blob: 20ed3bf4130c40a385b7b042f449e07ed8a1daa6 [file] [log] [blame]
Sandeep Patil54d87212018-08-29 17:10:47 -07001/*
2 * Copyright (C) 2018 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 <sys/types.h>
18#include <sys/wait.h>
19#include <unistd.h>
20
21#include <gtest/gtest.h>
22
23#include <string>
24#include <vector>
25
26#include <meminfo/pageacct.h>
27#include <meminfo/procmeminfo.h>
28#include <meminfo/sysmeminfo.h>
29#include <pagemap/pagemap.h>
30
31#include <android-base/file.h>
32#include <android-base/logging.h>
Sandeep Patilc24f1e32018-12-29 14:34:20 -080033#include <android-base/stringprintf.h>
Sandeep Patil54d87212018-08-29 17:10:47 -070034
35using namespace std;
36using namespace android::meminfo;
37
38pid_t pid = -1;
39
40class ValidateProcMemInfo : public ::testing::Test {
41 protected:
42 void SetUp() override {
43 ASSERT_EQ(0, pm_kernel_create(&ker));
44 ASSERT_EQ(0, pm_process_create(ker, pid, &proc));
45 proc_mem = new ProcMemInfo(pid);
46 ASSERT_NE(proc_mem, nullptr);
47 }
48
49 void TearDown() override {
50 delete proc_mem;
51 pm_process_destroy(proc);
52 pm_kernel_destroy(ker);
53 }
54
55 pm_kernel_t* ker;
56 pm_process_t* proc;
57 ProcMemInfo* proc_mem;
58};
59
60TEST_F(ValidateProcMemInfo, TestMapsSize) {
61 const std::vector<Vma>& maps = proc_mem->Maps();
62 ASSERT_FALSE(maps.empty()) << "Process " << getpid() << " maps are empty";
63}
64
65TEST_F(ValidateProcMemInfo, TestMapsEquality) {
66 const std::vector<Vma>& maps = proc_mem->Maps();
67 ASSERT_EQ(proc->num_maps, maps.size());
68
69 for (size_t i = 0; i < maps.size(); ++i) {
70 EXPECT_EQ(proc->maps[i]->start, maps[i].start);
71 EXPECT_EQ(proc->maps[i]->end, maps[i].end);
72 EXPECT_EQ(proc->maps[i]->offset, maps[i].offset);
73 EXPECT_EQ(std::string(proc->maps[i]->name), maps[i].name);
74 }
75}
76
Sandeep Patil2259fdf2018-11-09 16:42:45 -080077TEST_F(ValidateProcMemInfo, TestMaps) {
Sandeep Patil54d87212018-08-29 17:10:47 -070078 const std::vector<Vma>& maps = proc_mem->Maps();
79 ASSERT_FALSE(maps.empty());
80 ASSERT_EQ(proc->num_maps, maps.size());
81
82 pm_memusage_t map_usage, proc_usage;
83 pm_memusage_zero(&map_usage);
84 pm_memusage_zero(&proc_usage);
85 for (size_t i = 0; i < maps.size(); i++) {
86 ASSERT_EQ(0, pm_map_usage(proc->maps[i], &map_usage));
87 EXPECT_EQ(map_usage.vss, maps[i].usage.vss) << "VSS mismatch for map: " << maps[i].name;
88 EXPECT_EQ(map_usage.rss, maps[i].usage.rss) << "RSS mismatch for map: " << maps[i].name;
89 EXPECT_EQ(map_usage.pss, maps[i].usage.pss) << "PSS mismatch for map: " << maps[i].name;
90 EXPECT_EQ(map_usage.uss, maps[i].usage.uss) << "USS mismatch for map: " << maps[i].name;
91 pm_memusage_add(&proc_usage, &map_usage);
92 }
93
94 EXPECT_EQ(proc_usage.vss, proc_mem->Usage().vss);
95 EXPECT_EQ(proc_usage.rss, proc_mem->Usage().rss);
96 EXPECT_EQ(proc_usage.pss, proc_mem->Usage().pss);
97 EXPECT_EQ(proc_usage.uss, proc_mem->Usage().uss);
98}
99
Sandeep Patil2259fdf2018-11-09 16:42:45 -0800100TEST_F(ValidateProcMemInfo, TestSwapUsage) {
101 const std::vector<Vma>& maps = proc_mem->Maps();
102 ASSERT_FALSE(maps.empty());
103 ASSERT_EQ(proc->num_maps, maps.size());
104
105 pm_memusage_t map_usage, proc_usage;
106 pm_memusage_zero(&map_usage);
107 pm_memusage_zero(&proc_usage);
108 for (size_t i = 0; i < maps.size(); i++) {
109 ASSERT_EQ(0, pm_map_usage(proc->maps[i], &map_usage));
110 EXPECT_EQ(map_usage.swap, maps[i].usage.swap) << "SWAP mismatch for map: " << maps[i].name;
111 pm_memusage_add(&proc_usage, &map_usage);
112 }
113
114 EXPECT_EQ(proc_usage.swap, proc_mem->Usage().swap);
115}
116
117TEST_F(ValidateProcMemInfo, TestSwapOffsets) {
118 const MemUsage& proc_usage = proc_mem->Usage();
