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
17 #include <gtest/gtest.h>
18
19 #include <android-base/file.h>
20 #include <android-base/stringprintf.h>
21 #include <android-base/strings.h>
22
23 #include <thread>
24
25 #include "cmd_stat_impl.h"
26 #include "command.h"
27 #include "environment.h"
28 #include "event_selection_set.h"
29 #include "get_test_data.h"
30 #include "test_util.h"
31
32 using namespace simpleperf;
33
StatCmd()34 static std::unique_ptr<Command> StatCmd() {
35 return CreateCommandInstance("stat");
36 }
37
TEST(stat_cmd,no_options)38 TEST(stat_cmd, no_options) { ASSERT_TRUE(StatCmd()->Run({"sleep", "1"})); }
39
TEST(stat_cmd,event_option)40 TEST(stat_cmd, event_option) {
41 ASSERT_TRUE(StatCmd()->Run({"-e", "cpu-clock,task-clock", "sleep", "1"}));
42 }
43
TEST(stat_cmd,system_wide_option)44 TEST(stat_cmd, system_wide_option) {
45 TEST_IN_ROOT(ASSERT_TRUE(StatCmd()->Run({"-a", "sleep", "1"})));
46 }
47
TEST(stat_cmd,verbose_option)48 TEST(stat_cmd, verbose_option) {
49 ASSERT_TRUE(StatCmd()->Run({"--verbose", "sleep", "1"}));
50 }
51
TEST(stat_cmd,tracepoint_event)52 TEST(stat_cmd, tracepoint_event) {
53 TEST_IN_ROOT(ASSERT_TRUE(
54 StatCmd()->Run({"-a", "-e", "sched:sched_switch", "sleep", "1"})));
55 }
56
TEST(stat_cmd,rN_event)57 TEST(stat_cmd, rN_event) {
58 TEST_REQUIRE_HW_COUNTER();
59 OMIT_TEST_ON_NON_NATIVE_ABIS();
60 size_t event_number;
61 if (GetBuildArch() == ARCH_ARM64 || GetBuildArch() == ARCH_ARM) {
62 // As in D5.10.2 of the ARMv8 manual, ARM defines the event number space for PMU. part of the
63 // space is for common event numbers (which will stay the same for all ARM chips), part of the
64 // space is for implementation defined events. Here 0x08 is a common event for instructions.
65 event_number = 0x08;
66 } else if (GetBuildArch() == ARCH_X86_32 || GetBuildArch() == ARCH_X86_64) {
67 // As in volume 3 chapter 19 of the Intel manual, 0x00c0 is the event number for instruction.
68 event_number = 0x00c0;
69 } else {
70 GTEST_LOG_(INFO) << "Omit arch " << GetBuildArch();
71 return;
72 }
73 std::string event_name = android::base::StringPrintf("r%zx", event_number);
74 ASSERT_TRUE(StatCmd()->Run({"-e", event_name, "sleep", "1"}));
75 }
76
TEST(stat_cmd,pmu_event)77 TEST(stat_cmd, pmu_event) {
78 TEST_REQUIRE_PMU_COUNTER();
79 TEST_REQUIRE_HW_COUNTER();
80 std::string event_string;
81 if (GetBuildArch() == ARCH_X86_64) {
82 event_string = "cpu/instructions/";
83 } else if (GetBuildArch() == ARCH_ARM64) {
84 event_string = "armv8_pmuv3/inst_retired/";
85 } else {
86 GTEST_LOG_(INFO) << "Omit arch " << GetBuildArch();
87 return;
88 }
89 TEST_IN_ROOT(ASSERT_TRUE(
90 StatCmd()->Run({"-a", "-e", event_string, "sleep", "1"})));
91 }
92
TEST(stat_cmd,event_modifier)93 TEST(stat_cmd, event_modifier) {
94 TEST_REQUIRE_HW_COUNTER();
95 ASSERT_TRUE(
96 StatCmd()->Run({"-e", "cpu-cycles:u,cpu-cycles:k", "sleep", "1"}));
97 }
98
RunWorkloadFunction()99 void RunWorkloadFunction() {
100 while (true) {
101 for (volatile int i = 0; i < 10000; ++i);
102 usleep(1);
103 }
104 }
105
CreateProcesses(size_t count,std::vector<std::unique_ptr<Workload>> * workloads)106 void CreateProcesses(size_t count,
107 std::vector<std::unique_ptr<Workload>>* workloads) {
108 workloads->clear();
109 // Create workloads run longer than profiling time.
