Commit dbbefec6 authored by Ahmed Samy's avatar Ahmed Samy

cpuid: Introduce cpuid_write_info

This function writes CPU information to a file.
Signed-off-by: default avatarAhmed Samy <f.fallen45@gmail.com>
parent fab645fb
......@@ -29,6 +29,7 @@
#include "cpuid.h"
#include <string.h>
#include <stdio.h>
enum {
CPUID_PROC_BRAND_STRING_INTERNAL0 = 0x80000003,
......@@ -280,8 +281,8 @@ void cpuid(cpuid_t info, uint32_t *buf)
if (info == CPUID_PROC_BRAND_STRING) {
static char cached[48] = { 0 };
if (cached[0] == '\0') {
___cpuid(CPUID_PROC_BRAND_STRING, &buf[0], &buf[1], &buf[2], &buf[3]);
___cpuid(CPUID_PROC_BRAND_STRING_INTERNAL0, &buf[4], &buf[5], &buf[6], &buf[7]);
___cpuid(CPUID_PROC_BRAND_STRING, &buf[0], &buf[1], &buf[2], &buf[3] );
___cpuid(CPUID_PROC_BRAND_STRING_INTERNAL0, &buf[4], &buf[5], &buf[6], &buf[7] );
___cpuid(CPUID_PROC_BRAND_STRING_INTERNAL1, &buf[8], &buf[9], &buf[10], &buf[11]);
memcpy(cached, buf, sizeof cached);
......@@ -365,4 +366,315 @@ void cpuid(cpuid_t info, uint32_t *buf)
}
}
bool cpuid_write_info(uint32_t info, uint32_t featureset, const char *outfile)
{
FILE *file;
char filename[256];
char cpu_information[64];
if (!cpuid_sprintf_cputype(cpuid_get_cpu_type(), cpu_information))
return false;
char brand[48];
cpuid(CPUID_PROC_BRAND_STRING, (uint32_t *)brand);
cpu_information[12] = '_';
memcpy(&cpu_information[13], brand, sizeof brand);
if (!outfile)
strncpy(filename, cpu_information, sizeof cpu_information);
else
strncpy(filename, outfile, sizeof filename);
file = fopen(filename, "w");
if (!file)
return false;
fprintf(file, "-- CPU Information for CPU: %s --\n\n", cpu_information);
if (info & CPUID_HIGHEST_EXTENDED_FUNCTION_SUPPORTED)
fprintf(file, "Highest extended function supported: %#010x\n\n", cpuid_highest_ext_func_supported());
if (info & CPUID_EXTENDED_L2_CACHE_FEATURES) {
uint32_t l2c[3];
cpuid(CPUID_EXTENDED_L2_CACHE_FEATURES, l2c);
fprintf(file, "-- Extended L2 Cache features --\nL2 Line size: %u bytes\nAssociativity: %02xh\nCache Size: %u KB\n\n",
l2c[0], l2c[1], l2c[2]);
}
if (info & CPUID_VIRT_PHYS_ADDR_SIZES) {
uint32_t phys_virt[2];
cpuid(CPUID_VIRT_PHYS_ADDR_SIZES, phys_virt);
fprintf(file, "-- Virtual and Physical address sizes --\n"
"Physical address size: %d\nVirtual address size: %d\n\n", phys_virt[0], phys_virt[1]);
