770 lines
26 KiB
C++
770 lines
26 KiB
C++
// Copyright 2013 The Chromium Authors
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "base/process/process_metrics.h"
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#include <stddef.h>
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#include <stdint.h>
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#include <memory>
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#include <sstream>
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#include <string>
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#include <vector>
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#include "base/command_line.h"
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#include "base/files/file.h"
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#include "base/files/file_util.h"
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#include "base/files/scoped_temp_dir.h"
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#include "base/functional/bind.h"
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#include "base/memory/shared_memory_mapping.h"
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#include "base/memory/writable_shared_memory_region.h"
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#include "base/ranges/algorithm.h"
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#include "base/strings/string_number_conversions.h"
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#include "base/strings/string_util.h"
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#include "base/strings/stringprintf.h"
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#include "base/system/sys_info.h"
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#include "base/test/multiprocess_test.h"
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#include "base/threading/thread.h"
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#include "build/build_config.h"
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#include "build/chromeos_buildflags.h"
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#include "testing/gtest/include/gtest/gtest.h"
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#include "testing/multiprocess_func_list.h"
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#if BUILDFLAG(IS_APPLE)
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#include <sys/mman.h>
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#endif
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#if BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_CHROMEOS) || BUILDFLAG(IS_ANDROID)
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#include "base/process/internal_linux.h"
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#endif
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namespace base {
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namespace debug {
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#if BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_CHROMEOS) || \
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BUILDFLAG(IS_CHROMEOS_LACROS) || BUILDFLAG(IS_WIN) || \
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BUILDFLAG(IS_ANDROID) || BUILDFLAG(IS_FUCHSIA)
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namespace {
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void BusyWork(std::vector<std::string>* vec) {
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int64_t test_value = 0;
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for (int i = 0; i < 100000; ++i) {
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++test_value;
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vec->push_back(NumberToString(test_value));
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}
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}
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} // namespace
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#endif // BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_CHROMEOS) ||
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// BUILDFLAG(IS_CHROMEOS_LACROS) || BUILDFLAG(IS_WIN) ||
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// BUILDFLAG(IS_ANDROID) || BUILDFLAG(IS_FUCHSIA)
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// Tests for SystemMetrics.
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// Exists as a class so it can be a friend of SystemMetrics.
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class SystemMetricsTest : public testing::Test {
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public:
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SystemMetricsTest() = default;
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SystemMetricsTest(const SystemMetricsTest&) = delete;
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SystemMetricsTest& operator=(const SystemMetricsTest&) = delete;
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};
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#if BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_CHROMEOS) || BUILDFLAG(IS_ANDROID)
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TEST_F(SystemMetricsTest, IsValidDiskName) {
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const char invalid_input1[] = "";
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const char invalid_input2[] = "s";
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const char invalid_input3[] = "sdz+";
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const char invalid_input4[] = "hda0";
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const char invalid_input5[] = "mmcbl";
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const char invalid_input6[] = "mmcblka";
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const char invalid_input7[] = "mmcblkb";
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const char invalid_input8[] = "mmmblk0";
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EXPECT_FALSE(IsValidDiskName(invalid_input1));
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EXPECT_FALSE(IsValidDiskName(invalid_input2));
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EXPECT_FALSE(IsValidDiskName(invalid_input3));
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EXPECT_FALSE(IsValidDiskName(invalid_input4));
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EXPECT_FALSE(IsValidDiskName(invalid_input5));
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EXPECT_FALSE(IsValidDiskName(invalid_input6));
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EXPECT_FALSE(IsValidDiskName(invalid_input7));
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EXPECT_FALSE(IsValidDiskName(invalid_input8));
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const char valid_input1[] = "sda";
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const char valid_input2[] = "sdaaaa";
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const char valid_input3[] = "hdz";
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const char valid_input4[] = "mmcblk0";
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const char valid_input5[] = "mmcblk999";
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EXPECT_TRUE(IsValidDiskName(valid_input1));
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EXPECT_TRUE(IsValidDiskName(valid_input2));
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EXPECT_TRUE(IsValidDiskName(valid_input3));
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EXPECT_TRUE(IsValidDiskName(valid_input4));
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EXPECT_TRUE(IsValidDiskName(valid_input5));
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}
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TEST_F(SystemMetricsTest, ParseMeminfo) {
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SystemMemoryInfoKB meminfo;
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const char invalid_input1[] = "abc";
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const char invalid_input2[] = "MemTotal:";
