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fastfetch/src/detection/gpu/gpu_linux.c
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#include "gpu.h"
#include "detection/vulkan.h"
#define FF_GPU_VENDOR_NAME_AMD "AMD"
#define FF_GPU_VENDOR_NAME_INTEL "Intel"
#define FF_GPU_VENDOR_NAME_NVIDIA "NVIDIA"
#ifdef FF_HAVE_LIBPCI
#include "common/library.h"
#include "common/properties.h"
#include "common/parsing.h"
#include "detection/temps.h"
#include <string.h>
#include <unistd.h>
#include <pci/pci.h>
typedef struct PCIData
{
struct pci_access* access;
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FF_LIBRARY_SYMBOL(pci_fill_info);
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FF_LIBRARY_SYMBOL(pci_read_byte);
FF_LIBRARY_SYMBOL(pci_lookup_name);
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FF_LIBRARY_SYMBOL(pci_get_string_property);
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FF_LIBRARY_SYMBOL(pci_get_param);
} PCIData;
static bool pciIDsContains(u16 searched, const u16* ids)
{
while(*ids != 0)
{
if(*ids == searched)
return true;
ids++;
}
return false;
}
static void pciDetectVendorName(FFGPUResult* gpu, PCIData* pci, struct pci_dev* device)
{
if(pciIDsContains(device->vendor_id, (const u16[]) {0x1002, 0x1022, 0}))
ffStrbufAppendS(&gpu->vendor, FF_GPU_VENDOR_NAME_AMD);
else if(pciIDsContains(device->vendor_id, (const u16[]) {0x03e7, 0x8086, 0x8087, 0}))
ffStrbufAppendS(&gpu->vendor, FF_GPU_VENDOR_NAME_INTEL);
else if(pciIDsContains(device->vendor_id, (const u16[]) {0x0955, 0x10de, 0x12d2, 0}))
ffStrbufAppendS(&gpu->vendor, FF_GPU_VENDOR_NAME_NVIDIA);
if(gpu->vendor.length > 0)
return;
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ffStrbufEnsureFree(&gpu->vendor, 255);
pci->ffpci_lookup_name(pci->access, gpu->vendor.chars, (int) gpu->vendor.allocated, PCI_LOOKUP_VENDOR, device->vendor_id);
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ffStrbufRecalculateLength(&gpu->vendor);
if(ffStrbufFirstIndexS(&gpu->vendor, "AMD") < gpu->vendor.length || ffStrbufFirstIndexS(&gpu->vendor, "ATI") < gpu->vendor.length)
ffStrbufSetS(&gpu->vendor, FF_GPU_VENDOR_NAME_AMD);
else if(ffStrbufFirstIndexS(&gpu->vendor, "Intel") < gpu->vendor.length)
ffStrbufSetS(&gpu->vendor, FF_GPU_VENDOR_NAME_INTEL);
else if(ffStrbufFirstIndexS(&gpu->vendor, "NVIDIA") < gpu->vendor.length)
ffStrbufSetS(&gpu->vendor, FF_GPU_VENDOR_NAME_NVIDIA);
}
static void drmDetectDeviceName(FFGPUResult* gpu, PCIData* pci, struct pci_dev* device)
{
u8 revId;
bool revIdSet = false;;
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#if PCI_LIB_VERSION >= 0x030800
revIdSet = pci->ffpci_fill_info(device, PCI_FILL_CLASS_EXT) & PCI_FILL_CLASS_EXT;
if(revIdSet)
revId = device->rev_id;
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#endif
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if(!revIdSet)
{
#ifdef __FreeBSD__
return;
#else
revId = pci->ffpci_read_byte(device, PCI_REVISION_ID);
#endif
}
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FFstrbuf query;
ffStrbufInit(&query);
ffStrbufAppendF(&query, "%X, %X,", device->device_id, revId);
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ffParsePropFile(FASTFETCH_TARGET_DIR_USR"/share/libdrm/amdgpu.ids", query.chars, &gpu->name);
ffStrbufDestroy(&query);
const char* removeStrings[] = {
"AMD ", "ATI ",
" (TM)", "(TM)",
" Graphics Adapter", " Graphics", " Series", " Edition"
};
ffStrbufRemoveStringsA(&gpu->name, sizeof(removeStrings) / sizeof(removeStrings[0]), removeStrings);
}
static void pciDetectDeviceName(FFGPUResult* gpu, PCIData* pci, struct pci_dev* device)
{
if(ffStrbufCompS(&gpu->vendor, FF_GPU_VENDOR_NAME_AMD) == 0)
{
drmDetectDeviceName(gpu, pci, device);
if(gpu->name.length > 0)
return;
}
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ffStrbufEnsureFree(&gpu->name, 255);
pci->ffpci_lookup_name(pci->access, gpu->name.chars, (int) gpu->name.allocated, PCI_LOOKUP_DEVICE, device->vendor_id, device->device_id);
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ffStrbufRecalculateLength(&gpu->name);
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uint32_t openingBracket = ffStrbufFirstIndexC(&gpu->name, '[');
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uint32_t closingBracket = ffStrbufNextIndexC(&gpu->name, openingBracket, ']');
if(closingBracket < gpu->name.length)
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{
ffStrbufSubstrBefore(&gpu->name, closingBracket);
ffStrbufSubstrAfter(&gpu->name, openingBracket);
}
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}