110 for (size_t i = 0; i < count; ++i) {
111 std::unique_ptr<Workload> workload;
112 workload = Workload::CreateWorkload(RunWorkloadFunction);
113 ASSERT_TRUE(workload != nullptr);
114 ASSERT_TRUE(workload->Start());
115 workloads->push_back(std::move(workload));
116 }
117 }
118
TEST(stat_cmd,existing_processes)119 TEST(stat_cmd, existing_processes) {
120 std::vector<std::unique_ptr<Workload>> workloads;
121 CreateProcesses(2, &workloads);
122 std::string pid_list = android::base::StringPrintf(
123 "%d,%d", workloads[0]->GetPid(), workloads[1]->GetPid());
124 ASSERT_TRUE(StatCmd()->Run({"-p", pid_list, "sleep", "1"}));
125 }
126
TEST(stat_cmd,existing_threads)127 TEST(stat_cmd, existing_threads) {
128 std::vector<std::unique_ptr<Workload>> workloads;
129 CreateProcesses(2, &workloads);
130 // Process id can be used as thread id in linux.
131 std::string tid_list = android::base::StringPrintf(
132 "%d,%d", workloads[0]->GetPid(), workloads[1]->GetPid());
133 ASSERT_TRUE(StatCmd()->Run({"-t", tid_list, "sleep", "1"}));
134 }
135
TEST(stat_cmd,no_monitored_threads)136 TEST(stat_cmd, no_monitored_threads) {
137 ASSERT_FALSE(StatCmd()->Run({}));
138 ASSERT_FALSE(StatCmd()->Run({""}));
139 }
140
TEST(stat_cmd,group_option)141 TEST(stat_cmd, group_option) {
142 TEST_REQUIRE_HW_COUNTER();
143 ASSERT_TRUE(
144 StatCmd()->Run({"--group", "cpu-clock,page-faults", "sleep", "1"}));
145 ASSERT_TRUE(StatCmd()->Run({"--group", "cpu-cycles,instructions", "--group",
146 "cpu-cycles:u,instructions:u", "--group",
147 "cpu-cycles:k,instructions:k", "sleep", "1"}));
148 }
149
TEST(stat_cmd,auto_generated_summary)150 TEST(stat_cmd, auto_generated_summary) {
151 TEST_REQUIRE_HW_COUNTER();
152 TemporaryFile tmp_file;
153 ASSERT_TRUE(StatCmd()->Run({"--group", "instructions:u,instructions:k", "-o",
154 tmp_file.path, "sleep", "1"}));
155 std::string s;
156 ASSERT_TRUE(android::base::ReadFileToString(tmp_file.path, &s));
157 size_t pos = s.find("instructions:u");
158 ASSERT_NE(s.npos, pos);
159 pos = s.find("instructions:k", pos);
160 ASSERT_NE(s.npos, pos);
161 pos += strlen("instructions:k");
162 // Check if the summary of instructions is generated.
