blob: 310b1eb626a908c8f208b345bc506551a71a1732 [file] [log] [blame]
/*
* libjingle
* Copyright 2009 Google Inc.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions are met:
*
* 1. Redistributions of source code must retain the above copyright notice,
* this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright notice,
* this list of conditions and the following disclaimer in the documentation
* and/or other materials provided with the distribution.
* 3. The name of the author may not be used to endorse or promote products
* derived from this software without specific prior written permission.
*
* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
* WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO
* EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
* OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
* ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#include "talk/base/gunit.h"
#include "talk/base/stringutils.h"
#include "talk/base/systeminfo.h"
#if defined(CPU_X86) || defined(CPU_ARM)
TEST(SystemInfoTest, CpuVendorNonEmpty) {
talk_base::SystemInfo info;
LOG(LS_INFO) << "CpuVendor: " << info.GetCpuVendor();
EXPECT_FALSE(info.GetCpuVendor().empty());
}
// Tests Vendor identification is Intel or AMD.
// See Also http://en.wikipedia.org/wiki/CPUID
TEST(SystemInfoTest, CpuVendorIntelAMDARM) {
talk_base::SystemInfo info;
#if defined(CPU_X86)
EXPECT_TRUE(talk_base::string_match(info.GetCpuVendor().c_str(),
"GenuineIntel") ||
talk_base::string_match(info.GetCpuVendor().c_str(),
"AuthenticAMD"));
#elif defined(CPU_ARM)
EXPECT_TRUE(talk_base::string_match(info.GetCpuVendor().c_str(), "ARM"));
#endif
}
#endif // defined(CPU_X86) || defined(CPU_ARM)
// Tests CpuArchitecture matches expectations.
TEST(SystemInfoTest, GetCpuArchitecture) {
talk_base::SystemInfo info;
LOG(LS_INFO) << "CpuArchitecture: " << info.GetCpuArchitecture();
talk_base::SystemInfo::Architecture architecture = info.GetCpuArchitecture();
#if defined(CPU_X86) || defined(CPU_ARM)
if (sizeof(intptr_t) == 8) {
EXPECT_EQ(talk_base::SystemInfo::SI_ARCH_X64, architecture);
} else if (sizeof(intptr_t) == 4) {
#if defined(CPU_ARM)
EXPECT_EQ(talk_base::SystemInfo::SI_ARCH_ARM, architecture);
#else
EXPECT_EQ(talk_base::SystemInfo::SI_ARCH_X86, architecture);
#endif
}
#endif
}
// Tests Cpu Cache Size
TEST(SystemInfoTest, CpuCacheSize) {
talk_base::SystemInfo info;
LOG(LS_INFO) << "CpuCacheSize: " << info.GetCpuCacheSize();
EXPECT_GE(info.GetCpuCacheSize(), 8192); // 8 KB min cache
EXPECT_LE(info.GetCpuCacheSize(), 1024 * 1024 * 1024); // 1 GB max cache
}
// Tests MachineModel is set. On Mac test machine model is known.
TEST(SystemInfoTest, MachineModelKnown) {
talk_base::SystemInfo info;
EXPECT_FALSE(info.GetMachineModel().empty());
const char *machine_model = info.GetMachineModel().c_str();
LOG(LS_INFO) << "MachineModel: " << machine_model;
bool known = true;
#if defined(OSX)
// Full list as of May 2012. Update when new OSX based models are added.
known = talk_base::string_match(machine_model, "MacBookPro*") ||
talk_base::string_match(machine_model, "MacBookAir*") ||
talk_base::string_match(machine_model, "MacBook*") ||
talk_base::string_match(machine_model, "MacPro*") ||
talk_base::string_match(machine_model, "Macmini*") ||
talk_base::string_match(machine_model, "iMac*") ||
talk_base::string_match(machine_model, "Xserve*");
#elif !defined(IOS)
// All other machines return Not available.
known = talk_base::string_match(info.GetMachineModel().c_str(),
"Not available");
#endif
if (!known) {
LOG(LS_WARNING) << "Machine Model Unknown: " << machine_model;
}
}
// Tests maximum cpu clockrate.
TEST(SystemInfoTest, CpuMaxCpuSpeed) {
talk_base::SystemInfo info;
LOG(LS_INFO) << "MaxCpuSpeed: " << info.GetMaxCpuSpeed();
EXPECT_GT(info.GetMaxCpuSpeed(), 0);
EXPECT_LT(info.GetMaxCpuSpeed(), 100000); // 100 Ghz
}
// Tests current cpu clockrate.
