1 //===-- Log.cpp -----------------------------------------------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8
9 #include "lldb/Utility/Log.h"
10 #include "lldb/Utility/VASPrintf.h"
11
12 #include "llvm/ADT/SmallString.h"
13 #include "llvm/ADT/Twine.h"
14 #include "llvm/ADT/iterator.h"
15
16 #include "llvm/Support/Casting.h"
17 #include "llvm/Support/Chrono.h"
18 #include "llvm/Support/ManagedStatic.h"
19 #include "llvm/Support/Path.h"
20 #include "llvm/Support/Signals.h"
21 #include "llvm/Support/Threading.h"
22 #include "llvm/Support/raw_ostream.h"
23
24 #include <chrono>
25 #include <cstdarg>
26 #include <mutex>
27 #include <utility>
28
29 #include <cassert>
30 #if defined(_WIN32)
31 #include <process.h>
32 #else
33 #include <unistd.h>
34 #endif
35
36 using namespace lldb_private;
37
38 char LogHandler::ID;
39 char StreamLogHandler::ID;
40 char CallbackLogHandler::ID;
41 char RotatingLogHandler::ID;
42
43 llvm::ManagedStatic<Log::ChannelMap> Log::g_channel_map;
44
ForEachCategory(const Log::ChannelMap::value_type & entry,llvm::function_ref<void (llvm::StringRef,llvm::StringRef)> lambda)45 void Log::ForEachCategory(
46 const Log::ChannelMap::value_type &entry,
47 llvm::function_ref<void(llvm::StringRef, llvm::StringRef)> lambda) {
48 lambda("all", "all available logging categories");
49 lambda("default", "default set of logging categories");
50 for (const auto &category : entry.second.m_channel.categories)
51 lambda(category.name, category.description);
52 }
53
ListCategories(llvm::raw_ostream & stream,const ChannelMap::value_type & entry)54 void Log::ListCategories(llvm::raw_ostream &stream,
55 const ChannelMap::value_type &entry) {
56 stream << llvm::formatv("Logging categories for '{0}':\n", entry.first());
57 ForEachCategory(entry,
58 [&stream](llvm::StringRef name, llvm::StringRef description) {
59 stream << llvm::formatv(" {0} - {1}\n", name, description);
60 });
61 }
62
GetFlags(llvm::raw_ostream & stream,const ChannelMap::value_type & entry,llvm::ArrayRef<const char * > categories)63 Log::MaskType Log::GetFlags(llvm::raw_ostream &stream,
64 const ChannelMap::value_type &entry,
65 llvm::ArrayRef<const char *> categories) {
66 bool list_categories = false;
67 Log::MaskType flags = 0;
68 for (const char *category : categories) {
69 if (llvm::StringRef("all").equals_insensitive(category)) {
70 flags |= std::numeric_limits<Log::MaskType>::max();
71 continue;
72 }
73 if (llvm::StringRef("default").equals_insensitive(category)) {
74 flags |= entry.second.m_channel.default_flags;
75 continue;
76 }
77 auto cat = llvm::find_if(entry.second.m_channel.categories,
78 [&](const Log::Category &c) {
79 return c.name.equals_insensitive(category);
80 });
81 if (cat != entry.second.m_channel.categories.end()) {
82 flags |= cat->flag;
83 continue;
84 }
85 stream << llvm::formatv("error: unrecognized log category '{0}'\n",
86 category);
87 list_categories = true;
88 }
89 if (list_categories)
90 ListCategories(stream, entry);
91 return flags;
92 }
93
Enable(const std::shared_ptr<LogHandler> & handler_sp,uint32_t options,Log::MaskType flags)94 void Log::Enable(const std::shared_ptr<LogHandler> &handler_sp,
95 uint32_t options, Log::MaskType flags) {
96 llvm::sys::ScopedWriter lock(m_mutex);
97
98 MaskType mask = m_mask.fetch_or(flags, std::memory_order_relaxed);
99 if (mask | flags) {
100 m_options.store(options, std::memory_order_relaxed);
101 m_handler = handler_sp;
102 m_channel.log_ptr.store(this, std::memory_order_relaxed);
103 }
104 }
105
Disable(Log::MaskType flags)106 void Log::Disable(Log::MaskType flags) {
107 llvm::sys::ScopedWriter lock(m_mutex);
108
109 MaskType mask = m_mask.fetch_and(~flags, std::memory_order_relaxed);
110 if (!(mask & ~flags)) {
111 m_handler.reset();
112 m_channel.log_ptr.store(nullptr, std::memory_order_relaxed);
113 }
114 }
115
Dump(llvm::raw_ostream & output_stream)116 bool Log::Dump(llvm::raw_ostream &output_stream) {
117 llvm::sys::ScopedReader lock(m_mutex);
118 if (RotatingLogHandler *handler =
119 llvm::dyn_cast_or_null<RotatingLogHandler>(m_handler.get())) {
120 handler->Dump(output_stream);
121 return true;
122 }
123 return false;
124 }
125
GetOptions() const126 const Flags Log::GetOptions() const {
127 return m_options.load(std::memory_order_relaxed);
128 }
129
GetMask() const130 Log::MaskType Log::GetMask() const {
131 return m_mask.load(std::memory_order_relaxed);
132 }
133
PutCString(const char * cstr)134 void Log::PutCString(const char *cstr) { Printf("%s", cstr); }
PutString(llvm::StringRef str)135 void Log::PutString(llvm::StringRef str) { PutCString(str.str().c_str()); }
136
137 // Simple variable argument logging with flags.