119 const std::vector<uint16_t>& swap_offsets = proc_mem->SwapOffsets();
120
121 EXPECT_EQ(proc_usage.swap / getpagesize(), swap_offsets.size());
122}
123
Sandeep Patil54d87212018-08-29 17:10:47 -0700124class ValidateProcMemInfoWss : public ::testing::Test {
125 protected:
126 void SetUp() override {
127 ASSERT_EQ(0, pm_kernel_create(&ker));
128 ASSERT_EQ(0, pm_process_create(ker, pid, &proc));
129 proc_mem = new ProcMemInfo(pid, true);
130 ASSERT_NE(proc_mem, nullptr);
131 }
132
133 void TearDown() override {
134 delete proc_mem;
135 pm_process_destroy(proc);
136 pm_kernel_destroy(ker);
137 }
138
139 pm_kernel_t* ker;
140 pm_process_t* proc;
141 ProcMemInfo* proc_mem;
142};
143
144TEST_F(ValidateProcMemInfoWss, TestWorkingTestReset) {
145 // Expect reset to succeed
Sandeep Patilf1291992018-11-19 15:25:18 -0800146 EXPECT_TRUE(ProcMemInfo::ResetWorkingSet(pid));
Sandeep Patil54d87212018-08-29 17:10:47 -0700147}
148
149TEST_F(ValidateProcMemInfoWss, TestWssEquality) {
150 // Read wss using libpagemap
151 pm_memusage_t wss_pagemap;
152 EXPECT_EQ(0, pm_process_workingset(proc, &wss_pagemap, 0));
153
154 // Read wss using libmeminfo
155 MemUsage wss = proc_mem->Wss();
156
157 // compare
158 EXPECT_EQ(wss_pagemap.rss, wss.rss);
159 EXPECT_EQ(wss_pagemap.pss, wss.pss);
160 EXPECT_EQ(wss_pagemap.uss, wss.uss);
161}
162
163class ValidatePageAcct : public ::testing::Test {
164 protected:
165 void SetUp() override {
166 ASSERT_EQ(0, pm_kernel_create(&ker));
167 ASSERT_EQ(0, pm_process_create(ker, pid, &proc));
168 }
169
170 void TearDown() override {
171 pm_process_destroy(proc);
172 pm_kernel_destroy(ker);
173 }
174
175 pm_kernel_t* ker;
176 pm_process_t* proc;
177};
178
179TEST_F(ValidatePageAcct, TestPageFlags) {
180 PageAcct& pi = PageAcct::Instance();
181 pi.InitPageAcct(false);
182
183 uint64_t* pagemap;
184 size_t num_pages;
185 for (size_t i = 0; i < proc->num_maps; i++) {
186 ASSERT_EQ(0, pm_map_pagemap(proc->maps[i], &pagemap, &num_pages));
187 for (size_t j = 0; j < num_pages; j++) {
188 if (!PM_PAGEMAP_PRESENT(pagemap[j])) continue;
189
190 uint64_t pfn = PM_PAGEMAP_PFN(pagemap[j]);
191 uint64_t page_flags_pagemap, page_flags_meminfo;
192
193 ASSERT_EQ(0, pm_kernel_flags(ker, pfn, &page_flags_pagemap));
194 ASSERT_TRUE(pi.PageFlags(pfn, &page_flags_meminfo));
195 // check if page flags equal
196 EXPECT_EQ(page_flags_pagemap, page_flags_meminfo);
197 }
198 free(pagemap);
199 }
200}
201
202TEST_F(ValidatePageAcct, TestPageCounts) {
203 PageAcct& pi = PageAcct::Instance();
204 pi.InitPageAcct(false);
205
206 uint64_t* pagemap;
207 size_t num_pages;
208 for (size_t i = 0; i < proc->num_maps; i++) {
209 ASSERT_EQ(0, pm_map_pagemap(proc->maps[i], &pagemap, &num_pages));
210 for (size_t j = 0; j < num_pages; j++) {
211 uint64_t pfn = PM_PAGEMAP_PFN(pagemap[j]);
212 uint64_t map_count_pagemap, map_count_meminfo;
213
214 ASSERT_EQ(0, pm_kernel_count(ker, pfn, &map_count_pagemap));
215 ASSERT_TRUE(pi.PageMapCount(pfn, &map_count_meminfo));
216 // check if map counts are equal
217 EXPECT_EQ(map_count_pagemap, map_count_meminfo);
218 }
219 free(pagemap);
220 }
221}
222
223TEST_F(ValidatePageAcct, TestPageIdle) {
224 // skip the test if idle page tracking isn't enabled
225 if (pm_kernel_init_page_idle(ker) != 0) {
226 return;
227 }
228
229 PageAcct& pi = PageAcct::Instance();
230 ASSERT_TRUE(pi.InitPageAcct(true));
231
232 uint64_t* pagemap;
233 size_t num_pages;
234 for (size_t i = 0; i < proc->num_maps; i++) {
235 ASSERT_EQ(0, pm_map_pagemap(proc->maps[i], &pagemap, &num_pages));
236 for (size_t j = 0; j < num_pages; j++) {
237 if (!PM_PAGEMAP_PRESENT(pagemap[j])) continue;
238 uint64_t pfn = PM_PAGEMAP_PFN(pagemap[j]);
