/src/abseil-cpp/absl/log/internal/log_message.cc
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1  |  | //  | 
2  |  | // Copyright 2022 The Abseil Authors.  | 
3  |  | //  | 
4  |  | // Licensed under the Apache License, Version 2.0 (the "License");  | 
5  |  | // you may not use this file except in compliance with the License.  | 
6  |  | // You may obtain a copy of the License at  | 
7  |  | //  | 
8  |  | //      https://www.apache.org/licenses/LICENSE-2.0  | 
9  |  | //  | 
10  |  | // Unless required by applicable law or agreed to in writing, software  | 
11  |  | // distributed under the License is distributed on an "AS IS" BASIS,  | 
12  |  | // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.  | 
13  |  | // See the License for the specific language governing permissions and  | 
14  |  | // limitations under the License.  | 
15  |  |  | 
16  |  | #include "absl/log/internal/log_message.h"  | 
17  |  |  | 
18  |  | #include <stddef.h>  | 
19  |  | #include <stdint.h>  | 
20  |  | #include <stdlib.h>  | 
21  |  | #include <string.h>  | 
22  |  |  | 
23  |  | #ifndef _WIN32  | 
24  |  | #include <unistd.h>  | 
25  |  | #endif  | 
26  |  |  | 
27  |  | #include <algorithm>  | 
28  |  | #include <array>  | 
29  |  | #include <atomic>  | 
30  |  | #include <ios>  | 
31  |  | #include <memory>  | 
32  |  | #include <ostream>  | 
33  |  | #include <string>  | 
34  |  | #include <string_view>  | 
35  |  | #include <tuple>  | 
36  |  |  | 
37  |  | #include "absl/base/attributes.h"  | 
38  |  | #include "absl/base/config.h"  | 
39  |  | #include "absl/base/internal/raw_logging.h"  | 
40  |  | #include "absl/base/internal/strerror.h"  | 
41  |  | #include "absl/base/internal/sysinfo.h"  | 
42  |  | #include "absl/base/log_severity.h"  | 
43  |  | #include "absl/base/nullability.h"  | 
44  |  | #include "absl/container/inlined_vector.h"  | 
45  |  | #include "absl/debugging/internal/examine_stack.h"  | 
46  |  | #include "absl/log/globals.h"  | 
47  |  | #include "absl/log/internal/append_truncated.h"  | 
48  |  | #include "absl/log/internal/globals.h"  | 
49  |  | #include "absl/log/internal/log_format.h"  | 
50  |  | #include "absl/log/internal/log_sink_set.h"  | 
51  |  | #include "absl/log/internal/nullguard.h"  | 
52  |  | #include "absl/log/internal/proto.h"  | 
53  |  | #include "absl/log/internal/structured_proto.h"  | 
54  |  | #include "absl/log/log_entry.h"  | 
55  |  | #include "absl/log/log_sink.h"  | 
56  |  | #include "absl/log/log_sink_registry.h"  | 
57  |  | #include "absl/memory/memory.h"  | 
58  |  | #include "absl/strings/internal/utf8.h"  | 
59  |  | #include "absl/strings/string_view.h"  | 
60  |  | #include "absl/time/clock.h"  | 
61  |  | #include "absl/time/time.h"  | 
62  |  | #include "absl/types/span.h"  | 
63  |  |  | 
64  |  | extern "C" ABSL_ATTRIBUTE_WEAK void ABSL_INTERNAL_C_SYMBOL(  | 
65  | 0  |     AbslInternalOnFatalLogMessage)(const absl::LogEntry&) { | 
66  |  |   // Default - Do nothing  | 
67  | 0  | }  | 
68  |  |  | 
69  |  | namespace absl { | 
70  |  | ABSL_NAMESPACE_BEGIN  | 
71  |  | namespace log_internal { | 
72  |  |  | 
73  |  | namespace { | 
74  |  | // message `logging.proto.Event`  | 
75  |  | enum EventTag : uint8_t { | 
76  |  |   kFileName = 2,  | 
77  |  |   kFileLine = 3,  | 
78  |  |   kTimeNsecs = 4,  | 
79  |  |   kSeverity = 5,  | 
80  |  |   kThreadId = 6,  | 
81  |  |   kValue = 7,  | 
82  |  |   kSequenceNumber = 9,  | 
83  |  |   kThreadName = 10,  | 
84  |  | };  | 
85  |  |  | 
86  |  | // message `logging.proto.Value`  | 
87  |  | enum ValueTag : uint8_t { | 
88  |  |   kString = 1,  | 
89  |  |   kStringLiteral = 6,  | 
90  |  | };  | 
91  |  |  | 
92  |  | // Decodes a `logging.proto.Value` from `buf` and writes a string representation  | 
93  |  | // into `dst`.  The string representation will be truncated if `dst` is not  | 
94  |  | // large enough to hold it.  Returns false if `dst` has size zero or one (i.e.  | 
95  |  | // sufficient only for a nul-terminator) and no decoded data could be written.  | 
96  |  | // This function may or may not write a nul-terminator into `dst`, and it may or  | 
97  |  | // may not truncate the data it writes in order to do make space for that nul  | 
98  |  | // terminator.  In any case, `dst` will be advanced to point at the byte where  | 
99  |  | // subsequent writes should begin.  | 
100  | 8.23M  | bool PrintValue(absl::Span<char>& dst, absl::Span<const char> buf) { | 
101  | 8.23M  |   if (dst.size() <= 1) return false;  | 
102  | 8.23M  |   ProtoField field;  | 
103  | 16.4M  |   while (field.DecodeFrom(&buf)) { | 
104  | 8.23M  |     switch (field.tag()) { | 
105  | 4.11M  |       case ValueTag::kString:  | 
106  | 8.23M  |       case ValueTag::kStringLiteral:  | 
107  | 8.23M  |         if (field.type() == WireType::kLengthDelimited)  | 
108  | 8.23M  |           if (log_internal::AppendTruncated(field.string_value(), dst) <  | 
109  | 8.23M  |               field.string_value().size())  | 
110  | 0  |             return false;  | 
111  | 8.23M  |     }  | 
112  | 8.23M  |   }  | 
113  | 8.23M  |   return true;  | 
114  | 8.23M  | }  | 
115  |  |  | 
116  |  | // See `logging.proto.Severity`  | 
117  | 4.12M  | int32_t ProtoSeverity(absl::LogSeverity severity, int verbose_level) { | 
118  | 4.12M  |   switch (severity) { | 
119  | 0  |     case absl::LogSeverity::kInfo:  | 
120  | 0  |       if (verbose_level == absl::LogEntry::kNoVerbosityLevel) return 800;  | 
121  | 0  |       return 600 - verbose_level;  | 
122  | 3.98k  |     case absl::LogSeverity::kWarning:  | 
123  | 3.98k  |       return 900;  | 
124  | 4.11M  |     case absl::LogSeverity::kError:  | 
125  | 4.11M  |       return 950;  | 
