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/*
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* A trivial little dlopen()-based wrapper library for the
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* NVIDIA NVML library, to allow runtime discovery of NVML on an
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* arbitrary system. This is all very hackish and simple-minded, but
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* it serves my immediate needs in the short term until NVIDIA provides
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* a static NVML wrapper library themselves, hopefully in
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* CUDA 6.5 or maybe sometime shortly after.
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*
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* This trivial code is made available under the "new" 3-clause BSD license,
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* and/or any of the GPL licenses you prefer.
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* Feel free to use the code and modify as you see fit.
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*
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* John E. Stone - john.stone@gmail.com
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*
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*/
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#ifdef USE_WRAPNVML
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#include "miner.h"
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typedef void * nvmlDevice_t;
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/* our own version of the PCI info struct */
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typedef struct {
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char bus_id_str[16]; /* string form of bus info */
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unsigned int domain;
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unsigned int bus;
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unsigned int device;
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unsigned int pci_device_id; /* combined device and vendor id */
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unsigned int pci_subsystem_id;
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unsigned int res0; /* NVML internal use only */
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unsigned int res1;
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unsigned int res2;
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unsigned int res3;
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} nvmlPciInfo_t;
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enum nvmlEnableState_t {
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NVML_FEATURE_DISABLED = 0,
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NVML_FEATURE_ENABLED = 1,
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NVML_FEATURE_UNKNOWN = 2
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};
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enum nvmlRestrictedAPI_t {
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NVML_RESTRICTED_API_SET_APPLICATION_CLOCKS = 0,
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NVML_RESTRICTED_API_SET_AUTO_BOOSTED_CLOCKS = 1, // not for GTX cards
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NVML_RESTRICTED_API_COUNT = 2
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};
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enum nvmlReturn_t {
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NVML_SUCCESS = 0,
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NVML_ERROR_UNINITIALIZED = 1,
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NVML_ERROR_INVALID_ARGUMENT = 2,
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NVML_ERROR_NOT_SUPPORTED = 3,
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NVML_ERROR_NO_PERMISSION = 4,
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NVML_ERROR_ALREADY_INITIALIZED = 5,
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NVML_ERROR_NOT_FOUND = 6,
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NVML_ERROR_INSUFFICIENT_SIZE = 7,
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NVML_ERROR_INSUFFICIENT_POWER = 8,
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NVML_ERROR_DRIVER_NOT_LOADED = 9,
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NVML_ERROR_TIMEOUT = 10,
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NVML_ERROR_IRQ_ISSUE = 11,
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NVML_ERROR_LIBRARY_NOT_FOUND = 12,
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NVML_ERROR_FUNCTION_NOT_FOUND = 13,
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NVML_ERROR_CORRUPTED_INFOROM = 14,
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NVML_ERROR_GPU_IS_LOST = 15,
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NVML_ERROR_RESET_REQUIRED = 16,
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NVML_ERROR_OPERATING_SYSTEM = 17,
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NVML_ERROR_LIB_RM_VERSION_MISMATCH = 18,
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NVML_ERROR_IN_USE = 19,