239
240 ASSERT_EQ(0, pm_kernel_mark_page_idle(ker, &pfn, 1));
241 int idle_status_pagemap = pm_kernel_get_page_idle(ker, pfn);
242 int idle_status_meminfo = pi.IsPageIdle(pfn);
243 EXPECT_EQ(idle_status_pagemap, idle_status_meminfo);
244 }
245 free(pagemap);
246 }
247}
248
Sandeep Patilfa2d8d52018-12-29 21:05:38 -0800249TEST(TestProcMemInfo, MapsEmpty) {
Sandeep Patilc6497eb2018-11-20 09:31:36 -0800250 ProcMemInfo proc_mem(pid);
251 const std::vector<Vma>& maps = proc_mem.Maps();
252 EXPECT_GT(maps.size(), 0);
253}
254
Sandeep Patilfa2d8d52018-12-29 21:05:38 -0800255TEST(TestProcMemInfo, UsageEmpty) {
Sandeep Patilc6497eb2018-11-20 09:31:36 -0800256 // If we created the object for getting working set,
257 // the usage must be empty
258 ProcMemInfo proc_mem(pid, true);
259 const MemUsage& usage = proc_mem.Usage();
260 EXPECT_EQ(usage.rss, 0);
261 EXPECT_EQ(usage.vss, 0);
262 EXPECT_EQ(usage.pss, 0);
263 EXPECT_EQ(usage.uss, 0);
264 EXPECT_EQ(usage.swap, 0);
265}
266
Sandeep Patilfa2d8d52018-12-29 21:05:38 -0800267TEST(TestProcMemInfo, WssEmpty) {
Sandeep Patilc6497eb2018-11-20 09:31:36 -0800268 // If we created the object for getting usage,
269 // the working set must be empty
270 ProcMemInfo proc_mem(pid, false);
271 const MemUsage& wss = proc_mem.Wss();
272 EXPECT_EQ(wss.rss, 0);
273 EXPECT_EQ(wss.vss, 0);
274 EXPECT_EQ(wss.pss, 0);
275 EXPECT_EQ(wss.uss, 0);
276 EXPECT_EQ(wss.swap, 0);
277}
278
Sandeep Patilfa2d8d52018-12-29 21:05:38 -0800279TEST(TestProcMemInfo, SwapOffsetsEmpty) {
Sandeep Patilc6497eb2018-11-20 09:31:36 -0800280 // If we created the object for getting working set,
281 // the swap offsets must be empty
282 ProcMemInfo proc_mem(pid, true);
283 const std::vector<uint16_t>& swap_offsets = proc_mem.SwapOffsets();
284 EXPECT_EQ(swap_offsets.size(), 0);
285}
286
Sandeep Patilfa2d8d52018-12-29 21:05:38 -0800287TEST(TestProcMemInfo, SmapsOrRollupReturn) {
288 // if /proc/<pid>/smaps_rollup file exists, .SmapsRollup() must return true;
289 // false otherwise
290 std::string path = ::android::base::StringPrintf("/proc/%d/smaps_rollup", pid);
291 ProcMemInfo proc_mem(pid);
292 MemUsage stats;
293 EXPECT_EQ(!access(path.c_str(), F_OK), proc_mem.SmapsOrRollup(true, &stats));
294}
295
296TEST(TestProcMemInfo, SmapsOrRollupTest) {
297 std::string rollup =
298 R"rollup(12c00000-7fe859e000 ---p 00000000 00:00 0 [rollup]
299Rss: 331908 kB
300Pss: 202052 kB
301Shared_Clean: 158492 kB
302Shared_Dirty: 18928 kB
303Private_Clean: 90472 kB
304Private_Dirty: 64016 kB
305Referenced: 318700 kB
306Anonymous: 81984 kB
307AnonHugePages: 0 kB
308Shared_Hugetlb: 0 kB
309Private_Hugetlb: 0 kB
310Swap: 5344 kB
311SwapPss: 442 kB
312Locked: 1523537 kB)rollup";
313
314 TemporaryFile tf;
315 ASSERT_TRUE(tf.fd != -1);
316 ASSERT_TRUE(::android::base::WriteStringToFd(rollup, tf.fd));
317
318 MemUsage stats;
319 ASSERT_EQ(SmapsOrRollupFromFile(tf.path, &stats), true);
320 EXPECT_EQ(stats.rss, 331908);
321 EXPECT_EQ(stats.pss, 202052);
322 EXPECT_EQ(stats.uss, 154488);
323 EXPECT_EQ(stats.private_clean, 90472);
324 EXPECT_EQ(stats.private_dirty, 64016);
325 EXPECT_EQ(stats.swap_pss, 442);
326}
327
328TEST(TestProcMemInfo, SmapsOrRollupSmapsTest) {
329 // This is a made up smaps for the test
330 std::string smaps =
331 R"smaps(12c00000-13440000 rw-p 00000000 00:00 0 [anon:dalvik-main space (region space)]
332Name: [anon:dalvik-main space (region space)]
333Size: 8448 kB
334KernelPageSize: 4 kB
335MMUPageSize: 4 kB
336Rss: 2652 kB
337Pss: 2652 kB
338Shared_Clean: 840 kB
339Shared_Dirty: 40 kB
340Private_Clean: 84 kB
341Private_Dirty: 2652 kB
342Referenced: 2652 kB
343Anonymous: 2652 kB
344AnonHugePages: 0 kB