163 ASSERT_NE(s.npos, s.find("instructions", pos));
164 }
165
TEST(stat_cmd,duration_option)166 TEST(stat_cmd, duration_option) {
167 ASSERT_TRUE(
168 StatCmd()->Run({"--duration", "1.2", "-p", std::to_string(getpid()), "--in-app"}));
169 ASSERT_TRUE(StatCmd()->Run({"--duration", "1", "sleep", "2"}));
170 }
171
TEST(stat_cmd,interval_option)172 TEST(stat_cmd, interval_option) {
173 TemporaryFile tmp_file;
174 ASSERT_TRUE(
175 StatCmd()->Run({"--interval", "500.0", "--duration", "1.2", "-o",
176 tmp_file.path, "sleep", "2"}));
177 std::string s;
178 ASSERT_TRUE(android::base::ReadFileToString(tmp_file.path, &s));
179 size_t count = 0;
180 size_t pos = 0;
181 std::string subs = "statistics:";
182 while((pos = s.find(subs, pos)) != s.npos) {
183 pos += subs.size();
184 ++count ;
185 }
186 ASSERT_EQ(count, 2UL);
187 }
188
TEST(stat_cmd,interval_option_in_system_wide)189 TEST(stat_cmd, interval_option_in_system_wide) {
190 TEST_IN_ROOT(ASSERT_TRUE(StatCmd()->Run({"-a", "--interval", "100", "--duration", "0.3"})));
191 }
192
TEST(stat_cmd,interval_only_values_option)193 TEST(stat_cmd, interval_only_values_option) {
194 ASSERT_TRUE(StatCmd()->Run({"--interval", "500", "--interval-only-values", "sleep", "2"}));
195 TEST_IN_ROOT(ASSERT_TRUE(StatCmd()->Run({"-a", "--interval", "100", "--interval-only-values",
196 "--duration", "0.3"})));
197 }
198
TEST(stat_cmd,no_modifier_for_clock_events)199 TEST(stat_cmd, no_modifier_for_clock_events) {
200 for (const std::string& e : {"cpu-clock", "task-clock"}) {
201 for (const std::string& m : {"u", "k"}) {
202 ASSERT_FALSE(StatCmd()->Run({"-e", e + ":" + m, "sleep", "0.1"}))
203 << "event " << e << ":" << m;
204 }
205 }
206 }
207
TEST(stat_cmd,handle_SIGHUP)208 TEST(stat_cmd, handle_SIGHUP) {
209 std::thread thread([]() {
210 sleep(1);
211 kill(getpid(), SIGHUP);
212 });
213 thread.detach();
214 ASSERT_TRUE(StatCmd()->Run({"sleep", "1000000"}));
215 }
216
TEST(stat_cmd,stop_when_no_more_targets)217 TEST(stat_cmd, stop_when_no_more_targets) {
218 std::atomic<int> tid(0);
219 std::thread thread([&]() {
220 tid = gettid();
221 sleep(1);
222 });
223 thread.detach();
224 while (tid == 0);
225 ASSERT_TRUE(StatCmd()->Run({"-t", std::to_string(tid), "--in-app"}));
226 }
227
TEST(stat_cmd,sample_speed_should_be_zero)228 TEST(stat_cmd, sample_speed_should_be_zero) {
229 TEST_REQUIRE_HW_COUNTER();
230 EventSelectionSet set(true);
231 ASSERT_TRUE(set.AddEventType("cpu-cycles"));
232 set.AddMonitoredProcesses({getpid()});
233 ASSERT_TRUE(set.OpenEventFiles({-1}));
234 std::vector<EventAttrWithId> attrs = set.GetEventAttrWithId();
235 ASSERT_GT(attrs.size(), 0u);
236 for (auto& attr : attrs) {
237 ASSERT_EQ(attr.attr->sample_period, 0u);
238 ASSERT_EQ(attr.attr->sample_freq, 0u);
239 ASSERT_EQ(attr.attr->freq, 0u);
240 }
241 }
242
TEST(stat_cmd,calculating_cpu_frequency)243 TEST(stat_cmd, calculating_cpu_frequency) {
244 TEST_REQUIRE_HW_COUNTER();
245 CaptureStdout capture;
246 ASSERT_TRUE(capture.Start());
247 ASSERT_TRUE(StatCmd()->Run({"--csv", "--group", "task-clock,cpu-cycles", "sleep", "1"}));
248 std::string output = capture.Finish();
249 double task_clock_in_ms = 0;
250 uint64_t cpu_cycle_count = 0;
251 double cpu_frequency = 0;
252 for (auto& line : android::base::Split(output, "\n")) {
253 if (line.find("task-clock") != std::string::npos) {
254 ASSERT_EQ(sscanf(line.c_str(), "%lf(ms)", &task_clock_in_ms), 1);
255 } else if (line.find("cpu-cycles") != std::string::npos) {
256 ASSERT_EQ(sscanf(line.c_str(), "%" SCNu64 ",cpu-cycles,%lf", &cpu_cycle_count,
257 &cpu_frequency), 2);
258 }
259 }
260 ASSERT_NE(task_clock_in_ms, 0.0f);
261 ASSERT_NE(cpu_cycle_count, 0u);
262 ASSERT_NE(cpu_frequency, 0.0f);
263 double calculated_frequency = cpu_cycle_count / task_clock_in_ms / 1e6;
264 // Accept error up to 1e-3. Because the stat cmd print values with precision 1e-6.