Printf(const char * format,...)138 void Log::Printf(const char *format, ...) {
139 va_list args;
140 va_start(args, format);
141 VAPrintf(format, args);
142 va_end(args);
143 }
144
145 // All logging eventually boils down to this function call. If we have a
146 // callback registered, then we call the logging callback. If we have a valid
147 // file handle, we also log to the file.
VAPrintf(const char * format,va_list args)148 void Log::VAPrintf(const char *format, va_list args) {
149 llvm::SmallString<64> FinalMessage;
150 llvm::raw_svector_ostream Stream(FinalMessage);
151 WriteHeader(Stream, "", "");
152
153 llvm::SmallString<64> Content;
154 lldb_private::VASprintf(Content, format, args);
155
156 Stream << Content << "\n";
157
158 WriteMessage(std::string(FinalMessage.str()));
159 }
160
161 // Printing of errors that are not fatal.
Error(const char * format,...)162 void Log::Error(const char *format, ...) {
163 va_list args;
164 va_start(args, format);
165 VAError(format, args);
166 va_end(args);
167 }
168
VAError(const char * format,va_list args)169 void Log::VAError(const char *format, va_list args) {
170 llvm::SmallString<64> Content;
171 VASprintf(Content, format, args);
172
173 Printf("error: %s", Content.c_str());
174 }
175
176 // Printing of warnings that are not fatal only if verbose mode is enabled.
Verbose(const char * format,...)177 void Log::Verbose(const char *format, ...) {
178 if (!GetVerbose())
179 return;
180
181 va_list args;
182 va_start(args, format);
183 VAPrintf(format, args);
184 va_end(args);
185 }
186
187 // Printing of warnings that are not fatal.
Warning(const char * format,...)188 void Log::Warning(const char *format, ...) {
189 llvm::SmallString<64> Content;
190 va_list args;
191 va_start(args, format);
192 VASprintf(Content, format, args);
193 va_end(args);
194
195 Printf("warning: %s", Content.c_str());
196 }
197
Register(llvm::StringRef name,Channel & channel)198 void Log::Register(llvm::StringRef name, Channel &channel) {
199 auto iter = g_channel_map->try_emplace(name, channel);
200 assert(iter.second == true);
201 (void)iter;
202 }
203
Unregister(llvm::StringRef name)204 void Log::Unregister(llvm::StringRef name) {
205 auto iter = g_channel_map->find(name);
206 assert(iter != g_channel_map->end());
207 iter->second.Disable(std::numeric_limits<MaskType>::max());
208 g_channel_map->erase(iter);
209 }
210
EnableLogChannel(const std::shared_ptr<LogHandler> & log_handler_sp,uint32_t log_options,llvm::StringRef channel,llvm::ArrayRef<const char * > categories,llvm::raw_ostream & error_stream)211 bool Log::EnableLogChannel(const std::shared_ptr<LogHandler> &log_handler_sp,
212 uint32_t log_options, llvm::StringRef channel,
213 llvm::ArrayRef<const char *> categories,
214 llvm::raw_ostream &error_stream) {
215 auto iter = g_channel_map->find(channel);
216 if (iter == g_channel_map->end()) {
217 error_stream << llvm::formatv("Invalid log channel '{0}'.\n", channel);
218 return false;
219 }
220 MaskType flags = categories.empty()
221 ? iter->second.m_channel.default_flags
222 : GetFlags(error_stream, *iter, categories);
223 iter->second.Enable(log_handler_sp, log_options, flags);
224 return true;
225 }
226
DisableLogChannel(llvm::StringRef channel,llvm::ArrayRef<const char * > categories,llvm::raw_ostream & error_stream)227 bool Log::DisableLogChannel(llvm::StringRef channel,
228 llvm::ArrayRef<const char *> categories,
229 llvm::raw_ostream &error_stream) {
230 auto iter = g_channel_map->find(channel);
231 if (iter == g_channel_map->end()) {
232 error_stream << llvm::formatv("Invalid log channel '{0}'.\n", channel);
233 return false;
