97077a3ab2
Update libyuv to r826. TEST=try bots R=niklas.enbom@webrtc.org Review URL: https://webrtc-codereview.appspot.com/2889004 git-svn-id: http://webrtc.googlecode.com/svn/trunk@5038 4adac7df-926f-26a2-2b94-8c16560cd09d
536 lines
18 KiB
C++
536 lines
18 KiB
C++
/*
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* libjingle
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* Copyright 2008 Google Inc.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are met:
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*
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* 1. Redistributions of source code must retain the above copyright notice,
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* this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright notice,
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* this list of conditions and the following disclaimer in the documentation
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* and/or other materials provided with the distribution.
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* 3. The name of the author may not be used to endorse or promote products
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* derived from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
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* WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO
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* EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
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* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
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* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
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* OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
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* ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "talk/base/systeminfo.h"
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#if defined(WIN32)
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#include <winsock2.h>
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#ifndef EXCLUDE_D3D9
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#include <d3d9.h>
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#endif
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#include <intrin.h> // for __cpuid()
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#elif defined(OSX)
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#include <ApplicationServices/ApplicationServices.h>
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#include <CoreServices/CoreServices.h>
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#elif defined(LINUX) || defined(ANDROID)
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#include <unistd.h>
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#endif
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#if defined(OSX) || defined(IOS)
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#include <sys/sysctl.h>
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#endif
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#if defined(WIN32)
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#include "talk/base/scoped_ptr.h"
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#include "talk/base/win32.h"
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#elif defined(OSX)
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#include "talk/base/macconversion.h"
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#elif defined(LINUX) || defined(ANDROID)
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#include "talk/base/linux.h"
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#endif
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#include "talk/base/common.h"
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#include "talk/base/logging.h"
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#include "talk/base/stringutils.h"
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namespace talk_base {
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// See Also: http://msdn.microsoft.com/en-us/library/ms683194(v=vs.85).aspx
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#if defined(WIN32)
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typedef BOOL (WINAPI *LPFN_GLPI)(
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PSYSTEM_LOGICAL_PROCESSOR_INFORMATION,
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PDWORD);
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static void GetProcessorInformation(int* physical_cpus, int* cache_size) {
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// GetLogicalProcessorInformation() is available on Windows XP SP3 and beyond.
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LPFN_GLPI glpi = reinterpret_cast<LPFN_GLPI>(GetProcAddress(
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GetModuleHandle(L"kernel32"),
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"GetLogicalProcessorInformation"));
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if (NULL == glpi) {
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return;
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}
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// Determine buffer size, allocate and get processor information.
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// Size can change between calls (unlikely), so a loop is done.
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DWORD return_length = 0;
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scoped_ptr<SYSTEM_LOGICAL_PROCESSOR_INFORMATION[]> infos;
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while (!glpi(infos.get(), &return_length)) {
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if (GetLastError() == ERROR_INSUFFICIENT_BUFFER) {
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infos.reset(new SYSTEM_LOGICAL_PROCESSOR_INFORMATION[
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return_length / sizeof(SYSTEM_LOGICAL_PROCESSOR_INFORMATION)]);
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} else {
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return;
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}
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}
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*physical_cpus = 0;
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*cache_size = 0;
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for (size_t i = 0;
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i < return_length / sizeof(SYSTEM_LOGICAL_PROCESSOR_INFORMATION); ++i) {
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if (infos[i].Relationship == RelationProcessorCore) {
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++*physical_cpus;
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} else if (infos[i].Relationship == RelationCache) {
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int next_cache_size = static_cast<int>(infos[i].Cache.Size);
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if (next_cache_size >= *cache_size) {
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*cache_size = next_cache_size;
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}
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}
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}
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return;
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}
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#else
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// TODO(fbarchard): Use gcc 4.4 provided cpuid intrinsic
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// 32 bit fpic requires ebx be preserved
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#if (defined(__pic__) || defined(__APPLE__)) && defined(__i386__)
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static inline void __cpuid(int cpu_info[4], int info_type) {
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__asm__ volatile ( // NOLINT
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"mov %%ebx, %%edi\n"
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"cpuid\n"
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"xchg %%edi, %%ebx\n"
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: "=a"(cpu_info[0]), "=D"(cpu_info[1]), "=c"(cpu_info[2]), "=d"(cpu_info[3])
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: "a"(info_type)
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); // NOLINT
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}
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#elif defined(__i386__) || defined(__x86_64__)
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static inline void __cpuid(int cpu_info[4], int info_type) {
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__asm__ volatile ( // NOLINT
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"cpuid\n"
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: "=a"(cpu_info[0]), "=b"(cpu_info[1]), "=c"(cpu_info[2]), "=d"(cpu_info[3])
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: "a"(info_type)
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); // NOLINT
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}
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#endif
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#endif // WIN32
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// Note(fbarchard):
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// Family and model are extended family and extended model. 8 bits each.
