Files
fastfetch/src/detection/gpu/gpu_nbsd.c
T
2026-06-14 19:51:30 +08:00

122 lines
4.3 KiB
C

#include "gpu.h"
#include "common/io.h"
#include <sys/param.h>
#include <sys/ioctl.h>
#include <fcntl.h>
#include <dev/pci/pcireg.h>
#include <dev/pci/pcidevs.h>
#include <dev/pci/pciio.h>
static inline int pciReadConf(int fd, uint32_t bus, uint32_t device, uint32_t func, uint32_t reg, uint32_t* result) {
struct pciio_bdf_cfgreg bdfr = {
.bus = bus,
.device = device,
.function = func,
.cfgreg = {
.reg = reg,
},
};
if (ioctl(fd, PCI_IOC_BDF_CFGREAD, &bdfr) == -1) {
return -1;
}
*result = bdfr.cfgreg.val;
return 0;
}
const char* ffDetectGPUImpl(FF_A_UNUSED const FFGPUOptions* options, FFlist* gpus) {
char pciDevPath[] = "/dev/pciXXX";
for (uint32_t idev = 0; idev <= 255; idev++) {
snprintf(pciDevPath + strlen("/dev/pci"), 4, "%u", idev);
FF_AUTO_CLOSE_FD int pcifd = open(pciDevPath, O_RDONLY | O_CLOEXEC);
if (pcifd < 0) {
if (errno == ENOENT) {
break; // No more /dev/pciN devices
}
return "open(\"/dev/pciN\", O_RDONLY | O_CLOEXEC) failed";
}
struct pciio_businfo businfo;
if (ioctl(pcifd, PCI_IOC_BUSINFO, &businfo) != 0) {
continue;
}
uint32_t bus = businfo.busno;
for (uint32_t dev = 0; dev < businfo.maxdevs; dev++) {
uint32_t maxfuncs = 0;
for (uint32_t func = 0; func <= maxfuncs; func++) {
uint32_t pciid, pciclass;
if (pciReadConf(pcifd, bus, dev, func, PCI_ID_REG, &pciid) != 0) {
continue;
}
if (PCI_VENDOR(pciid) == PCI_VENDOR_INVALID || PCI_VENDOR(pciid) == 0) {
continue;
}
if (pciReadConf(pcifd, bus, dev, func, PCI_CLASS_REG, &pciclass) != 0) {
continue;
}
if (func == 0) {
// For some reason, pciReadConf returns success even for non-existing devices.
// So we need to check for `PCI_VENDOR(pciid) == PCI_VENDOR_INVALID` above to filter them out.
uint32_t bhlcr;
if (pciReadConf(pcifd, bus, dev, 0, PCI_BHLC_REG, &bhlcr) != 0) {
continue;
}
if (PCI_HDRTYPE_MULTIFN(bhlcr)) {
maxfuncs = 7;
}
}
if (PCI_CLASS(pciclass) != PCI_CLASS_DISPLAY) {
continue;
}
if (func > 0 && PCI_SUBCLASS(pciclass) == PCI_SUBCLASS_DISPLAY_MISC) {
continue; // Likely an auxiliary display controller (#2034)
}
FFGPUResult* gpu = FF_LIST_ADD(FFGPUResult, *gpus);
ffStrbufInitStatic(&gpu->vendor, ffGPUGetVendorString(PCI_VENDOR(pciid)));
ffStrbufInit(&gpu->name);
ffStrbufInit(&gpu->driver);
ffStrbufInitS(&gpu->platformApi, pciDevPath);
ffStrbufInit(&gpu->memoryType);
gpu->index = FF_GPU_INDEX_UNSET;
gpu->temperature = FF_GPU_TEMP_UNSET;
gpu->coreCount = FF_GPU_CORE_COUNT_UNSET;
gpu->coreUsage = FF_GPU_CORE_USAGE_UNSET;
gpu->type = FF_GPU_TYPE_UNKNOWN;
gpu->dedicated.total = gpu->dedicated.used = gpu->shared.total = gpu->shared.used = FF_GPU_VMEM_SIZE_UNSET;
gpu->deviceId = ffGPUPciAddr2Id(0, bus, dev, func);
gpu->frequency = FF_GPU_FREQUENCY_UNSET;
gpu->pcieSpeed = FF_GPU_PCIE_SPEED_UNSET;
if (gpu->vendor.chars == FF_GPU_VENDOR_NAME_AMD) {
ffGPUQueryAmdGpuName(PCI_PRODUCT(pciid), PCI_REVISION(pciid), gpu);
}
if (gpu->name.length == 0) {
ffGPUFillVendorAndName(PCI_SUBCLASS(pciclass), PCI_VENDOR(pciid), PCI_PRODUCT(pciid), gpu);
}
struct pciio_drvname drvname = {
.device = dev,
.function = func,
};
if (ioctl(pcifd, PCI_IOC_DRVNAME, &drvname) == 0) {
ffStrbufInitS(&gpu->driver, drvname.name);
}
}
}
}
return NULL;
}