metrics.go 25 KB

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  1. package costmodel
  2. import (
  3. "math"
  4. "strconv"
  5. "strings"
  6. "sync"
  7. "time"
  8. "github.com/kubecost/cost-model/pkg/cloud"
  9. "github.com/kubecost/cost-model/pkg/clustercache"
  10. "github.com/kubecost/cost-model/pkg/env"
  11. "github.com/kubecost/cost-model/pkg/errors"
  12. "github.com/kubecost/cost-model/pkg/log"
  13. "github.com/kubecost/cost-model/pkg/metrics"
  14. "github.com/kubecost/cost-model/pkg/prom"
  15. "github.com/kubecost/cost-model/pkg/util"
  16. promclient "github.com/prometheus/client_golang/api"
  17. "github.com/prometheus/client_golang/prometheus"
  18. dto "github.com/prometheus/client_model/go"
  19. v1 "k8s.io/api/core/v1"
  20. "k8s.io/client-go/kubernetes"
  21. "k8s.io/klog"
  22. )
  23. //--------------------------------------------------------------------------
  24. // ClusterInfoCollector
  25. //--------------------------------------------------------------------------
  26. // ClusterInfoCollector is a prometheus collector that generates ClusterInfoMetrics
  27. type ClusterInfoCollector struct {
  28. Cloud cloud.Provider
  29. KubeClientSet kubernetes.Interface
  30. }
  31. // Describe sends the super-set of all possible descriptors of metrics
  32. // collected by this Collector.
  33. func (cic ClusterInfoCollector) Describe(ch chan<- *prometheus.Desc) {
  34. ch <- prometheus.NewDesc("kubecost_cluster_info", "Kubecost Cluster Info", []string{}, nil)
  35. }
  36. // Collect is called by the Prometheus registry when collecting metrics.
  37. func (cic ClusterInfoCollector) Collect(ch chan<- prometheus.Metric) {
  38. clusterInfo := GetClusterInfo(cic.KubeClientSet, cic.Cloud)
  39. labels := prom.MapToLabels(clusterInfo)
  40. m := newClusterInfoMetric("kubecost_cluster_info", labels)
  41. ch <- m
  42. }
  43. //--------------------------------------------------------------------------
  44. // ClusterInfoMetric
  45. //--------------------------------------------------------------------------
  46. // ClusterInfoMetric is a prometheus.Metric used to encode the local cluster info
  47. type ClusterInfoMetric struct {
  48. fqName string
  49. help string
  50. labels map[string]string
  51. }
  52. // Creates a new ClusterInfoMetric, implementation of prometheus.Metric
  53. func newClusterInfoMetric(fqName string, labels map[string]string) ClusterInfoMetric {
  54. return ClusterInfoMetric{
  55. fqName: fqName,
  56. labels: labels,
  57. help: "kubecost_cluster_info ClusterInfo",
  58. }
  59. }
  60. // Desc returns the descriptor for the Metric. This method idempotently
  61. // returns the same descriptor throughout the lifetime of the Metric.
  62. func (cim ClusterInfoMetric) Desc() *prometheus.Desc {
  63. l := prometheus.Labels{}
  64. return prometheus.NewDesc(cim.fqName, cim.help, prom.LabelNamesFrom(cim.labels), l)
  65. }
  66. // Write encodes the Metric into a "Metric" Protocol Buffer data
  67. // transmission object.