126  | 0  |     case absl::LogSeverity::kFatal:  | 
127  | 0  |       return 1100;  | 
128  | 0  |     default:  | 
129  | 0  |       return 800;  | 
130  | 4.12M  |   }  | 
131  | 4.12M  | }  | 
132  |  |  | 
133  | 4.12M  | absl::string_view Basename(absl::string_view filepath) { | 
134  |  | #ifdef _WIN32  | 
135  |  |   size_t path = filepath.find_last_of("/\\"); | 
136  |  | #else  | 
137  | 4.12M  |   size_t path = filepath.find_last_of('/'); | 
138  | 4.12M  | #endif  | 
139  | 4.12M  |   if (path != filepath.npos) filepath.remove_prefix(path + 1);  | 
140  | 4.12M  |   return filepath;  | 
141  | 4.12M  | }  | 
142  |  |  | 
143  | 0  | void WriteToString(const char* data, void* str) { | 
144  | 0  |   reinterpret_cast<std::string*>(str)->append(data);  | 
145  | 0  | }  | 
146  | 0  | void WriteToStream(const char* data, void* os) { | 
147  | 0  |   auto* cast_os = static_cast<std::ostream*>(os);  | 
148  | 0  |   *cast_os << data;  | 
149  | 0  | }  | 
150  |  | }  // namespace  | 
151  |  |  | 
152  |  | struct LogMessage::LogMessageData final { | 
153  |  |   LogMessageData(absl::string_view file, int line,  | 
154  |  |                  absl::LogSeverity severity, absl::Time timestamp);  | 
155  |  |   LogMessageData(const LogMessageData&) = delete;  | 
156  |  |   LogMessageData& operator=(const LogMessageData&) = delete;  | 
157  |  |  | 
158  |  |   // `LogEntry` sent to `LogSink`s; contains metadata.  | 
159  |  |   absl::LogEntry entry;  | 
160  |  |  | 
161  |  |   // true => this was first fatal msg  | 
162  |  |   bool first_fatal;  | 
163  |  |   // true => all failures should be quiet  | 
164  |  |   bool fail_quietly;  | 
165  |  |   // true => PLOG was requested  | 
166  |  |   bool is_perror;  | 
167  |  |  | 
168  |  |   // Extra `LogSink`s to log to, in addition to `global_sinks`.  | 
169  |  |   absl::InlinedVector<absl::LogSink* absl_nonnull, 16> extra_sinks;  | 
170  |  |   // If true, log to `extra_sinks` but not to `global_sinks` or hardcoded  | 
171  |  |   // non-sink targets (e.g. stderr, log files).  | 
172  |  |   bool extra_sinks_only;  | 
173  |  |  | 
174  |  |   std::ostream manipulated;  // ostream with IO manipulators applied  | 
175  |  |  | 
176  |  |   // A `logging.proto.Event` proto message is built into `encoded_buf`.  | 
177  |  |   std::array<char, kLogMessageBufferSize> encoded_buf;  | 
178  |  |   // `encoded_remaining()` is the suffix of `encoded_buf` that has not been  | 
179  |  |   // filled yet.  If a datum to be encoded does not fit into  | 
180  |  |   // `encoded_remaining()` and cannot be truncated to fit, the size of  | 
181  |  |   // `encoded_remaining()` will be zeroed to prevent encoding of any further  | 
182  |  |   // data.  Note that in this case its `data()` pointer will not point past the  | 
183  |  |   // end of `encoded_buf`.  | 
184  |  |   // The first use of `encoded_remaining()` is our chance to record metadata  | 
185  |  |   // after any modifications (e.g. by `AtLocation()`) but before any data have  | 
186  |  |   // been recorded.  We want to record metadata before data so that data are  | 
187  |  |   // preferentially truncated if we run out of buffer.  | 
188  | 45.3M  |   absl::Span<char>& encoded_remaining() { | 
189  | 45.3M  |     if (encoded_remaining_actual_do_not_use_directly.data() == nullptr) { | 
190  | 4.12M  |       encoded_remaining_actual_do_not_use_directly =  | 
191  | 4.12M  |           absl::MakeSpan(encoded_buf);  | 
192  | 4.12M  |       InitializeEncodingAndFormat();  | 
193  | 4.12M  |     }  | 
194  | 45.3M  |     return encoded_remaining_actual_do_not_use_directly;  | 
195  | 45.3M  |   }  | 
196  |  |   absl::Span<char> encoded_remaining_actual_do_not_use_directly;  | 
197  |  |  | 
198  |  |   // A formatted string message is built in `string_buf`.  | 
199  |  |   std::array<char, kLogMessageBufferSize> string_buf;  | 
200  |  |  | 
201  |  |   void InitializeEncodingAndFormat();  | 
202  |  |   void FinalizeEncodingAndFormat();  | 
203  |  | };  | 
204  |  |  | 
205  |  | LogMessage::LogMessageData::LogMessageData(absl::string_view file,  | 
206  |  |                                            int line, absl::LogSeverity severity,  | 
207  |  |                                            absl::Time timestamp)  | 
208  | 4.12M  |     : extra_sinks_only(false), manipulated(nullptr) { | 
209  |  |   // Legacy defaults for LOG's ostream:  | 
210  | 4.12M  |   manipulated.setf(std::ios_base::showbase | std::ios_base::boolalpha);  | 
211  | 4.12M  |   entry.full_filename_ = file;  | 
212  | 4.12M  |   entry.base_filename_ = Basename(file);  | 
213  | 4.12M  |   entry.line_ = line;  | 
214  | 4.12M  |   entry.prefix_ = absl::ShouldPrependLogPrefix();  | 
215  | 4.12M  |   entry.severity_ = absl::NormalizeLogSeverity(severity);  | 
216  | 4.12M  |   entry.verbose_level_ = absl::LogEntry::kNoVerbosityLevel;  | 
217  | 4.12M  |   entry.timestamp_ = timestamp;  | 
218  | 4.12M  |   entry.tid_ = absl::base_internal::GetCachedTID();  | 
219  | 4.12M  | }  | 
220  |  |  | 
221  | 4.12M  | void LogMessage::LogMessageData::InitializeEncodingAndFormat() { | 
222  | 4.12M  |   EncodeStringTruncate(EventTag::kFileName, entry.source_filename(),  | 
223  | 4.12M  |                        &encoded_remaining());  | 
224  | 4.12M  |   EncodeVarint(EventTag::kFileLine, entry.source_line(), &encoded_remaining());  | 
225  | 4.12M  |   EncodeVarint(EventTag::kTimeNsecs, absl::ToUnixNanos(entry.timestamp()),  | 
226  | 4.12M  |                &encoded_remaining());  | 
227  | 4.12M  |   EncodeVarint(EventTag::kSeverity,  | 
228  | 4.12M  |                ProtoSeverity(entry.log_severity(), entry.verbosity()),  | 
229  | 4.12M  |                &encoded_remaining());  | 