265 ASSERT_NEAR(cpu_frequency, calculated_frequency, 1e-3);
266 }
267
TEST(stat_cmd,set_comm_in_another_thread)268 TEST(stat_cmd, set_comm_in_another_thread) {
269 // Test a kernel bug which was fixed in 3.15. If kernel panic happens, please cherry pick kernel
270 // patch: e041e328c4b41e perf: Fix perf_event_comm() vs. exec() assumption
271 TEST_REQUIRE_HW_COUNTER();
272
273 for (size_t loop = 0; loop < 3; ++loop) {
274 std::atomic<int> child_tid(0);
275 std::atomic<bool> stop_child(false);
276 std::thread child([&]() {
277 child_tid = gettid();
278 // stay on a cpu to make the monitored events of the child thread on that cpu.
279 while (!stop_child) {}
280 });
281
282 while (child_tid == 0) {}
283
284 {
285 EventSelectionSet set(true);
286 ASSERT_TRUE(set.AddEventType("cpu-cycles"));
287 set.AddMonitoredThreads({child_tid});
288 ASSERT_TRUE(set.OpenEventFiles({-1}));
289
290 EventSelectionSet set2(true);
291 ASSERT_TRUE(set2.AddEventType("instructions"));
292 set2.AddMonitoredThreads({gettid()});
293 ASSERT_TRUE(set2.OpenEventFiles({-1}));
294
295 // For kernels with the bug, setting comm will make the monitored events of the child thread
296 // on the cpu of the current thread.
297 ASSERT_TRUE(android::base::WriteStringToFile("child",
298 "/proc/" + std::to_string(child_tid) + "/comm"));
299 // Release monitored events. For kernels with the bug, the events still exist on the cpu of
300 // the child thread.
301 }
302
303 stop_child = true;
304 child.join();
305 // Sleep 1s to enter and exit cpu idle, which may abort the kernel.
306 sleep(1);
307 }
308 }
309
TestStatingApps(const std::string & app_name)310 static void TestStatingApps(const std::string& app_name) {
311 // Bring the app to foreground.
312 ASSERT_TRUE(Workload::RunCmd({"am", "start", app_name + "/.MainActivity"}));
313 ASSERT_TRUE(StatCmd()->Run({"--app", app_name, "--duration", "3"}));
314 }
315
TEST(stat_cmd,app_option_for_debuggable_app)316 TEST(stat_cmd, app_option_for_debuggable_app) {
317 TEST_REQUIRE_APPS();
318 SetRunInAppToolForTesting(true, false);
319 TestStatingApps("com.android.simpleperf.debuggable");
320 SetRunInAppToolForTesting(false, true);
321 TestStatingApps("com.android.simpleperf.debuggable");
322 }
323
TEST(stat_cmd,app_option_for_profileable_app)324 TEST(stat_cmd, app_option_for_profileable_app) {
325 TEST_REQUIRE_APPS();
326 SetRunInAppToolForTesting(false, true);
327 TestStatingApps("com.android.simpleperf.profileable");
328 }
329
TEST(stat_cmd,use_devfreq_counters_option)330 TEST(stat_cmd, use_devfreq_counters_option) {
331 #if defined(__ANDROID__)
332 TEST_IN_ROOT(StatCmd()->Run({"--use-devfreq-counters", "sleep", "0.1"}));
333 #else
334 GTEST_LOG_(INFO) << "This test tests an option only available on Android.";
335 #endif
336 }
337
TEST(stat_cmd,per_thread_option)338 TEST(stat_cmd, per_thread_option) {
339 ASSERT_TRUE(StatCmd()->Run({"--per-thread", "sleep", "0.1"}));