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// Partial file with no MemTotal
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const char invalid_input3[] =
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"MemFree: 3913968 kB\n"
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"Buffers: 2348340 kB\n"
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"Cached: 49071596 kB\n"
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"SwapCached: 12 kB\n"
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"Active: 36393900 kB\n"
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"Inactive: 21221496 kB\n"
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"Active(anon): 5674352 kB\n"
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"Inactive(anon): 633992 kB\n";
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EXPECT_FALSE(ParseProcMeminfo(invalid_input1, &meminfo));
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EXPECT_FALSE(ParseProcMeminfo(invalid_input2, &meminfo));
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EXPECT_FALSE(ParseProcMeminfo(invalid_input3, &meminfo));
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const char valid_input1[] =
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"MemTotal: 3981504 kB\n"
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"MemFree: 140764 kB\n"
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"MemAvailable: 535413 kB\n"
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"Buffers: 116480 kB\n"
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"Cached: 406160 kB\n"
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"SwapCached: 21304 kB\n"
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"Active: 3152040 kB\n"
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"Inactive: 472856 kB\n"
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"Active(anon): 2972352 kB\n"
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"Inactive(anon): 270108 kB\n"
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"Active(file): 179688 kB\n"
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"Inactive(file): 202748 kB\n"
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"Unevictable: 0 kB\n"
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"Mlocked: 0 kB\n"
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"SwapTotal: 5832280 kB\n"
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"SwapFree: 3672368 kB\n"
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"Dirty: 184 kB\n"
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"Writeback: 0 kB\n"
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"AnonPages: 3101224 kB\n"
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"Mapped: 142296 kB\n"
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"Shmem: 140204 kB\n"
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"Slab: 54212 kB\n"
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"SReclaimable: 30936 kB\n"
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"SUnreclaim: 23276 kB\n"
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"KernelStack: 2464 kB\n"
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"PageTables: 24812 kB\n"
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"NFS_Unstable: 0 kB\n"
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"Bounce: 0 kB\n"
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"WritebackTmp: 0 kB\n"
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"CommitLimit: 7823032 kB\n"
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"Committed_AS: 7973536 kB\n"
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"VmallocTotal: 34359738367 kB\n"
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"VmallocUsed: 375940 kB\n"
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"VmallocChunk: 34359361127 kB\n"
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"DirectMap4k: 72448 kB\n"
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"DirectMap2M: 4061184 kB\n";
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// output from a much older kernel where the Active and Inactive aren't
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// broken down into anon and file and Huge Pages are enabled
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const char valid_input2[] =
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"MemTotal: 255908 kB\n"
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"MemFree: 69936 kB\n"
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"Buffers: 15812 kB\n"
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"Cached: 115124 kB\n"
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"SwapCached: 0 kB\n"
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"Active: 92700 kB\n"
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"Inactive: 63792 kB\n"
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"HighTotal: 0 kB\n"
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"HighFree: 0 kB\n"
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"LowTotal: 255908 kB\n"
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"LowFree: 69936 kB\n"
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"SwapTotal: 524280 kB\n"
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"SwapFree: 524200 kB\n"
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"Dirty: 4 kB\n"
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"Writeback: 0 kB\n"
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"Mapped: 42236 kB\n"
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"Slab: 25912 kB\n"
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"Committed_AS: 118680 kB\n"
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"PageTables: 1236 kB\n"
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"VmallocTotal: 3874808 kB\n"
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"VmallocUsed: 1416 kB\n"
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"VmallocChunk: 3872908 kB\n"
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"HugePages_Total: 0\n"
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"HugePages_Free: 0\n"
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"Hugepagesize: 4096 kB\n";
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EXPECT_TRUE(ParseProcMeminfo(valid_input1, &meminfo));
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EXPECT_EQ(meminfo.total, 3981504);
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EXPECT_EQ(meminfo.free, 140764);
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EXPECT_EQ(meminfo.available, 535413);
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EXPECT_EQ(meminfo.buffers, 116480);
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EXPECT_EQ(meminfo.cached, 406160);
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EXPECT_EQ(meminfo.active_anon, 2972352);
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EXPECT_EQ(meminfo.active_file, 179688);
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EXPECT_EQ(meminfo.inactive_anon, 270108);
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EXPECT_EQ(meminfo.inactive_file, 202748);
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EXPECT_EQ(meminfo.swap_total, 5832280);
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EXPECT_EQ(meminfo.swap_free, 3672368);
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EXPECT_EQ(meminfo.dirty, 184);
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EXPECT_EQ(meminfo.reclaimable, 30936);
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#if BUILDFLAG(IS_CHROMEOS)
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EXPECT_EQ(meminfo.shmem, 140204);
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EXPECT_EQ(meminfo.slab, 54212);
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#endif
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EXPECT_EQ(355725u,
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base::SysInfo::AmountOfAvailablePhysicalMemory(meminfo) / 1024);
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// Simulate as if there is no MemAvailable.