230  | 4.12M  |   EncodeVarint(EventTag::kThreadId, entry.tid(), &encoded_remaining());  | 
231  | 4.12M  | }  | 
232  |  |  | 
233  | 4.12M  | void LogMessage::LogMessageData::FinalizeEncodingAndFormat() { | 
234  |  |   // Note that `encoded_remaining()` may have zero size without pointing past  | 
235  |  |   // the end of `encoded_buf`, so the difference between `data()` pointers is  | 
236  |  |   // used to compute the size of `encoded_data`.  | 
237  | 4.12M  |   absl::Span<const char> encoded_data(  | 
238  | 4.12M  |       encoded_buf.data(),  | 
239  | 4.12M  |       static_cast<size_t>(encoded_remaining().data() - encoded_buf.data()));  | 
240  |  |   // `string_remaining` is the suffix of `string_buf` that has not been filled  | 
241  |  |   // yet.  | 
242  | 4.12M  |   absl::Span<char> string_remaining(string_buf);  | 
243  |  |   // We may need to write a newline and nul-terminator at the end of the decoded  | 
244  |  |   // string data.  Rather than worry about whether those should overwrite the  | 
245  |  |   // end of the string (if the buffer is full) or be appended, we avoid writing  | 
246  |  |   // into the last two bytes so we always have space to append.  | 
247  | 4.12M  |   string_remaining.remove_suffix(2);  | 
248  | 4.12M  |   entry.prefix_len_ =  | 
249  | 4.12M  |       entry.prefix() ? log_internal::FormatLogPrefix(  | 
250  | 4.12M  |                            entry.log_severity(), entry.timestamp(), entry.tid(),  | 
251  | 4.12M  |                            entry.source_basename(), entry.source_line(),  | 
252  | 4.12M  |                            log_internal::ThreadIsLoggingToLogSink()  | 
253  | 4.12M  |                                ? PrefixFormat::kRaw  | 
254  | 4.12M  |                                : PrefixFormat::kNotRaw,  | 
255  | 4.12M  |                            string_remaining)  | 
256  | 4.12M  |                      : 0;  | 
257  |  |   // Decode data from `encoded_buf` until we run out of data or we run out of  | 
258  |  |   // `string_remaining`.  | 
259  | 4.12M  |   ProtoField field;  | 
260  | 32.9M  |   while (field.DecodeFrom(&encoded_data)) { | 
261  | 28.8M  |     switch (field.tag()) { | 
262  | 8.23M  |       case EventTag::kValue:  | 
263  | 8.23M  |         if (field.type() != WireType::kLengthDelimited) continue;  | 
264  | 8.23M  |         if (PrintValue(string_remaining, field.bytes_value())) continue;  | 
265  | 0  |         break;  | 
266  | 28.8M  |     }  | 
267  | 28.8M  |   }  | 
268  | 4.12M  |   auto chars_written =  | 
269  | 4.12M  |       static_cast<size_t>(string_remaining.data() - string_buf.data());  | 
270  | 4.12M  |     string_buf[chars_written++] = '\n';  | 
271  | 4.12M  |   string_buf[chars_written++] = '\0';  | 
272  | 4.12M  |   entry.text_message_with_prefix_and_newline_and_nul_ =  | 
273  | 4.12M  |       absl::MakeSpan(string_buf).subspan(0, chars_written);  | 
274  | 4.12M  | }  | 
275  |  |  | 
276  |  | LogMessage::LogMessage(const char* absl_nonnull file, int line,  | 
277  |  |                        absl::LogSeverity severity)  | 
278  | 4.12M  |   : LogMessage(absl::string_view(file), line, severity) {} | 
279  |  | LogMessage::LogMessage(absl::string_view file, int line,  | 
280  |  |                        absl::LogSeverity severity)  | 
281  | 4.12M  |     : data_(absl::make_unique<LogMessageData>(file, line, severity,  | 
282  | 4.12M  |                                               absl::Now())) { | 
283  | 4.12M  |   data_->first_fatal = false;  | 
284  | 4.12M  |   data_->is_perror = false;  | 
285  | 4.12M  |   data_->fail_quietly = false;  | 
286  |  |  | 
287  |  |   // This logs a backtrace even if the location is subsequently changed using  | 
288  |  |   // AtLocation.  This quirk, and the behavior when AtLocation is called twice,  | 
289  |  |   // are fixable but probably not worth fixing.  | 
290  | 4.12M  |   LogBacktraceIfNeeded();  | 
291  | 4.12M  | }  | 
292  |  |  | 
293  |  | LogMessage::LogMessage(const char* absl_nonnull file, int line, InfoTag)  | 
294  | 0  |     : LogMessage(file, line, absl::LogSeverity::kInfo) {} | 
295  |  | LogMessage::LogMessage(const char* absl_nonnull file, int line, WarningTag)  | 
296  | 3.98k  |     : LogMessage(file, line, absl::LogSeverity::kWarning) {} | 
297  |  | LogMessage::LogMessage(const char* absl_nonnull file, int line, ErrorTag)  | 
298  | 4.11M  |     : LogMessage(file, line, absl::LogSeverity::kError) {} | 
299  |  |  | 
300  |  | // This cannot go in the header since LogMessageData is defined in this file.  | 
301  | 4.12M  | LogMessage::~LogMessage() = default;  | 
302  |  |  | 
303  | 0  | LogMessage& LogMessage::AtLocation(absl::string_view file, int line) { | 
304  | 0  |   data_->entry.full_filename_ = file;  | 
305  | 0  |   data_->entry.base_filename_ = Basename(file);  | 
306  | 0  |   data_->entry.line_ = line;  | 
307  | 0  |   LogBacktraceIfNeeded();  | 
308  | 0  |   return *this;  | 
309  | 0  | }  | 
310  |  |  | 
311  | 0  | LogMessage& LogMessage::NoPrefix() { | 
312  | 0  |   data_->entry.prefix_ = false;  | 
313  | 0  |   return *this;  | 
314  | 0  | }  | 
315  |  |  | 
316  | 0  | LogMessage& LogMessage::WithVerbosity(int verbose_level) { | 
317  | 0  |   if (verbose_level == absl::LogEntry::kNoVerbosityLevel) { | 
318  | 0  |     data_->entry.verbose_level_ = absl::LogEntry::kNoVerbosityLevel;  | 
319  | 0  |   } else { | 
320  | 0  |     data_->entry.verbose_level_ = std::max(0, verbose_level);  | 
321  | 0  |   }  | 
322  | 0  |   return *this;  | 
323  | 0  | }  | 
324  |  |  | 
325  | 0  | LogMessage& LogMessage::WithTimestamp(absl::Time timestamp) { | 
326  | 0  |   data_->entry.timestamp_ = timestamp;  | 