}
if (info & CPUID_PROCINFO_AND_FEATUREBITS) {
uint32_t procinfo[9];
cpuid(CPUID_PROCINFO_AND_FEATUREBITS, procinfo);
fputs("-- Processor information and feature bits --\n", file );
fprintf(file, "Stepping: %d\nModel: 0x%X\nFamily: %d\nExtended model: %d\nExtended family: %d\n",
procinfo[0], procinfo[1], procinfo[2], procinfo[3], procinfo[4]);
fprintf(file, "\nBrand Index: %d\nCL Flush Line Size: %d\nLogical Processors: %d\nInitial APICID: %d\n\n",
procinfo[5], procinfo[6], procinfo[7], procinfo[8]);
}
if (featureset != 0)
fputs("-- CPU FEATURES --\n\n", file);
bool
sse3 = cpuid_has_ecxfeature(CPUID_FEAT_ECX_SSE3),
pclmul = cpuid_has_ecxfeature(CPUID_FEAT_ECX_PCLMUL),
dtes64 = cpuid_has_ecxfeature(CPUID_FEAT_ECX_DTES64),
monitor = cpuid_has_ecxfeature(CPUID_FEAT_ECX_MONITOR),
ds_cpl = cpuid_has_ecxfeature(CPUID_FEAT_ECX_DS_CPL),
vmx = cpuid_has_ecxfeature(CPUID_FEAT_ECX_VMX),
smx = cpuid_has_ecxfeature(CPUID_FEAT_ECX_SMX),
est = cpuid_has_ecxfeature(CPUID_FEAT_ECX_EST),
tm2 = cpuid_has_ecxfeature(CPUID_FEAT_ECX_TM2),
ssse3 = cpuid_has_ecxfeature(CPUID_FEAT_ECX_SSSE3),
cid = cpuid_has_ecxfeature(CPUID_FEAT_ECX_CID),
fma = cpuid_has_ecxfeature(CPUID_FEAT_ECX_FMA),
cx16 = cpuid_has_ecxfeature(CPUID_FEAT_ECX_CX16),
etprd = cpuid_has_ecxfeature(CPUID_FEAT_ECX_ETPRD),
pdcm = cpuid_has_ecxfeature(CPUID_FEAT_ECX_PDCM),
dca = cpuid_has_ecxfeature(CPUID_FEAT_ECX_DCA),
sse4_1 = cpuid_has_ecxfeature(CPUID_FEAT_ECX_SSE4_1),
sse4_2 = cpuid_has_ecxfeature(CPUID_FEAT_ECX_SSE4_2),
x2_apic = cpuid_has_ecxfeature(CPUID_FEAT_ECX_x2APIC),
movbe = cpuid_has_ecxfeature(CPUID_FEAT_ECX_MOVBE),
popcnt = cpuid_has_ecxfeature(CPUID_FEAT_ECX_POPCNT),
aes = cpuid_has_ecxfeature(CPUID_FEAT_ECX_AES),
xsave = cpuid_has_ecxfeature(CPUID_FEAT_ECX_XSAVE),
osxsave = cpuid_has_ecxfeature(CPUID_FEAT_ECX_OSXSAVE),
avx = cpuid_has_ecxfeature(CPUID_FEAT_ECX_AVX);
#define YON(v) (v) ? "Yes" : "No"
if (featureset & CPUID_FEAT_ECX_ALL) {
fputs("-- ECX Features --\n", file);
fprintf(file, "SSE3: %s\n"
"PCMUL: %s\n"
"DTES64: %s\n"
"MONITOR: %s\n"
"DS_CPL: %s\n"
"VMX: %s\n"
"SMX: %s\n"
"EST: %s\n"
"TM2: %s\n"
"SSSE3: %s\n"
"CID: %s\n"
"FMA: %s\n"
"CX16: %s\n"
"ETPRD: %s\n"
"PDCM: %s\n"
"DCA: %s\n"
"SSE4_1: %s\n"
"SSE$_2: %s\n"
"X2_APIC: %s\n"
"MOVBE: %s\n"
"POPCNT: %s\n"
"AES: %s\n"