345ShmemPmdMapped: 0 kB
346Shared_Hugetlb: 0 kB
347Private_Hugetlb: 0 kB
348Swap: 102 kB
349SwapPss: 70 kB
350Locked: 2652 kB
351VmFlags: rd wr mr mw me ac
352)smaps";
353
354 TemporaryFile tf;
355 ASSERT_TRUE(tf.fd != -1);
356 ASSERT_TRUE(::android::base::WriteStringToFd(smaps, tf.fd));
357
358 MemUsage stats;
359 ASSERT_EQ(SmapsOrRollupFromFile(tf.path, &stats), true);
360 EXPECT_EQ(stats.rss, 2652);
361 EXPECT_EQ(stats.pss, 2652);
362 EXPECT_EQ(stats.uss, 2736);
363 EXPECT_EQ(stats.private_clean, 84);
364 EXPECT_EQ(stats.private_dirty, 2652);
365 EXPECT_EQ(stats.swap_pss, 70);
366}
367
Sandeep Patil82a48b12019-01-01 16:04:04 -0800368TEST(TestProcMemInfo, ForEachVmaFromFileTest) {
369 std::string exec_dir = ::android::base::GetExecutableDirectory();
370 std::string path = ::android::base::StringPrintf("%s/testdata1/smaps_short", exec_dir.c_str());
371 ProcMemInfo proc_mem(pid);
372
373 std::vector<Vma> vmas;
374 auto collect_vmas = [&](const Vma& v) { vmas.push_back(v); };
375 ASSERT_TRUE(ForEachVmaFromFile(path, collect_vmas));
376
377 // Expect values to be equal to what we have in testdata1/smaps_short
378 // Check for sizes first
379 ASSERT_EQ(vmas[0].usage.vss, 32768);
380 EXPECT_EQ(vmas[1].usage.vss, 11204);
381 EXPECT_EQ(vmas[2].usage.vss, 16896);
382 EXPECT_EQ(vmas[3].usage.vss, 260);
383 EXPECT_EQ(vmas[4].usage.vss, 6060);
384 EXPECT_EQ(vmas[5].usage.vss, 4);
385
386 // Check for names
387 EXPECT_EQ(vmas[0].name, "[anon:dalvik-zygote-jit-code-cache]");
388 EXPECT_EQ(vmas[1].name, "/system/framework/x86_64/boot-framework.art");
389 EXPECT_EQ(vmas[2].name, "[anon:libc_malloc]");
390 EXPECT_EQ(vmas[3].name, "/system/priv-app/SettingsProvider/oat/x86_64/SettingsProvider.odex");
391 EXPECT_EQ(vmas[4].name, "/system/lib64/libhwui.so");
392 EXPECT_EQ(vmas[5].name, "[vsyscall]");
393
394 EXPECT_EQ(vmas[0].usage.rss, 2048);
395 EXPECT_EQ(vmas[1].usage.rss, 11188);
396 EXPECT_EQ(vmas[2].usage.rss, 15272);
397 EXPECT_EQ(vmas[3].usage.rss, 260);
398 EXPECT_EQ(vmas[4].usage.rss, 4132);
399 EXPECT_EQ(vmas[5].usage.rss, 0);
400
401 EXPECT_EQ(vmas[0].usage.pss, 113);
402 EXPECT_EQ(vmas[1].usage.pss, 2200);
403 EXPECT_EQ(vmas[2].usage.pss, 15272);
404 EXPECT_EQ(vmas[3].usage.pss, 260);
405 EXPECT_EQ(vmas[4].usage.pss, 1274);
406 EXPECT_EQ(vmas[5].usage.pss, 0);
407
408 EXPECT_EQ(vmas[0].usage.uss, 0);
409 EXPECT_EQ(vmas[1].usage.uss, 1660);
410 EXPECT_EQ(vmas[2].usage.uss, 15272);
411 EXPECT_EQ(vmas[3].usage.uss, 260);
412 EXPECT_EQ(vmas[4].usage.uss, 0);
413 EXPECT_EQ(vmas[5].usage.uss, 0);
414
415 EXPECT_EQ(vmas[0].usage.private_clean, 0);
416 EXPECT_EQ(vmas[1].usage.private_clean, 0);
417 EXPECT_EQ(vmas[2].usage.private_clean, 0);
418 EXPECT_EQ(vmas[3].usage.private_clean, 260);
419 EXPECT_EQ(vmas[4].usage.private_clean, 0);
420 EXPECT_EQ(vmas[5].usage.private_clean, 0);
421
422 EXPECT_EQ(vmas[0].usage.private_dirty, 0);
423 EXPECT_EQ(vmas[1].usage.private_dirty, 1660);
424 EXPECT_EQ(vmas[2].usage.private_dirty, 15272);
425 EXPECT_EQ(vmas[3].usage.private_dirty, 0);
426 EXPECT_EQ(vmas[4].usage.private_dirty, 0);
427 EXPECT_EQ(vmas[5].usage.private_dirty, 0);
428
429 EXPECT_EQ(vmas[0].usage.shared_clean, 0);
430 EXPECT_EQ(vmas[1].usage.shared_clean, 80);
431 EXPECT_EQ(vmas[2].usage.shared_clean, 0);
432 EXPECT_EQ(vmas[3].usage.shared_clean, 0);
433 EXPECT_EQ(vmas[4].usage.shared_clean, 4132);
434 EXPECT_EQ(vmas[5].usage.shared_clean, 0);
435
436 EXPECT_EQ(vmas[0].usage.shared_dirty, 2048);
437 EXPECT_EQ(vmas[1].usage.shared_dirty, 9448);
438 EXPECT_EQ(vmas[2].usage.shared_dirty, 0);
439 EXPECT_EQ(vmas[3].usage.shared_dirty, 0);
440 EXPECT_EQ(vmas[4].usage.shared_dirty, 0);
441 EXPECT_EQ(vmas[5].usage.shared_dirty, 0);