327  | 0  |   return *this;  | 
328  | 0  | }  | 
329  |  |  | 
330  | 0  | LogMessage& LogMessage::WithThreadID(absl::LogEntry::tid_t tid) { | 
331  | 0  |   data_->entry.tid_ = tid;  | 
332  | 0  |   return *this;  | 
333  | 0  | }  | 
334  |  |  | 
335  | 0  | LogMessage& LogMessage::WithMetadataFrom(const absl::LogEntry& entry) { | 
336  | 0  |   data_->entry.full_filename_ = entry.full_filename_;  | 
337  | 0  |   data_->entry.base_filename_ = entry.base_filename_;  | 
338  | 0  |   data_->entry.line_ = entry.line_;  | 
339  | 0  |   data_->entry.prefix_ = entry.prefix_;  | 
340  | 0  |   data_->entry.severity_ = entry.severity_;  | 
341  | 0  |   data_->entry.verbose_level_ = entry.verbose_level_;  | 
342  | 0  |   data_->entry.timestamp_ = entry.timestamp_;  | 
343  | 0  |   data_->entry.tid_ = entry.tid_;  | 
344  | 0  |   return *this;  | 
345  | 0  | }  | 
346  |  |  | 
347  | 0  | LogMessage& LogMessage::WithPerror() { | 
348  | 0  |   data_->is_perror = true;  | 
349  | 0  |   return *this;  | 
350  | 0  | }  | 
351  |  |  | 
352  | 0  | LogMessage& LogMessage::ToSinkAlso(absl::LogSink* absl_nonnull sink) { | 
353  | 0  |   ABSL_INTERNAL_CHECK(sink, "null LogSink*");  | 
354  | 0  |   data_->extra_sinks.push_back(sink);  | 
355  | 0  |   return *this;  | 
356  | 0  | }  | 
357  |  |  | 
358  | 0  | LogMessage& LogMessage::ToSinkOnly(absl::LogSink* absl_nonnull sink) { | 
359  | 0  |   ABSL_INTERNAL_CHECK(sink, "null LogSink*");  | 
360  | 0  |   data_->extra_sinks.clear();  | 
361  | 0  |   data_->extra_sinks.push_back(sink);  | 
362  | 0  |   data_->extra_sinks_only = true;  | 
363  | 0  |   return *this;  | 
364  | 0  | }  | 
365  |  |  | 
366  |  | #ifdef __ELF__  | 
367  |  | extern "C" void __gcov_dump() ABSL_ATTRIBUTE_WEAK;  | 
368  |  | extern "C" void __gcov_flush() ABSL_ATTRIBUTE_WEAK;  | 
369  |  | #endif  | 
370  |  |  | 
371  | 0  | void LogMessage::FailWithoutStackTrace() { | 
372  |  |   // Now suppress repeated trace logging:  | 
373  | 0  |   log_internal::SetSuppressSigabortTrace(true);  | 
374  |  | #if defined _DEBUG && defined COMPILER_MSVC  | 
375  |  |   // When debugging on windows, avoid the obnoxious dialog.  | 
376  |  |   __debugbreak();  | 
377  |  | #endif  | 
378  |  | 
  | 
379  | 0  | #ifdef __ELF__  | 
380  |  |   // For b/8737634, flush coverage if we are in coverage mode.  | 
381  | 0  |   if (&__gcov_dump != nullptr) { | 
382  | 0  |     __gcov_dump();  | 
383  | 0  |   } else if (&__gcov_flush != nullptr) { | 
384  | 0  |     __gcov_flush();  | 
385  | 0  |   }  | 
386  | 0  | #endif  | 
387  |  | 
  | 
388  | 0  |   abort();  | 
389  | 0  | }  | 
390  |  |  | 
391  | 0  | void LogMessage::FailQuietly() { | 
392  |  |   // _exit. Calling abort() would trigger all sorts of death signal handlers  | 
393  |  |   // and a detailed stack trace. Calling exit() would trigger the onexit  | 
394  |  |   // handlers, including the heap-leak checker, which is guaranteed to fail in  | 
395  |  |   // this case: we probably just new'ed the std::string that we logged.  | 
396  |  |   // Anyway, if you're calling Fail or FailQuietly, you're trying to bail out  | 
397  |  |   // of the program quickly, and it doesn't make much sense for FailQuietly to  | 
398  |  |   // offer different guarantees about exit behavior than Fail does. (And as a  | 
399  |  |   // consequence for QCHECK and CHECK to offer different exit behaviors)  | 
400  | 0  |   _exit(1);  | 
401  | 0  | }  | 
402  |  |  | 
403  | 0  | LogMessage& LogMessage::operator<<(const std::string& v) { | 
404  | 0  |   CopyToEncodedBuffer<StringType::kNotLiteral>(v);  | 
405  | 0  |   return *this;  | 
406  | 0  | }  | 
407  |  |  | 
408  | 0  | LogMessage& LogMessage::operator<<(absl::string_view v) { | 
409  | 0  |   CopyToEncodedBuffer<StringType::kNotLiteral>(v);  | 
410  | 0  |   return *this;  | 
411  | 0  | }  | 
412  |  |  | 
413  | 0  | LogMessage& LogMessage::operator<<(const std::wstring& v) { | 
414  | 0  |   CopyToEncodedBuffer<StringType::kNotLiteral>(v);  | 
415  | 0  |   return *this;  | 
416  | 0  | }  | 
417  |  |  | 
418  | 0  | LogMessage& LogMessage::operator<<(std::wstring_view v) { | 
419  | 0  |   CopyToEncodedBuffer<StringType::kNotLiteral>(v);  | 
420  | 0  |   return *this;  | 
421  | 0  | }  | 
422  |  |  | 
423  |  | template <>  | 
424  |  | LogMessage& LogMessage::operator<< <const wchar_t*>(  | 
425  | 0  |     const wchar_t* absl_nullable const& v) { | 
426  | 0  |   if (v == nullptr) { | 
427  | 0  |     CopyToEncodedBuffer<StringType::kNotLiteral>(  | 
428  | 0  |         absl::string_view(kCharNull.data(), kCharNull.size() - 1));  | 
429  | 0  |   } else { | 
430  | 0  |     CopyToEncodedBuffer<StringType::kNotLiteral>(v);  | 
431  | 0  |   }  | 
432  | 0  |   return *this;  | 
433  | 0  | }  | 
434  |  |  | 
435  | 0  | LogMessage& LogMessage::operator<<(wchar_t v) { | 
436  | 0  |   CopyToEncodedBuffer<StringType::kNotLiteral>(std::wstring_view(&v, 1));  | 
437  | 0  |   return *this;  | 
438  | 0  | }  | 
439  |  |  | 
440  | 0  | LogMessage& LogMessage::operator<<(std::ostream& (*m)(std::ostream& os)) { | 
441  | 0  |   OstreamView view(*data_);  | 
442  | 0  |   data_->manipulated << m;  | 
443  | 0  |   return *this;  | 
444  | 0  | }  | 
445  | 0  | LogMessage& LogMessage::operator<<(std::ios_base& (*m)(std::ios_base& os)) { | 
446  | 0  |   OstreamView view(*data_);  | 
447  | 0  |   data_->manipulated << m;  | 
448  | 0  |   return *this;  | 
449  | 0  | }  | 
450  |  | // NOLINTBEGIN(runtime/int)  | 
451  |  | // NOLINTBEGIN(google-runtime-int)  | 
452  |  | template LogMessage& LogMessage::operator<<(const char& v);  | 
453  |  | template LogMessage& LogMessage::operator<<(const signed char& v);  | 