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NVML_ERROR_UNKNOWN = 999
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};
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enum nvmlClockType_t {
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NVML_CLOCK_GRAPHICS = 0,
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NVML_CLOCK_SM = 1,
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NVML_CLOCK_MEM = 2,
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NVML_CLOCK_VIDEO = 3,
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NVML_CLOCK_COUNT
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};
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enum nvmlClockId_t {
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NVML_CLOCK_ID_CURRENT = 0,
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NVML_CLOCK_ID_APP_CLOCK_TARGET = 1,
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NVML_CLOCK_ID_APP_CLOCK_DEFAULT = 2,
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NVML_CLOCK_ID_CUSTOMER_BOOST_MAX = 3,
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NVML_CLOCK_ID_COUNT
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};
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enum nvmlPcieUtilCounter_t {
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NVML_PCIE_UTIL_TX_BYTES = 0,
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NVML_PCIE_UTIL_RX_BYTES = 1,
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NVML_PCIE_UTIL_COUNT
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};
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enum nvmlValueType_t {
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NVML_VALUE_TYPE_DOUBLE = 0,
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NVML_VALUE_TYPE_UNSIGNED_INT = 1,
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NVML_VALUE_TYPE_UNSIGNED_LONG = 2,
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NVML_VALUE_TYPE_UNSIGNED_LONG_LONG = 3,
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NVML_VALUE_TYPE_COUNT
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};
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typedef int nvmlGpuTopologyLevel_t;
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typedef int nvmlNvLinkCapability_t;
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typedef int nvmlNvLinkErrorCounter_t;
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typedef int nvmlNvLinkUtilizationControl_t;
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#define NVML_DEVICE_SERIAL_BUFFER_SIZE 30
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#define NVML_DEVICE_UUID_BUFFER_SIZE 80
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#define NVML_DEVICE_VBIOS_VERSION_BUFFER_SIZE 32
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/*
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* Handle to hold the function pointers for the entry points we need,
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* and the shared library itself.
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*/
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typedef struct {
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void *nvml_dll;
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int nvml_gpucount;
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int cuda_gpucount;
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unsigned int *nvml_pci_domain_id;
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unsigned int *nvml_pci_bus_id;
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unsigned int *nvml_pci_device_id;
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unsigned int *nvml_pci_subsys_id;
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int *nvml_cuda_device_id; /* map NVML dev to CUDA dev */
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int *cuda_nvml_device_id; /* map CUDA dev to NVML dev */
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nvmlDevice_t *devs;
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nvmlEnableState_t *app_clocks;
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nvmlReturn_t (*nvmlInit)(void);
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nvmlReturn_t (*nvmlDeviceGetCount)(int *);
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nvmlReturn_t (*nvmlDeviceGetHandleByIndex)(int, nvmlDevice_t *);
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nvmlReturn_t (*nvmlDeviceGetAPIRestriction)(nvmlDevice_t, nvmlRestrictedAPI_t, nvmlEnableState_t *);
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nvmlReturn_t (*nvmlDeviceSetAPIRestriction)(nvmlDevice_t, nvmlRestrictedAPI_t, nvmlEnableState_t);
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nvmlReturn_t (*nvmlDeviceGetDefaultApplicationsClock)(nvmlDevice_t, nvmlClockType_t, unsigned int *);
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nvmlReturn_t (*nvmlDeviceGetApplicationsClock)(nvmlDevice_t, nvmlClockType_t, unsigned int *);
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nvmlReturn_t (*nvmlDeviceSetApplicationsClocks)(nvmlDevice_t, unsigned int, unsigned int);
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nvmlReturn_t (*nvmlDeviceResetApplicationsClocks)(nvmlDevice_t);