442
443 EXPECT_EQ(vmas[0].usage.swap, 0);
444 EXPECT_EQ(vmas[1].usage.swap, 0);
445 EXPECT_EQ(vmas[2].usage.swap, 0);
446 EXPECT_EQ(vmas[3].usage.swap, 0);
447 EXPECT_EQ(vmas[4].usage.swap, 0);
448 EXPECT_EQ(vmas[5].usage.swap, 0);
449
450 EXPECT_EQ(vmas[0].usage.swap_pss, 0);
451 EXPECT_EQ(vmas[1].usage.swap_pss, 0);
452 EXPECT_EQ(vmas[2].usage.swap_pss, 0);
453 EXPECT_EQ(vmas[3].usage.swap_pss, 0);
454 EXPECT_EQ(vmas[4].usage.swap_pss, 0);
455 EXPECT_EQ(vmas[5].usage.swap_pss, 0);
456}
457
458TEST(TestProcMemInfo, SmapsReturnTest) {
459 ProcMemInfo proc_mem(pid);
460 auto vmas = proc_mem.Smaps();
461 EXPECT_FALSE(vmas.empty());
462}
463
464TEST(TestProcMemInfo, SmapsTest) {
465 std::string exec_dir = ::android::base::GetExecutableDirectory();
466 std::string path = ::android::base::StringPrintf("%s/testdata1/smaps_short", exec_dir.c_str());
467 ProcMemInfo proc_mem(pid);
468 auto vmas = proc_mem.Smaps(path);
469
470 ASSERT_FALSE(vmas.empty());
471
472 // Expect values to be equal to what we have in testdata1/smaps_short
473 // Check for sizes first
474 ASSERT_EQ(vmas[0].usage.vss, 32768);
475 EXPECT_EQ(vmas[1].usage.vss, 11204);
476 EXPECT_EQ(vmas[2].usage.vss, 16896);
477 EXPECT_EQ(vmas[3].usage.vss, 260);
478 EXPECT_EQ(vmas[4].usage.vss, 6060);
479 EXPECT_EQ(vmas[5].usage.vss, 4);
480
481 // Check for names
482 EXPECT_EQ(vmas[0].name, "[anon:dalvik-zygote-jit-code-cache]");
483 EXPECT_EQ(vmas[1].name, "/system/framework/x86_64/boot-framework.art");
484 EXPECT_EQ(vmas[2].name, "[anon:libc_malloc]");
485 EXPECT_EQ(vmas[3].name, "/system/priv-app/SettingsProvider/oat/x86_64/SettingsProvider.odex");
486 EXPECT_EQ(vmas[4].name, "/system/lib64/libhwui.so");
487 EXPECT_EQ(vmas[5].name, "[vsyscall]");
488
489 EXPECT_EQ(vmas[0].usage.rss, 2048);
490 EXPECT_EQ(vmas[1].usage.rss, 11188);
491 EXPECT_EQ(vmas[2].usage.rss, 15272);
492 EXPECT_EQ(vmas[3].usage.rss, 260);
493 EXPECT_EQ(vmas[4].usage.rss, 4132);
494 EXPECT_EQ(vmas[5].usage.rss, 0);
495
496 EXPECT_EQ(vmas[0].usage.pss, 113);
497 EXPECT_EQ(vmas[1].usage.pss, 2200);
498 EXPECT_EQ(vmas[2].usage.pss, 15272);
499 EXPECT_EQ(vmas[3].usage.pss, 260);
500 EXPECT_EQ(vmas[4].usage.pss, 1274);
501 EXPECT_EQ(vmas[5].usage.pss, 0);
502
503 EXPECT_EQ(vmas[0].usage.uss, 0);
504 EXPECT_EQ(vmas[1].usage.uss, 1660);
505 EXPECT_EQ(vmas[2].usage.uss, 15272);
506 EXPECT_EQ(vmas[3].usage.uss, 260);
507 EXPECT_EQ(vmas[4].usage.uss, 0);
508 EXPECT_EQ(vmas[5].usage.uss, 0);
509
510 EXPECT_EQ(vmas[0].usage.private_clean, 0);
511 EXPECT_EQ(vmas[1].usage.private_clean, 0);
512 EXPECT_EQ(vmas[2].usage.private_clean, 0);
513 EXPECT_EQ(vmas[3].usage.private_clean, 260);
514 EXPECT_EQ(vmas[4].usage.private_clean, 0);
515 EXPECT_EQ(vmas[5].usage.private_clean, 0);
516
517 EXPECT_EQ(vmas[0].usage.private_dirty, 0);
518 EXPECT_EQ(vmas[1].usage.private_dirty, 1660);
519 EXPECT_EQ(vmas[2].usage.private_dirty, 15272);
520 EXPECT_EQ(vmas[3].usage.private_dirty, 0);
521 EXPECT_EQ(vmas[4].usage.private_dirty, 0);
522 EXPECT_EQ(vmas[5].usage.private_dirty, 0);
523
524 EXPECT_EQ(vmas[0].usage.shared_clean, 0);
525 EXPECT_EQ(vmas[1].usage.shared_clean, 80);
526 EXPECT_EQ(vmas[2].usage.shared_clean, 0);
527 EXPECT_EQ(vmas[3].usage.shared_clean, 0);
528 EXPECT_EQ(vmas[4].usage.shared_clean, 4132);
529 EXPECT_EQ(vmas[5].usage.shared_clean, 0);
530
531 EXPECT_EQ(vmas[0].usage.shared_dirty, 2048);
532 EXPECT_EQ(vmas[1].usage.shared_dirty, 9448);
533 EXPECT_EQ(vmas[2].usage.shared_dirty, 0);
534 EXPECT_EQ(vmas[3].usage.shared_dirty, 0);
535 EXPECT_EQ(vmas[4].usage.shared_dirty, 0);
536 EXPECT_EQ(vmas[5].usage.shared_dirty, 0);
537
538 EXPECT_EQ(vmas[0].usage.swap, 0);
