1 /*
2  * Copyright (C) 2015 The Android Open Source Project
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  *      http://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 #define ATRACE_TAG ATRACE_TAG_ALWAYS
17 #include "event_fd.h"
18 
19 #include <fcntl.h>
20 #include <stdio.h>
21 #include <string.h>
22 #include <sys/ioctl.h>
23 #include <sys/mman.h>
24 #include <sys/syscall.h>
25 #include <sys/types.h>
26 #include <atomic>
27 #include <memory>
28 #include <cutils/trace.h>
29 #include <utils/Trace.h>
30 
31 #include <android-base/file.h>
32 #include <android-base/logging.h>
33 #include <android-base/stringprintf.h>
34 
35 #include "environment.h"
36 #include "event_attr.h"
37 #include "event_type.h"
38 #include "perf_event.h"
39 #include "utils.h"
40 
perf_event_open(const perf_event_attr & attr,pid_t pid,int cpu,int group_fd,unsigned long flags)41 static int perf_event_open(const perf_event_attr& attr, pid_t pid, int cpu,
42                            int group_fd, unsigned long flags) {  // NOLINT
43   return syscall(__NR_perf_event_open, &attr, pid, cpu, group_fd, flags);
44 }
45 
OpenEventFile(const perf_event_attr & attr,pid_t tid,int cpu,EventFd * group_event_fd,const std::string & event_name,bool report_error)46 std::unique_ptr<EventFd> EventFd::OpenEventFile(const perf_event_attr& attr, pid_t tid, int cpu,
47                                                 EventFd* group_event_fd,
48                                                 const std::string& event_name, bool report_error) {
49   int group_fd = -1;
50   if (group_event_fd != nullptr) {
51     group_fd = group_event_fd->perf_event_fd_;
52   }
53   perf_event_attr real_attr = attr;
54   if (attr.freq) {
55     uint64_t max_sample_freq;
56     if (GetMaxSampleFrequency(&max_sample_freq) && max_sample_freq < attr.sample_freq) {
57       static bool warned = false;
58       if (!warned) {
59         warned = true;
60         LOG(INFO) << "Adjust sample freq to max allowed sample freq " << max_sample_freq;
61       }
62       real_attr.sample_freq = max_sample_freq;
63     }
64   }
65   int perf_event_fd = perf_event_open(real_attr, tid, cpu, group_fd, 0);
66   if (perf_event_fd == -1) {
67     if (report_error) {
68       PLOG(ERROR) << "open perf_event_file (event " << event_name << ", tid "
69                   << tid << ", cpu " << cpu << ", group_fd " << group_fd
70                   << ") failed";
71     } else {
72       PLOG(DEBUG) << "open perf_event_file (event " << event_name << ", tid "
73                   << tid << ", cpu " << cpu << ", group_fd " << group_fd
74                   << ") failed";
75     }
76     return nullptr;
77   }
78   if (fcntl(perf_event_fd, F_SETFD, FD_CLOEXEC) == -1) {
79     if (report_error) {
80       PLOG(ERROR) << "fcntl(FD_CLOEXEC) for perf_event_file (event "
81                   << event_name << ", tid " << tid << ", cpu " << cpu
82                   << ", group_fd " << group_fd << ") failed";
83     } else {
84       PLOG(DEBUG) << "fcntl(FD_CLOEXEC) for perf_event_file (event "
85                   << event_name << ", tid " << tid << ", cpu " << cpu
86                   << ", group_fd " << group_fd << ") failed";
87     }
88     return nullptr;
89   }
90   return std::unique_ptr<EventFd>(
91       new EventFd(real_attr, perf_event_fd, event_name, tid, cpu));
92 }
93 
~EventFd()94 EventFd::~EventFd() {
95   DestroyMappedBuffer();
96   DestroyAuxBuffer();
97   close(perf_event_fd_);
98 }
99 
Name() const100 std::string EventFd::Name() const {
101   return android::base::StringPrintf(
102       "perf_event_file(event %s, tid %d, cpu %d)", event_name_.c_str(), tid_,
103       cpu_);
104 }
105 
Id() const106 uint64_t EventFd::Id() const {
107   if (id_ == 0) {
108     PerfCounter counter;
109     if (InnerReadCounter(&counter)) {
110       id_ = counter.id;
111     }
112   }
113   return id_;
114 }
115 
SetEnableEvent(bool enable)116 bool EventFd::SetEnableEvent(bool enable) {
117   int result = ioctl(perf_event_fd_, enable ? PERF_EVENT_IOC_ENABLE : PERF_EVENT_IOC_DISABLE, 0);
118   if (result < 0) {
119     PLOG(ERROR) << "ioctl(" << (enable ? "enable" : "disable") << ")" << Name() << " failed";
120     return false;
121   }
122   return true;
123 }
124 
SetFilter(const std::string & filter)125 bool EventFd::SetFilter(const std::string& filter) {