  68. func (cim ClusterInfoMetric) Write(m *dto.Metric) error {
  69. h := float64(1)
  70. m.Gauge = &dto.Gauge{
  71. Value: &h,
  72. }
  73. var labels []*dto.LabelPair
  74. for k, v := range cim.labels {
  75. labels = append(labels, &dto.LabelPair{
  76. Name: toStringPtr(k),
  77. Value: toStringPtr(v),
  78. })
  79. }
  80. m.Label = labels
  81. return nil
  82. }
  83. // returns a pointer to the string provided
  84. func toStringPtr(s string) *string { return &s }
  85. //--------------------------------------------------------------------------
  86. // Cost Model Metrics Initialization
  87. //--------------------------------------------------------------------------
  88. // Only allow the metrics to be instantiated and registered once
  89. var metricsInit sync.Once
  90. var (
  91. cpuGv *prometheus.GaugeVec
  92. ramGv *prometheus.GaugeVec
  93. gpuGv *prometheus.GaugeVec
  94. gpuCountGv *prometheus.GaugeVec
  95. pvGv *prometheus.GaugeVec
  96. spotGv *prometheus.GaugeVec
  97. totalGv *prometheus.GaugeVec
  98. ramAllocGv *prometheus.GaugeVec
  99. cpuAllocGv *prometheus.GaugeVec
  100. gpuAllocGv *prometheus.GaugeVec
  101. pvAllocGv *prometheus.GaugeVec
  102. networkZoneEgressCostG prometheus.Gauge
  103. networkRegionEgressCostG prometheus.Gauge
  104. networkInternetEgressCostG prometheus.Gauge
  105. clusterManagementCostGv *prometheus.GaugeVec
  106. lbCostGv *prometheus.GaugeVec
  107. )
  108. // initCostModelMetrics uses a sync.Once to ensure that these metrics are only created once
  109. func initCostModelMetrics(clusterCache clustercache.ClusterCache, provider cloud.Provider) {
  110. metricsInit.Do(func() {
  111. cpuGv = prometheus.NewGaugeVec(prometheus.GaugeOpts{
  112. Name: "node_cpu_hourly_cost",
  113. Help: "node_cpu_hourly_cost hourly cost for each cpu on this node",
  114. }, []string{"instance", "node", "instance_type", "region", "provider_id"})
  115. ramGv = prometheus.NewGaugeVec(prometheus.GaugeOpts{
  116. Name: "node_ram_hourly_cost",
  117. Help: "node_ram_hourly_cost hourly cost for each gb of ram on this node",
  118. }, []string{"instance", "node", "instance_type", "region", "provider_id"})
  119. gpuGv = prometheus.NewGaugeVec(prometheus.GaugeOpts{
  120. Name: "node_gpu_hourly_cost",
  121. Help: "node_gpu_hourly_cost hourly cost for each gpu on this node",
  122. }, []string{"instance", "node", "instance_type", "region", "provider_id"})
  123. gpuCountGv = prometheus.NewGaugeVec(prometheus.GaugeOpts{
  124. Name: "node_gpu_count",
  125. Help: "node_gpu_count count of gpu on this node",
  126. }, []string{"instance", "node", "instance_type", "region", "provider_id"})
  127. pvGv = prometheus.NewGaugeVec(prometheus.GaugeOpts{
  128. Name: "pv_hourly_cost",
  129. Help: "pv_hourly_cost Cost per GB per hour on a persistent disk",
  130. }, []string{"volumename", "persistentvolume", "provider_id"})
  131. spotGv = prometheus.NewGaugeVec(prometheus.GaugeOpts{
  132. Name: "kubecost_node_is_spot",
  133. Help: "kubecost_node_is_spot Cloud provider info about node preemptibility",
  134. }, []string{"instance", "node", "instance_type", "region", "provider_id"})
  135. totalGv = prometheus.NewGaugeVec(prometheus.GaugeOpts{
  136. Name: "node_total_hourly_cost",
  137. Help: "node_total_hourly_cost Total node cost per hour",
  138. }, []string{"instance", "node", "instance_type", "region", "provider_id"})
  139. ramAllocGv = prometheus.NewGaugeVec(prometheus.GaugeOpts{
  140. Name: "container_memory_allocation_bytes",
  141. Help: "container_memory_allocation_bytes Bytes of RAM used",
  142. }, []string{"namespace", "pod", "container", "instance", "node"})
  143. cpuAllocGv = prometheus.NewGaugeVec(prometheus.GaugeOpts{
  144. Name: "container_cpu_allocation",
  145. Help: "container_cpu_allocation Percent of a single CPU used in a minute",
  146. }, []string{"namespace", "pod", "container", "instance", "node"})
  147. gpuAllocGv = prometheus.NewGaugeVec(prometheus.GaugeOpts{
  148. Name: "container_gpu_allocation",
  149. Help: "container_gpu_allocation GPU used",
  150. }, []string{"namespace", "pod", "container", "instance", "node"})