539 EXPECT_EQ(vmas[1].usage.swap, 0);
540 EXPECT_EQ(vmas[2].usage.swap, 0);
541 EXPECT_EQ(vmas[3].usage.swap, 0);
542 EXPECT_EQ(vmas[4].usage.swap, 0);
543 EXPECT_EQ(vmas[5].usage.swap, 0);
544
545 EXPECT_EQ(vmas[0].usage.swap_pss, 0);
546 EXPECT_EQ(vmas[1].usage.swap_pss, 0);
547 EXPECT_EQ(vmas[2].usage.swap_pss, 0);
548 EXPECT_EQ(vmas[3].usage.swap_pss, 0);
549 EXPECT_EQ(vmas[4].usage.swap_pss, 0);
550 EXPECT_EQ(vmas[5].usage.swap_pss, 0);
551}
552
Sandeep Patil549feab2018-11-19 11:38:40 -0800553TEST(ValidateProcMemInfoFlags, TestPageFlags1) {
554 // Create proc object using libpagemap
555 pm_kernel_t* ker;
556 ASSERT_EQ(0, pm_kernel_create(&ker));
557 pm_process_t* proc;
558 ASSERT_EQ(0, pm_process_create(ker, pid, &proc));
559
560 // count swapbacked pages using libpagemap
561 pm_memusage_t proc_usage;
562 pm_memusage_zero(&proc_usage);
563 ASSERT_EQ(0, pm_process_usage_flags(proc, &proc_usage, (1 << KPF_SWAPBACKED),
564 (1 << KPF_SWAPBACKED)));
565
566 // Create ProcMemInfo that counts swapbacked pages
567 ProcMemInfo proc_mem(pid, false, (1 << KPF_SWAPBACKED), (1 << KPF_SWAPBACKED));
568
569 EXPECT_EQ(proc_usage.vss, proc_mem.Usage().vss);
570 EXPECT_EQ(proc_usage.rss, proc_mem.Usage().rss);
571 EXPECT_EQ(proc_usage.pss, proc_mem.Usage().pss);
572 EXPECT_EQ(proc_usage.uss, proc_mem.Usage().uss);
573
574 pm_process_destroy(proc);
575 pm_kernel_destroy(ker);
576}
577
578TEST(ValidateProcMemInfoFlags, TestPageFlags2) {
579 // Create proc object using libpagemap
580 pm_kernel_t* ker;
581 ASSERT_EQ(0, pm_kernel_create(&ker));
582 pm_process_t* proc;
583 ASSERT_EQ(0, pm_process_create(ker, pid, &proc));
584
585 // count non-swapbacked pages using libpagemap
586 pm_memusage_t proc_usage;
587 pm_memusage_zero(&proc_usage);
588 ASSERT_EQ(0, pm_process_usage_flags(proc, &proc_usage, (1 << KPF_SWAPBACKED), 0));
589
590 // Create ProcMemInfo that counts non-swapbacked pages
591 ProcMemInfo proc_mem(pid, false, 0, (1 << KPF_SWAPBACKED));
592
593 EXPECT_EQ(proc_usage.vss, proc_mem.Usage().vss);
594 EXPECT_EQ(proc_usage.rss, proc_mem.Usage().rss);
595 EXPECT_EQ(proc_usage.pss, proc_mem.Usage().pss);
596 EXPECT_EQ(proc_usage.uss, proc_mem.Usage().uss);
597
598 pm_process_destroy(proc);
599 pm_kernel_destroy(ker);
600}
601
Sandeep Patil54d87212018-08-29 17:10:47 -0700602TEST(SysMemInfoParser, TestSysMemInfoFile) {
603 std::string meminfo = R"meminfo(MemTotal: 3019740 kB
604MemFree: 1809728 kB
605MemAvailable: 2546560 kB
606Buffers: 54736 kB
607Cached: 776052 kB
608SwapCached: 0 kB
609Active: 445856 kB
610Inactive: 459092 kB
611Active(anon): 78492 kB
612Inactive(anon): 2240 kB
613Active(file): 367364 kB
614Inactive(file): 456852 kB
615Unevictable: 3096 kB
616Mlocked: 3096 kB
Sandeep Patil2f0b6eb2018-12-11 09:28:38 -0800617SwapTotal: 32768 kB
618SwapFree: 4096 kB
Sandeep Patil54d87212018-08-29 17:10:47 -0700619Dirty: 32 kB
620Writeback: 0 kB
621AnonPages: 74988 kB
622Mapped: 62624 kB
623Shmem: 4020 kB
624Slab: 86464 kB
625SReclaimable: 44432 kB
626SUnreclaim: 42032 kB
627KernelStack: 4880 kB
628PageTables: 2900 kB
629NFS_Unstable: 0 kB
630Bounce: 0 kB
631WritebackTmp: 0 kB
632CommitLimit: 1509868 kB
633Committed_AS: 80296 kB
634VmallocTotal: 263061440 kB
Sandeep Patil2f0b6eb2018-12-11 09:28:38 -0800635VmallocUsed: 65536 kB
Sandeep Patil54d87212018-08-29 17:10:47 -0700636VmallocChunk: 0 kB
637AnonHugePages: 6144 kB
638ShmemHugePages: 0 kB
639ShmemPmdMapped: 0 kB
640CmaTotal: 131072 kB
641CmaFree: 130380 kB
642HugePages_Total: 0
643HugePages_Free: 0
644HugePages_Rsvd: 0
645HugePages_Surp: 0
646Hugepagesize: 2048 kB)meminfo";
647
648 TemporaryFile tf;
649 ASSERT_TRUE(tf.fd != -1);
650 ASSERT_TRUE(::android::base::WriteStringToFd(meminfo, tf.fd));