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meminfo.available = 0;
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EXPECT_EQ(374448u,
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base::SysInfo::AmountOfAvailablePhysicalMemory(meminfo) / 1024);
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meminfo = {};
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EXPECT_TRUE(ParseProcMeminfo(valid_input2, &meminfo));
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EXPECT_EQ(meminfo.total, 255908);
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EXPECT_EQ(meminfo.free, 69936);
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EXPECT_EQ(meminfo.available, 0);
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EXPECT_EQ(meminfo.buffers, 15812);
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EXPECT_EQ(meminfo.cached, 115124);
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EXPECT_EQ(meminfo.swap_total, 524280);
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EXPECT_EQ(meminfo.swap_free, 524200);
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EXPECT_EQ(meminfo.dirty, 4);
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EXPECT_EQ(69936u,
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base::SysInfo::AmountOfAvailablePhysicalMemory(meminfo) / 1024);
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}
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TEST_F(SystemMetricsTest, ParseVmstat) {
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VmStatInfo vmstat;
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// Part of vmstat from a 4.19 kernel.
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const char valid_input1[] =
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"pgpgin 2358216\n"
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"pgpgout 296072\n"
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"pswpin 345219\n"
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"pswpout 2605828\n"
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"pgalloc_dma32 8380235\n"
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"pgalloc_normal 3384525\n"
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"pgalloc_movable 0\n"
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"allocstall_dma32 0\n"
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"allocstall_normal 2028\n"
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"allocstall_movable 32559\n"
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"pgskip_dma32 0\n"
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"pgskip_normal 0\n"
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"pgskip_movable 0\n"
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"pgfree 11802722\n"
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"pgactivate 894917\n"
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"pgdeactivate 3255711\n"
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"pglazyfree 48\n"
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"pgfault 10043657\n"
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"pgmajfault 358901\n"
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"pgmajfault_s 2100\n"
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"pgmajfault_a 343211\n"
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"pgmajfault_f 13590\n"
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"pglazyfreed 0\n"
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"pgrefill 3429488\n"
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"pgsteal_kswapd 1466893\n"
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"pgsteal_direct 1771759\n"
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"pgscan_kswapd 1907332\n"
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"pgscan_direct 2118930\n"
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"pgscan_direct_throttle 154\n"
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"pginodesteal 3176\n"
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"slabs_scanned 293804\n"
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"kswapd_inodesteal 16753\n"
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"kswapd_low_wmark_hit_quickly 10\n"
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"kswapd_high_wmark_hit_quickly 423\n"
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"pageoutrun 441\n"
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"pgrotated 1636\n"
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"drop_pagecache 0\n"
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"drop_slab 0\n"
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"oom_kill 18\n";
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const char valid_input2[] =
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"pgpgin 2606135\n"
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"pgpgout 1359128\n"
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"pswpin 899959\n"
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"pswpout 19761244\n"
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"pgalloc_dma 31\n"
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"pgalloc_dma32 18139339\n"
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"pgalloc_normal 44085950\n"
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"pgalloc_movable 0\n"
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"allocstall_dma 0\n"
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"allocstall_dma32 0\n"
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"allocstall_normal 18881\n"
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"allocstall_movable 169527\n"
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"pgskip_dma 0\n"
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"pgskip_dma32 0\n"
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"pgskip_normal 0\n"
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"pgskip_movable 0\n"
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"pgfree 63060999\n"
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"pgactivate 1703494\n"
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"pgdeactivate 20537803\n"
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"pglazyfree 163\n"
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"pgfault 45201169\n"
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"pgmajfault 609626\n"
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"pgmajfault_s 7488\n"