"XSAVE: %s\n"
"OSXSAVE: %s\n"
"AVS: %s\n\n",
YON(sse3), YON(pclmul), YON(dtes64), YON(monitor), YON(ds_cpl),
YON(vmx), YON(smx), YON(est), YON(tm2), YON(ssse3), YON(cid),
YON(fma), YON(cx16), YON(etprd), YON(pdcm), YON(dca), YON(sse4_1),
YON(sse4_2), YON(x2_apic), YON(movbe), YON(popcnt), YON(aes),
YON(xsave), YON(osxsave), YON(avx)
);
} else {
if (featureset & CPUID_FEAT_ECX_SSE3)
fprintf(file, "SSE3: %s\n", YON(sse3));
if (featureset & CPUID_FEAT_ECX_PCLMUL)
fprintf(file, "PCLMUL: %s\n", YON(pclmul));
if (featureset & CPUID_FEAT_ECX_DTES64)
fprintf(file, "DTES64: %s\n", YON(dtes64));
if (featureset & CPUID_FEAT_ECX_MONITOR)
fprintf(file, "Monitor: %s\n", YON(monitor));
if (featureset & CPUID_FEAT_ECX_DS_CPL)
fprintf(file, "DS CPL: %s\n", YON(ds_cpl));
if (featureset & CPUID_FEAT_ECX_VMX)
fprintf(file, "VMX: %s\n", YON(vmx));
if (featureset & CPUID_FEAT_ECX_SMX)
fprintf(file, "SMX: %s\n", YON(smx));
if (featureset & CPUID_FEAT_ECX_EST)
fprintf(file, "EST: %s\n", YON(est));
if (featureset & CPUID_FEAT_ECX_TM2)
fprintf(file, "TM2: %s\n", YON(tm2));
if (featureset & CPUID_FEAT_ECX_SSSE3)
fprintf(file, "SSSE3: %s\n", YON(ssse3));
if (featureset & CPUID_FEAT_ECX_CID)
fprintf(file, "CID: %s\n", YON(cid));
if (featureset & CPUID_FEAT_ECX_FMA)
fprintf(file, "FMA: %s\n", YON(fma));
if (featureset & CPUID_FEAT_ECX_CX16)
fprintf(file, "CX16: %s\n", YON(cx16));
if (featureset & CPUID_FEAT_ECX_ETPRD)
fprintf(file, "ETPRD: %s\n", YON(etprd));
if (featureset & CPUID_FEAT_ECX_PDCM)
fprintf(file, "PDCM: %s\n", YON(pdcm));
if (featureset & CPUID_FEAT_ECX_DCA)
fprintf(file, "DCA: %s\n", YON(dca));
if (featureset & CPUID_FEAT_ECX_SSE4_1)
fprintf(file, "SSE4_1: %s\n", YON(sse4_1));
if (featureset & CPUID_FEAT_ECX_SSE4_2)
fprintf(file, "SSE4_2: %s\n", YON(sse4_2));
if (featureset & CPUID_FEAT_ECX_x2APIC)
fprintf(file, "x2APIC: %s\n", YON(x2_apic));
if (featureset & CPUID_FEAT_ECX_MOVBE)
fprintf(file, "MOVBE: %s\n", YON(movbe));
if (featureset & CPUID_FEAT_ECX_POPCNT)
fprintf(file, "POPCNT: %s\n", YON(popcnt));
if (featureset & CPUID_FEAT_ECX_AES)
fprintf(file, "AES: %s\n", YON(aes));
if (featureset & CPUID_FEAT_ECX_XSAVE)
fprintf(file, "XSAVE: %s\n", YON(xsave));
if (featureset & CPUID_FEAT_ECX_OSXSAVE)
fprintf(file, "OSXSAVE: %s\n", YON(osxsave));
if (featureset & CPUID_FEAT_ECX_AVX)