340 TEST_IN_ROOT(StatCmd()->Run({"--per-thread", "-a", "--duration", "0.1"}));
341 }
342
TEST(stat_cmd,per_core_option)343 TEST(stat_cmd, per_core_option) {
344 ASSERT_TRUE(StatCmd()->Run({"--per-core", "sleep", "0.1"}));
345 TEST_IN_ROOT(StatCmd()->Run({"--per-core", "-a", "--duration", "0.1"}));
346 }
347
TEST(stat_cmd,sort_option)348 TEST(stat_cmd, sort_option) {
349 ASSERT_TRUE(StatCmd()->Run({"--per-thread", "--per-core", "--sort", "cpu,count", "sleep", "0.1"}));
350 }
351
TEST(stat_cmd,counter_sum)352 TEST(stat_cmd, counter_sum) {
353 PerfCounter counter;
354 counter.value = 1;
355 counter.time_enabled = 2;
356 counter.time_running = 3;
357 CounterSum a;
358 a.FromCounter(counter);
359 ASSERT_EQ(a.value, 1);
360 ASSERT_EQ(a.time_enabled, 2);
361 ASSERT_EQ(a.time_running, 3);
362 CounterSum b = a + a;
363 ASSERT_EQ(b.value, 2);
364 ASSERT_EQ(b.time_enabled, 4);
365 ASSERT_EQ(b.time_running, 6);
366 CounterSum c = a - a;
367 ASSERT_EQ(c.value, 0);
368 ASSERT_EQ(c.time_enabled, 0);
369 ASSERT_EQ(c.time_running, 0);
370 b.ToCounter(counter);
371 ASSERT_EQ(counter.value, 2);
372 ASSERT_EQ(counter.time_enabled, 4);
373 ASSERT_EQ(counter.time_running, 6);
374 }
375
376 class StatCmdSummaryBuilderTest : public ::testing::Test {
377 protected:
378 struct CounterArg {
379 int event_id = 0;
380 int tid = 0;
381 int cpu = 0;
382 int value = 1;
383 int time_enabled = 1;
384 int time_running = 1;
385 };
386
SetUp()387 void SetUp() override {
388 sort_keys_ = {"count_per_thread", "tid", "cpu", "count"};
389 }
390
AddCounter(const CounterArg & arg)391 void AddCounter(const CounterArg& arg) {
392 if (thread_map_.count(arg.tid) == 0) {
393 ThreadInfo& thread = thread_map_[arg.tid];
394 thread.pid = thread.tid = arg.tid;
395 thread.name = "thread" + std::to_string(arg.tid);
396 }
397 if (arg.event_id >= counters_.size()) {
398 counters_.resize(arg.event_id + 1);
399 counters_[arg.event_id].group_id = 0;
400 counters_[arg.event_id].event_name = "event" + std::to_string(arg.event_id);
401 }
402 CountersInfo& info = counters_[arg.event_id];
403 info.counters.resize(info.counters.size() + 1);
404 CounterInfo& counter = info.counters.back();
405 counter.tid = arg.tid;
406 counter.cpu = arg.cpu;
407 counter.counter.id = 0;
408 counter.counter.value = arg.value;
409 counter.counter.time_enabled = arg.time_enabled;
410 counter.counter.time_running = arg.time_running;
411 }
412
BuildSummary(bool report_per_thread,bool report_per_core)413 std::vector<CounterSummary> BuildSummary(bool report_per_thread, bool report_per_core) {
414 std::optional<SummaryComparator> comparator =
415 BuildSummaryComparator(sort_keys_, report_per_thread, report_per_core);
416 CounterSummaryBuilder builder(report_per_thread, report_per_core, false, thread_map_,
417 comparator);
418 for (auto& info : counters_) {
419 builder.AddCountersForOneEventType(info);
420 }
421 return builder.Build();
422 }
423
424 std::unordered_map<pid_t, ThreadInfo> thread_map_;
