package proc import ( "fmt" "math" "os" "path/filepath" "strconv" "strings" "time" ) type AMDReader struct { hwmonDir string driver string energyState map[string]EnergyState } func NewAMDReader() (*AMDReader, error) { matches, err := filepath.Glob("/sys/class/hwmon/hwmon*") if err != nil { return nil, fmt.Errorf("glob hwmon failed: %w", err) } for _, dir := range matches { b, err := os.ReadFile(filepath.Join(dir, "name")) if err != nil { continue } drv := strings.TrimSpace(string(b)) if drv == "k10temp" || drv == "zenpower" { return &AMDReader{ hwmonDir: dir, driver: drv, energyState: make(map[string]EnergyState), }, nil } } return nil, fmt.Errorf("k10temp/zenpower driver not found under /sys/class/hwmon/") } func (r *AMDReader) ReadTemperatureSensors() ([]TempSensor, error) { inputs, err := filepath.Glob(filepath.Join(r.hwmonDir, "temp*_input")) if err != nil || len(inputs) == 0 { return nil, fmt.Errorf("no temperature inputs found in %s", r.hwmonDir) } temps := make([]TempSensor, 0, len(inputs)) for _, inputPath := range inputs { valBytes, err := os.ReadFile(inputPath) if err != nil { continue } milliC, err := strconv.ParseFloat(strings.TrimSpace(string(valBytes)), 64) if err != nil { continue } labelPath := strings.TrimSuffix(inputPath, "_input") + "_label" label := "" if lBytes, err := os.ReadFile(labelPath); err == nil { label = strings.TrimSpace(string(lBytes)) } else { label = filepath.Base(strings.TrimSuffix(inputPath, "_input")) } temps = append(temps, TempSensor{ Name: label, TempC: milliC / 1000.0, }) } return temps, nil } func (r *AMDReader) ReadPowerSensors() ([]PowerSensor, error) { return r.readRaplPower(), nil } func (r *AMDReader) readRaplPower() []PowerSensor { powerSensors := []PowerSensor{} patterns := []string{ "/sys/class/powercap/intel-rapl*/energy_uj", "/sys/class/powercap/intel-rapl/intel-rapl*/energy_uj", "/sys/class/powercap/intel-rapl/intel-rapl*/*/energy_uj", "/sys/class/powercap/intel-rapl:*/energy_uj", "/sys/class/powercap/intel-rapl:*/*/energy_uj", } energyInputs := []string{} seen := make(map[string]bool) for _, pattern := range patterns { matches, _ := filepath.Glob(pattern) for _, match := range matches { realPath, err := filepath.EvalSymlinks(match) if err != nil { realPath = match } if !seen[realPath] { seen[realPath] = true energyInputs = append(energyInputs, realPath) } } } if len(energyInputs) == 0 { return powerSensors } getLabel := func(inputPath string) string { dir := filepath.Dir(inputPath) if nameBytes, err := os.ReadFile(filepath.Join(dir, "name")); err == nil { return strings.TrimSpace(string(nameBytes)) } return filepath.Base(dir) } r.calculateEnergyDelta(energyInputs, getLabel, &powerSensors) return powerSensors } func (r *AMDReader) calculateEnergyDelta(inputs []string, getLabel func(string) string, out *[]PowerSensor) { now := time.Now() if r.energyState == nil { r.energyState = make(map[string]EnergyState) } for _, rawPath := range inputs { key, err := filepath.EvalSymlinks(rawPath) if err != nil { key = filepath.Clean(rawPath) } valBytes, err := os.ReadFile(key) if err != nil { continue } microJoules, err := strconv.ParseUint(strings.TrimSpace(string(valBytes)), 10, 64) if err != nil { continue } prevState, exists := r.energyState[key] if !exists { r.energyState[key] = EnergyState{ lastEnergy: microJoules, lastTime: now, } *out = append(*out, PowerSensor{ Name: getLabel(key), Watts: 0.0, }) continue } timeDiff := now.Sub(prevState.lastTime).Seconds() if timeDiff < 0.05 { continue } maxRange := uint64(math.MaxUint64) rangeBytes, err := os.ReadFile(filepath.Join(filepath.Dir(key), "max_energy_range_uj")) if err == nil { if parsedMax, err := strconv.ParseUint(strings.TrimSpace(string(rangeBytes)), 10, 64); err == nil && parsedMax > 0 { maxRange = parsedMax } } var energyDiff uint64 if microJoules >= prevState.lastEnergy { energyDiff = microJoules - prevState.lastEnergy } else { energyDiff = (maxRange - prevState.lastEnergy) + microJoules } watts := (float64(energyDiff) / 1_000_000.0) / timeDiff r.energyState[key] = EnergyState{ lastEnergy: microJoules, lastTime: now, } *out = append(*out, PowerSensor{ Name: getLabel(key), Watts: watts, }) } }