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nvmlReturn_t (*nvmlDeviceGetSupportedGraphicsClocks)(nvmlDevice_t, uint32_t mem, uint32_t *num, uint32_t *arr);
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nvmlReturn_t (*nvmlDeviceGetSupportedMemoryClocks)(nvmlDevice_t, unsigned int *count, unsigned int *clocksMHz);
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nvmlReturn_t (*nvmlDeviceGetClockInfo)(nvmlDevice_t, nvmlClockType_t, unsigned int *);
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nvmlReturn_t (*nvmlDeviceGetMaxClockInfo)(nvmlDevice_t, nvmlClockType_t, unsigned int *);
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nvmlReturn_t (*nvmlDeviceGetPowerManagementDefaultLimit)(nvmlDevice_t, unsigned int *limit);
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nvmlReturn_t (*nvmlDeviceGetPowerManagementLimit)(nvmlDevice_t, unsigned int *limit);
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nvmlReturn_t (*nvmlDeviceGetPowerManagementLimitConstraints)(nvmlDevice_t, unsigned int *min, unsigned int *max);
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nvmlReturn_t (*nvmlDeviceSetPowerManagementLimit)(nvmlDevice_t device, unsigned int limit);
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nvmlReturn_t (*nvmlDeviceGetPciInfo)(nvmlDevice_t, nvmlPciInfo_t *);
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nvmlReturn_t (*nvmlDeviceGetCurrPcieLinkGeneration)(nvmlDevice_t device, unsigned int *gen);
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nvmlReturn_t (*nvmlDeviceGetCurrPcieLinkWidth)(nvmlDevice_t device, unsigned int *width);
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nvmlReturn_t (*nvmlDeviceGetMaxPcieLinkGeneration)(nvmlDevice_t device, unsigned int *gen);
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nvmlReturn_t (*nvmlDeviceGetMaxPcieLinkWidth)(nvmlDevice_t device, unsigned int *width);
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nvmlReturn_t (*nvmlDeviceGetName)(nvmlDevice_t, char *, int);
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nvmlReturn_t (*nvmlDeviceGetTemperature)(nvmlDevice_t, int, unsigned int *);
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nvmlReturn_t (*nvmlDeviceGetFanSpeed)(nvmlDevice_t, unsigned int *);
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nvmlReturn_t (*nvmlDeviceGetPerformanceState)(nvmlDevice_t, int *); /* enum */
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nvmlReturn_t (*nvmlDeviceGetPowerUsage)(nvmlDevice_t, unsigned int *);
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nvmlReturn_t (*nvmlDeviceGetSerial)(nvmlDevice_t, char *serial, unsigned int len);
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nvmlReturn_t (*nvmlDeviceGetUUID)(nvmlDevice_t, char *uuid, unsigned int len);
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nvmlReturn_t (*nvmlDeviceGetVbiosVersion)(nvmlDevice_t, char *version, unsigned int len);
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nvmlReturn_t (*nvmlSystemGetDriverVersion)(char *version, unsigned int len);
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char* (*nvmlErrorString)(nvmlReturn_t);
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nvmlReturn_t (*nvmlShutdown)(void);
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// v331
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nvmlReturn_t (*nvmlDeviceGetEnforcedPowerLimit)(nvmlDevice_t, unsigned int *limit);
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// v340
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#ifdef __linux__
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nvmlReturn_t (*nvmlDeviceClearCpuAffinity)(nvmlDevice_t);
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nvmlReturn_t (*nvmlDeviceGetCpuAffinity)(nvmlDevice_t, unsigned int cpuSetSize, unsigned long* cpuSet);
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nvmlReturn_t (*nvmlDeviceSetCpuAffinity)(nvmlDevice_t);
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#endif
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// v346
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nvmlReturn_t (*nvmlDeviceGetPcieThroughput)(nvmlDevice_t, nvmlPcieUtilCounter_t, unsigned int *value);
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// v36x (API 8)
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nvmlReturn_t (*nvmlDeviceGetClock)(nvmlDevice_t, nvmlClockType_t clockType, nvmlClockId_t clockId, unsigned int *clockMHz);
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#ifdef __linux__
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nvmlReturn_t (*nvmlSystemGetTopologyGpuSet)(unsigned int cpuNumber, unsigned int *count, nvmlDevice_t *deviceArray);
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nvmlReturn_t (*nvmlDeviceGetTopologyNearestGpus)(nvmlDevice_t, nvmlGpuTopologyLevel_t level, unsigned int *count, nvmlDevice_t *deviceArray);
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nvmlReturn_t (*nvmlDeviceGetTopologyCommonAncestor)(nvmlDevice_t device1, nvmlDevice_t device2, nvmlGpuTopologyLevel_t *pathInfo);
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#endif
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nvmlReturn_t (*nvmlDeviceGetNvLinkState)(nvmlDevice_t, unsigned int link, nvmlEnableState_t *isActive);