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SystemInfo::SystemInfo()
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: physical_cpus_(1), logical_cpus_(1), cache_size_(0),
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cpu_family_(0), cpu_model_(0), cpu_stepping_(0),
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cpu_speed_(0), memory_(0) {
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// Initialize the basic information.
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#if defined(__arm__) || defined(_M_ARM)
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cpu_arch_ = SI_ARCH_ARM;
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#elif defined(__x86_64__) || defined(_M_X64)
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cpu_arch_ = SI_ARCH_X64;
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#elif defined(__i386__) || defined(_M_IX86)
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cpu_arch_ = SI_ARCH_X86;
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#else
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cpu_arch_ = SI_ARCH_UNKNOWN;
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#endif
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#if defined(WIN32)
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SYSTEM_INFO si;
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GetSystemInfo(&si);
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logical_cpus_ = si.dwNumberOfProcessors;
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GetProcessorInformation(&physical_cpus_, &cache_size_);
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if (physical_cpus_ <= 0) {
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physical_cpus_ = logical_cpus_;
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}
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cpu_family_ = si.wProcessorLevel;
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cpu_model_ = si.wProcessorRevision >> 8;
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cpu_stepping_ = si.wProcessorRevision & 0xFF;
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#elif defined(OSX) || defined(IOS)
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uint32_t sysctl_value;
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size_t length = sizeof(sysctl_value);
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if (!sysctlbyname("hw.physicalcpu_max", &sysctl_value, &length, NULL, 0)) {
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physical_cpus_ = static_cast<int>(sysctl_value);
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}
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length = sizeof(sysctl_value);
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if (!sysctlbyname("hw.logicalcpu_max", &sysctl_value, &length, NULL, 0)) {
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logical_cpus_ = static_cast<int>(sysctl_value);
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}
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uint64_t sysctl_value64;
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length = sizeof(sysctl_value64);
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if (!sysctlbyname("hw.l3cachesize", &sysctl_value64, &length, NULL, 0)) {
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cache_size_ = static_cast<int>(sysctl_value64);
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}
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if (!cache_size_) {
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length = sizeof(sysctl_value64);
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if (!sysctlbyname("hw.l2cachesize", &sysctl_value64, &length, NULL, 0)) {
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cache_size_ = static_cast<int>(sysctl_value64);
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}
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}
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length = sizeof(sysctl_value);
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if (!sysctlbyname("machdep.cpu.family", &sysctl_value, &length, NULL, 0)) {
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cpu_family_ = static_cast<int>(sysctl_value);
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}
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length = sizeof(sysctl_value);
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if (!sysctlbyname("machdep.cpu.model", &sysctl_value, &length, NULL, 0)) {
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cpu_model_ = static_cast<int>(sysctl_value);
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}
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length = sizeof(sysctl_value);
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if (!sysctlbyname("machdep.cpu.stepping", &sysctl_value, &length, NULL, 0)) {
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cpu_stepping_ = static_cast<int>(sysctl_value);
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}
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#elif defined(__native_client__)
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// TODO(ryanpetrie): Implement this via PPAPI when it's available.
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#else // LINUX || ANDROID
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ProcCpuInfo proc_info;
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if (proc_info.LoadFromSystem()) {
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proc_info.GetNumCpus(&logical_cpus_);
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proc_info.GetNumPhysicalCpus(&physical_cpus_);
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proc_info.GetCpuFamily(&cpu_family_);
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#if defined(CPU_X86)
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// These values only apply to x86 systems.
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proc_info.GetSectionIntValue(0, "model", &cpu_model_);
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proc_info.GetSectionIntValue(0, "stepping", &cpu_stepping_);
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proc_info.GetSectionIntValue(0, "cpu MHz", &cpu_speed_);
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proc_info.GetSectionIntValue(0, "cache size", &cache_size_);
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cache_size_ *= 1024;
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#endif
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}
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// ProcCpuInfo reads cpu speed from "cpu MHz" under /proc/cpuinfo.
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// But that number is a moving target which can change on-the-fly according to
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// many factors including system workload.
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// See /sys/devices/system/cpu/cpu0/cpufreq/scaling_available_governors.
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// The one in /sys/devices/system/cpu/cpu0/cpufreq/cpuinfo_max_freq is more
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// accurate. We use it as our cpu speed when it is available.
