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441 lines
16 KiB
441 lines
16 KiB
/* |
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* Copyright (C) 2015 The Android Open Source Project |
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* |
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* Licensed under the Apache License, Version 2.0 (the "License"); |
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* you may not use this file except in compliance with the License. |
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* You may obtain a copy of the License at |
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* |
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* http://www.apache.org/licenses/LICENSE-2.0 |
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* |
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* Unless required by applicable law or agreed to in writing, software |
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* distributed under the License is distributed on an "AS IS" BASIS, |
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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* See the License for the specific language governing permissions and |
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* limitations under the License. |
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*/ |
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#ifndef ANDROID_BASE_LOGGING_H |
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#define ANDROID_BASE_LOGGING_H |
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// |
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// Google-style C++ logging. |
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// |
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// This header provides a C++ stream interface to logging. |
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// |
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// To log: |
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// |
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// LOG(INFO) << "Some text; " << some_value; |
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// |
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// Replace `INFO` with any severity from `enum LogSeverity`. |
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// |
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// To log the result of a failed function and include the string |
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// representation of `errno` at the end: |
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// |
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// PLOG(ERROR) << "Write failed"; |
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// |
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// The output will be something like `Write failed: I/O error`. |
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// Remember this as 'P' as in perror(3). |
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// |
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// To output your own types, simply implement operator<< as normal. |
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// |
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// By default, output goes to logcat on Android and stderr on the host. |
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// A process can use `SetLogger` to decide where all logging goes. |
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// Implementations are provided for logcat, stderr, and dmesg. |
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// This header also provides assertions: |
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// |
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// CHECK(must_be_true); |
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// CHECK_EQ(a, b) << z_is_interesting_too; |
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// NOTE: For Windows, you must include logging.h after windows.h to allow the |
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// following code to suppress the evil ERROR macro: |
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#ifdef _WIN32 |
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// windows.h includes wingdi.h which defines an evil macro ERROR. |
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#ifdef ERROR |
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#undef ERROR |
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#endif |
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#endif |
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#include <functional> |
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#include <memory> |
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#include <ostream> |
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#include "android-base/macros.h" |
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namespace android { |
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namespace base { |
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enum LogSeverity { |
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VERBOSE, |
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DEBUG, |
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INFO, |
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WARNING, |
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ERROR, |
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FATAL_WITHOUT_ABORT, |
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FATAL, |
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}; |
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enum LogId { |
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DEFAULT, |
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MAIN, |
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SYSTEM, |
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}; |
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using LogFunction = std::function<void(LogId, LogSeverity, const char*, const char*, |
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unsigned int, const char*)>; |
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using AbortFunction = std::function<void(const char*)>; |
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void KernelLogger(LogId, LogSeverity, const char*, const char*, unsigned int, const char*); |
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void StderrLogger(LogId, LogSeverity, const char*, const char*, unsigned int, const char*); |
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void DefaultAborter(const char* abort_message); |
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#ifdef __ANDROID__ |
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// We expose this even though it is the default because a user that wants to |
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// override the default log buffer will have to construct this themselves. |