454  |  | template LogMessage& LogMessage::operator<<(const unsigned char& v);  | 
455  |  | template LogMessage& LogMessage::operator<<(const short& v);  | 
456  |  | template LogMessage& LogMessage::operator<<(const unsigned short& v);  | 
457  |  | template LogMessage& LogMessage::operator<<(const int& v);  | 
458  |  | template LogMessage& LogMessage::operator<<(const unsigned int& v);  | 
459  |  | template LogMessage& LogMessage::operator<<(const long& v);  | 
460  |  | template LogMessage& LogMessage::operator<<(const unsigned long& v);  | 
461  |  | template LogMessage& LogMessage::operator<<(const long long& v);  | 
462  |  | template LogMessage& LogMessage::operator<<(const unsigned long long& v);  | 
463  |  | template LogMessage& LogMessage::operator<<(void* const& v);  | 
464  |  | template LogMessage& LogMessage::operator<<(const void* const& v);  | 
465  |  | template LogMessage& LogMessage::operator<<(const float& v);  | 
466  |  | template LogMessage& LogMessage::operator<<(const double& v);  | 
467  |  | template LogMessage& LogMessage::operator<<(const bool& v);  | 
468  |  | // NOLINTEND(google-runtime-int)  | 
469  |  | // NOLINTEND(runtime/int)  | 
470  |  |  | 
471  | 4.12M  | void LogMessage::Flush() { | 
472  | 4.12M  |   if (data_->entry.log_severity() < absl::MinLogLevel()) return;  | 
473  |  |  | 
474  | 4.12M  |   if (data_->is_perror) { | 
475  | 0  |     InternalStream() << ": " << absl::base_internal::StrError(errno_saver_())  | 
476  | 0  |                      << " [" << errno_saver_() << "]";  | 
477  | 0  |   }  | 
478  |  |  | 
479  |  |   // Have we already seen a fatal message?  | 
480  | 4.12M  |   ABSL_CONST_INIT static std::atomic<bool> seen_fatal(false);  | 
481  | 4.12M  |   if (data_->entry.log_severity() == absl::LogSeverity::kFatal &&  | 
482  | 0  |       absl::log_internal::ExitOnDFatal()) { | 
483  |  |     // Exactly one LOG(FATAL) message is responsible for aborting the process,  | 
484  |  |     // even if multiple threads LOG(FATAL) concurrently.  | 
485  | 0  |     bool expected_seen_fatal = false;  | 
486  | 0  |     if (seen_fatal.compare_exchange_strong(expected_seen_fatal, true,  | 
487  | 0  |                                            std::memory_order_relaxed)) { | 
488  | 0  |       data_->first_fatal = true;  | 
489  | 0  |     }  | 
490  | 0  |   }  | 
491  |  |  | 
492  | 4.12M  |   data_->FinalizeEncodingAndFormat();  | 
493  | 4.12M  |   data_->entry.encoding_ =  | 
494  | 4.12M  |       absl::string_view(data_->encoded_buf.data(),  | 
495  | 4.12M  |                         static_cast<size_t>(data_->encoded_remaining().data() -  | 
496  | 4.12M  |                                             data_->encoded_buf.data()));  | 
497  | 4.12M  |   SendToLog();  | 
498  | 4.12M  | }  | 
499  |  |  | 
500  | 0  | void LogMessage::SetFailQuietly() { data_->fail_quietly = true; } | 
501  |  |  | 
502  |  | LogMessage::OstreamView::OstreamView(LogMessageData& message_data)  | 
503  | 4.11M  |     : data_(message_data), encoded_remaining_copy_(data_.encoded_remaining()) { | 
504  |  |   // This constructor sets the `streambuf` up so that streaming into an attached  | 
505  |  |   // ostream encodes string data in-place.  To do that, we write appropriate  | 
506  |  |   // headers into the buffer using a copy of the buffer view so that we can  | 
507  |  |   // decide not to keep them later if nothing is ever streamed in.  We don't  | 
508  |  |   // know how much data we'll get, but we can use the size of the remaining  | 
509  |  |   // buffer as an upper bound and fill in the right size once we know it.  | 
510  | 4.11M  |   message_start_ =  | 
511  | 4.11M  |       EncodeMessageStart(EventTag::kValue, encoded_remaining_copy_.size(),  | 
512  | 4.11M  |                          &encoded_remaining_copy_);  | 
513  | 4.11M  |   string_start_ =  | 
514  | 4.11M  |       EncodeMessageStart(ValueTag::kString, encoded_remaining_copy_.size(),  | 
515  | 4.11M  |                          &encoded_remaining_copy_);  | 
516  | 4.11M  |   setp(encoded_remaining_copy_.data(),  | 
517  | 4.11M  |        encoded_remaining_copy_.data() + encoded_remaining_copy_.size());  | 
518  | 4.11M  |   data_.manipulated.rdbuf(this);  | 
519  | 4.11M  | }  | 
520  |  |  | 
521  | 4.11M  | LogMessage::OstreamView::~OstreamView() { | 
522  | 4.11M  |   data_.manipulated.rdbuf(nullptr);  | 
523  | 4.11M  |   if (!string_start_.data()) { | 
524  |  |     // The second field header didn't fit.  Whether the first one did or not, we  | 
525  |  |     // shouldn't commit `encoded_remaining_copy_`, and we also need to zero the  | 
526  |  |     // size of `data_->encoded_remaining()` so that no more data are encoded.  | 
527  | 0  |     data_.encoded_remaining().remove_suffix(data_.encoded_remaining().size());  | 
528  | 0  |     return;  | 
529  | 0  |   }  | 
530  | 4.11M  |   const absl::Span<const char> contents(pbase(),  | 
531  | 4.11M  |                                         static_cast<size_t>(pptr() - pbase()));  | 
532  | 4.11M  |   if (contents.empty()) return;  | 
533  | 4.11M  |   encoded_remaining_copy_.remove_prefix(contents.size());  | 
534  | 4.11M  |   EncodeMessageLength(string_start_, &encoded_remaining_copy_);  | 
535  | 4.11M  |   EncodeMessageLength(message_start_, &encoded_remaining_copy_);  | 
536  | 4.11M  |   data_.encoded_remaining() = encoded_remaining_copy_;  | 
537  | 4.11M  | }  | 
538  |  |  | 
539  | 4.11M  | std::ostream& LogMessage::OstreamView::stream() { return data_.manipulated; } | 
540  |  |  | 
541  | 8.24M  | bool LogMessage::IsFatal() const { | 
542  | 8.24M  |   return data_->entry.log_severity() == absl::LogSeverity::kFatal &&  | 