static void pciDetectDriverName(FFGPUResult* gpu, PCIData* pci, struct pci_dev* device)
{
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#if PCI_LIB_VERSION >= 0x030800
pci->ffpci_fill_info(device, PCI_FILL_DRIVER);
ffStrbufAppendS(&gpu->driver, pci->ffpci_get_string_property(device, PCI_FILL_DRIVER));
if(gpu->driver.length > 0)
return;
#endif
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const char* base = pci->ffpci_get_param(pci->access, "sysfs.path");
if(!ffStrSet(base))
return;
FFstrbuf path;
ffStrbufInitA(&path, 64);
ffStrbufAppendF(&path, "%s/devices/%04x:%02x:%02x.%d/driver", base, device->domain, device->bus, device->dev, device->func);
ffStrbufEnsureFree(&gpu->driver, 1023);
ssize_t resultLength = readlink(path.chars, gpu->driver.chars, gpu->driver.allocated - 1); //-1 for null terminator
if(resultLength > 0)
{
gpu->driver.length = (uint32_t) resultLength;
gpu->driver.chars[resultLength] = '\0';
ffStrbufSubstrAfterLastC(&gpu->driver, '/');
}
ffStrbufDestroy(&path);
}
static void pciDetectTemperatur(FFGPUResult* gpu, struct pci_dev* device)
{
const FFTempsResult* tempsResult = ffDetectTemps();
for(uint32_t i = 0; i < tempsResult->values.length; i++)
{
FFTempValue* tempValue = ffListGet(&tempsResult->values, i);
uint32_t tempClass;
if(sscanf(tempValue->deviceClass.chars, "%x", &tempClass) != 1)
continue;
//The kernel exposes the device class multiplied by 256 for some reason
if(tempClass == device->device_class * 256)
{
gpu->temperature = tempValue->value;
return;
}
}
}
static void pciHandleDevice(FFlist* results, PCIData* pci, struct pci_dev* device)
{
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pci->ffpci_fill_info(device, PCI_FILL_CLASS);
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char class[1024];
pci->ffpci_lookup_name(pci->access, class, sizeof(class) - 1, PCI_LOOKUP_CLASS, device->device_class);
if(
strcasecmp("VGA compatible controller", class) != 0 &&
strcasecmp("3D controller", class) != 0 &&
strcasecmp("Display controller", class) != 0
) return;
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pci->ffpci_fill_info(device, PCI_FILL_IDENT);
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FFGPUResult* gpu = ffListAdd(results);
ffStrbufInit(&gpu->vendor);
pciDetectVendorName(gpu, pci, device);
ffStrbufInit(&gpu->name);
pciDetectDeviceName(gpu, pci, device);
ffStrbufInit(&gpu->driver);
pciDetectDriverName(gpu, pci, device);
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gpu->coreCount = FF_GPU_CORE_COUNT_UNSET;
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gpu->temperature = FF_GPU_TEMP_UNSET;
pciDetectTemperatur(gpu, device);
}
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static const char* pciDetectGPUs(const FFinstance* instance, FFlist* gpus)
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{
PCIData pci;
FF_LIBRARY_LOAD(libpci, &instance->config.libPCI, "dlopen libpci.so failed", "libpci.so", 4)
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FF_LIBRARY_LOAD_SYMBOL_MESSAGE(libpci, pci_alloc)
FF_LIBRARY_LOAD_SYMBOL_MESSAGE(libpci, pci_init)
FF_LIBRARY_LOAD_SYMBOL_MESSAGE(libpci, pci_scan_bus)
FF_LIBRARY_LOAD_SYMBOL_MESSAGE(libpci, pci_cleanup)
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FF_LIBRARY_LOAD_SYMBOL_VAR_MESSAGE(libpci, pci, pci_fill_info)
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FF_LIBRARY_LOAD_SYMBOL_VAR_MESSAGE(libpci, pci, pci_lookup_name)
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FF_LIBRARY_LOAD_SYMBOL_VAR_MESSAGE(libpci, pci, pci_read_byte)
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FF_LIBRARY_LOAD_SYMBOL_VAR_MESSAGE(libpci, pci, pci_get_param)
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FF_LIBRARY_LOAD_SYMBOL_VAR_MESSAGE(libpci, pci, pci_get_string_property)
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pci.access = ffpci_alloc();
ffpci_init(pci.access);
ffpci_scan_bus(pci.access);
struct pci_dev* device = pci.access->devices;
while(device != NULL)
{
pciHandleDevice(gpus, &pci, device);
device = device->next;
}
ffpci_cleanup(pci.access);
dlclose(libpci);
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return NULL;
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}
#endif
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void ffDetectGPUImpl(FFlist* gpus, const FFinstance* instance)
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{
#ifdef FF_HAVE_LIBPCI
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pciDetectGPUs(instance, gpus);
#else
FF_UNUSED(gpus, instance);
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#endif
}