651
652 SysMemInfo mi;
653 ASSERT_TRUE(mi.ReadMemInfo(tf.path));
654 EXPECT_EQ(mi.mem_total_kb(), 3019740);
Sandeep Patil2f0b6eb2018-12-11 09:28:38 -0800655 EXPECT_EQ(mi.mem_free_kb(), 1809728);
656 EXPECT_EQ(mi.mem_buffers_kb(), 54736);
657 EXPECT_EQ(mi.mem_cached_kb(), 776052);
658 EXPECT_EQ(mi.mem_shmem_kb(), 4020);
659 EXPECT_EQ(mi.mem_slab_kb(), 86464);
660 EXPECT_EQ(mi.mem_slab_reclaimable_kb(), 44432);
661 EXPECT_EQ(mi.mem_slab_unreclaimable_kb(), 42032);
662 EXPECT_EQ(mi.mem_swap_kb(), 32768);
663 EXPECT_EQ(mi.mem_swap_free_kb(), 4096);
664 EXPECT_EQ(mi.mem_mapped_kb(), 62624);
665 EXPECT_EQ(mi.mem_vmalloc_used_kb(), 65536);
Sandeep Patil54d87212018-08-29 17:10:47 -0700666 EXPECT_EQ(mi.mem_page_tables_kb(), 2900);
Sandeep Patil2f0b6eb2018-12-11 09:28:38 -0800667 EXPECT_EQ(mi.mem_kernel_stack_kb(), 4880);
Sandeep Patil54d87212018-08-29 17:10:47 -0700668}
669
670TEST(SysMemInfoParser, TestEmptyFile) {
671 TemporaryFile tf;
672 std::string empty_string = "";
673 ASSERT_TRUE(tf.fd != -1);
674 ASSERT_TRUE(::android::base::WriteStringToFd(empty_string, tf.fd));
675
676 SysMemInfo mi;
677 EXPECT_TRUE(mi.ReadMemInfo(tf.path));
678 EXPECT_EQ(mi.mem_total_kb(), 0);
679}
680
Sandeep Patil2f0b6eb2018-12-11 09:28:38 -0800681TEST(SysMemInfoParser, TestZramTotal) {
Sandeep Patil70fa72d2018-11-09 19:18:29 -0800682 std::string exec_dir = ::android::base::GetExecutableDirectory();
683
684 SysMemInfo mi;
685 std::string zram_mmstat_dir = exec_dir + "/testdata1/";
686 EXPECT_EQ(mi.mem_zram_kb(zram_mmstat_dir), 30504);
687
688 std::string zram_memused_dir = exec_dir + "/testdata2/";
689 EXPECT_EQ(mi.mem_zram_kb(zram_memused_dir), 30504);
690}
691
Sandeep Patil2f0b6eb2018-12-11 09:28:38 -0800692enum {
693 MEMINFO_TOTAL,
694 MEMINFO_FREE,
695 MEMINFO_BUFFERS,
696 MEMINFO_CACHED,
697 MEMINFO_SHMEM,
698 MEMINFO_SLAB,
699 MEMINFO_SLAB_RECLAIMABLE,
700 MEMINFO_SLAB_UNRECLAIMABLE,
701 MEMINFO_SWAP_TOTAL,
702 MEMINFO_SWAP_FREE,
703 MEMINFO_ZRAM_TOTAL,
704 MEMINFO_MAPPED,
705 MEMINFO_VMALLOC_USED,
706 MEMINFO_PAGE_TABLES,
707 MEMINFO_KERNEL_STACK,
708 MEMINFO_COUNT
709};
710
711TEST(SysMemInfoParser, TestZramWithTags) {
712 std::string meminfo = R"meminfo(MemTotal: 3019740 kB
713MemFree: 1809728 kB
714MemAvailable: 2546560 kB
715Buffers: 54736 kB
716Cached: 776052 kB
717SwapCached: 0 kB
718Active: 445856 kB
719Inactive: 459092 kB
720Active(anon): 78492 kB
721Inactive(anon): 2240 kB
722Active(file): 367364 kB
723Inactive(file): 456852 kB
724Unevictable: 3096 kB
725Mlocked: 3096 kB
726SwapTotal: 32768 kB
727SwapFree: 4096 kB
728Dirty: 32 kB
729Writeback: 0 kB
730AnonPages: 74988 kB
731Mapped: 62624 kB
732Shmem: 4020 kB
733Slab: 86464 kB
734SReclaimable: 44432 kB
735SUnreclaim: 42032 kB
736KernelStack: 4880 kB
737PageTables: 2900 kB
738NFS_Unstable: 0 kB
739Bounce: 0 kB
740WritebackTmp: 0 kB
741CommitLimit: 1509868 kB
742Committed_AS: 80296 kB
743VmallocTotal: 263061440 kB
744VmallocUsed: 65536 kB
745VmallocChunk: 0 kB
746AnonHugePages: 6144 kB
747ShmemHugePages: 0 kB
748ShmemPmdMapped: 0 kB
749CmaTotal: 131072 kB
750CmaFree: 130380 kB
751HugePages_Total: 0
752HugePages_Free: 0
753HugePages_Rsvd: 0
754HugePages_Surp: 0
755Hugepagesize: 2048 kB)meminfo";
756
757 TemporaryFile tf;
758 ASSERT_TRUE(tf.fd != -1);
759 ASSERT_TRUE(::android::base::WriteStringToFd(meminfo, tf.fd));
760 std::string file = std::string(tf.path);
761 std::vector<uint64_t> mem(MEMINFO_COUNT);
762 std::vector<std::string> tags(SysMemInfo::kDefaultSysMemInfoTags);
763 auto it = tags.begin();
764 tags.insert(it + MEMINFO_ZRAM_TOTAL, "Zram:");
765 SysMemInfo mi;
766
767 // Read system memory info
768 EXPECT_TRUE(mi.ReadMemInfo(tags, &mem, file));