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class LogdLogger { |
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public: |
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explicit LogdLogger(LogId default_log_id = android::base::MAIN); |
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void operator()(LogId, LogSeverity, const char* tag, const char* file, |
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unsigned int line, const char* message); |
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private: |
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LogId default_log_id_; |
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}; |
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#endif |
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// Configure logging based on ANDROID_LOG_TAGS environment variable. |
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// We need to parse a string that looks like |
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// |
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// *:v jdwp:d dalvikvm:d dalvikvm-gc:i dalvikvmi:i |
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// |
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// The tag (or '*' for the global level) comes first, followed by a colon and a |
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// letter indicating the minimum priority level we're expected to log. This can |
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// be used to reveal or conceal logs with specific tags. |
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#ifdef __ANDROID__ |
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#define INIT_LOGGING_DEFAULT_LOGGER LogdLogger() |
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#else |
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#define INIT_LOGGING_DEFAULT_LOGGER StderrLogger |
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#endif |
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void InitLogging(char* argv[], |
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LogFunction&& logger = INIT_LOGGING_DEFAULT_LOGGER, |
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AbortFunction&& aborter = DefaultAborter); |
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#undef INIT_LOGGING_DEFAULT_LOGGER |
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// Replace the current logger. |
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void SetLogger(LogFunction&& logger); |
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// Replace the current aborter. |
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void SetAborter(AbortFunction&& aborter); |
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class ErrnoRestorer { |
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public: |
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ErrnoRestorer() |
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: saved_errno_(errno) { |
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} |
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~ErrnoRestorer() { |
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errno = saved_errno_; |
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} |
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// Allow this object to be used as part of && operation. |
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operator bool() const { |
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return true; |
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} |
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private: |
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const int saved_errno_; |
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DISALLOW_COPY_AND_ASSIGN(ErrnoRestorer); |
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}; |
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// A helper macro that produces an expression that accepts both a qualified name and an |
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// unqualified name for a LogSeverity, and returns a LogSeverity value. |
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// Note: DO NOT USE DIRECTLY. This is an implementation detail. |
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#define SEVERITY_LAMBDA(severity) ([&]() { \ |
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using ::android::base::VERBOSE; \ |
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using ::android::base::DEBUG; \ |
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using ::android::base::INFO; \ |
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using ::android::base::WARNING; \ |
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using ::android::base::ERROR; \ |
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using ::android::base::FATAL_WITHOUT_ABORT; \ |
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using ::android::base::FATAL; \ |
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return (severity); }()) |
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#ifdef __clang_analyzer__ |
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// Clang's static analyzer does not see the conditional statement inside |
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// LogMessage's destructor that will abort on FATAL severity. |
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#define ABORT_AFTER_LOG_FATAL for (;; abort()) |
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struct LogAbortAfterFullExpr { |
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~LogAbortAfterFullExpr() __attribute__((noreturn)) { abort(); } |
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explicit operator bool() const { return false; } |
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}; |
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// Provides an expression that evaluates to the truthiness of `x`, automatically |
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// aborting if `c` is true. |
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#define ABORT_AFTER_LOG_EXPR_IF(c, x) (((c) && ::android::base::LogAbortAfterFullExpr()) || (x)) |
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// Note to the static analyzer that we always execute FATAL logs in practice. |
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#define MUST_LOG_MESSAGE(severity) (SEVERITY_LAMBDA(severity) == ::android::base::FATAL) |
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#else |
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#define ABORT_AFTER_LOG_FATAL |
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#define ABORT_AFTER_LOG_EXPR_IF(c, x) (x) |
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#define MUST_LOG_MESSAGE(severity) false |
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#endif |
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#define ABORT_AFTER_LOG_FATAL_EXPR(x) ABORT_AFTER_LOG_EXPR_IF(true, x) |
