LogMessage log_message_; |
|
|
|
DISALLOW_COPY_AND_ASSIGN(ErrnoLogMessage); |
|
}; |
|
#endif // OS_WIN |
|
|
|
// Closes the log file explicitly if open. |
|
// NOTE: Since the log file is opened as necessary by the action of logging |
|
// statements, there's no guarantee that it will stay closed |
|
// after this call. |
|
BASE_EXPORT void CloseLogFile(); |
|
|
|
// Async signal safe logging mechanism. |
|
BASE_EXPORT void RawLog(int level, const char* message); |
|
|
|
#define RAW_LOG(level, message) logging::RawLog(logging::LOG_ ## level, message) |
|
|
|
#define RAW_CHECK(condition) \ |
|
do { \ |
|
if (!(condition)) \ |
|
logging::RawLog(logging::LOG_FATAL, "Check failed: " #condition "\n"); \ |
|
} while (0) |
|
|
|
#if defined(OS_WIN) |
|
// Returns the default log file path. |
|
BASE_EXPORT std::wstring GetLogFileFullPath(); |
|
#endif |
|
|
|
} // namespace logging |
|
|
|
// Note that "The behavior of a C++ program is undefined if it adds declarations |
|
// or definitions to namespace std or to a namespace within namespace std unless |
|
// otherwise specified." --C++11[namespace.std] |
|
// |
|
// We've checked that this particular definition has the intended behavior on |
|
// our implementations, but it's prone to breaking in the future, and please |
|
// don't imitate this in your own definitions without checking with some |
|
// standard library experts. |
|
namespace std { |
|
// These functions are provided as a convenience for logging, which is where we |
|
// use streams (it is against Google style to use streams in other places). It |
|
// is designed to allow you to emit non-ASCII Unicode strings to the log file, |
|
// which is normally ASCII. It is relatively slow, so try not to use it for |
|
// common cases. Non-ASCII characters will be converted to UTF-8 by these |
|
// operators. |
|
BASE_EXPORT std::ostream& operator<<(std::ostream& out, const wchar_t* wstr); |
|
inline std::ostream& operator<<(std::ostream& out, const std::wstring& wstr) { |
|
return out << wstr.c_str(); |
|
} |
|
} // namespace std |
|
|
|
// The NOTIMPLEMENTED() macro annotates codepaths which have |
|
// not been implemented yet. |
|
// |
|
// The implementation of this macro is controlled by NOTIMPLEMENTED_POLICY: |
|
// 0 -- Do nothing (stripped by compiler) |
|
// 1 -- Warn at compile time |
|
// 2 -- Fail at compile time |
|
// 3 -- Fail at runtime (DCHECK) |
|
// 4 -- [default] LOG(ERROR) at runtime |
|
// 5 -- LOG(ERROR) at runtime, only once per call-site |
|
|
|
#ifndef NOTIMPLEMENTED_POLICY |
|
#if defined(OS_ANDROID) && defined(OFFICIAL_BUILD) |
|
#define NOTIMPLEMENTED_POLICY 0 |
|
#else |
|
// WebView: Hide NOTIMPLEMENTED entirely in Android release branch. |
|
#define NOTIMPLEMENTED_POLICY 0 |
|
#endif |
|
#endif |
|
|
|
#if defined(COMPILER_GCC) |
|
// On Linux, with GCC, we can use __PRETTY_FUNCTION__ to get the demangled name |
|
// of the current function in the NOTIMPLEMENTED message. |
|
#define NOTIMPLEMENTED_MSG "Not implemented reached in " << __PRETTY_FUNCTION__ |
|
#else |
|
#define NOTIMPLEMENTED_MSG "NOT IMPLEMENTED" |
|
#endif |
|
|
|
#if NOTIMPLEMENTED_POLICY == 0 |
|
#define NOTIMPLEMENTED() EAT_STREAM_PARAMETERS |
|
#elif NOTIMPLEMENTED_POLICY == 1 |
|
// TODO, figure out how to generate a warning |
|
#define NOTIMPLEMENTED() COMPILE_ASSERT(false, NOT_IMPLEMENTED) |
|
#elif NOTIMPLEMENTED_POLICY == 2 |
|
#define NOTIMPLEMENTED() COMPILE_ASSERT(false, NOT_IMPLEMENTED) |
|
#elif NOTIMPLEMENTED_POLICY == 3 |
|
#define NOTIMPLEMENTED() NOTREACHED() |
|
#elif NOTIMPLEMENTED_POLICY == 4 |
|
#define NOTIMPLEMENTED() LOG(ERROR) << NOTIMPLEMENTED_MSG |
|
#elif NOTIMPLEMENTED_POLICY == 5 |
|
#define NOTIMPLEMENTED() do {\ |
|
static bool logged_once = false;\ |
|
LOG_IF(ERROR, !logged_once) << NOTIMPLEMENTED_MSG;\ |
|
logged_once = true;\ |
|
} while(0);\ |
|
EAT_STREAM_PARAMETERS |
|
#endif |
|
|
|
#endif // BASE_LOGGING_H_
|
|
|