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"pgmajfault_a 591793\n"
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"pgmajfault_f 10345\n"
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"pglazyfreed 0\n"
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"pgrefill 20673453\n"
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"pgsteal_kswapd 11802772\n"
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"pgsteal_direct 8618160\n"
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"pgscan_kswapd 12640517\n"
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"pgscan_direct 9092230\n"
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"pgscan_direct_throttle 638\n"
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"pginodesteal 1716\n"
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"slabs_scanned 2594642\n"
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"kswapd_inodesteal 67358\n"
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"kswapd_low_wmark_hit_quickly 52\n"
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"kswapd_high_wmark_hit_quickly 11\n"
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"pageoutrun 83\n"
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"pgrotated 977\n"
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"drop_pagecache 1\n"
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"drop_slab 1\n"
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"oom_kill 1\n"
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"pgmigrate_success 3202\n"
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"pgmigrate_fail 795\n";
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const char valid_input3[] =
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"pswpin 12\n"
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"pswpout 901\n"
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"pgmajfault 18881\n";
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EXPECT_TRUE(ParseProcVmstat(valid_input1, &vmstat));
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EXPECT_EQ(345219LU, vmstat.pswpin);
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EXPECT_EQ(2605828LU, vmstat.pswpout);
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EXPECT_EQ(358901LU, vmstat.pgmajfault);
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EXPECT_EQ(18LU, vmstat.oom_kill);
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EXPECT_TRUE(ParseProcVmstat(valid_input2, &vmstat));
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EXPECT_EQ(899959LU, vmstat.pswpin);
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EXPECT_EQ(19761244LU, vmstat.pswpout);
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EXPECT_EQ(609626LU, vmstat.pgmajfault);
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EXPECT_EQ(1LU, vmstat.oom_kill);
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EXPECT_TRUE(ParseProcVmstat(valid_input3, &vmstat));
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EXPECT_EQ(12LU, vmstat.pswpin);
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EXPECT_EQ(901LU, vmstat.pswpout);
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EXPECT_EQ(18881LU, vmstat.pgmajfault);
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EXPECT_EQ(0LU, vmstat.oom_kill);
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const char missing_pgmajfault_input[] =
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"pswpin 12\n"
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"pswpout 901\n";
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EXPECT_FALSE(ParseProcVmstat(missing_pgmajfault_input, &vmstat));
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const char empty_input[] = "";
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EXPECT_FALSE(ParseProcVmstat(empty_input, &vmstat));
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}
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#endif // BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_CHROMEOS) ||
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// BUILDFLAG(IS_ANDROID)
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#if BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_CHROMEOS) || \
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BUILDFLAG(IS_CHROMEOS_LACROS) || BUILDFLAG(IS_WIN) || \
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BUILDFLAG(IS_ANDROID) || BUILDFLAG(IS_FUCHSIA)
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// Test that ProcessMetrics::GetPlatformIndependentCPUUsage() doesn't return
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// negative values when the number of threads running on the process decreases
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// between two successive calls to it.
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TEST_F(SystemMetricsTest, TestNoNegativeCpuUsage) {
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ProcessHandle handle = GetCurrentProcessHandle();
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std::unique_ptr<ProcessMetrics> metrics(
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ProcessMetrics::CreateProcessMetrics(handle));
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EXPECT_GE(metrics->GetPlatformIndependentCPUUsage(), 0.0);
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Thread thread1("thread1");
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Thread thread2("thread2");
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Thread thread3("thread3");
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thread1.StartAndWaitForTesting();
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thread2.StartAndWaitForTesting();
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thread3.StartAndWaitForTesting();
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ASSERT_TRUE(thread1.IsRunning());
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ASSERT_TRUE(thread2.IsRunning());
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ASSERT_TRUE(thread3.IsRunning());
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std::vector<std::string> vec1;
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std::vector<std::string> vec2;
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std::vector<std::string> vec3;
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thread1.task_runner()->PostTask(FROM_HERE, BindOnce(&BusyWork, &vec1));
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thread2.task_runner()->PostTask(FROM_HERE, BindOnce(&BusyWork, &vec2));