425 std::vector<CountersInfo> counters_;
426 std::vector<std::string> sort_keys_;
427 };
428
TEST_F(StatCmdSummaryBuilderTest,multiple_events)429 TEST_F(StatCmdSummaryBuilderTest, multiple_events) {
430 AddCounter({.event_id = 0, .value = 1, .time_enabled = 1, .time_running = 1});
431 AddCounter({.event_id = 1, .value = 2, .time_enabled = 2, .time_running = 2});
432 std::vector<CounterSummary> summaries = BuildSummary(false, false);
433 ASSERT_EQ(summaries.size(), 2);
434 ASSERT_EQ(summaries[0].type_name, "event0");
435 ASSERT_EQ(summaries[0].count, 1);
436 ASSERT_NEAR(summaries[0].scale, 1.0, 1e-5);
437 ASSERT_EQ(summaries[1].type_name, "event1");
438 ASSERT_EQ(summaries[1].count, 2);
439 ASSERT_NEAR(summaries[1].scale, 1.0, 1e-5);
440 }
441
TEST_F(StatCmdSummaryBuilderTest,default_aggregate)442 TEST_F(StatCmdSummaryBuilderTest, default_aggregate) {
443 AddCounter({.tid = 0, .cpu = 0, .value = 1, .time_enabled = 1, .time_running = 1});
444 AddCounter({.tid = 0, .cpu = 1, .value = 1, .time_enabled = 1, .time_running = 1});
445 AddCounter({.tid = 1, .cpu = 0, .value = 1, .time_enabled = 1, .time_running = 1});
446 AddCounter({.tid = 1, .cpu = 1, .value = 2, .time_enabled = 2, .time_running = 1});
447 std::vector<CounterSummary> summaries = BuildSummary(false, false);
448 ASSERT_EQ(summaries.size(), 1);
449 ASSERT_EQ(summaries[0].count, 5);
450 ASSERT_NEAR(summaries[0].scale, 1.25, 1e-5);
451 }
452
TEST_F(StatCmdSummaryBuilderTest,per_thread_aggregate)453 TEST_F(StatCmdSummaryBuilderTest, per_thread_aggregate) {
454 AddCounter({.tid = 0, .cpu = 0, .value = 1, .time_enabled = 1, .time_running = 1});
455 AddCounter({.tid = 0, .cpu = 1, .value = 1, .time_enabled = 1, .time_running = 1});
456 AddCounter({.tid = 1, .cpu = 0, .value = 1, .time_enabled = 1, .time_running = 1});
457 AddCounter({.tid = 1, .cpu = 1, .value = 2, .time_enabled = 2, .time_running = 1});
458 std::vector<CounterSummary> summaries = BuildSummary(true, false);
459 ASSERT_EQ(summaries.size(), 2);
460 ASSERT_EQ(summaries[0].thread->tid, 1);
461 ASSERT_EQ(summaries[0].cpu, -1);
462 ASSERT_EQ(summaries[0].count, 3);
463 ASSERT_NEAR(summaries[0].scale, 1.5, 1e-5);
464 ASSERT_EQ(summaries[1].thread->tid, 0);
465 ASSERT_EQ(summaries[0].cpu, -1);
466 ASSERT_EQ(summaries[1].count, 2);
467 ASSERT_NEAR(summaries[1].scale, 1.0, 1e-5);
468 }
469
TEST_F(StatCmdSummaryBuilderTest,per_core_aggregate)470 TEST_F(StatCmdSummaryBuilderTest, per_core_aggregate) {
471 AddCounter({.tid = 0, .cpu = 0, .value = 1, .time_enabled = 1, .time_running = 1});
472 AddCounter({.tid = 0, .cpu = 1, .value = 1, .time_enabled = 1, .time_running = 1});
473 AddCounter({.tid = 1, .cpu = 0, .value = 1, .time_enabled = 1, .time_running = 1});
474 AddCounter({.tid = 1, .cpu = 1, .value = 2, .time_enabled = 2, .time_running = 1});
475 std::vector<CounterSummary> summaries = BuildSummary(false, true);
476 ASSERT_TRUE(summaries[0].thread == nullptr);