769
770 EXPECT_EQ(mem[MEMINFO_TOTAL], 3019740);
771 EXPECT_EQ(mem[MEMINFO_FREE], 1809728);
772 EXPECT_EQ(mem[MEMINFO_BUFFERS], 54736);
773 EXPECT_EQ(mem[MEMINFO_CACHED], 776052);
774 EXPECT_EQ(mem[MEMINFO_SHMEM], 4020);
775 EXPECT_EQ(mem[MEMINFO_SLAB], 86464);
776 EXPECT_EQ(mem[MEMINFO_SLAB_RECLAIMABLE], 44432);
777 EXPECT_EQ(mem[MEMINFO_SLAB_UNRECLAIMABLE], 42032);
778 EXPECT_EQ(mem[MEMINFO_SWAP_TOTAL], 32768);
779 EXPECT_EQ(mem[MEMINFO_SWAP_FREE], 4096);
780 EXPECT_EQ(mem[MEMINFO_MAPPED], 62624);
781 EXPECT_EQ(mem[MEMINFO_VMALLOC_USED], 65536);
782 EXPECT_EQ(mem[MEMINFO_PAGE_TABLES], 2900);
783 EXPECT_EQ(mem[MEMINFO_KERNEL_STACK], 4880);
784}
785
Sandeep Patilc24f1e32018-12-29 14:34:20 -0800786TEST(SysMemInfoParser, TestVmallocInfoNoMemory) {
787 std::string vmallocinfo =
788 R"vmallocinfo(0x0000000000000000-0x0000000000000000 69632 of_iomap+0x78/0xb0 phys=17a00000 ioremap
7890x0000000000000000-0x0000000000000000 8192 of_iomap+0x78/0xb0 phys=b220000 ioremap
7900x0000000000000000-0x0000000000000000 8192 of_iomap+0x78/0xb0 phys=17c90000 ioremap
7910x0000000000000000-0x0000000000000000 8192 of_iomap+0x78/0xb0 phys=17ca0000 ioremap)vmallocinfo";
792
793 TemporaryFile tf;
794 ASSERT_TRUE(tf.fd != -1);
795 ASSERT_TRUE(::android::base::WriteStringToFd(vmallocinfo, tf.fd));
796 std::string file = std::string(tf.path);
797
798 SysMemInfo smi;
799 EXPECT_EQ(smi.ReadVmallocInfo(file), 0);
800}
801
802TEST(SysMemInfoParser, TestVmallocInfoKernel) {
803 std::string vmallocinfo =
804 R"vmallocinfo(0x0000000000000000-0x0000000000000000 8192 drm_property_create_blob+0x44/0xec pages=1 vmalloc)vmallocinfo";
805
806 TemporaryFile tf;
807 ASSERT_TRUE(tf.fd != -1);
808 ASSERT_TRUE(::android::base::WriteStringToFd(vmallocinfo, tf.fd));
809 std::string file = std::string(tf.path);
810
811 SysMemInfo smi;
812 EXPECT_EQ(smi.ReadVmallocInfo(file), getpagesize());
813}
814
815TEST(SysMemInfoParser, TestVmallocInfoModule) {
816 std::string vmallocinfo =
817 R"vmallocinfo(0x0000000000000000-0x0000000000000000 28672 pktlog_alloc_buf+0xc4/0x15c [wlan] pages=6 vmalloc)vmallocinfo";
818
819 TemporaryFile tf;
820 ASSERT_TRUE(tf.fd != -1);
821 ASSERT_TRUE(::android::base::WriteStringToFd(vmallocinfo, tf.fd));
822 std::string file = std::string(tf.path);
823
824 SysMemInfo smi;
825 EXPECT_EQ(smi.ReadVmallocInfo(file), 6 * getpagesize());
826}
827
828TEST(SysMemInfoParser, TestVmallocInfoAll) {
829 std::string vmallocinfo =
830 R"vmallocinfo(0x0000000000000000-0x0000000000000000 69632 of_iomap+0x78/0xb0 phys=17a00000 ioremap
8310x0000000000000000-0x0000000000000000 8192 of_iomap+0x78/0xb0 phys=b220000 ioremap
8320x0000000000000000-0x0000000000000000 8192 of_iomap+0x78/0xb0 phys=17c90000 ioremap
8330x0000000000000000-0x0000000000000000 8192 of_iomap+0x78/0xb0 phys=17ca0000 ioremap
8340x0000000000000000-0x0000000000000000 8192 drm_property_create_blob+0x44/0xec pages=1 vmalloc
8350x0000000000000000-0x0000000000000000 28672 pktlog_alloc_buf+0xc4/0x15c [wlan] pages=6 vmalloc)vmallocinfo";
836
837 TemporaryFile tf;
838 ASSERT_TRUE(tf.fd != -1);
839 ASSERT_TRUE(::android::base::WriteStringToFd(vmallocinfo, tf.fd));
840 std::string file = std::string(tf.path);
841
842 SysMemInfo smi;
843 EXPECT_EQ(smi.ReadVmallocInfo(file), 7 * getpagesize());
844}
845
Sandeep Patil54d87212018-08-29 17:10:47 -0700846int main(int argc, char** argv) {
847 ::testing::InitGoogleTest(&argc, argv);
848 if (argc <= 1) {
849 cerr << "Pid of a permanently sleeping process must be provided." << endl;
850 exit(EXIT_FAILURE);
851 }
852 ::android::base::InitLogging(argv, android::base::StderrLogger);
853 pid = std::stoi(std::string(argv[1]));
854 return RUN_ALL_TESTS();
855}