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thread3.task_runner()->PostTask(FROM_HERE, BindOnce(&BusyWork, &vec3));
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TimeDelta prev_cpu_usage = metrics->GetCumulativeCPUUsage();
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EXPECT_GE(prev_cpu_usage, TimeDelta());
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EXPECT_GE(metrics->GetPlatformIndependentCPUUsage(), 0.0);
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thread1.Stop();
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TimeDelta current_cpu_usage = metrics->GetCumulativeCPUUsage();
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EXPECT_GE(current_cpu_usage, prev_cpu_usage);
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prev_cpu_usage = current_cpu_usage;
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EXPECT_GE(metrics->GetPlatformIndependentCPUUsage(), 0.0);
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thread2.Stop();
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current_cpu_usage = metrics->GetCumulativeCPUUsage();
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EXPECT_GE(current_cpu_usage, prev_cpu_usage);
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prev_cpu_usage = current_cpu_usage;
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EXPECT_GE(metrics->GetPlatformIndependentCPUUsage(), 0.0);
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thread3.Stop();
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current_cpu_usage = metrics->GetCumulativeCPUUsage();
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EXPECT_GE(current_cpu_usage, prev_cpu_usage);
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EXPECT_GE(metrics->GetPlatformIndependentCPUUsage(), 0.0);
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}
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#endif // BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_CHROMEOS) ||
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// BUILDFLAG(IS_CHROMEOS_LACROS) || BUILDFLAG(IS_WIN) ||
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// BUILDFLAG(IS_ANDROID) || BUILDFLAG(IS_FUCHSIA)
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#if BUILDFLAG(IS_CHROMEOS)
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TEST_F(SystemMetricsTest, ParseZramMmStat) {
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SwapInfo swapinfo;
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const char invalid_input1[] = "aaa";
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const char invalid_input2[] = "1 2 3 4 5 6";
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const char invalid_input3[] = "a 2 3 4 5 6 7";
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EXPECT_FALSE(ParseZramMmStat(invalid_input1, &swapinfo));
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EXPECT_FALSE(ParseZramMmStat(invalid_input2, &swapinfo));
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EXPECT_FALSE(ParseZramMmStat(invalid_input3, &swapinfo));
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const char valid_input1[] =
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"17715200 5008166 566062 0 1225715712 127 183842";
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EXPECT_TRUE(ParseZramMmStat(valid_input1, &swapinfo));
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EXPECT_EQ(17715200ULL, swapinfo.orig_data_size);
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EXPECT_EQ(5008166ULL, swapinfo.compr_data_size);
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EXPECT_EQ(566062ULL, swapinfo.mem_used_total);
|
|
}
|
|
|
|
TEST_F(SystemMetricsTest, ParseZramStat) {
|
|
SwapInfo swapinfo;
|
|
|
|
const char invalid_input1[] = "aaa";
|
|
const char invalid_input2[] = "1 2 3 4 5 6 7 8 9 10";
|
|
const char invalid_input3[] = "a 2 3 4 5 6 7 8 9 10 11";
|
|
EXPECT_FALSE(ParseZramStat(invalid_input1, &swapinfo));
|
|
EXPECT_FALSE(ParseZramStat(invalid_input2, &swapinfo));
|
|
EXPECT_FALSE(ParseZramStat(invalid_input3, &swapinfo));
|
|
|
|
const char valid_input1[] =
|
|
"299 0 2392 0 1 0 8 0 0 0 0";
|
|
EXPECT_TRUE(ParseZramStat(valid_input1, &swapinfo));
|
|
EXPECT_EQ(299ULL, swapinfo.num_reads);
|
|
EXPECT_EQ(1ULL, swapinfo.num_writes);
|
|
}
|
|
#endif // BUILDFLAG(IS_CHROMEOS)
|
|
|
|
#if BUILDFLAG(IS_WIN) || BUILDFLAG(IS_APPLE) || BUILDFLAG(IS_LINUX) || \
|
|
BUILDFLAG(IS_CHROMEOS) || BUILDFLAG(IS_ANDROID)
|
|
TEST(SystemMetrics2Test, GetSystemMemoryInfo) {
|
|
SystemMemoryInfoKB info;
|
|
EXPECT_TRUE(GetSystemMemoryInfo(&info));
|
|
|
|
// Ensure each field received a value.
|
|
EXPECT_GT(info.total, 0);
|
|
#if BUILDFLAG(IS_WIN)
|
|
EXPECT_GT(info.avail_phys, 0);
|
|
#else
|
|
EXPECT_GT(info.free, 0);
|
|
#endif
|
|
#if BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_CHROMEOS) || BUILDFLAG(IS_ANDROID)
|
|
EXPECT_GT(info.buffers, 0);
|
|
EXPECT_GT(info.cached, 0);
|
|
EXPECT_GT(info.active_anon + info.inactive_anon, 0);
|
|
EXPECT_GT(info.active_file + info.inactive_file, 0);
|
|
#endif // BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_CHROMEOS) ||
|
|
// BUILDFLAG(IS_ANDROID)
|
|
|
|
// All the values should be less than the total amount of memory.
|
|
#if !BUILDFLAG(IS_WIN) && !BUILDFLAG(IS_IOS)
|
|
// TODO(crbug.com/711450): re-enable the following assertion on iOS.
|
|
EXPECT_LT(info.free, info.total);
|
|
#endif
|
|
#if BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_CHROMEOS) || BUILDFLAG(IS_ANDROID)
|
|
EXPECT_LT(info.buffers, info.total);
|
|
EXPECT_LT(info.cached, info.total);
|
|
EXPECT_LT(info.active_anon, info.total);
|
|
EXPECT_LT(info.inactive_anon, info.total);
|
|
EXPECT_LT(info.active_file, info.total);
|
|
EXPECT_LT(info.inactive_file, info.total);
|
|
#endif // BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_CHROMEOS) ||
|
|
// BUILDFLAG(IS_ANDROID)
|
|
|
|
#if BUILDFLAG(IS_APPLE)
|
|
EXPECT_GT(info.file_backed, 0);
|
|
#endif
|
|
|
|
#if BUILDFLAG(IS_CHROMEOS)
|
|
// Chrome OS exposes shmem.
|
|
EXPECT_GT(info.shmem, 0);
|
|
EXPECT_LT(info.shmem, info.total);
|
|
#endif
|
|
}
|
|
#endif // BUILDFLAG(IS_WIN) || BUILDFLAG(IS_APPLE) || BUILDFLAG(IS_LINUX) ||
|
|
// BUILDFLAG(IS_CHROMEOS) || BUILDFLAG(IS_ANDROID)
|
|
|
|
#if BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_CHROMEOS) || BUILDFLAG(IS_ANDROID)
|
|
TEST(ProcessMetricsTest, ParseProcStatCPU) {
|
|
// /proc/self/stat for a process running "top".