  151. pvAllocGv = prometheus.NewGaugeVec(prometheus.GaugeOpts{
  152. Name: "pod_pvc_allocation",
  153. Help: "pod_pvc_allocation Bytes used by a PVC attached to a pod",
  154. }, []string{"namespace", "pod", "persistentvolumeclaim", "persistentvolume"})
  155. networkZoneEgressCostG = prometheus.NewGauge(prometheus.GaugeOpts{
  156. Name: "kubecost_network_zone_egress_cost",
  157. Help: "kubecost_network_zone_egress_cost Total cost per GB egress across zones",
  158. })
  159. networkRegionEgressCostG = prometheus.NewGauge(prometheus.GaugeOpts{
  160. Name: "kubecost_network_region_egress_cost",
  161. Help: "kubecost_network_region_egress_cost Total cost per GB egress across regions",
  162. })
  163. networkInternetEgressCostG = prometheus.NewGauge(prometheus.GaugeOpts{
  164. Name: "kubecost_network_internet_egress_cost",
  165. Help: "kubecost_network_internet_egress_cost Total cost per GB of internet egress.",
  166. })
  167. clusterManagementCostGv = prometheus.NewGaugeVec(prometheus.GaugeOpts{
  168. Name: "kubecost_cluster_management_cost",
  169. Help: "kubecost_cluster_management_cost Hourly cost paid as a cluster management fee.",
  170. }, []string{"provisioner_name"})
  171. lbCostGv = prometheus.NewGaugeVec(prometheus.GaugeOpts{ // no differentiation between ELB and ALB right now
  172. Name: "kubecost_load_balancer_cost",
  173. Help: "kubecost_load_balancer_cost Hourly cost of load balancer",
  174. }, []string{"ingress_ip", "namespace", "service_name"}) // assumes one ingress IP per load balancer
  175. // Register cost-model metrics for emission
  176. prometheus.MustRegister(cpuGv, ramGv, gpuGv, gpuCountGv, totalGv, pvGv, spotGv)
  177. prometheus.MustRegister(ramAllocGv, cpuAllocGv, gpuAllocGv, pvAllocGv)
  178. prometheus.MustRegister(networkZoneEgressCostG, networkRegionEgressCostG, networkInternetEgressCostG)
  179. prometheus.MustRegister(clusterManagementCostGv, lbCostGv)
  180. // General Metric Collectors
  181. prometheus.MustRegister(ClusterInfoCollector{
  182. KubeClientSet: clusterCache.GetClient(),
  183. Cloud: provider,
  184. })
  185. })
  186. }
  187. //--------------------------------------------------------------------------
  188. // CostModelMetricsEmitter
  189. //--------------------------------------------------------------------------
  190. // CostModelMetricsEmitter emits all cost-model specific metrics calculated by
  191. // the CostModel.ComputeCostData() method.
  192. type CostModelMetricsEmitter struct {
  193. PrometheusClient promclient.Client
  194. KubeClusterCache clustercache.ClusterCache
  195. CloudProvider cloud.Provider
  196. Model *CostModel
  197. // Metrics
  198. CPUPriceRecorder *prometheus.GaugeVec
  199. RAMPriceRecorder *prometheus.GaugeVec
  200. PersistentVolumePriceRecorder *prometheus.GaugeVec
  201. GPUPriceRecorder *prometheus.GaugeVec
  202. GPUCountRecorder *prometheus.GaugeVec
  203. PVAllocationRecorder *prometheus.GaugeVec
  204. NodeSpotRecorder *prometheus.GaugeVec
  205. NodeTotalPriceRecorder *prometheus.GaugeVec
  206. RAMAllocationRecorder *prometheus.GaugeVec
  207. CPUAllocationRecorder *prometheus.GaugeVec
  208. GPUAllocationRecorder *prometheus.GaugeVec
  209. ClusterManagementCostRecorder *prometheus.GaugeVec
  210. LBCostRecorder *prometheus.GaugeVec
  211. NetworkZoneEgressRecorder prometheus.Gauge
  212. NetworkRegionEgressRecorder prometheus.Gauge
  213. NetworkInternetEgressRecorder prometheus.Gauge
  214. // Flow Control
  215. recordingLock *sync.Mutex
  216. recordingStopping bool
  217. recordingStop chan bool
  218. }
  219. // NewCostModelMetricsEmitter creates a new cost-model metrics emitter. Use Start() to begin metric emission.
  220. func NewCostModelMetricsEmitter(promClient promclient.Client, clusterCache clustercache.ClusterCache, provider cloud.Provider, model *CostModel) *CostModelMetricsEmitter {
  221. // init will only actually execute once to register the custom gauges
  222. initCostModelMetrics(clusterCache, provider)
  223. // if the metrics pod is not enabled, we want to emit those metrics from this pod.
  224. // NOTE: This is not optimal, as we calculate costs based on run times for other containers.