fprintf(file, "AVX: %s\n", YON(avx));
}
bool
fpu = cpuid_has_edxfeature(CPUID_FEAT_EDX_FPU),
vme = cpuid_has_edxfeature(CPUID_FEAT_EDX_VME),
de = cpuid_has_edxfeature(CPUID_FEAT_EDX_DE),
pse = cpuid_has_edxfeature(CPUID_FEAT_EDX_PSE),
tsc = cpuid_has_edxfeature(CPUID_FEAT_EDX_TSC),
msr = cpuid_has_edxfeature(CPUID_FEAT_EDX_MSR),
pae = cpuid_has_edxfeature(CPUID_FEAT_EDX_PAE),
mce = cpuid_has_edxfeature(CPUID_FEAT_EDX_MCE),
cx8 = cpuid_has_edxfeature(CPUID_FEAT_EDX_CX8),
apic = cpuid_has_edxfeature(CPUID_FEAT_EDX_APIC),
sep = cpuid_has_edxfeature(CPUID_FEAT_EDX_SEP),
mtrr = cpuid_has_edxfeature(CPUID_FEAT_EDX_MTRR),
pge = cpuid_has_edxfeature(CPUID_FEAT_EDX_PGE),
mca = cpuid_has_edxfeature(CPUID_FEAT_EDX_MCA),
cmov = cpuid_has_edxfeature(CPUID_FEAT_EDX_CMOV),
pat = cpuid_has_edxfeature(CPUID_FEAT_EDX_PAT),
pse36 = cpuid_has_edxfeature(CPUID_FEAT_EDX_PSE36),
psn = cpuid_has_edxfeature(CPUID_FEAT_EDX_PSN),
clf = cpuid_has_edxfeature(CPUID_FEAT_EDX_CLF),
dtes = cpuid_has_edxfeature(CPUID_FEAT_EDX_DTES),
acpi = cpuid_has_edxfeature(CPUID_FEAT_EDX_ACPI),
mmx = cpuid_has_edxfeature(CPUID_FEAT_EDX_MMX),
fxsr = cpuid_has_edxfeature(CPUID_FEAT_EDX_FXSR),
sse = cpuid_has_edxfeature(CPUID_FEAT_EDX_SSE),
sse2 = cpuid_has_edxfeature(CPUID_FEAT_EDX_SSE2),
ss = cpuid_has_edxfeature(CPUID_FEAT_EDX_SS),
htt = cpuid_has_edxfeature(CPUID_FEAT_EDX_HTT),
tm1 = cpuid_has_edxfeature(CPUID_FEAT_EDX_TM1),
ia64 = cpuid_has_edxfeature(CPUID_FEAT_EDX_IA64),
pbe = cpuid_has_edxfeature(CPUID_FEAT_EDX_PBE);
if (featureset & CPUID_FEAT_EDX_ALL) {
fputs("-- EDX FEATURES --\n", file);
fprintf(file, "FPU: %s\n"
"VME: %s\n"
"DE: %s\n"
"PSE: %s\n"
"TSC: %s\n"
"MSR: %s\n"
"PAE: %s\n"
"MCE: %s\n"
"CX8: %s\n"
"APIC: %s\n"
"SEP: %s\n"
"MTRR: %s\n"
"PGE: %s\n"
"MCA: %s\n"
"CMOV: %s\n"
"PAT: %s\n"
"PSE36: %s\n"
"PSN: %s\n"
"CLF: %s\n"
"DTES: %s\n"
"ACPI: %s\n"
"MMX: %s\n"
"FXSR: %s\n"
"SSE: %s\n"
"SSE2: %s\n"
"SS: %s\n"
"HTT: %s\n"
"TM1: %s\n"
"IA64: %s\n"
"PBE: %s\n\n",
YON(fpu), YON(vme), YON(de), YON(pse), YON(tsc), YON(msr),
YON(pae), YON(mce), YON(cx8), YON(apic), YON(sep), YON(mtrr),
YON(pge), YON(mca), YON(cmov), YON(pat), YON(pse36), YON(psn),
YON(clf), YON(dtes), YON(acpi), YON(mmx), YON(fxsr), YON(sse),
YON(sse2), YON(ss), YON(htt), YON(tm1), YON(ia64), YON(pbe)
);
} else {