|
|
const char kTopStat[] = "960 (top) S 16230 960 16230 34818 960 "
|
|
"4202496 471 0 0 0 "
|
|
"12 16 0 0 " // <- These are the goods.
|
|
"20 0 1 0 121946157 15077376 314 18446744073709551615 4194304 "
|
|
"4246868 140733983044336 18446744073709551615 140244213071219 "
|
|
"0 0 0 138047495 0 0 0 17 1 0 0 0 0 0";
|
|
EXPECT_EQ(12 + 16, ParseProcStatCPU(kTopStat));
|
|
|
|
// cat /proc/self/stat on a random other machine I have.
|
|
const char kSelfStat[] = "5364 (cat) R 5354 5364 5354 34819 5364 "
|
|
"0 142 0 0 0 "
|
|
"0 0 0 0 " // <- No CPU, apparently.
|
|
"16 0 1 0 1676099790 2957312 114 4294967295 134512640 134528148 "
|
|
"3221224832 3221224344 3086339742 0 0 0 0 0 0 0 17 0 0 0";
|
|
|
|
EXPECT_EQ(0, ParseProcStatCPU(kSelfStat));
|
|
|
|
// Some weird long-running process with a weird name that I created for the
|
|
// purposes of this test.
|
|
const char kWeirdNameStat[] = "26115 (Hello) You ())) ) R 24614 26115 24614"
|
|
" 34839 26115 4218880 227 0 0 0 "
|
|
"5186 11 0 0 "
|
|
"20 0 1 0 36933953 4296704 90 18446744073709551615 4194304 4196116 "
|
|
"140735857761568 140735857761160 4195644 0 0 0 0 0 0 0 17 14 0 0 0 0 0 "
|
|
"6295056 6295616 16519168 140735857770710 140735857770737 "
|
|
"140735857770737 140735857774557 0";
|
|
EXPECT_EQ(5186 + 11, ParseProcStatCPU(kWeirdNameStat));
|
|
}
|
|
#endif // BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_CHROMEOS) ||
|
|
// BUILDFLAG(IS_ANDROID)
|
|
|
|
// Disable on Android because base_unittests runs inside a Dalvik VM that
|
|
// starts and stop threads (crbug.com/175563).
|
|
#if BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_CHROMEOS)
|
|
// http://crbug.com/396455
|
|
TEST(ProcessMetricsTest, DISABLED_GetNumberOfThreads) {
|
|
const ProcessHandle current = GetCurrentProcessHandle();
|
|
const int64_t initial_threads = GetNumberOfThreads(current);
|
|
ASSERT_GT(initial_threads, 0);
|
|
const int kNumAdditionalThreads = 10;
|
|
{
|
|
std::unique_ptr<Thread> my_threads[kNumAdditionalThreads];
|
|
for (int i = 0; i < kNumAdditionalThreads; ++i) {
|
|
my_threads[i] = std::make_unique<Thread>("GetNumberOfThreadsTest");
|
|
my_threads[i]->Start();
|
|
ASSERT_EQ(GetNumberOfThreads(current), initial_threads + 1 + i);
|
|
}
|
|
}
|
|
// The Thread destructor will stop them.
|
|
ASSERT_EQ(initial_threads, GetNumberOfThreads(current));
|
|
}
|
|
#endif // BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_CHROMEOS)
|
|
|
|
#if BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_CHROMEOS) || BUILDFLAG(IS_MAC)
|
|
namespace {
|
|
|
|
// Keep these in sync so the GetChildOpenFdCount test can refer to correct test
|
|
// main.
|
|
#define ChildMain ChildFdCount
|
|
#define ChildMainString "ChildFdCount"
|
|
|
|
// Command line flag name and file name used for synchronization.
|
|
const char kTempDirFlag[] = "temp-dir";
|
|
|
|
const char kSignalReady[] = "ready";
|
|
const char kSignalReadyAck[] = "ready-ack";
|
|
const char kSignalOpened[] = "opened";
|
|
const char kSignalOpenedAck[] = "opened-ack";
|
|
const char kSignalClosed[] = "closed";
|
|
|
|
const int kChildNumFilesToOpen = 100;
|
|
|
|
bool SignalEvent(const FilePath& signal_dir, const char* signal_file) {
|
|
File file(signal_dir.AppendASCII(signal_file),
|
|
File::FLAG_CREATE | File::FLAG_WRITE);
|
|
return file.IsValid();
|
|
}
|
|
|
|
// Check whether an event was signaled.
|
|
bool CheckEvent(const FilePath& signal_dir, const char* signal_file) {
|
|
File file(signal_dir.AppendASCII(signal_file),
|
|
File::FLAG_OPEN | File::FLAG_READ);
|
|
return file.IsValid();
|
|
}
|
|
|
|
// Busy-wait for an event to be signaled.
