#include "base/cpu.h"
#include "base/containers/contains.h"
#include "base/logging.h"
#include "base/strings/string_util.h"
#include "build/build_config.h"
#include "testing/gtest/include/gtest/gtest.h"
TEST(CPU, RunExtendedInstructions) {
base::CPU cpu;
#if defined(ARCH_CPU_X86_FAMILY)
ASSERT_TRUE(cpu.has_mmx());
ASSERT_TRUE(cpu.has_sse());
ASSERT_TRUE(cpu.has_sse2());
ASSERT_TRUE(cpu.has_sse3());
#if defined(COMPILER_GCC)
__asm__ __volatile__("emms\n" : : : "mm0");
__asm__ __volatile__("xorps %%xmm0, %%xmm0\n" : : : "xmm0");
__asm__ __volatile__("psrldq $0, %%xmm0\n" : : : "xmm0");
__asm__ __volatile__("addsubpd %%xmm0, %%xmm0\n" : : : "xmm0");
if (cpu.has_ssse3()) {
__asm__ __volatile__("psignb %%xmm0, %%xmm0\n" : : : "xmm0");
}
if (cpu.has_sse41()) {
__asm__ __volatile__("pmuldq %%xmm0, %%xmm0\n" : : : "xmm0");
}
if (cpu.has_sse42()) {
__asm__ __volatile__("crc32 %%eax, %%eax\n" : : : "eax");
}
if (cpu.has_popcnt()) {
__asm__ __volatile__("popcnt %%eax, %%eax\n" : : : "eax");
}
if (cpu.has_avx()) {
__asm__ __volatile__("vzeroupper\n" : : : "xmm0");
}
if (cpu.has_fma3()) {
__asm__ __volatile__("vfmadd132ps %%xmm0, %%xmm0, %%xmm0\n" : : : "xmm0");
}
if (cpu.has_avx2()) {
__asm__ __volatile__("vpunpcklbw %%ymm0, %%ymm0, %%ymm0\n" : : : "xmm0");
}
if (cpu.has_pku()) {
uint32_t pkru;
__asm__ __volatile__(".byte 0x0f,0x01,0xee\n"
: "=a"(pkru)
: "c"(0), "d"(0));
}
#elif defined(COMPILER_MSVC) && (defined(ARCH_CPU_32_BITS) || \
(defined(ARCH_CPU_64_BITS) && defined(__clang__)))
__asm emms;
__asm xorps xmm0, xmm0;
__asm psrldq xmm0, 0;
__asm addsubpd xmm0, xmm0;
if (cpu.has_ssse3()) {
__asm psignb xmm0, xmm0;
}
if (cpu.has_sse41()) {
__asm pmuldq xmm0, xmm0;
}
if (cpu.has_sse42()) {
__asm crc32 eax, eax;
}
if (cpu.has_popcnt()) {
__asm popcnt eax, eax;
}
if (cpu.has_avx()) {
__asm vzeroupper;
}
if (cpu.has_fma3()) {
__asm vfmadd132ps xmm0, xmm0, xmm0;
}
if (cpu.has_avx2()) {
__asm vpunpcklbw ymm0, ymm0, ymm0
}
#endif
#endif
#if defined(ARCH_CPU_ARM64)
if (cpu.has_mte()) {
#if !defined(__ARM_FEATURE_MEMORY_TAGGING)
GTEST_FAIL()
<< "MTE support detected (but base/ built without MTE support)";
#else
char ptr[32];
uint64_t val;
__asm__ __volatile__("irg %0, %1" : "=r"(val) : "r"(ptr));
#endif
}
#endif
}
TEST(CPU, BrandAndVendorContainsNoNUL) {
base::CPU cpu;
EXPECT_FALSE(base::Contains(cpu.cpu_brand(), '\0'));
EXPECT_FALSE(base::Contains(cpu.vendor_name(), '\0'));
}
#if defined(ARCH_CPU_X86_FAMILY)
TEST(CPU, X86FamilyAndModel) {
base::internal::X86ModelInfo info;
info = base::internal::ComputeX86FamilyAndModel("GenuineIntel", 0x000406e3);
EXPECT_EQ(info.family, 6);
EXPECT_EQ(info.model, 78);
EXPECT_EQ(info.ext_family, 0);
EXPECT_EQ(info.ext_model, 4);
info = base::internal::ComputeX86FamilyAndModel("GenuineIntel", 0x000406c2);
EXPECT_EQ(info.family, 6);
EXPECT_EQ(info.model, 76);
EXPECT_EQ(info.ext_family, 0);
EXPECT_EQ(info.ext_model, 4);
info = base::internal::ComputeX86FamilyAndModel("GenuineIntel", 0x00000f31);
EXPECT_EQ(info.family, 15);
EXPECT_EQ(info.model, 3);
EXPECT_EQ(info.ext_family, 0);
EXPECT_EQ(info.ext_model, 0);
info = base::internal::ComputeX86FamilyAndModel("AuthenticAMD", 0x00670f00);
EXPECT_EQ(info.family, 21);
EXPECT_EQ(info.model, 112);
EXPECT_EQ(info.ext_family, 6);
EXPECT_EQ(info.ext_model, 7);
}
#endif
#if defined(ARCH_CPU_ARM_FAMILY) && \
(BUILDFLAG(IS_LINUX) || BUILDFLAG(IS_ANDROID) || BUILDFLAG(IS_CHROMEOS))
TEST(CPU, ARMImplementerAndPartNumber) {
base::CPU cpu;
const std::string& cpu_brand = cpu.cpu_brand();
EXPECT_EQ(cpu_brand, base::TrimWhitespaceASCII(cpu_brand, base::TRIM_ALL));
EXPECT_GT(cpu.implementer(), 0u);
EXPECT_GT(cpu.part_number(), 0u);
}
#endif