126   bool success = ioctl(perf_event_fd_, PERF_EVENT_IOC_SET_FILTER, filter.c_str()) >= 0;
127   if (!success) {
128     PLOG(ERROR) << "failed to set filter";
129   }
130   return success;
131 }
132 
InnerReadCounter(PerfCounter * counter) const133 bool EventFd::InnerReadCounter(PerfCounter* counter) const {
134   CHECK(counter != nullptr);
135   if (!android::base::ReadFully(perf_event_fd_, counter, sizeof(*counter))) {
136     PLOG(ERROR) << "ReadCounter from " << Name() << " failed";
137     return false;
138   }
139   return true;
140 }
141 
ReadCounter(PerfCounter * counter)142 bool EventFd::ReadCounter(PerfCounter* counter) {
143   if (!InnerReadCounter(counter)) {
144     return false;
145   }
146   // Trace is always available to systrace if enabled
147   if (tid_ > 0) {
148     ATRACE_INT64(android::base::StringPrintf(
149                    "%s_tid%d_cpu%d", event_name_.c_str(), tid_,
150                    cpu_).c_str(), counter->value - last_counter_value_);
151   } else {
152     ATRACE_INT64(android::base::StringPrintf(
153                    "%s_cpu%d", event_name_.c_str(),
154                    cpu_).c_str(), counter->value - last_counter_value_);
155   }
156   last_counter_value_ = counter->value;
157   return true;
158 }
159 
CreateMappedBuffer(size_t mmap_pages,bool report_error)160 bool EventFd::CreateMappedBuffer(size_t mmap_pages, bool report_error) {
161   CHECK(IsPowerOfTwo(mmap_pages));
162   size_t page_size = sysconf(_SC_PAGE_SIZE);
163   size_t mmap_len = (mmap_pages + 1) * page_size;
164   void* mmap_addr = mmap(nullptr, mmap_len, PROT_READ | PROT_WRITE, MAP_SHARED,
165                          perf_event_fd_, 0);
166   if (mmap_addr == MAP_FAILED) {
167     bool is_perm_error = (errno == EPERM);
168     if (report_error) {
169       PLOG(ERROR) << "mmap(" << mmap_pages << ") failed for " << Name();
170     } else {
171       PLOG(DEBUG) << "mmap(" << mmap_pages << ") failed for " << Name();
172     }
173     if (report_error && is_perm_error) {
174       LOG(ERROR)
175           << "It seems the kernel doesn't allow allocating enough "
176           << "buffer for dumping samples, consider decreasing mmap pages(-m).";
177     }
178     return false;
179   }
180   mmap_addr_ = mmap_addr;
181   mmap_len_ = mmap_len;
182   mmap_metadata_page_ = reinterpret_cast<perf_event_mmap_page*>(mmap_addr_);
183   mmap_data_buffer_ = reinterpret_cast<char*>(mmap_addr_) + page_size;
184   mmap_data_buffer_size_ = mmap_len_ - page_size;
185   return true;
186 }
187 
ShareMappedBuffer(const EventFd & event_fd,bool report_error)188 bool EventFd::ShareMappedBuffer(const EventFd& event_fd, bool report_error) {
189   CHECK(!HasMappedBuffer());
190   CHECK(event_fd.HasMappedBuffer());
191   int result =
192       ioctl(perf_event_fd_, PERF_EVENT_IOC_SET_OUTPUT, event_fd.perf_event_fd_);
193   if (result != 0) {
194     if (report_error) {
195       PLOG(ERROR) << "failed to share mapped buffer of "
196                   << event_fd.perf_event_fd_ << " with " << perf_event_fd_;
197     }
198     return false;
199   }
200   return true;
201 }
202 
DestroyMappedBuffer()203 void EventFd::DestroyMappedBuffer() {
204   if (HasMappedBuffer()) {
205     munmap(mmap_addr_, mmap_len_);
206     mmap_addr_ = nullptr;
207     mmap_len_ = 0;
208     mmap_metadata_page_ = nullptr;
209     mmap_data_buffer_ = nullptr;
210     mmap_data_buffer_size_ = 0;
211   }
212 }
213 
GetAvailableMmapData()214 std::vector<char> EventFd::GetAvailableMmapData() {
215   size_t data_pos;
216   size_t data_size = GetAvailableMmapDataSize(data_pos);
217   std::vector<char> data(data_size);
218   if (data_size > 0) {
219     size_t copy_size = std::min(data_size, mmap_data_buffer_size_ - data_pos);
220     memcpy(&data[0], mmap_data_buffer_ + data_pos, copy_size);
221     if (copy_size < data_size) {
222       memcpy(&data[copy_size], mmap_data_buffer_, data_size - copy_size);
223     }
224     DiscardMmapData(data_size);
225   }
226   return data;
227 }
228 
GetAvailableMmapDataSize(size_t & data_pos)229 size_t EventFd::GetAvailableMmapDataSize(size_t& data_pos) {
230   // The mmap_data_buffer is used as a ring buffer between the kernel and
231   // simpleperf. The kernel continuously writes records to the buffer, and
232   // simpleperf continuously read records out.