543  | 0  |          absl::log_internal::ExitOnDFatal();  | 
544  | 8.24M  | }  | 
545  |  |  | 
546  | 0  | void LogMessage::PrepareToDie() { | 
547  |  |   // If we log a FATAL message, flush all the log destinations, then toss  | 
548  |  |   // a signal for others to catch. We leave the logs in a state that  | 
549  |  |   // someone else can use them (as long as they flush afterwards)  | 
550  | 0  |   if (data_->first_fatal) { | 
551  |  |     // Notify observers about the upcoming fatal error.  | 
552  | 0  |     ABSL_INTERNAL_C_SYMBOL(AbslInternalOnFatalLogMessage)(data_->entry);  | 
553  | 0  |   }  | 
554  |  | 
  | 
555  | 0  |   if (!data_->fail_quietly) { | 
556  |  |     // Log the message first before we start collecting stack trace.  | 
557  | 0  |     log_internal::LogToSinks(data_->entry, absl::MakeSpan(data_->extra_sinks),  | 
558  | 0  |                              data_->extra_sinks_only);  | 
559  |  |  | 
560  |  |     // `DumpStackTrace` generates an empty string under MSVC.  | 
561  |  |     // Adding the constant prefix here simplifies testing.  | 
562  | 0  |     data_->entry.stacktrace_ = "*** Check failure stack trace: ***\n";  | 
563  | 0  |     debugging_internal::DumpStackTrace(  | 
564  | 0  |         0, log_internal::MaxFramesInLogStackTrace(),  | 
565  | 0  |         log_internal::ShouldSymbolizeLogStackTrace(), WriteToString,  | 
566  | 0  |         &data_->entry.stacktrace_);  | 
567  | 0  |   }  | 
568  | 0  | }  | 
569  |  |  | 
570  | 0  | void LogMessage::Die() { | 
571  | 0  |   absl::FlushLogSinks();  | 
572  |  | 
  | 
573  | 0  |   if (data_->fail_quietly) { | 
574  | 0  |     FailQuietly();  | 
575  | 0  |   } else { | 
576  | 0  |     FailWithoutStackTrace();  | 
577  | 0  |   }  | 
578  | 0  | }  | 
579  |  |  | 
580  | 4.12M  | void LogMessage::SendToLog() { | 
581  | 4.12M  |   if (IsFatal()) PrepareToDie();  | 
582  |  |   // Also log to all registered sinks, even if OnlyLogToStderr() is set.  | 
583  | 4.12M  |   log_internal::LogToSinks(data_->entry, absl::MakeSpan(data_->extra_sinks),  | 
584  | 4.12M  |                            data_->extra_sinks_only);  | 
585  | 4.12M  |   if (IsFatal()) Die();  | 
586  | 4.12M  | }  | 
587  |  |  | 
588  | 4.12M  | void LogMessage::LogBacktraceIfNeeded() { | 
589  | 4.12M  |   if (!absl::log_internal::IsInitialized()) return;  | 
590  |  |  | 
591  | 0  |   if (!absl::log_internal::ShouldLogBacktraceAt(data_->entry.source_basename(),  | 
592  | 0  |                                                 data_->entry.source_line()))  | 
593  | 0  |     return;  | 
594  | 0  |   OstreamView view(*data_);  | 
595  | 0  |   view.stream() << " (stacktrace:\n";  | 
596  | 0  |   debugging_internal::DumpStackTrace(  | 
597  | 0  |       1, log_internal::MaxFramesInLogStackTrace(),  | 
598  | 0  |       log_internal::ShouldSymbolizeLogStackTrace(), WriteToStream,  | 
599  | 0  |       &view.stream());  | 
600  | 0  |   view.stream() << ") ";  | 
601  | 0  | }  | 
602  |  |  | 
603  |  | // Encodes into `data_->encoded_remaining()` a partial `logging.proto.Event`  | 
604  |  | // containing the specified string data using a `Value` field appropriate to  | 
605  |  | // `str_type`.  Truncates `str` if necessary, but emits nothing and marks the  | 
606  |  | // buffer full if  even the field headers do not fit.  | 
607  |  | template <LogMessage::StringType str_type>  | 
608  | 4.12M  | void LogMessage::CopyToEncodedBuffer(absl::string_view str) { | 
609  | 4.12M  |   auto encoded_remaining_copy = data_->encoded_remaining();  | 
610  | 4.12M  |   constexpr uint8_t tag_value = str_type == StringType::kLiteral  | 
611  | 4.12M  |                                     ? ValueTag::kStringLiteral  | 
612  | 4.12M  |                                     : ValueTag::kString;  | 
613  | 4.12M  |   auto start = EncodeMessageStart(  | 
614  | 4.12M  |       EventTag::kValue,  | 
615  | 4.12M  |       BufferSizeFor(tag_value, WireType::kLengthDelimited) + str.size(),  | 
616  | 4.12M  |       &encoded_remaining_copy);  | 
617  |  |   // If the `logging.proto.Event.value` field header did not fit,  | 
618  |  |   // `EncodeMessageStart` will have zeroed `encoded_remaining_copy`'s size and  | 
619  |  |   // `EncodeStringTruncate` will fail too.  | 
620  | 4.12M  |   if (EncodeStringTruncate(tag_value, str, &encoded_remaining_copy)) { | 
621  |  |     // The string may have been truncated, but the field header fit.  | 
622  | 4.12M  |     EncodeMessageLength(start, &encoded_remaining_copy);  | 
623  | 4.12M  |     data_->encoded_remaining() = encoded_remaining_copy;  | 
624  | 4.12M  |   } else { | 
625  |  |     // The field header(s) did not fit; zero `encoded_remaining()` so we don't  | 
626  |  |     // write anything else later.  | 
627  | 0  |     data_->encoded_remaining().remove_suffix(data_->encoded_remaining().size());  | 
628  | 0  |   }  | 