477 ASSERT_EQ(summaries[0].cpu, 0);
478 ASSERT_EQ(summaries[0].count, 2);
479 ASSERT_NEAR(summaries[0].scale, 1.0, 1e-5);
480 ASSERT_EQ(summaries.size(), 2);
481 ASSERT_TRUE(summaries[1].thread == nullptr);
482 ASSERT_EQ(summaries[1].cpu, 1);
483 ASSERT_EQ(summaries[1].count, 3);
484 ASSERT_NEAR(summaries[1].scale, 1.5, 1e-5);
485 }
486
TEST_F(StatCmdSummaryBuilderTest,per_thread_core_aggregate)487 TEST_F(StatCmdSummaryBuilderTest, per_thread_core_aggregate) {
488 AddCounter({.tid = 0, .cpu = 0, .value = 1, .time_enabled = 1, .time_running = 1});
489 AddCounter({.tid = 0, .cpu = 1, .value = 2, .time_enabled = 1, .time_running = 1});
490 AddCounter({.tid = 1, .cpu = 0, .value = 3, .time_enabled = 1, .time_running = 1});
491 AddCounter({.tid = 1, .cpu = 1, .value = 4, .time_enabled = 2, .time_running = 1});
492 std::vector<CounterSummary> summaries = BuildSummary(true, true);
493 ASSERT_EQ(summaries.size(), 4);
494 ASSERT_EQ(summaries[0].thread->tid, 1);
495 ASSERT_EQ(summaries[0].cpu, 0);
496 ASSERT_EQ(summaries[0].count, 3);
497 ASSERT_NEAR(summaries[0].scale, 1.0, 1e-5);
498 ASSERT_EQ(summaries[1].thread->tid, 1);
499 ASSERT_EQ(summaries[1].cpu, 1);
500 ASSERT_EQ(summaries[1].count, 4);
501 ASSERT_NEAR(summaries[1].scale, 2.0, 1e-5);
502 ASSERT_EQ(summaries[2].thread->tid, 0);
503 ASSERT_EQ(summaries[2].cpu, 0);
504 ASSERT_EQ(summaries[2].count, 1);
505 ASSERT_NEAR(summaries[2].scale, 1.0, 1e-5);
506 ASSERT_EQ(summaries[3].thread->tid, 0);
507 ASSERT_EQ(summaries[3].cpu, 1);
508 ASSERT_EQ(summaries[3].count, 2);
509 ASSERT_NEAR(summaries[3].scale, 1.0, 1e-5);
510 }
511
TEST_F(StatCmdSummaryBuilderTest,sort_key_count)512 TEST_F(StatCmdSummaryBuilderTest, sort_key_count) {
513 sort_keys_ = {"count"};
514 AddCounter({.tid = 0, .cpu = 0, .value = 1});
515 AddCounter({.tid = 1, .cpu = 1, .value = 2});
516 std::vector<CounterSummary> summaries = BuildSummary(true, true);
517 ASSERT_EQ(summaries[0].count, 2);
518 ASSERT_EQ(summaries[1].count, 1);
519 }
520
TEST_F(StatCmdSummaryBuilderTest,sort_key_count_per_thread)521 TEST_F(StatCmdSummaryBuilderTest, sort_key_count_per_thread) {
522 sort_keys_ = {"count_per_thread", "count"};
523 AddCounter({.tid = 0, .cpu = 0, .value = 1});
524 AddCounter({.tid = 0, .cpu = 1, .value = 5});
525 AddCounter({.tid = 1, .cpu = 0, .value = 3});
526 std::vector<CounterSummary> summaries = BuildSummary(true, true);
527 ASSERT_EQ(summaries[0].count, 5);
528 ASSERT_EQ(summaries[1].count, 1);
529 ASSERT_EQ(summaries[2].count, 3);
530 }
531
TEST_F(StatCmdSummaryBuilderTest,sort_key_cpu)532 TEST_F(StatCmdSummaryBuilderTest, sort_key_cpu) {
533 sort_keys_ = {"cpu"};
534 AddCounter({.tid = 0, .cpu = 1, .value = 2});
535 AddCounter({.tid = 1, .cpu = 0, .value = 1});
536 std::vector<CounterSummary> summaries = BuildSummary(false, true);
537 ASSERT_EQ(summaries[0].cpu, 0);
538 ASSERT_EQ(summaries[1].cpu, 1);
539 }
540
TEST_F(StatCmdSummaryBuilderTest,sort_key_pid_tid_name)541 TEST_F(StatCmdSummaryBuilderTest, sort_key_pid_tid_name) {