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nvmlReturn_t (*nvmlDeviceGetNvLinkVersion)(nvmlDevice_t, unsigned int link, unsigned int *version);
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nvmlReturn_t (*nvmlDeviceGetNvLinkCapability)(nvmlDevice_t, unsigned int link, nvmlNvLinkCapability_t capability, unsigned int *capResult);
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nvmlReturn_t (*nvmlDeviceGetNvLinkRemotePciInfo)(nvmlDevice_t, unsigned int link, nvmlPciInfo_t *pci);
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nvmlReturn_t (*nvmlDeviceGetNvLinkErrorCounter)(nvmlDevice_t, unsigned int link, nvmlNvLinkErrorCounter_t counter, unsigned long long *counterValue);
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nvmlReturn_t (*nvmlDeviceResetNvLinkErrorCounters)(nvmlDevice_t, unsigned int link);
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nvmlReturn_t (*nvmlDeviceSetNvLinkUtilizationControl)(nvmlDevice_t, unsigned int link, unsigned int counter, nvmlNvLinkUtilizationControl_t *control, unsigned int reset);
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nvmlReturn_t (*nvmlDeviceGetNvLinkUtilizationControl)(nvmlDevice_t, unsigned int link, unsigned int counter, nvmlNvLinkUtilizationControl_t *control);
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nvmlReturn_t (*nvmlDeviceGetNvLinkUtilizationCounter)(nvmlDevice_t, unsigned int link, unsigned int counter, unsigned long long *rxcounter, unsigned long long *txcounter);
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nvmlReturn_t (*nvmlDeviceFreezeNvLinkUtilizationCounter)(nvmlDevice_t, unsigned int link, unsigned int counter, nvmlEnableState_t freeze);
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nvmlReturn_t (*nvmlDeviceResetNvLinkUtilizationCounter)(nvmlDevice_t, unsigned int link, unsigned int counter);
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} nvml_handle;
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nvml_handle * nvml_create();
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int nvml_destroy(nvml_handle *nvmlh);
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// Debug informations
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void nvml_print_device_info(int dev_id);
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// Query the number of GPUs seen by NVML
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int nvml_get_gpucount(nvml_handle *nvmlh, int *gpucount);
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int nvml_set_plimit(nvml_handle *nvmlh, int dev_id);
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int nvml_set_pstate(nvml_handle *nvmlh, int dev_id);
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int nvml_set_clocks(nvml_handle *nvmlh, int dev_id);
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int nvml_reset_clocks(nvml_handle *nvmlh, int dev_id);
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/* api functions */
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unsigned int gpu_fanpercent(struct cgpu_info *gpu);
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unsigned int gpu_fanrpm(struct cgpu_info *gpu);
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float gpu_temp(struct cgpu_info *gpu);
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unsigned int gpu_power(struct cgpu_info *gpu);
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int gpu_pstate(struct cgpu_info *gpu);
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int gpu_busid(struct cgpu_info *gpu);
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// pid/vid, sn and bios rev
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int gpu_info(struct cgpu_info *gpu);
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int gpu_vendor(uint8_t pci_bus_id, char *vendorname);
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/* nvapi functions */
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#ifdef WIN32
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int nvapi_init();
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int nvapi_init_settings();
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// to debug nvapi..
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int nvapi_pstateinfo(unsigned int devNum);
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uint8_t nvapi_get_plimit(unsigned int devNum);
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// nvapi devNum from dev_id (cuda GPU #N)
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unsigned int nvapi_devnum(int dev_id);
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// cuda Replacement for 6.5 compat
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int nvapiMemGetInfo(int dev_id, size_t *free, size_t *total);
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#endif
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#endif /* USE_WRAPNVML */
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void gpu_led_on(int dev_id);
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void gpu_led_percent(int dev_id, int percent);
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void gpu_led_off(int dev_id);
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