629  | 4.12M  | } void absl::log_internal::LogMessage::CopyToEncodedBuffer<(absl::log_internal::LogMessage::StringType)0>(std::__1::basic_string_view<char, std::__1::char_traits<char> >) Line  | Count  | Source  |  608  | 4.12M  | void LogMessage::CopyToEncodedBuffer(absl::string_view str) { |  609  | 4.12M  |   auto encoded_remaining_copy = data_->encoded_remaining();  |  610  | 4.12M  |   constexpr uint8_t tag_value = str_type == StringType::kLiteral  |  611  | 4.12M  |                                     ? ValueTag::kStringLiteral  |  612  | 4.12M  |                                     : ValueTag::kString;  |  613  | 4.12M  |   auto start = EncodeMessageStart(  |  614  | 4.12M  |       EventTag::kValue,  |  615  | 4.12M  |       BufferSizeFor(tag_value, WireType::kLengthDelimited) + str.size(),  |  616  | 4.12M  |       &encoded_remaining_copy);  |  617  |  |   // If the `logging.proto.Event.value` field header did not fit,  |  618  |  |   // `EncodeMessageStart` will have zeroed `encoded_remaining_copy`'s size and  |  619  |  |   // `EncodeStringTruncate` will fail too.  |  620  | 4.12M  |   if (EncodeStringTruncate(tag_value, str, &encoded_remaining_copy)) { |  621  |  |     // The string may have been truncated, but the field header fit.  |  622  | 4.12M  |     EncodeMessageLength(start, &encoded_remaining_copy);  |  623  | 4.12M  |     data_->encoded_remaining() = encoded_remaining_copy;  |  624  | 4.12M  |   } else { |  625  |  |     // The field header(s) did not fit; zero `encoded_remaining()` so we don't  |  626  |  |     // write anything else later.  |  627  | 0  |     data_->encoded_remaining().remove_suffix(data_->encoded_remaining().size());  |  628  | 0  |   }  |  629  | 4.12M  | }  |  
 Unexecuted instantiation: void absl::log_internal::LogMessage::CopyToEncodedBuffer<(absl::log_internal::LogMessage::StringType)1>(std::__1::basic_string_view<char, std::__1::char_traits<char> >)  | 
630  |  | template void LogMessage::CopyToEncodedBuffer<LogMessage::StringType::kLiteral>(  | 
631  |  |     absl::string_view str);  | 
632  |  | template void LogMessage::CopyToEncodedBuffer<  | 
633  |  |     LogMessage::StringType::kNotLiteral>(absl::string_view str);  | 
634  |  | template <LogMessage::StringType str_type>  | 
635  | 0  | void LogMessage::CopyToEncodedBuffer(char ch, size_t num) { | 
636  | 0  |   auto encoded_remaining_copy = data_->encoded_remaining();  | 
637  | 0  |   constexpr uint8_t tag_value = str_type == StringType::kLiteral  | 
638  | 0  |                                     ? ValueTag::kStringLiteral  | 
639  | 0  |                                     : ValueTag::kString;  | 
640  | 0  |   auto value_start = EncodeMessageStart(  | 
641  | 0  |       EventTag::kValue,  | 
642  | 0  |       BufferSizeFor(tag_value, WireType::kLengthDelimited) + num,  | 
643  | 0  |       &encoded_remaining_copy);  | 
644  | 0  |   auto str_start = EncodeMessageStart(tag_value, num, &encoded_remaining_copy);  | 
645  | 0  |   if (str_start.data()) { | 
646  |  |     // The field headers fit.  | 
647  | 0  |     log_internal::AppendTruncated(ch, num, encoded_remaining_copy);  | 
648  | 0  |     EncodeMessageLength(str_start, &encoded_remaining_copy);  | 
649  | 0  |     EncodeMessageLength(value_start, &encoded_remaining_copy);  | 
650  | 0  |     data_->encoded_remaining() = encoded_remaining_copy;  | 
651  | 0  |   } else { | 
652  |  |     // The field header(s) did not fit; zero `encoded_remaining()` so we don't  | 
653  |  |     // write anything else later.  | 
654  | 0  |     data_->encoded_remaining().remove_suffix(data_->encoded_remaining().size());  | 
655  | 0  |   }  | 
656  | 0  | } Unexecuted instantiation: void absl::log_internal::LogMessage::CopyToEncodedBuffer<(absl::log_internal::LogMessage::StringType)0>(char, unsigned long) Unexecuted instantiation: void absl::log_internal::LogMessage::CopyToEncodedBuffer<(absl::log_internal::LogMessage::StringType)1>(char, unsigned long)  | 
657  |  | template void LogMessage::CopyToEncodedBuffer<LogMessage::StringType::kLiteral>(  | 
658  |  |     char ch, size_t num);  | 
659  |  | template void LogMessage::CopyToEncodedBuffer<  | 
660  |  |     LogMessage::StringType::kNotLiteral>(char ch, size_t num);  | 
661  |  |  | 
662  |  | template <LogMessage::StringType str_type>  | 
663  | 0  | void LogMessage::CopyToEncodedBuffer(std::wstring_view str) { | 
664  | 0  |   auto encoded_remaining_copy = data_->encoded_remaining();  | 
665  | 0  |   constexpr uint8_t tag_value = str_type == StringType::kLiteral  | 
666  | 0  |                                     ? ValueTag::kStringLiteral  | 
667  | 0  |                                     : ValueTag::kString;  | 
668  | 0  |   size_t max_str_byte_length =  | 
669  | 0  |       absl::strings_internal::kMaxEncodedUTF8Size * str.length();  | 
670  | 0  |   auto value_start =  | 
671  | 0  |       EncodeMessageStart(EventTag::kValue,  | 
672  | 0  |                          BufferSizeFor(tag_value, WireType::kLengthDelimited) +  | 
673  | 0  |                              max_str_byte_length,  | 
674  | 0  |                          &encoded_remaining_copy);  | 
675  | 0  |   auto str_start = EncodeMessageStart(tag_value, max_str_byte_length,  | 
676  | 0  |                                       &encoded_remaining_copy);  | 
677  | 0  |   if (str_start.data()) { | 
678  | 0  |     log_internal::AppendTruncated(str, encoded_remaining_copy);  | 
679  | 0  |     EncodeMessageLength(str_start, &encoded_remaining_copy);  | 
680  | 0  |     EncodeMessageLength(value_start, &encoded_remaining_copy);  | 
681  | 0  |     data_->encoded_remaining() = encoded_remaining_copy;  | 
682  | 0  |   } else { | 
683  |  |     // The field header(s) did not fit; zero `encoded_remaining()` so we don't  | 
684  |  |     // write anything else later.  | 
685  | 0  |     data_->encoded_remaining().remove_suffix(data_->encoded_remaining().size());  | 
686  | 0  |   }  | 
687  | 0  | } Unexecuted instantiation: void absl::log_internal::LogMessage::CopyToEncodedBuffer<(absl::log_internal::LogMessage::StringType)0>(std::__1::basic_string_view<wchar_t, std::__1::char_traits<wchar_t> >) Unexecuted instantiation: void absl::log_internal::LogMessage::CopyToEncodedBuffer<(absl::log_internal::LogMessage::StringType)1>(std::__1::basic_string_view<wchar_t, std::__1::char_traits<wchar_t> >)  | 
688  |  | template void LogMessage::CopyToEncodedBuffer<LogMessage::StringType::kLiteral>(  | 
689  |  |     std::wstring_view str);  | 
690  |  | template void LogMessage::CopyToEncodedBuffer<  | 