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// cpuinfo_max_freq is measured in KHz and requires conversion to MHz.
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int max_freq = talk_base::ReadCpuMaxFreq();
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if (max_freq > 0) {
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cpu_speed_ = max_freq / 1000;
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}
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#endif
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// For L2 CacheSize see also
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// http://www.flounder.com/cpuid_explorer2.htm#CPUID(0x800000006)
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#ifdef CPU_X86
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if (cache_size_ == 0) {
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int cpu_info[4];
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__cpuid(cpu_info, 0x80000000); // query maximum extended cpuid function.
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if (static_cast<uint32>(cpu_info[0]) >= 0x80000006) {
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__cpuid(cpu_info, 0x80000006);
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cache_size_ = (cpu_info[2] >> 16) * 1024;
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}
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}
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#endif
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}
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// Return the number of cpu threads available to the system.
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int SystemInfo::GetMaxCpus() {
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return logical_cpus_;
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}
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// Return the number of cpu cores available to the system.
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int SystemInfo::GetMaxPhysicalCpus() {
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return physical_cpus_;
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}
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// Return the number of cpus available to the process. Since affinity can be
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// changed on the fly, do not cache this value.
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// Can be affected by heat.
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int SystemInfo::GetCurCpus() {
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int cur_cpus;
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#if defined(WIN32)
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DWORD_PTR process_mask, system_mask;
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::GetProcessAffinityMask(::GetCurrentProcess(), &process_mask, &system_mask);
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for (cur_cpus = 0; process_mask; ++cur_cpus) {
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// Sparse-ones algorithm. There are slightly faster methods out there but
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// they are unintuitive and won't make a difference on a single dword.
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process_mask &= (process_mask - 1);
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}
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#elif defined(OSX) || defined(IOS)
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uint32_t sysctl_value;
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size_t length = sizeof(sysctl_value);
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int error = sysctlbyname("hw.ncpu", &sysctl_value, &length, NULL, 0);
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cur_cpus = !error ? static_cast<int>(sysctl_value) : 1;
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#else
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// Linux, Solaris, ANDROID
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cur_cpus = static_cast<int>(sysconf(_SC_NPROCESSORS_ONLN));
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#endif
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return cur_cpus;
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}
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// Return the type of this CPU.
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SystemInfo::Architecture SystemInfo::GetCpuArchitecture() {
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return cpu_arch_;
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}
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// Returns the vendor string from the cpu, e.g. "GenuineIntel", "AuthenticAMD".
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// See "Intel Processor Identification and the CPUID Instruction"
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// (Intel document number: 241618)
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std::string SystemInfo::GetCpuVendor() {
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if (cpu_vendor_.empty()) {
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#if defined(CPU_X86)
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int cpu_info[4];
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__cpuid(cpu_info, 0);
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cpu_info[0] = cpu_info[1]; // Reorder output
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cpu_info[1] = cpu_info[3];
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cpu_info[2] = cpu_info[2];
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cpu_info[3] = 0;
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cpu_vendor_ = std::string(reinterpret_cast<char*>(&cpu_info[0]));
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#elif defined(CPU_ARM)
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cpu_vendor_ = std::string("ARM");
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#else
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cpu_vendor_ = std::string("Undefined");
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#endif
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}
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return cpu_vendor_;
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}
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int SystemInfo::GetCpuCacheSize() {
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return cache_size_;
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}
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// Return the "family" of this CPU.
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int SystemInfo::GetCpuFamily() {
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return cpu_family_;
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}
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// Return the "model" of this CPU.
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int SystemInfo::GetCpuModel() {
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return cpu_model_;
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}
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// Return the "stepping" of this CPU.
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int SystemInfo::GetCpuStepping() {
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return cpu_stepping_;
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}
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// Return the clockrate of the primary processor in Mhz. This value can be
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// cached. Returns -1 on error.