if (featureset & CPUID_FEAT_EDX_FPU)
fprintf(file, "FPU: %s\n", YON(fpu));
if (featureset & CPUID_FEAT_EDX_VME)
fprintf(file, "VME: %s\n", YON(vme));
if (featureset & CPUID_FEAT_EDX_DE)
fprintf(file, "DE: %s\n", YON(de));
if (featureset & CPUID_FEAT_EDX_PSE)
fprintf(file, "PSE: %s\n", YON(pse));
if (featureset & CPUID_FEAT_EDX_TSC)
fprintf(file, "TSC: %s\n", YON(tsc));
if (featureset & CPUID_FEAT_EDX_MSR)
fprintf(file, "MSR: %s\n", YON(msr));
if (featureset & CPUID_FEAT_EDX_PAE)
fprintf(file, "PAE: %s\n", YON(pae));
if (featureset & CPUID_FEAT_EDX_MCE)
fprintf(file, "MCE: %s\n", YON(mce));
if (featureset & CPUID_FEAT_EDX_CX8)
fprintf(file, "CX8: %s\n", YON(cx8));
if (featureset & CPUID_FEAT_EDX_APIC)
fprintf(file, "APIC: %s\n", YON(apic));
if (featureset & CPUID_FEAT_EDX_SEP)
fprintf(file, "SEP: %s\n", YON(sep));
if (featureset & CPUID_FEAT_EDX_MTRR)
fprintf(file, "MTRR: %s\n", YON(mtrr));
if (featureset & CPUID_FEAT_EDX_PGE)
fprintf(file, "PGE: %s\n", YON(pge));
if (featureset & CPUID_FEAT_EDX_MCA)
fprintf(file, "MCA: %s\n", YON(mca));
if (featureset & CPUID_FEAT_EDX_CMOV)
fprintf(file, "CMOV: %s\n", YON(cmov));
if (featureset & CPUID_FEAT_EDX_PAT)
fprintf(file, "PAT: %s\n", YON(pat));
if (featureset & CPUID_FEAT_EDX_PSE36)
fprintf(file, "PSE36: %s\n", YON(pse36));
if (featureset & CPUID_FEAT_EDX_PSN)
fprintf(file, "PSN: %s\n", YON(psn));
if (featureset & CPUID_FEAT_EDX_CLF)
fprintf(file, "CLF: %s\n", YON(clf));
if (featureset & CPUID_FEAT_EDX_DTES)
fprintf(file, "DTES:%s\n", YON(dtes));
if (featureset & CPUID_FEAT_EDX_ACPI)
fprintf(file, "ACPI: %s\n", YON(acpi));
if (featureset & CPUID_FEAT_EDX_MMX)
fprintf(file, "MMX: %s\n", YON(mmx));
if (featureset & CPUID_FEAT_EDX_FXSR)
fprintf(file, "FXSR: %s\n", YON(fxsr));
if (featureset & CPUID_FEAT_EDX_SSE)
fprintf(file, "SSE: %s\n", YON(sse));
if (featureset & CPUID_FEAT_EDX_SSE2)
fprintf(file, "SSE2: %s\n", YON(sse2));
if (featureset & CPUID_FEAT_EDX_SS)
fprintf(file, "SS: %s\n", YON(ss));
if (featureset & CPUID_FEAT_EDX_HTT)
fprintf(file, "HTT: %s\n", YON(htt));
if (featureset & CPUID_FEAT_EDX_TM1)
fprintf(file, "TM1: %s\n", YON(tm1));
if (featureset & CPUID_FEAT_EDX_IA64)
fprintf(file, "IA64: %s\n", YON(ia64));
if (featureset & CPUID_FEAT_EDX_PBE)
fprintf(file, "PBE: %s\n", YON(pbe));
}
#undef YON