542 AddCounter({.tid = 0, .cpu = 0, .value = 1});
543 AddCounter({.tid = 1, .cpu = 0, .value = 2});
544
545 for (auto& key : std::vector<std::string>({"tid", "pid", "comm"})) {
546 sort_keys_ = {key};
547 std::vector<CounterSummary> summaries = BuildSummary(true, false);
548 ASSERT_EQ(summaries[0].count, 1) << "key = " << key;
549 ASSERT_EQ(summaries[1].count, 2) << "key = " << key;
550 }
551 }
552
553 class StatCmdSummariesTest : public ::testing::Test {
554 protected:
AddSummary(const std::string event_name,pid_t tid,int cpu,uint64_t count,uint64_t runtime_in_ns)555 void AddSummary(const std::string event_name, pid_t tid, int cpu, uint64_t count,
556 uint64_t runtime_in_ns) {
557 ThreadInfo* thread = nullptr;
558 if (tid != -1) {
559 thread = &thread_map_[tid];
560 }
561 summary_v_.emplace_back(event_name, "", 0, thread, cpu, count, runtime_in_ns, 1.0, false,
562 false);
563 }
564
GetComment(size_t index)565 const std::string* GetComment(size_t index) {
566 if (!summaries_) {
567 summaries_.reset(new CounterSummaries(std::move(summary_v_), false));
568 summaries_->GenerateComments(1.0);
569 }
570 if (index < summaries_->Summaries().size()) {
571 return &(summaries_->Summaries()[index].comment);
572 }
573 return nullptr;
574 }
575
576 std::unordered_map<pid_t, ThreadInfo> thread_map_;
577 std::vector<CounterSummary> summary_v_;
578 std::unique_ptr<CounterSummaries> summaries_;
579 };
580
TEST_F(StatCmdSummariesTest,task_clock_comment)581 TEST_F(StatCmdSummariesTest, task_clock_comment) {
582 AddSummary("task-clock", -1, -1, 1e9, 0);
583 AddSummary("task-clock", 0, -1, 2e9, 0);
584 AddSummary("task-clock", -1, 0, 0.5e9, 0);
585 AddSummary("task-clock", 1, 1, 3e9, 0);
586 ASSERT_EQ(*GetComment(0), "1.000000 cpus used");
587 ASSERT_EQ(*GetComment(1), "2.000000 cpus used");
588 ASSERT_EQ(*GetComment(2), "0.500000 cpus used");
589 ASSERT_EQ(*GetComment(3), "3.000000 cpus used");
590 }
591
TEST_F(StatCmdSummariesTest,cpu_cycles_comment)592 TEST_F(StatCmdSummariesTest, cpu_cycles_comment) {
593 AddSummary("cpu-cycles", -1, -1, 100, 100);
594 AddSummary("cpu-cycles", 0, -1, 200, 100);
595 AddSummary("cpu-cycles", -1, 0, 50, 100);
596 AddSummary("cpu-cycles", 1, 1, 300, 100);
597 ASSERT_EQ(*GetComment(0), "1.000000 GHz");
598 ASSERT_EQ(*GetComment(1), "2.000000 GHz");
599 ASSERT_EQ(*GetComment(2), "0.500000 GHz");
600 ASSERT_EQ(*GetComment(3), "3.000000 GHz");
601 }
602
TEST_F(StatCmdSummariesTest,rate_comment)603 TEST_F(StatCmdSummariesTest, rate_comment) {
604 AddSummary("branch-misses", -1, -1, 1e9, 1e9);
605 AddSummary("branch-misses", 0, -1, 1e6, 1e9);
606 AddSummary("branch-misses", -1, 0, 1e3, 1e9);
607 AddSummary("branch-misses", 1, 1, 1, 1e9);
608 ASSERT_EQ(*GetComment(0), "1.000 G/sec");
609 ASSERT_EQ(*GetComment(1), "1.000 M/sec");
610 ASSERT_EQ(*GetComment(2), "1.000 K/sec");
611 ASSERT_EQ(*GetComment(3), "1.000 /sec");
612 }