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int SystemInfo::GetMaxCpuSpeed() {
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if (cpu_speed_) {
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return cpu_speed_;
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}
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#if defined(WIN32)
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HKEY key;
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static const WCHAR keyName[] =
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L"HARDWARE\\DESCRIPTION\\System\\CentralProcessor\\0";
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if (RegOpenKeyEx(HKEY_LOCAL_MACHINE, keyName , 0, KEY_QUERY_VALUE, &key)
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== ERROR_SUCCESS) {
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DWORD data, len;
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len = sizeof(data);
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if (RegQueryValueEx(key, L"~Mhz", 0, 0, reinterpret_cast<LPBYTE>(&data),
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&len) == ERROR_SUCCESS) {
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cpu_speed_ = data;
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} else {
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LOG(LS_WARNING) << "Failed to query registry value HKLM\\" << keyName
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<< "\\~Mhz";
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cpu_speed_ = -1;
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}
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RegCloseKey(key);
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} else {
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LOG(LS_WARNING) << "Failed to open registry key HKLM\\" << keyName;
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cpu_speed_ = -1;
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}
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#elif defined(IOS) || defined(OSX)
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uint64_t sysctl_value;
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size_t length = sizeof(sysctl_value);
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int error = sysctlbyname("hw.cpufrequency_max", &sysctl_value, &length,
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NULL, 0);
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cpu_speed_ = !error ? static_cast<int>(sysctl_value/1000000) : -1;
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#else
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// TODO(fbarchard): Implement using proc/cpuinfo
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cpu_speed_ = 0;
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#endif
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return cpu_speed_;
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}
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// Dynamically check the current clockrate, which could be reduced because of
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// powersaving profiles. Eventually for windows we want to query WMI for
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// root\WMI::ProcessorPerformance.InstanceName="Processor_Number_0".frequency
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int SystemInfo::GetCurCpuSpeed() {
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#if defined(WIN32)
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// TODO(fbarchard): Add WMI check, requires COM initialization
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// NOTE(fbarchard): Testable on Sandy Bridge.
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return GetMaxCpuSpeed();
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#elif defined(IOS) || defined(OSX)
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uint64_t sysctl_value;
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size_t length = sizeof(sysctl_value);
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int error = sysctlbyname("hw.cpufrequency", &sysctl_value, &length, NULL, 0);
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return !error ? static_cast<int>(sysctl_value/1000000) : GetMaxCpuSpeed();
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#else // LINUX || ANDROID
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// TODO(fbarchard): Use proc/cpuinfo for Cur speed on Linux.
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return GetMaxCpuSpeed();
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#endif
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}
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// Returns the amount of installed physical memory in Bytes. Cacheable.
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// Returns -1 on error.
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int64 SystemInfo::GetMemorySize() {
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if (memory_) {
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return memory_;
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}
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#if defined(WIN32)
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MEMORYSTATUSEX status = {0};
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status.dwLength = sizeof(status);
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if (GlobalMemoryStatusEx(&status)) {
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memory_ = status.ullTotalPhys;
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} else {
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LOG_GLE(LS_WARNING) << "GlobalMemoryStatusEx failed.";
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memory_ = -1;
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}
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#elif defined(OSX) || defined(IOS)
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size_t len = sizeof(memory_);
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int error = sysctlbyname("hw.memsize", &memory_, &len, NULL, 0);
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if (error || memory_ == 0) {
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memory_ = -1;
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}
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#else // LINUX || ANDROID
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memory_ = static_cast<int64>(sysconf(_SC_PHYS_PAGES)) *
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static_cast<int64>(sysconf(_SC_PAGESIZE));
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if (memory_ < 0) {
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LOG(LS_WARNING) << "sysconf(_SC_PHYS_PAGES) failed."
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<< "sysconf(_SC_PHYS_PAGES) " << sysconf(_SC_PHYS_PAGES)
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<< "sysconf(_SC_PAGESIZE) " << sysconf(_SC_PAGESIZE);
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memory_ = -1;
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}
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#endif
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return memory_;
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}
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// Return the name of the machine model we are currently running on.
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// This is a human readable string that consists of the name and version
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// number of the hardware, i.e 'MacBookAir1,1'. Returns an empty string if
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// model can not be determined. The string is cached for subsequent calls.
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std::string SystemInfo::GetMachineModel() {
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if (!machine_model_.empty()) {
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return machine_model_;
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}
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#if defined(OSX) || defined(IOS)
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char buffer[128];
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size_t length = sizeof(buffer);
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int error = sysctlbyname("hw.model", buffer, &length, NULL, 0);
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if (!error) {
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machine_model_.assign(buffer, length - 1);
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} else {
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machine_model_.clear();
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}
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#else
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machine_model_ = "Not available";
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#endif
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return machine_model_;
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}
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#ifdef OSX
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// Helper functions to query IOKit for video hardware properties.