234 }
235 MaskType flags = categories.empty()
236 ? std::numeric_limits<MaskType>::max()
237 : GetFlags(error_stream, *iter, categories);
238 iter->second.Disable(flags);
239 return true;
240 }
241
DumpLogChannel(llvm::StringRef channel,llvm::raw_ostream & output_stream,llvm::raw_ostream & error_stream)242 bool Log::DumpLogChannel(llvm::StringRef channel,
243 llvm::raw_ostream &output_stream,
244 llvm::raw_ostream &error_stream) {
245 auto iter = g_channel_map->find(channel);
246 if (iter == g_channel_map->end()) {
247 error_stream << llvm::formatv("Invalid log channel '{0}'.\n", channel);
248 return false;
249 }
250 if (!iter->second.Dump(output_stream)) {
251 error_stream << llvm::formatv(
252 "log channel '{0}' does not support dumping.\n", channel);
253 return false;
254 }
255 return true;
256 }
257
ListChannelCategories(llvm::StringRef channel,llvm::raw_ostream & stream)258 bool Log::ListChannelCategories(llvm::StringRef channel,
259 llvm::raw_ostream &stream) {
260 auto ch = g_channel_map->find(channel);
261 if (ch == g_channel_map->end()) {
262 stream << llvm::formatv("Invalid log channel '{0}'.\n", channel);
263 return false;
264 }
265 ListCategories(stream, *ch);
266 return true;
267 }
268
DisableAllLogChannels()269 void Log::DisableAllLogChannels() {
270 for (auto &entry : *g_channel_map)
271 entry.second.Disable(std::numeric_limits<MaskType>::max());
272 }
273
ForEachChannelCategory(llvm::StringRef channel,llvm::function_ref<void (llvm::StringRef,llvm::StringRef)> lambda)274 void Log::ForEachChannelCategory(
275 llvm::StringRef channel,
276 llvm::function_ref<void(llvm::StringRef, llvm::StringRef)> lambda) {
277 auto ch = g_channel_map->find(channel);
278 if (ch == g_channel_map->end())
279 return;
280
281 ForEachCategory(*ch, lambda);
282 }
283
ListChannels()284 std::vector<llvm::StringRef> Log::ListChannels() {
285 std::vector<llvm::StringRef> result;
286 for (const auto &channel : *g_channel_map)
287 result.push_back(channel.first());
288 return result;
289 }
290
ListAllLogChannels(llvm::raw_ostream & stream)291 void Log::ListAllLogChannels(llvm::raw_ostream &stream) {
292 if (g_channel_map->empty()) {
293 stream << "No logging channels are currently registered.\n";
294 return;
295 }
296
297 for (const auto &channel : *g_channel_map)
298 ListCategories(stream, channel);
299 }
300
GetVerbose() const301 bool Log::GetVerbose() const {
302 return m_options.load(std::memory_order_relaxed) & LLDB_LOG_OPTION_VERBOSE;
303 }
304
WriteHeader(llvm::raw_ostream & OS,llvm::StringRef file,llvm::StringRef function)305 void Log::WriteHeader(llvm::raw_ostream &OS, llvm::StringRef file,
306 llvm::StringRef function) {
307 Flags options = GetOptions();
308 static uint32_t g_sequence_id = 0;
309 // Add a sequence ID if requested
310 if (options.Test(LLDB_LOG_OPTION_PREPEND_SEQUENCE))
311 OS << ++g_sequence_id << " ";
312
313 // Timestamp if requested
314 if (options.Test(LLDB_LOG_OPTION_PREPEND_TIMESTAMP)) {
315 auto now = std::chrono::duration<double>(
316 std::chrono::system_clock::now().time_since_epoch());
317 OS << llvm::formatv("{0:f9} ", now.count());
318 }
319
320 // Add the process and thread if requested
321 if (options.Test(LLDB_LOG_OPTION_PREPEND_PROC_AND_THREAD))
322 OS << llvm::formatv("[{0,0+4}/{1,0+4}] ", getpid(),
323 llvm::get_threadid());
324
325 // Add the thread name if requested
326 if (options.Test(LLDB_LOG_OPTION_PREPEND_THREAD_NAME)) {
327 llvm::SmallString<32> thread_name;
328 llvm::get_thread_name(thread_name);
329
330 llvm::SmallString<12> format_str;
331 llvm::raw_svector_ostream format_os(format_str);
332 format_os << "{0,-" << llvm::alignTo<16>(thread_name.size()) << "} ";