  225. // NOTE: The metrics for run times should be emitted separate from cost-model
  226. if !env.IsKubecostMetricsPodEnabled() {
  227. metrics.InitKubeMetrics(clusterCache, &metrics.KubeMetricsOpts{
  228. EmitKubecostControllerMetrics: true,
  229. EmitNamespaceAnnotations: env.IsEmitNamespaceAnnotationsMetric(),
  230. EmitPodAnnotations: env.IsEmitPodAnnotationsMetric(),
  231. EmitKubeStateMetrics: env.IsEmitKsmV1Metrics(),
  232. })
  233. }
  234. return &CostModelMetricsEmitter{
  235. PrometheusClient: promClient,
  236. KubeClusterCache: clusterCache,
  237. CloudProvider: provider,
  238. Model: model,
  239. CPUPriceRecorder: cpuGv,
  240. RAMPriceRecorder: ramGv,
  241. GPUPriceRecorder: gpuGv,
  242. GPUCountRecorder: gpuCountGv,
  243. PersistentVolumePriceRecorder: pvGv,
  244. NodeSpotRecorder: spotGv,
  245. NodeTotalPriceRecorder: totalGv,
  246. RAMAllocationRecorder: ramAllocGv,
  247. CPUAllocationRecorder: cpuAllocGv,
  248. GPUAllocationRecorder: gpuAllocGv,
  249. PVAllocationRecorder: pvAllocGv,
  250. NetworkZoneEgressRecorder: networkZoneEgressCostG,
  251. NetworkRegionEgressRecorder: networkRegionEgressCostG,
  252. NetworkInternetEgressRecorder: networkInternetEgressCostG,
  253. ClusterManagementCostRecorder: clusterManagementCostGv,
  254. LBCostRecorder: lbCostGv,
  255. recordingLock: new(sync.Mutex),
  256. recordingStopping: false,
  257. recordingStop: nil,
  258. }
  259. }
  260. // Checks to see if there is a metric recording stop channel. If it exists, a new
  261. // channel is not created and false is returned. If it doesn't exist, a new channel
  262. // is created and true is returned.
  263. func (cmme *CostModelMetricsEmitter) checkOrCreateRecordingChan() bool {
  264. cmme.recordingLock.Lock()
  265. defer cmme.recordingLock.Unlock()
  266. if cmme.recordingStop != nil {
  267. return false
  268. }
  269. cmme.recordingStop = make(chan bool, 1)
  270. return true
  271. }
  272. // IsRunning returns true if metric recording is running.
  273. func (cmme *CostModelMetricsEmitter) IsRunning() bool {
  274. cmme.recordingLock.Lock()
  275. defer cmme.recordingLock.Unlock()
  276. return cmme.recordingStop != nil
  277. }
  278. // StartCostModelMetricRecording starts the go routine that emits metrics used to determine
  279. // cluster costs.
  280. func (cmme *CostModelMetricsEmitter) Start() bool {
  281. // Check to see if we're already recording
  282. // This function will create the stop recording channel and return true
  283. // if it doesn't exist.
  284. if !cmme.checkOrCreateRecordingChan() {
  285. log.Errorf("Attempted to start cost model metric recording when it's already running.")
  286. return false
  287. }
  288. go func() {
  289. defer errors.HandlePanic()
  290. containerSeen := make(map[string]bool)
  291. nodeSeen := make(map[string]bool)
  292. loadBalancerSeen := make(map[string]bool)
  293. pvSeen := make(map[string]bool)
  294. pvcSeen := make(map[string]bool)
  295. getKeyFromLabelStrings := func(labels ...string) string {
  296. return strings.Join(labels, ",")
  297. }
  298. getLabelStringsFromKey := func(key string) []string {
  299. return strings.Split(key, ",")
  300. }
  301. var defaultRegion string = ""
  302. nodeList := cmme.KubeClusterCache.GetAllNodes()
  303. if len(nodeList) > 0 {
  304. var ok bool
  305. defaultRegion, ok = util.GetRegion(nodeList[0].Labels)
  306. if !ok {
  307. log.DedupedWarningf(5, "Failed to locate default region")
  308. }
  309. }
  310. for {
  311. klog.V(4).Info("Recording prices...")
