mirror of
https://github.com/ClusterCockpit/cc-metric-collector.git
synced 2024-12-25 23:19:06 +01:00
235 lines
6.5 KiB
Go
235 lines
6.5 KiB
Go
package collectors
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import (
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"errors"
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"fmt"
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"github.com/NVIDIA/go-nvml/pkg/nvml"
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lp "github.com/influxdata/line-protocol"
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"log"
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"time"
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)
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type NvidiaCollector struct {
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MetricCollector
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num_gpus int
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}
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func (m *NvidiaCollector) CatchPanic() error {
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if rerr := recover(); rerr != nil {
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log.Print("CatchPanic ", string(rerr.(string)))
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err := errors.New(rerr.(string))
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return err
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}
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return nil
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}
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func (m *NvidiaCollector) Init() error {
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m.name = "NvidiaCollector"
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m.setup()
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m.num_gpus = 0
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defer m.CatchPanic()
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ret := nvml.Init()
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if ret != nvml.SUCCESS {
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err := errors.New(nvml.ErrorString(ret))
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log.Print(err)
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return err
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}
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m.num_gpus, ret = nvml.DeviceGetCount()
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if ret != nvml.SUCCESS {
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err := errors.New(nvml.ErrorString(ret))
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return err
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}
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m.init = true
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return nil
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}
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func (m *NvidiaCollector) Read(interval time.Duration, out *[]lp.MutableMetric) {
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for i := 0; i < m.num_gpus; i++ {
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device, ret := nvml.DeviceGetHandleByIndex(i)
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if ret != nvml.SUCCESS {
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log.Fatalf("Unable to get device at index %d: %v", i, nvml.ErrorString(ret))
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return
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}
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tags := map[string]string{"type": "accelerator", "type-id": fmt.Sprintf("%d", i)}
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util, ret := nvml.DeviceGetUtilizationRates(device)
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if ret == nvml.SUCCESS {
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y, err := lp.New("util", tags, map[string]interface{}{"value": float64(util.Gpu)}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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y, err = lp.New("mem_util", tags, map[string]interface{}{"value": float64(util.Memory)}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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}
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meminfo, ret := nvml.DeviceGetMemoryInfo(device)
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if ret == nvml.SUCCESS {
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t := float64(meminfo.Total) / (1024 * 1024)
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y, err := lp.New("mem_total", tags, map[string]interface{}{"value": t}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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f := float64(meminfo.Used) / (1024 * 1024)
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y, err = lp.New("fb_memory", tags, map[string]interface{}{"value": f}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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}
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temp, ret := nvml.DeviceGetTemperature(device, nvml.TEMPERATURE_GPU)
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if ret == nvml.SUCCESS {
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y, err := lp.New("temp", tags, map[string]interface{}{"value": float64(temp)}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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}
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fan, ret := nvml.DeviceGetFanSpeed(device)
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if ret == nvml.SUCCESS {
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y, err := lp.New("fan", tags, map[string]interface{}{"value": float64(fan)}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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}
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_, ecc_pend, ret := nvml.DeviceGetEccMode(device)
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if ret == nvml.SUCCESS {
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var y lp.MutableMetric
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var err error
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switch ecc_pend {
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case nvml.FEATURE_DISABLED:
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y, err = lp.New("ecc_mode", tags, map[string]interface{}{"value": string("OFF")}, time.Now())
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case nvml.FEATURE_ENABLED:
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y, err = lp.New("ecc_mode", tags, map[string]interface{}{"value": string("ON")}, time.Now())
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default:
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y, err = lp.New("ecc_mode", tags, map[string]interface{}{"value": string("UNKNOWN")}, time.Now())
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}
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if err == nil {
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*out = append(*out, y)
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}
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} else if ret == nvml.ERROR_NOT_SUPPORTED {
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y, err := lp.New("ecc_mode", tags, map[string]interface{}{"value": string("N/A")}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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}
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pstate, ret := nvml.DeviceGetPerformanceState(device)
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if ret == nvml.SUCCESS {
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y, err := lp.New("perf_state", tags, map[string]interface{}{"value": fmt.Sprintf("P%d", int(pstate))}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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}
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power, ret := nvml.DeviceGetPowerUsage(device)
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if ret == nvml.SUCCESS {
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y, err := lp.New("power_usage_report", tags, map[string]interface{}{"value": float64(power) / 1000}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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}
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gclk, ret := nvml.DeviceGetClockInfo(device, nvml.CLOCK_GRAPHICS)
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if ret == nvml.SUCCESS {
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y, err := lp.New("graphics_clock_report", tags, map[string]interface{}{"value": float64(gclk)}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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}
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smclk, ret := nvml.DeviceGetClockInfo(device, nvml.CLOCK_SM)
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if ret == nvml.SUCCESS {
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y, err := lp.New("sm_clock_report", tags, map[string]interface{}{"value": float64(smclk)}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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}
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memclk, ret := nvml.DeviceGetClockInfo(device, nvml.CLOCK_MEM)
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if ret == nvml.SUCCESS {
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y, err := lp.New("mem_clock_report", tags, map[string]interface{}{"value": float64(memclk)}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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}
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max_gclk, ret := nvml.DeviceGetMaxClockInfo(device, nvml.CLOCK_GRAPHICS)
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if ret == nvml.SUCCESS {
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y, err := lp.New("max_graphics_clock", tags, map[string]interface{}{"value": float64(max_gclk)}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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}
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max_smclk, ret := nvml.DeviceGetClockInfo(device, nvml.CLOCK_SM)
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if ret == nvml.SUCCESS {
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y, err := lp.New("max_sm_clock", tags, map[string]interface{}{"value": float64(max_smclk)}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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}
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max_memclk, ret := nvml.DeviceGetClockInfo(device, nvml.CLOCK_MEM)
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if ret == nvml.SUCCESS {
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y, err := lp.New("max_mem_clock", tags, map[string]interface{}{"value": float64(max_memclk)}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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}
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ecc_db, ret := nvml.DeviceGetTotalEccErrors(device, 1, 1)
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if ret == nvml.SUCCESS {
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y, err := lp.New("ecc_db_error", tags, map[string]interface{}{"value": float64(ecc_db)}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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}
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ecc_sb, ret := nvml.DeviceGetTotalEccErrors(device, 0, 1)
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if ret == nvml.SUCCESS {
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y, err := lp.New("ecc_sb_error", tags, map[string]interface{}{"value": float64(ecc_sb)}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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}
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pwr_limit, ret := nvml.DeviceGetPowerManagementLimit(device)
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if ret == nvml.SUCCESS {
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y, err := lp.New("power_man_limit", tags, map[string]interface{}{"value": float64(pwr_limit)}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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}
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enc_util, _, ret := nvml.DeviceGetEncoderUtilization(device)
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if ret == nvml.SUCCESS {
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y, err := lp.New("encoder_util", tags, map[string]interface{}{"value": float64(enc_util)}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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}
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dec_util, _, ret := nvml.DeviceGetDecoderUtilization(device)
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if ret == nvml.SUCCESS {
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y, err := lp.New("decoder_util", tags, map[string]interface{}{"value": float64(dec_util)}, time.Now())
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if err == nil {
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*out = append(*out, y)
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}
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}
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}
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}
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func (m *NvidiaCollector) Close() {
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if m.init {
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nvml.Shutdown()
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m.init = false
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}
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return
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}
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