333 OS << llvm::formatv(format_str.c_str(), thread_name);
334 }
335
336 if (options.Test(LLDB_LOG_OPTION_BACKTRACE))
337 llvm::sys::PrintStackTrace(OS);
338
339 if (options.Test(LLDB_LOG_OPTION_PREPEND_FILE_FUNCTION) &&
340 (!file.empty() || !function.empty())) {
341 file = llvm::sys::path::filename(file).take_front(40);
342 function = function.take_front(40);
343 OS << llvm::formatv("{0,-60:60} ", (file + ":" + function).str());
344 }
345 }
346
WriteMessage(const std::string & message)347 void Log::WriteMessage(const std::string &message) {
348 // Make a copy of our stream shared pointer in case someone disables our log
349 // while we are logging and releases the stream
350 auto handler_sp = GetHandler();
351 if (!handler_sp)
352 return;
353 handler_sp->Emit(message);
354 }
355
Format(llvm::StringRef file,llvm::StringRef function,const llvm::formatv_object_base & payload)356 void Log::Format(llvm::StringRef file, llvm::StringRef function,
357 const llvm::formatv_object_base &payload) {
358 std::string message_string;
359 llvm::raw_string_ostream message(message_string);
360 WriteHeader(message, file, function);
361 message << payload << "\n";
362 WriteMessage(message.str());
363 }
364
StreamLogHandler(int fd,bool should_close,size_t buffer_size)365 StreamLogHandler::StreamLogHandler(int fd, bool should_close,
366 size_t buffer_size)
367 : m_stream(fd, should_close, buffer_size == 0) {
368 if (buffer_size > 0)
369 m_stream.SetBufferSize(buffer_size);
370 }
371
~StreamLogHandler()372 StreamLogHandler::~StreamLogHandler() { Flush(); }
373
Flush()374 void StreamLogHandler::Flush() {
375 std::lock_guard<std::mutex> guard(m_mutex);
376 m_stream.flush();
377 }
378
Emit(llvm::StringRef message)379 void StreamLogHandler::Emit(llvm::StringRef message) {
380 if (m_stream.GetBufferSize() > 0) {
381 std::lock_guard<std::mutex> guard(m_mutex);
382 m_stream << message;
383 } else {
384 m_stream << message;
385 }
386 }
387
CallbackLogHandler(lldb::LogOutputCallback callback,void * baton)388 CallbackLogHandler::CallbackLogHandler(lldb::LogOutputCallback callback,
389 void *baton)
390 : m_callback(callback), m_baton(baton) {}
391
Emit(llvm::StringRef message)392 void CallbackLogHandler::Emit(llvm::StringRef message) {
393 m_callback(message.data(), m_baton);
394 }
395
RotatingLogHandler(size_t size)396 RotatingLogHandler::RotatingLogHandler(size_t size)
397 : m_messages(std::make_unique<std::string[]>(size)), m_size(size) {}
398
Emit(llvm::StringRef message)399 void RotatingLogHandler::Emit(llvm::StringRef message) {
400 std::lock_guard<std::mutex> guard(m_mutex);
401 ++m_total_count;
402 const size_t index = m_next_index;
403 m_next_index = NormalizeIndex(index + 1);
404 m_messages[index] = message.str();
405 }
406
NormalizeIndex(size_t i) const407 size_t RotatingLogHandler::NormalizeIndex(size_t i) const { return i % m_size; }
408
GetNumMessages() const409 size_t RotatingLogHandler::GetNumMessages() const {
410 return m_total_count < m_size ? m_total_count : m_size;
411 }
412
GetFirstMessageIndex() const413 size_t RotatingLogHandler::GetFirstMessageIndex() const {
414 return m_total_count < m_size ? 0 : m_next_index;
415 }
416
Dump(llvm::raw_ostream & stream) const417 void RotatingLogHandler::Dump(llvm::raw_ostream &stream) const {
418 std::lock_guard<std::mutex> guard(m_mutex);
419 const size_t start_idx = GetFirstMessageIndex();
420 const size_t stop_idx = start_idx + GetNumMessages();
421 for (size_t i = start_idx; i < stop_idx; ++i) {
422 const size_t idx = NormalizeIndex(i);
423 stream << m_messages[idx];
424 }
425 stream.flush();
426 }
427