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// Defines whether the given severity will be logged or silently swallowed. |
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#define WOULD_LOG(severity) \ |
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(UNLIKELY((SEVERITY_LAMBDA(severity)) >= ::android::base::GetMinimumLogSeverity()) || \ |
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MUST_LOG_MESSAGE(severity)) |
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// Get an ostream that can be used for logging at the given severity and to the default |
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// destination. |
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// |
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// Notes: |
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// 1) This will not check whether the severity is high enough. One should use WOULD_LOG to filter |
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// usage manually. |
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// 2) This does not save and restore errno. |
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#define LOG_STREAM(severity) LOG_STREAM_TO(DEFAULT, severity) |
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// Get an ostream that can be used for logging at the given severity and to the |
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// given destination. The same notes as for LOG_STREAM apply. |
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#define LOG_STREAM_TO(dest, severity) \ |
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::android::base::LogMessage(__FILE__, __LINE__, \ |
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::android::base::dest, \ |
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SEVERITY_LAMBDA(severity), -1).stream() |
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// Logs a message to logcat on Android otherwise to stderr. If the severity is |
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// FATAL it also causes an abort. For example: |
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// |
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// LOG(FATAL) << "We didn't expect to reach here"; |
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#define LOG(severity) LOG_TO(DEFAULT, severity) |
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// Checks if we want to log something, and sets up appropriate RAII objects if |
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// so. |
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// Note: DO NOT USE DIRECTLY. This is an implementation detail. |
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#define LOGGING_PREAMBLE(severity) \ |
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(WOULD_LOG(severity) && \ |
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ABORT_AFTER_LOG_EXPR_IF((SEVERITY_LAMBDA(severity)) == ::android::base::FATAL, true) && \ |
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::android::base::ErrnoRestorer()) |
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// Logs a message to logcat with the specified log ID on Android otherwise to |
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// stderr. If the severity is FATAL it also causes an abort. |
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// Use an expression here so we can support the << operator following the macro, |
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// like "LOG(DEBUG) << xxx;". |
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#define LOG_TO(dest, severity) LOGGING_PREAMBLE(severity) && LOG_STREAM_TO(dest, severity) |
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// A variant of LOG that also logs the current errno value. To be used when |
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// library calls fail. |
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#define PLOG(severity) PLOG_TO(DEFAULT, severity) |
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// Behaves like PLOG, but logs to the specified log ID. |
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#define PLOG_TO(dest, severity) \ |
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LOGGING_PREAMBLE(severity) && \ |
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::android::base::LogMessage(__FILE__, __LINE__, ::android::base::dest, \ |
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SEVERITY_LAMBDA(severity), errno) \ |
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.stream() |
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// Marker that code is yet to be implemented. |
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#define UNIMPLEMENTED(level) \ |
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LOG(level) << __PRETTY_FUNCTION__ << " unimplemented " |
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// Check whether condition x holds and LOG(FATAL) if not. The value of the |
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// expression x is only evaluated once. Extra logging can be appended using << |
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// after. For example: |
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// |
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// CHECK(false == true) results in a log message of |
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// "Check failed: false == true". |
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#define CHECK(x) \ |
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LIKELY((x)) || ABORT_AFTER_LOG_FATAL_EXPR(false) || \ |
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::android::base::LogMessage( \ |
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__FILE__, __LINE__, ::android::base::DEFAULT, ::android::base::FATAL, \ |
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-1).stream() \ |
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<< "Check failed: " #x << " " |
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// Helper for CHECK_xx(x,y) macros. |
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#define CHECK_OP(LHS, RHS, OP) \ |
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for (auto _values = ::android::base::MakeEagerEvaluator(LHS, RHS); \ |
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UNLIKELY(!(_values.lhs OP _values.rhs)); \ |
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/* empty */) \ |
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ABORT_AFTER_LOG_FATAL \ |
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::android::base::LogMessage(__FILE__, __LINE__, ::android::base::DEFAULT, \ |
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::android::base::FATAL, -1).stream() \ |
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<< "Check failed: " << #LHS << " " << #OP << " " << #RHS \ |
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<< " (" #LHS "=" << _values.lhs << ", " #RHS "=" << _values.rhs << ") " |
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// Check whether a condition holds between x and y, LOG(FATAL) if not. The value |