TEST(SystemInfoTest, CpuCurCpuSpeed) {
talk_base::SystemInfo info;
LOG(LS_INFO) << "MaxCurSpeed: " << info.GetCurCpuSpeed();
EXPECT_GT(info.GetCurCpuSpeed(), 0);
EXPECT_LT(info.GetMaxCpuSpeed(), 100000);
}
// Tests physical memory size.
TEST(SystemInfoTest, MemorySize) {
talk_base::SystemInfo info;
LOG(LS_INFO) << "MemorySize: " << info.GetMemorySize();
EXPECT_GT(info.GetMemorySize(), -1);
}
// Tests number of logical cpus available to the system.
TEST(SystemInfoTest, MaxCpus) {
talk_base::SystemInfo info;
LOG(LS_INFO) << "MaxCpus: " << info.GetMaxCpus();
EXPECT_GT(info.GetMaxCpus(), 0);
}
// Tests number of physical cpus available to the system.
TEST(SystemInfoTest, MaxPhysicalCpus) {
talk_base::SystemInfo info;
LOG(LS_INFO) << "MaxPhysicalCpus: " << info.GetMaxPhysicalCpus();
EXPECT_GT(info.GetMaxPhysicalCpus(), 0);
EXPECT_LE(info.GetMaxPhysicalCpus(), info.GetMaxCpus());
}
// Tests number of logical cpus available to the process.
TEST(SystemInfoTest, CurCpus) {
talk_base::SystemInfo info;
LOG(LS_INFO) << "CurCpus: " << info.GetCurCpus();
EXPECT_GT(info.GetCurCpus(), 0);
EXPECT_LE(info.GetCurCpus(), info.GetMaxCpus());
}
#ifdef CPU_X86
// CPU family/model/stepping is only available on X86. The following tests
// that they are set when running on x86 CPUs. Valid Family/Model/Stepping
// values are non-zero on known CPUs.
// Tests Intel CPU Family identification.
TEST(SystemInfoTest, CpuFamily) {
talk_base::SystemInfo info;
LOG(LS_INFO) << "CpuFamily: " << info.GetCpuFamily();
EXPECT_GT(info.GetCpuFamily(), 0);
}
// Tests Intel CPU Model identification.
TEST(SystemInfoTest, CpuModel) {
talk_base::SystemInfo info;
LOG(LS_INFO) << "CpuModel: " << info.GetCpuModel();
EXPECT_GT(info.GetCpuModel(), 0);
}
// Tests Intel CPU Stepping identification.
TEST(SystemInfoTest, CpuStepping) {
talk_base::SystemInfo info;
LOG(LS_INFO) << "CpuStepping: " << info.GetCpuStepping();
EXPECT_GT(info.GetCpuStepping(), 0);
}
#else // CPU_X86
// If not running on x86 CPU the following tests expect the functions to
// return 0.
TEST(SystemInfoTest, CpuFamily) {
talk_base::SystemInfo info;
LOG(LS_INFO) << "CpuFamily: " << info.GetCpuFamily();
EXPECT_EQ(0, info.GetCpuFamily());
}
// Tests Intel CPU Model identification.
TEST(SystemInfoTest, CpuModel) {
talk_base::SystemInfo info;
LOG(LS_INFO) << "CpuModel: " << info.GetCpuModel();
EXPECT_EQ(0, info.GetCpuModel());
}
// Tests Intel CPU Stepping identification.
TEST(SystemInfoTest, CpuStepping) {
talk_base::SystemInfo info;
LOG(LS_INFO) << "CpuStepping: " << info.GetCpuStepping();
EXPECT_EQ(0, info.GetCpuStepping());
}
#endif // CPU_X86
#if WIN32 && !defined(EXCLUDE_D3D9)
TEST(SystemInfoTest, GpuInfo) {
talk_base::SystemInfo info;
talk_base::SystemInfo::GpuInfo gi;
EXPECT_TRUE(info.GetGpuInfo(&gi));
LOG(LS_INFO) << "GpuDriver: " << gi.driver;
EXPECT_FALSE(gi.driver.empty());
LOG(LS_INFO) << "GpuDriverVersion: " << gi.driver_version;
EXPECT_FALSE(gi.driver_version.empty());
}
#endif