|
|
void WaitForEvent(const FilePath& signal_dir, const char* signal_file) {
|
|
while (!CheckEvent(signal_dir, signal_file))
|
|
PlatformThread::Sleep(Milliseconds(10));
|
|
}
|
|
|
|
// Subprocess to test the number of open file descriptors.
|
|
MULTIPROCESS_TEST_MAIN(ChildMain) {
|
|
CommandLine* command_line = CommandLine::ForCurrentProcess();
|
|
const FilePath temp_path = command_line->GetSwitchValuePath(kTempDirFlag);
|
|
CHECK(DirectoryExists(temp_path));
|
|
|
|
CHECK(SignalEvent(temp_path, kSignalReady));
|
|
WaitForEvent(temp_path, kSignalReadyAck);
|
|
|
|
std::vector<File> files;
|
|
for (int i = 0; i < kChildNumFilesToOpen; ++i) {
|
|
files.emplace_back(temp_path.AppendASCII(StringPrintf("file.%d", i)),
|
|
File::FLAG_CREATE | File::FLAG_WRITE);
|
|
}
|
|
|
|
CHECK(SignalEvent(temp_path, kSignalOpened));
|
|
WaitForEvent(temp_path, kSignalOpenedAck);
|
|
|
|
files.clear();
|
|
|
|
CHECK(SignalEvent(temp_path, kSignalClosed));
|
|
|
|
// Wait to be terminated.
|
|
while (true)
|
|
PlatformThread::Sleep(Seconds(1));
|
|
}
|
|
|
|
} // namespace
|
|
|
|
TEST(ProcessMetricsTest, GetChildOpenFdCount) {
|
|
ScopedTempDir temp_dir;
|
|
ASSERT_TRUE(temp_dir.CreateUniqueTempDir());
|
|
const FilePath temp_path = temp_dir.GetPath();
|
|
CommandLine child_command_line(GetMultiProcessTestChildBaseCommandLine());
|
|
child_command_line.AppendSwitchPath(kTempDirFlag, temp_path);
|
|
Process child = SpawnMultiProcessTestChild(
|
|
ChildMainString, child_command_line, LaunchOptions());
|
|
ASSERT_TRUE(child.IsValid());
|
|
|
|
WaitForEvent(temp_path, kSignalReady);
|
|
|
|
std::unique_ptr<ProcessMetrics> metrics =
|
|
#if BUILDFLAG(IS_APPLE)
|
|
ProcessMetrics::CreateProcessMetrics(child.Handle(), nullptr);
|
|
#else
|
|
ProcessMetrics::CreateProcessMetrics(child.Handle());
|
|
#endif // BUILDFLAG(IS_APPLE)
|
|
|
|
const int fd_count = metrics->GetOpenFdCount();
|
|
EXPECT_GE(fd_count, 0);
|
|
|
|
ASSERT_TRUE(SignalEvent(temp_path, kSignalReadyAck));
|
|
WaitForEvent(temp_path, kSignalOpened);
|
|
|
|
EXPECT_EQ(fd_count + kChildNumFilesToOpen, metrics->GetOpenFdCount());
|
|
ASSERT_TRUE(SignalEvent(temp_path, kSignalOpenedAck));
|
|
|
|
WaitForEvent(temp_path, kSignalClosed);
|
|
|
|
EXPECT_EQ(fd_count, metrics->GetOpenFdCount());
|
|
|
|
ASSERT_TRUE(child.Terminate(0, true));
|
|
}
|
|
|
|
TEST(ProcessMetricsTest, GetOpenFdCount) {
|
|
base::ProcessHandle process = base::GetCurrentProcessHandle();
|
|
std::unique_ptr<base::ProcessMetrics> metrics =
|
|
#if BUILDFLAG(IS_APPLE)
|
|
ProcessMetrics::CreateProcessMetrics(process, nullptr);
|
|
#else
|
|
ProcessMetrics::CreateProcessMetrics(process);
|
|
#endif // BUILDFLAG(IS_APPLE)
|
|
|
|
ScopedTempDir temp_dir;
|
|
ASSERT_TRUE(temp_dir.CreateUniqueTempDir());
|
|
|
|
int fd_count = metrics->GetOpenFdCount();
|
|
EXPECT_GT(fd_count, 0);
|
|
File file(temp_dir.GetPath().AppendASCII("file"),
|
|
File::FLAG_CREATE | File::FLAG_WRITE);
|
|
int new_fd_count = metrics->GetOpenFdCount();
|
|
EXPECT_GT(new_fd_count, 0);
|
|
EXPECT_EQ(new_fd_count, fd_count + 1);
|
|
}
|
|
|
|
#endif // BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_CHROMEOS) || BUILDFLAG(IS_MAC)
|
|
|
|
#if BUILDFLAG(IS_ANDROID) || BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_CHROMEOS)
|
|
|
|
TEST(ProcessMetricsTestLinux, GetPageFaultCounts) {
|
|
std::unique_ptr<base::ProcessMetrics> process_metrics(
|
|
base::ProcessMetrics::CreateProcessMetrics(
|
|
base::GetCurrentProcessHandle()));
|
|
|
|
PageFaultCounts counts;
|
|
ASSERT_TRUE(process_metrics->GetPageFaultCounts(&counts));
|
|
ASSERT_GT(counts.minor, 0);
|
|
ASSERT_GE(counts.major, 0);
|
|
|
|
// Allocate and touch memory. Touching it is required to make sure that the
|
|
// page fault count goes up, as memory is typically mapped lazily.