233   //         _________________________________________
234   // buffer | can write   |   can read   |  can write |
235   //                      ^              ^
236   //                    read_head       write_head
237   //
238   // So simpleperf can read records in [read_head, write_head), and the kernel
239   // can write records in [write_head, read_head). The kernel is responsible
240   // for updating write_head, and simpleperf is responsible for updating
241   // read_head.
242 
243   uint64_t write_head = mmap_metadata_page_->data_head;
244   uint64_t read_head = mmap_metadata_page_->data_tail;
245   // The kernel may decrease data_head temporarily (http://b/132446871), making
246   // write_head < read_head. So check it to avoid available data size underflow.
247   if (write_head <= read_head) {
248     // No available data.
249     return 0;
250   }
251   // rmb() used to ensure reading data after reading data_head.
252   __sync_synchronize();
253   data_pos = read_head & (mmap_data_buffer_size_ - 1);
254   return write_head - read_head;
255 }
256 
DiscardMmapData(size_t discard_size)257 void EventFd::DiscardMmapData(size_t discard_size) {
258   // mb() used to ensure finish reading data before writing data_tail.
259   __sync_synchronize();
260   mmap_metadata_page_->data_tail += discard_size;
261 }
262 
CreateAuxBuffer(size_t aux_buffer_size,bool report_error)263 bool EventFd::CreateAuxBuffer(size_t aux_buffer_size, bool report_error) {
264   CHECK(HasMappedBuffer());
265   CHECK(IsPowerOfTwo(aux_buffer_size));
266   mmap_metadata_page_->aux_offset = mmap_len_;
267   mmap_metadata_page_->aux_size = aux_buffer_size;
268   mmap_metadata_page_->aux_head = 0;
269   mmap_metadata_page_->aux_tail = 0;
270   void* mmap_addr = mmap(nullptr, aux_buffer_size, PROT_READ | PROT_WRITE, MAP_SHARED,
271                          perf_event_fd_, mmap_metadata_page_->aux_offset);
272   if (mmap_addr == MAP_FAILED) {
273     if (report_error) {
274       PLOG(ERROR) << "failed to mmap aux buffer of size " << aux_buffer_size << " for " << Name();
275     } else {
276       PLOG(DEBUG) << "failed to mmap aux buffer of size " << aux_buffer_size << " for " << Name();
277     }
278     return false;
279   }
280   aux_buffer_ = static_cast<char*>(mmap_addr);
281   aux_buffer_size_ = aux_buffer_size;
282   return true;
283 }
284 
DestroyAuxBuffer()285 void EventFd::DestroyAuxBuffer() {
286   if (HasAuxBuffer()) {
287     munmap(aux_buffer_, aux_buffer_size_);
288     aux_buffer_ = nullptr;
289     aux_buffer_size_ = 0;
290   }
291 }
292 
GetAvailableAuxData(char ** buf1,size_t * size1,char ** buf2,size_t * size2)293 uint64_t EventFd::GetAvailableAuxData(char** buf1, size_t* size1, char** buf2, size_t* size2) {
294   // Aux buffer is similar to mapped_data_buffer. See comments in GetAvailableMmapData().
295   uint64_t write_head = mmap_metadata_page_->aux_head;
296   uint64_t read_head = mmap_metadata_page_->aux_tail;
297   if (write_head <= read_head) {
298     *size1 = *size2 = 0;
299     return 0;  // No available data.
300   }
301   // rmb() used to ensure reading data after reading aux_head.
302   __sync_synchronize();
303   size_t data_pos = read_head & (aux_buffer_size_ - 1);
304   size_t data_size = write_head - read_head;
305   *buf1 = aux_buffer_ + data_pos;
306   if (data_size <= aux_buffer_size_ - data_pos) {
307     *size1 = data_size;
308     *size2 = 0;
309   } else {
310     *size1 = aux_buffer_size_ - data_pos;
311     *buf2 = aux_buffer_;
312     *size2 = data_size - *size1;
313   }
314   return read_head;
315 }
316 
DiscardAuxData(size_t discard_size)317 void EventFd::DiscardAuxData(size_t discard_size) {
318   // mb() used to ensure finish reading data before writing aux_tail.
319   __sync_synchronize();
320   mmap_metadata_page_->aux_tail += discard_size;
321 }
322 
StartPolling(IOEventLoop & loop,const std::function<bool ()> & callback)323 bool EventFd::StartPolling(IOEventLoop& loop,
324                            const std::function<bool()>& callback) {
325   ioevent_ref_ = loop.AddReadEvent(perf_event_fd_, callback);
326   return ioevent_ref_ != nullptr;
327 }
328 
StopPolling()329 bool EventFd::StopPolling() { return IOEventLoop::DelEvent(ioevent_ref_); }
330 
IsEventAttrSupported(const perf_event_attr & attr,const std::string & event_name)331 bool IsEventAttrSupported(const perf_event_attr& attr, const std::string& event_name) {
332   return EventFd::OpenEventFile(attr, getpid(), -1, nullptr, event_name, false) != nullptr;
333 }
334