fclose(file);
return true;
}
#endif
......@@ -105,6 +105,16 @@ enum {
CPUID_FEAT_ECX_OSXSAVE = 1 << 27,
CPUID_FEAT_ECX_AVX = 1 << 28,
CPUID_FEAT_ECX_ALL = CPUID_FEAT_ECX_SSE3 | CPUID_FEAT_ECX_PCLMUL | CPUID_FEAT_ECX_DTES64
| CPUID_FEAT_ECX_MONITOR | CPUID_FEAT_ECX_DS_CPL | CPUID_FEAT_ECX_VMX
| CPUID_FEAT_ECX_SMX | CPUID_FEAT_ECX_EST | CPUID_FEAT_ECX_TM2
| CPUID_FEAT_ECX_SSSE3 | CPUID_FEAT_ECX_CID | CPUID_FEAT_ECX_FMA
| CPUID_FEAT_ECX_CX16 | CPUID_FEAT_ECX_ETPRD | CPUID_FEAT_ECX_PDCM
| CPUID_FEAT_ECX_DCA | CPUID_FEAT_ECX_SSE4_1 | CPUID_FEAT_ECX_SSE4_2
| CPUID_FEAT_ECX_x2APIC | CPUID_FEAT_ECX_MOVBE | CPUID_FEAT_ECX_POPCNT
| CPUID_FEAT_ECX_AES | CPUID_FEAT_ECX_XSAVE | CPUID_FEAT_ECX_OSXSAVE
| CPUID_FEAT_ECX_AVX,
CPUID_FEAT_EDX_FPU = 1 << 0,
CPUID_FEAT_EDX_VME = 1 << 1,
CPUID_FEAT_EDX_DE = 1 << 2,
......@@ -134,7 +144,18 @@ enum {
CPUID_FEAT_EDX_HTT = 1 << 28,
CPUID_FEAT_EDX_TM1 = 1 << 29,
CPUID_FEAT_EDX_IA64 = 1 << 30,
CPUID_FEAT_EDX_PBE = 1 << 31
CPUID_FEAT_EDX_PBE = 1 << 31,
CPUID_FEAT_EDX_ALL = CPUID_FEAT_EDX_FPU | CPUID_FEAT_EDX_VME | CPUID_FEAT_EDX_DE
| CPUID_FEAT_EDX_PSE | CPUID_FEAT_EDX_TSC | CPUID_FEAT_EDX_MSR
| CPUID_FEAT_EDX_PAE | CPUID_FEAT_EDX_MCE | CPUID_FEAT_EDX_CX8
| CPUID_FEAT_EDX_APIC | CPUID_FEAT_EDX_SEP | CPUID_FEAT_EDX_MTRR
| CPUID_FEAT_EDX_PGE | CPUID_FEAT_EDX_MCA | CPUID_FEAT_EDX_CMOV
| CPUID_FEAT_EDX_PAT | CPUID_FEAT_EDX_PSE36 | CPUID_FEAT_EDX_PSN
| CPUID_FEAT_EDX_CLF | CPUID_FEAT_EDX_DTES | CPUID_FEAT_EDX_ACPI
| CPUID_FEAT_EDX_MMX | CPUID_FEAT_EDX_FXSR | CPUID_FEAT_EDX_SSE
| CPUID_FEAT_EDX_SSE2 | CPUID_FEAT_EDX_SS | CPUID_FEAT_EDX_HTT
| CPUID_FEAT_EDX_TM1 | CPUID_FEAT_EDX_IA64 | CPUID_FEAT_EDX_PBE
};
typedef enum cputype {
......@@ -268,6 +289,25 @@ uint32_t cpuid_highest_ext_func_supported(void);
*/
void cpuid(cpuid_t info, uint32_t *buf);
/**
* cpuid_write_info - Write specified CPU information to a file.
* @info: Bit set of information to write.
* @featureset: Bit set of features to write.
* @outfile: Output filename (Max 256).
*
* If @outfile is NULL, a name is choosen in the following format:
* CPUVENDOR_PROCESSORBRAND.cpuid
*
* Returns true on success, false otherwise.
*
* Example usage:
* if (!cpuid_write_info(CPUID_VENDORID | CPUID_PROC_BRAND_STRING,
* CPUID_FEAT_ECX_SSE3 | CPUID_FEAT_EDX_FPU,
* "cpuinfo.cpuid"))
* ... error ...