|
|
{
|
|
const size_t kMappedSize = 4 << 20; // 4 MiB.
|
|
|
|
WritableSharedMemoryRegion region =
|
|
WritableSharedMemoryRegion::Create(kMappedSize);
|
|
ASSERT_TRUE(region.IsValid());
|
|
|
|
WritableSharedMemoryMapping mapping = region.Map();
|
|
ASSERT_TRUE(mapping.IsValid());
|
|
|
|
memset(mapping.memory(), 42, kMappedSize);
|
|
}
|
|
|
|
PageFaultCounts counts_after;
|
|
ASSERT_TRUE(process_metrics->GetPageFaultCounts(&counts_after));
|
|
ASSERT_GT(counts_after.minor, counts.minor);
|
|
ASSERT_GE(counts_after.major, counts.major);
|
|
}
|
|
|
|
TEST(ProcessMetricsTestLinux, GetCumulativeCPUUsagePerThread) {
|
|
ProcessHandle handle = GetCurrentProcessHandle();
|
|
std::unique_ptr<ProcessMetrics> metrics(
|
|
ProcessMetrics::CreateProcessMetrics(handle));
|
|
|
|
Thread thread1("thread1");
|
|
thread1.StartAndWaitForTesting();
|
|
ASSERT_TRUE(thread1.IsRunning());
|
|
|
|
std::vector<std::string> vec1;
|
|
thread1.task_runner()->PostTask(FROM_HERE, BindOnce(&BusyWork, &vec1));
|
|
|
|
ProcessMetrics::CPUUsagePerThread prev_thread_times;
|
|
EXPECT_TRUE(metrics->GetCumulativeCPUUsagePerThread(prev_thread_times));
|
|
|
|
// Should have at least the test runner thread and the thread spawned above.
|
|
EXPECT_GE(prev_thread_times.size(), 2u);
|
|
EXPECT_TRUE(ranges::any_of(
|
|
prev_thread_times,
|
|
[&thread1](const std::pair<PlatformThreadId, base::TimeDelta>& entry) {
|
|
return entry.first == thread1.GetThreadId();
|
|
}));
|
|
EXPECT_TRUE(ranges::any_of(
|
|
prev_thread_times,
|
|
[](const std::pair<PlatformThreadId, base::TimeDelta>& entry) {
|
|
return entry.first == base::PlatformThread::CurrentId();
|
|
}));
|
|
|
|
for (const auto& entry : prev_thread_times) {
|
|
EXPECT_GE(entry.second, base::TimeDelta());
|
|
}
|
|
|
|
thread1.Stop();
|
|
|
|
ProcessMetrics::CPUUsagePerThread current_thread_times;
|
|
EXPECT_TRUE(metrics->GetCumulativeCPUUsagePerThread(current_thread_times));
|
|
|
|
// The stopped thread may still be reported until the kernel cleans it up.
|
|
EXPECT_GE(prev_thread_times.size(), 1u);
|
|
EXPECT_TRUE(ranges::any_of(
|
|
current_thread_times,
|
|
[](const std::pair<PlatformThreadId, base::TimeDelta>& entry) {
|
|
return entry.first == base::PlatformThread::CurrentId();
|
|
}));
|
|
|
|
// Reported times should not decrease.
|
|
for (const auto& entry : current_thread_times) {
|
|
auto prev_it = ranges::find_if(
|
|
prev_thread_times,
|
|
[&entry](
|
|
const std::pair<PlatformThreadId, base::TimeDelta>& prev_entry) {
|
|
return entry.first == prev_entry.first;
|
|
});
|
|
|
|
if (prev_it != prev_thread_times.end())
|
|
EXPECT_GE(entry.second, prev_it->second);
|
|
}
|
|
}
|
|
#endif // BUILDFLAG(IS_ANDROID) || BUILDFLAG(IS_LINUX) ||
|
|
// BUILDFLAG(IS_CHROMEOS)
|
|
|
|
} // namespace debug
|
|
} // namespace base
|