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// of the expressions x and y is evaluated once. Extra logging can be appended |
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// using << after. For example: |
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// |
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// CHECK_NE(0 == 1, false) results in |
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// "Check failed: false != false (0==1=false, false=false) ". |
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#define CHECK_EQ(x, y) CHECK_OP(x, y, == ) |
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#define CHECK_NE(x, y) CHECK_OP(x, y, != ) |
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#define CHECK_LE(x, y) CHECK_OP(x, y, <= ) |
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#define CHECK_LT(x, y) CHECK_OP(x, y, < ) |
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#define CHECK_GE(x, y) CHECK_OP(x, y, >= ) |
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#define CHECK_GT(x, y) CHECK_OP(x, y, > ) |
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// Helper for CHECK_STRxx(s1,s2) macros. |
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#define CHECK_STROP(s1, s2, sense) \ |
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while (UNLIKELY((strcmp(s1, s2) == 0) != (sense))) \ |
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ABORT_AFTER_LOG_FATAL \ |
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::android::base::LogMessage(__FILE__, __LINE__, ::android::base::DEFAULT, \ |
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::android::base::FATAL, -1).stream() \ |
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<< "Check failed: " << "\"" << (s1) << "\"" \ |
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<< ((sense) ? " == " : " != ") << "\"" << (s2) << "\"" |
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// Check for string (const char*) equality between s1 and s2, LOG(FATAL) if not. |
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#define CHECK_STREQ(s1, s2) CHECK_STROP(s1, s2, true) |
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#define CHECK_STRNE(s1, s2) CHECK_STROP(s1, s2, false) |
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// Perform the pthread function call(args), LOG(FATAL) on error. |
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#define CHECK_PTHREAD_CALL(call, args, what) \ |
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do { \ |
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int rc = call args; \ |
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if (rc != 0) { \ |
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errno = rc; \ |
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ABORT_AFTER_LOG_FATAL \ |
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PLOG(FATAL) << #call << " failed for " << (what); \ |
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} \ |
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} while (false) |
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// CHECK that can be used in a constexpr function. For example: |
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// |
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// constexpr int half(int n) { |
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// return |
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// DCHECK_CONSTEXPR(n >= 0, , 0) |
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// CHECK_CONSTEXPR((n & 1) == 0), |
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// << "Extra debugging output: n = " << n, 0) |
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// n / 2; |
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// } |
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#define CHECK_CONSTEXPR(x, out, dummy) \ |
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(UNLIKELY(!(x))) \ |
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? (LOG(FATAL) << "Check failed: " << #x out, dummy) \ |
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: |
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// DCHECKs are debug variants of CHECKs only enabled in debug builds. Generally |
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// CHECK should be used unless profiling identifies a CHECK as being in |
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// performance critical code. |
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#if defined(NDEBUG) && !defined(__clang_analyzer__) |
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static constexpr bool kEnableDChecks = false; |
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#else |
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static constexpr bool kEnableDChecks = true; |
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#endif |
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#define DCHECK(x) \ |
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if (::android::base::kEnableDChecks) CHECK(x) |
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#define DCHECK_EQ(x, y) \ |
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if (::android::base::kEnableDChecks) CHECK_EQ(x, y) |
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#define DCHECK_NE(x, y) \ |
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if (::android::base::kEnableDChecks) CHECK_NE(x, y) |
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#define DCHECK_LE(x, y) \ |
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if (::android::base::kEnableDChecks) CHECK_LE(x, y) |
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#define DCHECK_LT(x, y) \ |
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if (::android::base::kEnableDChecks) CHECK_LT(x, y) |
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#define DCHECK_GE(x, y) \ |
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if (::android::base::kEnableDChecks) CHECK_GE(x, y) |
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#define DCHECK_GT(x, y) \ |
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if (::android::base::kEnableDChecks) CHECK_GT(x, y) |
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#define DCHECK_STREQ(s1, s2) \ |
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if (::android::base::kEnableDChecks) CHECK_STREQ(s1, s2) |
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#define DCHECK_STRNE(s1, s2) \ |
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if (::android::base::kEnableDChecks) CHECK_STRNE(s1, s2) |
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#if defined(NDEBUG) && !defined(__clang_analyzer__) |
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#define DCHECK_CONSTEXPR(x, out, dummy) |
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#else |
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#define DCHECK_CONSTEXPR(x, out, dummy) CHECK_CONSTEXPR(x, out, dummy) |