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static CFTypeRef SearchForProperty(io_service_t port, CFStringRef name) {
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return IORegistryEntrySearchCFProperty(port, kIOServicePlane,
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name, kCFAllocatorDefault,
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kIORegistryIterateRecursively | kIORegistryIterateParents);
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}
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static void GetProperty(io_service_t port, CFStringRef name, int* value) {
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if (!value) return;
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CFTypeRef ref = SearchForProperty(port, name);
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if (ref) {
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CFTypeID refType = CFGetTypeID(ref);
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if (CFNumberGetTypeID() == refType) {
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CFNumberRef number = reinterpret_cast<CFNumberRef>(ref);
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p_convertCFNumberToInt(number, value);
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} else if (CFDataGetTypeID() == refType) {
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CFDataRef data = reinterpret_cast<CFDataRef>(ref);
|
|
if (CFDataGetLength(data) == sizeof(UInt32)) {
|
|
*value = *reinterpret_cast<const UInt32*>(CFDataGetBytePtr(data));
|
|
}
|
|
}
|
|
CFRelease(ref);
|
|
}
|
|
}
|
|
|
|
static void GetProperty(io_service_t port, CFStringRef name,
|
|
std::string* value) {
|
|
if (!value) return;
|
|
CFTypeRef ref = SearchForProperty(port, name);
|
|
if (ref) {
|
|
CFTypeID refType = CFGetTypeID(ref);
|
|
if (CFStringGetTypeID() == refType) {
|
|
CFStringRef stringRef = reinterpret_cast<CFStringRef>(ref);
|
|
p_convertHostCFStringRefToCPPString(stringRef, *value);
|
|
} else if (CFDataGetTypeID() == refType) {
|
|
CFDataRef dataRef = reinterpret_cast<CFDataRef>(ref);
|
|
*value = std::string(reinterpret_cast<const char*>(
|
|
CFDataGetBytePtr(dataRef)), CFDataGetLength(dataRef));
|
|
}
|
|
CFRelease(ref);
|
|
}
|
|
}
|
|
#endif
|
|
|
|
// Fills a struct with information on the graphics adapater and returns true
|
|
// iff successful.
|
|
bool SystemInfo::GetGpuInfo(GpuInfo *info) {
|
|
if (!info) return false;
|
|
#if defined(WIN32) && !defined(EXCLUDE_D3D9)
|
|
D3DADAPTER_IDENTIFIER9 identifier;
|
|
HRESULT hr = E_FAIL;
|
|
HINSTANCE d3d_lib = LoadLibrary(L"d3d9.dll");
|
|
|
|
if (d3d_lib) {
|
|
typedef IDirect3D9* (WINAPI *D3DCreate9Proc)(UINT);
|
|
D3DCreate9Proc d3d_create_proc = reinterpret_cast<D3DCreate9Proc>(
|
|
GetProcAddress(d3d_lib, "Direct3DCreate9"));
|
|
if (d3d_create_proc) {
|
|
IDirect3D9* d3d = d3d_create_proc(D3D_SDK_VERSION);
|
|
if (d3d) {
|
|
hr = d3d->GetAdapterIdentifier(D3DADAPTER_DEFAULT, 0, &identifier);
|
|
d3d->Release();
|
|
}
|
|
}
|
|
FreeLibrary(d3d_lib);
|
|
}
|
|
|
|
if (hr != D3D_OK) {
|
|
LOG(LS_ERROR) << "Failed to access Direct3D9 information.";
|
|
return false;
|
|
}
|
|
|
|
info->device_name = identifier.DeviceName;
|
|
info->description = identifier.Description;
|
|
info->vendor_id = identifier.VendorId;
|
|
info->device_id = identifier.DeviceId;
|
|
info->driver = identifier.Driver;
|
|
// driver_version format: product.version.subversion.build
|
|
std::stringstream ss;
|
|
ss << HIWORD(identifier.DriverVersion.HighPart) << "."
|
|
<< LOWORD(identifier.DriverVersion.HighPart) << "."
|
|
<< HIWORD(identifier.DriverVersion.LowPart) << "."
|
|
<< LOWORD(identifier.DriverVersion.LowPart);
|
|
info->driver_version = ss.str();
|
|
return true;
|
|
#elif defined(OSX)
|
|
// We'll query the IOKit for the gpu of the main display.
|
|
io_service_t display_service_port = CGDisplayIOServicePort(
|
|
kCGDirectMainDisplay);
|
|
GetProperty(display_service_port, CFSTR("vendor-id"), &info->vendor_id);
|
|
GetProperty(display_service_port, CFSTR("device-id"), &info->device_id);
|
|
GetProperty(display_service_port, CFSTR("model"), &info->description);
|
|
return true;
|
|
#else // LINUX || ANDROID
|
|
// TODO(fbarchard): Implement this on Linux
|
|
return false;
|
|
#endif
|
|
}
|
|
} // namespace talk_base
|