691  |  |     LogMessage::StringType::kNotLiteral>(std::wstring_view str);  | 
692  |  |  | 
693  |  | template void LogMessage::CopyToEncodedBufferWithStructuredProtoField<  | 
694  |  |     LogMessage::StringType::kLiteral>(StructuredProtoField field,  | 
695  |  |                                       absl::string_view str);  | 
696  |  | template void LogMessage::CopyToEncodedBufferWithStructuredProtoField<  | 
697  |  |     LogMessage::StringType::kNotLiteral>(StructuredProtoField field,  | 
698  |  |                                          absl::string_view str);  | 
699  |  |  | 
700  |  | template <LogMessage::StringType str_type>  | 
701  |  | void LogMessage::CopyToEncodedBufferWithStructuredProtoField(  | 
702  | 0  |     StructuredProtoField field, absl::string_view str) { | 
703  | 0  |   auto encoded_remaining_copy = data_->encoded_remaining();  | 
704  | 0  |   size_t encoded_field_size = BufferSizeForStructuredProtoField(field);  | 
705  | 0  |   constexpr uint8_t tag_value = str_type == StringType::kLiteral  | 
706  | 0  |                                     ? ValueTag::kStringLiteral  | 
707  | 0  |                                     : ValueTag::kString;  | 
708  | 0  |   auto start = EncodeMessageStart(  | 
709  | 0  |       EventTag::kValue,  | 
710  | 0  |       encoded_field_size +  | 
711  | 0  |           BufferSizeFor(tag_value, WireType::kLengthDelimited) + str.size(),  | 
712  | 0  |       &encoded_remaining_copy);  | 
713  |  |  | 
714  |  |   // Write the encoded proto field.  | 
715  | 0  |   if (!EncodeStructuredProtoField(field, encoded_remaining_copy)) { | 
716  |  |     // The header / field will not fit; zero `encoded_remaining()` so we  | 
717  |  |     // don't write anything else later.  | 
718  | 0  |     data_->encoded_remaining().remove_suffix(data_->encoded_remaining().size());  | 
719  | 0  |     return;  | 
720  | 0  |   }  | 
721  |  |  | 
722  |  |   // Write the string, truncating if necessary.  | 
723  | 0  |   if (!EncodeStringTruncate(ValueTag::kString, str, &encoded_remaining_copy)) { | 
724  |  |     // The length of the string itself did not fit; zero `encoded_remaining()`  | 
725  |  |     // so the value is not encoded at all.  | 
726  | 0  |     data_->encoded_remaining().remove_suffix(data_->encoded_remaining().size());  | 
727  | 0  |     return;  | 
728  | 0  |   }  | 
729  |  |  | 
730  | 0  |   EncodeMessageLength(start, &encoded_remaining_copy);  | 
731  | 0  |   data_->encoded_remaining() = encoded_remaining_copy;  | 
732  | 0  | } Unexecuted instantiation: void absl::log_internal::LogMessage::CopyToEncodedBufferWithStructuredProtoField<(absl::log_internal::LogMessage::StringType)0>(absl::log_internal::StructuredProtoField, std::__1::basic_string_view<char, std::__1::char_traits<char> >) Unexecuted instantiation: void absl::log_internal::LogMessage::CopyToEncodedBufferWithStructuredProtoField<(absl::log_internal::LogMessage::StringType)1>(absl::log_internal::StructuredProtoField, std::__1::basic_string_view<char, std::__1::char_traits<char> >)  | 
733  |  |  | 
734  |  | // We intentionally don't return from these destructors. Disable MSVC's warning  | 
735  |  | // about the destructor never returning as we do so intentionally here.  | 
736  |  | #if defined(_MSC_VER) && !defined(__clang__)  | 
737  |  | #pragma warning(push)  | 
738  |  | #pragma warning(disable : 4722)  | 
739  |  | #endif  | 
740  |  |  | 
741  |  | LogMessageFatal::LogMessageFatal(const char* absl_nonnull file, int line)  | 
742  | 0  |     : LogMessage(file, line, absl::LogSeverity::kFatal) {} | 
743  |  |  | 
744  |  | LogMessageFatal::LogMessageFatal(const char* absl_nonnull file, int line,  | 
745  |  |                                  const char* absl_nonnull failure_msg)  | 
746  | 0  |     : LogMessage(file, line, absl::LogSeverity::kFatal) { | 
747  | 0  |   *this << "Check failed: " << failure_msg << " ";  | 
748  | 0  | }  | 
749  |  |  | 
750  | 0  | LogMessageFatal::~LogMessageFatal() { FailWithoutStackTrace(); } | 
751  |  |  | 
752  |  | LogMessageDebugFatal::LogMessageDebugFatal(const char* absl_nonnull file,  | 
753  |  |                                            int line)  | 
754  | 0  |     : LogMessage(file, line, absl::LogSeverity::kFatal) {} | 
755  |  |  | 
756  | 0  | LogMessageDebugFatal::~LogMessageDebugFatal() { FailWithoutStackTrace(); } | 
757  |  |  | 
758  |  | LogMessageQuietlyDebugFatal::LogMessageQuietlyDebugFatal(  | 
759  |  |     const char* absl_nonnull file, int line)  | 
760  | 0  |     : LogMessage(file, line, absl::LogSeverity::kFatal) { | 
761  | 0  |   SetFailQuietly();  | 
762  | 0  | }  | 
763  |  |  | 
764  | 0  | LogMessageQuietlyDebugFatal::~LogMessageQuietlyDebugFatal() { FailQuietly(); } | 
765  |  |  | 
766  |  | LogMessageQuietlyFatal::LogMessageQuietlyFatal(const char* absl_nonnull file,  | 
767  |  |                                                int line)  | 
768  | 0  |     : LogMessage(file, line, absl::LogSeverity::kFatal) { | 
769  | 0  |   SetFailQuietly();  | 
770  | 0  | }  | 
771  |  |  | 
772  |  | LogMessageQuietlyFatal::LogMessageQuietlyFatal(  | 
773  |  |     const char* absl_nonnull file, int line,  | 
774  |  |     const char* absl_nonnull failure_msg)  | 
775  | 0  |     : LogMessageQuietlyFatal(file, line) { | 
776  | 0  |   *this << "Check failed: " << failure_msg << " ";  | 
777  | 0  | }  | 
778  |  |  | 
779  | 0  | LogMessageQuietlyFatal::~LogMessageQuietlyFatal() { FailQuietly(); } | 
780  |  | #if defined(_MSC_VER) && !defined(__clang__)  | 
781  |  | #pragma warning(pop)  | 
782  |  | #endif  | 
783  |  |  | 
784  |  | }  // namespace log_internal  | 
785  |  |  | 
786  |  | ABSL_NAMESPACE_END  | 
787  |  | }  // namespace absl  |