mirror of
https://github.com/fastfetch-cli/fastfetch.git
synced 2026-09-13 02:42:09 +02:00
129 lines
4.6 KiB
C
129 lines
4.6 KiB
C
#include "cpu.h"
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#include "common/sysctl.h"
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#include "util/apple/smc_temps.h"
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#include "util/stringUtils.h"
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static double detectCpuTemp(const FFstrbuf* cpuName)
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{
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double result = 0;
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const char* error = NULL;
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if (ffStrbufStartsWithS(cpuName, "Apple M"))
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{
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switch (strtol(cpuName->chars + strlen("Apple M"), NULL, 10))
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{
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case 1: error = ffDetectSmcTemps(FF_TEMP_CPU_M1X, &result); break;
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case 2: error = ffDetectSmcTemps(FF_TEMP_CPU_M2X, &result); break;
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case 3: error = ffDetectSmcTemps(FF_TEMP_CPU_M3X, &result); break;
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default: error = "Unsupported Apple Silicon CPU";
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}
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}
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else // PPC?
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error = ffDetectSmcTemps(FF_TEMP_CPU_X64, &result);
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if(error)
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return FF_CPU_TEMP_UNSET;
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return result;
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}
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#ifdef __aarch64__
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#include "util/apple/cf_helpers.h"
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#include <IOKit/IOKitLib.h>
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static const char* detectFrequency(FFCPUResult* cpu)
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{
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// https://github.com/giampaolo/psutil/pull/2222/files
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FF_IOOBJECT_AUTO_RELEASE io_registry_entry_t entryDevice = IOServiceGetMatchingService(MACH_PORT_NULL, IOServiceNameMatching("pmgr"));
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if (!entryDevice)
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return "IOServiceGetMatchingServices() failed";
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if (!IOObjectConformsTo(entryDevice, "AppleARMIODevice"))
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return "\"pmgr\" should conform to \"AppleARMIODevice\"";
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FF_CFTYPE_AUTO_RELEASE CFDataRef freqProperty = (CFDataRef) IORegistryEntryCreateCFProperty(entryDevice, CFSTR("voltage-states5-sram"), kCFAllocatorDefault, kNilOptions);
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if (!freqProperty || CFGetTypeID(freqProperty) != CFDataGetTypeID())
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return "\"voltage-states5-sram\" in \"pmgr\" is not found";
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// voltage-states5-sram stores supported <frequency / voltage> pairs of pcores from the lowest to the highest
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// voltage-states1-sram stores ecores'
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CFIndex propLength = CFDataGetLength(freqProperty);
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if (propLength == 0 || propLength % (CFIndex) sizeof(uint32_t) * 2 != 0)
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return "Invalid \"voltage-states5-sram\" length";
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uint32_t* pStart = (uint32_t*) CFDataGetBytePtr(freqProperty);
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uint32_t pMax = *pStart;
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for (CFIndex i = 2; i < propLength / (CFIndex) sizeof(uint32_t) && pStart[i] > 0; i += 2 /* skip voltage */)
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pMax = pMax > pStart[i] ? pMax : pStart[i];
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if (pMax > 0)
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cpu->frequencyMax = pMax / 1000 / 1000;
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return NULL;
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}
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#else
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static const char* detectFrequency(FFCPUResult* cpu)
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{
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cpu->frequencyBase = (uint32_t) (ffSysctlGetInt64("hw.cpufrequency", 0) / 1000 / 1000);
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cpu->frequencyMax = (uint32_t) (ffSysctlGetInt64("hw.cpufrequency_max", 0) / 1000 / 1000);
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if(cpu->frequencyBase == 0)
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{
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unsigned current = 0;
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size_t size = sizeof(current);
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if (sysctl((int[]){ CTL_HW, HW_CPU_FREQ }, 2, ¤t, &size, NULL, 0) == 0)
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cpu->frequencyBase = (uint32_t) (current / 1000 / 1000);
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}
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return NULL;
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}
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#endif
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static const char* detectCoreCount(FFCPUResult* cpu)
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{
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uint32_t nPerfLevels = (uint32_t) ffSysctlGetInt("hw.nperflevels", 0);
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if (nPerfLevels <= 0) return "sysctl(hw.nperflevels) failed";
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char sysctlKey[] = "hw.perflevelN.logicalcpu";
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if (nPerfLevels > ARRAY_SIZE(cpu->coreTypes))
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nPerfLevels = ARRAY_SIZE(cpu->coreTypes);
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for (uint32_t i = 0; i < nPerfLevels; ++i)
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{
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sysctlKey[strlen("hw.perflevel")] = (char) ('0' + i);
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cpu->coreTypes[i] = (FFCPUCore) {
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.freq = nPerfLevels - i,
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.count = (uint32_t) ffSysctlGetInt(sysctlKey, 0),
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};
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}
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return NULL;
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}
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const char* ffDetectCPUImpl(const FFCPUOptions* options, FFCPUResult* cpu)
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{
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if (ffSysctlGetString("machdep.cpu.brand_string", &cpu->name) != NULL)
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return "sysctlbyname(machdep.cpu.brand_string) failed";
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ffSysctlGetString("machdep.cpu.vendor", &cpu->vendor);
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if (cpu->vendor.length == 0 && ffStrbufStartsWithS(&cpu->name, "Apple "))
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ffStrbufAppendS(&cpu->vendor, "Apple");
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cpu->coresPhysical = (uint16_t) ffSysctlGetInt("hw.physicalcpu_max", 1);
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if(cpu->coresPhysical == 1)
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cpu->coresPhysical = (uint16_t) ffSysctlGetInt("hw.physicalcpu", 1);
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cpu->coresLogical = (uint16_t) ffSysctlGetInt("hw.logicalcpu_max", 1);
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if(cpu->coresLogical == 1)
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cpu->coresLogical = (uint16_t) ffSysctlGetInt("hw.ncpu", 1);
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cpu->coresOnline = (uint16_t) ffSysctlGetInt("hw.logicalcpu", 1);
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if(cpu->coresOnline == 1)
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cpu->coresOnline = (uint16_t) ffSysctlGetInt("hw.activecpu", 1);
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detectFrequency(cpu);
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if (options->showPeCoreCount) detectCoreCount(cpu);
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cpu->temperature = options->temp ? detectCpuTemp(&cpu->name) : FF_CPU_TEMP_UNSET;
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return NULL;
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}
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