*/
bool cpuid_write_info(uint32_t info, uint32_t featureset, const char *outfile);
/**
* cpuid_test_feature - Test if @feature is available
*
......@@ -293,16 +333,17 @@ bool cpuid_has_edxfeature(int feature);
#else
#include <ccan/build_assert/build_assert.h>
#define cpuid_get_cpu_type() BUILD_ASSERT_OR_ZERO(0)
#define cpuid_get_cpu_type_string() BUILD_ASSERT_OR_ZERO(0)
#define cpuid_get_cpu_type() BUILD_ASSERT_OR_ZERO(0)
#define cpuid_get_cpu_type_string() BUILD_ASSERT_OR_ZERO(0)
#define cpuid_is_supported() BUILD_ASSERT_OR_ZERO(0)
#define cpuid(info, buf) BUILD_ASSERT_OR_ZERO(0)
#define cpuid_is_supported() BUILD_ASSERT_OR_ZERO(0)
#define cpuid(info, buf) BUILD_ASSERT_OR_ZERO(0)
#define cpuid_write_info(info, featureset, outfile) BUILD_ASSERT_OR_ZERO(0)
#define cpuid_highest_ext_func_supported() BUILD_ASSERT_OR_ZERO(0)
#define cpuid_test_feature(feature) BUILD_ASSERT_OR_ZERO(0)
#define cpuid_has_ecxfeature(feature) BUILD_ASSERT_OR_ZERO(0)
#define cpuid_has_edxfeature(feature) BUILD_ASSERT_OR_ZERO(0)
#define cpuid_highest_ext_func_supported() BUILD_ASSERT_OR_ZERO(0)
#define cpuid_test_feature(feature) BUILD_ASSERT_OR_ZERO(0)
#define cpuid_has_ecxfeature(feature) BUILD_ASSERT_OR_ZERO(0)
#define cpuid_has_edxfeature(feature) BUILD_ASSERT_OR_ZERO(0)
#endif
#endif
......@@ -10,38 +10,14 @@ int main(void)
return 1;
}
char cputype[12];
if (cpuid_sprintf_cputype(cpuid_get_cpu_type(), cputype))
printf ("Vendor ID: %s\n", cputype);
char buf[48];
cpuid(CPUID_PROC_BRAND_STRING, (uint32_t *)buf);
printf ("Processor Brand: %s\n", buf);
uint32_t procinfo[9];
cpuid(CPUID_PROCINFO_AND_FEATUREBITS, procinfo);
printf("Stepping: %d Model: 0x%X Family: %d extended model: %d extended family: %d\n",
procinfo[0], procinfo[1], procinfo[2], procinfo[3], procinfo[4]);
printf("Brand Index: %d CL Flush Line Size: %d Logical Processors: %d Initial APICID: %d\n",
procinfo[5], procinfo[6], procinfo[7], procinfo[8]);
printf ("Highest extended function supported: %#010x\n", cpuid_highest_ext_func_supported());
uint32_t phys_virt[2];
cpuid(CPUID_VIRT_PHYS_ADDR_SIZES, phys_virt);
printf ("Physical address size: %d\nVirtual address size: %d\n", phys_virt[0], phys_virt[1]);
uint32_t extfeatures[2];
cpuid(CPUID_EXTENDED_PROC_INFO_FEATURE_BITS, extfeatures);
printf ("Extended processor info and feature bits: %d %d\n", extfeatures[0], extfeatures[1]);
uint32_t l2c[3];
cpuid(CPUID_EXTENDED_L2_CACHE_FEATURES, l2c);
printf("L2 Line size: %u bytes\tAssociativity: %02xh\tCache Size: %u KB\n",
l2c[0], l2c[1], l2c[2]);
uint32_t info = CPUID_HIGHEST_EXTENDED_FUNCTION_SUPPORTED | CPUID_EXTENDED_L2_CACHE_FEATURES | CPUID_VIRT_PHYS_ADDR_SIZES
| CPUID_PROCINFO_AND_FEATUREBITS;
uint32_t featureset = CPUID_FEAT_ECX_ALL | CPUID_FEAT_EDX_ALL;
if (!cpuid_write_info(info, featureset, NULL)) {
printf("Failed to write CPU information!\n");
return 1;
}
uint32_t invalid;
cpuid(0x0ffffffUL, &invalid);
printf ("Testing invalid: %#010x\n", invalid);
printf("Wrote CPU information\n");
return 0;
}
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