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#endif |
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// Temporary class created to evaluate the LHS and RHS, used with |
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// MakeEagerEvaluator to infer the types of LHS and RHS. |
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template <typename LHS, typename RHS> |
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struct EagerEvaluator { |
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constexpr EagerEvaluator(LHS l, RHS r) : lhs(l), rhs(r) { |
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} |
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LHS lhs; |
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RHS rhs; |
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}; |
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// Helper function for CHECK_xx. |
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template <typename LHS, typename RHS> |
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constexpr EagerEvaluator<LHS, RHS> MakeEagerEvaluator(LHS lhs, RHS rhs) { |
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return EagerEvaluator<LHS, RHS>(lhs, rhs); |
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} |
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// Explicitly instantiate EagerEvalue for pointers so that char*s aren't treated |
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// as strings. To compare strings use CHECK_STREQ and CHECK_STRNE. We rely on |
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// signed/unsigned warnings to protect you against combinations not explicitly |
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// listed below. |
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#define EAGER_PTR_EVALUATOR(T1, T2) \ |
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template <> \ |
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struct EagerEvaluator<T1, T2> { \ |
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EagerEvaluator(T1 l, T2 r) \ |
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: lhs(reinterpret_cast<const void*>(l)), \ |
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rhs(reinterpret_cast<const void*>(r)) { \ |
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} \ |
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const void* lhs; \ |
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const void* rhs; \ |
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} |
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EAGER_PTR_EVALUATOR(const char*, const char*); |
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EAGER_PTR_EVALUATOR(const char*, char*); |
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EAGER_PTR_EVALUATOR(char*, const char*); |
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EAGER_PTR_EVALUATOR(char*, char*); |
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EAGER_PTR_EVALUATOR(const unsigned char*, const unsigned char*); |
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EAGER_PTR_EVALUATOR(const unsigned char*, unsigned char*); |
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EAGER_PTR_EVALUATOR(unsigned char*, const unsigned char*); |
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EAGER_PTR_EVALUATOR(unsigned char*, unsigned char*); |
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EAGER_PTR_EVALUATOR(const signed char*, const signed char*); |
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EAGER_PTR_EVALUATOR(const signed char*, signed char*); |
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EAGER_PTR_EVALUATOR(signed char*, const signed char*); |
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EAGER_PTR_EVALUATOR(signed char*, signed char*); |
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// Data for the log message, not stored in LogMessage to avoid increasing the |
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// stack size. |
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class LogMessageData; |
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// A LogMessage is a temporarily scoped object used by LOG and the unlikely part |
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// of a CHECK. The destructor will abort if the severity is FATAL. |
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class LogMessage { |
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public: |
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LogMessage(const char* file, unsigned int line, LogId id, |
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LogSeverity severity, int error); |
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~LogMessage(); |
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// Returns the stream associated with the message, the LogMessage performs |
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// output when it goes out of scope. |
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std::ostream& stream(); |
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// The routine that performs the actual logging. |
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static void LogLine(const char* file, unsigned int line, LogId id, |
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LogSeverity severity, const char* msg); |
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private: |
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const std::unique_ptr<LogMessageData> data_; |
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DISALLOW_COPY_AND_ASSIGN(LogMessage); |
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}; |
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// Get the minimum severity level for logging. |
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LogSeverity GetMinimumLogSeverity(); |
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// Set the minimum severity level for logging, returning the old severity. |
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LogSeverity SetMinimumLogSeverity(LogSeverity new_severity); |
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// Allows to temporarily change the minimum severity level for logging. |
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class ScopedLogSeverity { |
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public: |
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explicit ScopedLogSeverity(LogSeverity level); |
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~ScopedLogSeverity(); |
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private: |
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LogSeverity old_; |
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}; |
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} // namespace base |
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} // namespace android |
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#endif // ANDROID_BASE_LOGGING_H
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