  312. podlist := cmme.KubeClusterCache.GetAllPods()
  313. podStatus := make(map[string]v1.PodPhase)
  314. for _, pod := range podlist {
  315. podStatus[pod.Name] = pod.Status.Phase
  316. }
  317. cfg, _ := cmme.CloudProvider.GetConfig()
  318. provisioner, clusterManagementCost, err := cmme.CloudProvider.ClusterManagementPricing()
  319. if err != nil {
  320. klog.V(1).Infof("Error getting cluster management cost %s", err.Error())
  321. }
  322. cmme.ClusterManagementCostRecorder.WithLabelValues(provisioner).Set(clusterManagementCost)
  323. // Record network pricing at global scope
  324. networkCosts, err := cmme.CloudProvider.NetworkPricing()
  325. if err != nil {
  326. klog.V(4).Infof("Failed to retrieve network costs: %s", err.Error())
  327. } else {
  328. cmme.NetworkZoneEgressRecorder.Set(networkCosts.ZoneNetworkEgressCost)
  329. cmme.NetworkRegionEgressRecorder.Set(networkCosts.RegionNetworkEgressCost)
  330. cmme.NetworkInternetEgressRecorder.Set(networkCosts.InternetNetworkEgressCost)
  331. }
  332. // TODO: Pass PrometheusClient and CloudProvider into CostModel on instantiation so this isn't so awkward
  333. data, err := cmme.Model.ComputeCostData(cmme.PrometheusClient, cmme.CloudProvider, "2m", "", "")
  334. if err != nil {
  335. // For an error collection, we'll just log the length of the errors (ComputeCostData already logs the
  336. // actual errors)
  337. if prom.IsErrorCollection(err) {
  338. if ec, ok := err.(prom.QueryErrorCollection); ok {
  339. log.Errorf("Error in price recording: %d errors occurred", len(ec.Errors()))
  340. }
  341. } else {
  342. log.Errorf("Error in price recording: " + err.Error())
  343. }
  344. // zero the for loop so the time.Sleep will still work
  345. data = map[string]*CostData{}
  346. }
  347. // TODO: Pass CloudProvider into CostModel on instantiation so this isn't so awkward
  348. nodes, err := cmme.Model.GetNodeCost(cmme.CloudProvider)
  349. if err != nil {
  350. log.Warningf("Metric emission: error getting Node cost: %s", err)
  351. }
  352. for nodeName, node := range nodes {
  353. // Emit costs, guarding against NaN inputs for custom pricing.
  354. cpuCost, _ := strconv.ParseFloat(node.VCPUCost, 64)
  355. if math.IsNaN(cpuCost) || math.IsInf(cpuCost, 0) {
  356. cpuCost, _ = strconv.ParseFloat(cfg.CPU, 64)
  357. if math.IsNaN(cpuCost) || math.IsInf(cpuCost, 0) {
  358. cpuCost = 0
  359. }
  360. }
  361. cpu, _ := strconv.ParseFloat(node.VCPU, 64)
  362. if math.IsNaN(cpu) || math.IsInf(cpu, 0) {
  363. cpu = 1 // Assume 1 CPU
  364. }
  365. ramCost, _ := strconv.ParseFloat(node.RAMCost, 64)
  366. if math.IsNaN(ramCost) || math.IsInf(ramCost, 0) {
  367. ramCost, _ = strconv.ParseFloat(cfg.RAM, 64)
  368. if math.IsNaN(ramCost) || math.IsInf(ramCost, 0) {
  369. ramCost = 0
  370. }
  371. }
  372. ram, _ := strconv.ParseFloat(node.RAMBytes, 64)
  373. if math.IsNaN(ram) || math.IsInf(ram, 0) {
  374. ram = 0
  375. }
  376. gpu, _ := strconv.ParseFloat(node.GPU, 64)
  377. if math.IsNaN(gpu) || math.IsInf(gpu, 0) {
  378. gpu = 0
  379. }
  380. gpuCost, _ := strconv.ParseFloat(node.GPUCost, 64)
  381. if math.IsNaN(gpuCost) || math.IsInf(gpuCost, 0) {
  382. gpuCost, _ = strconv.ParseFloat(cfg.GPU, 64)
  383. if math.IsNaN(gpuCost) || math.IsInf(gpuCost, 0) {
  384. gpuCost = 0
  385. }
  386. }
  387. nodeType := node.InstanceType
  388. nodeRegion := node.Region
  389. totalCost := cpu*cpuCost + ramCost*(ram/1024/1024/1024) + gpu*gpuCost
  390. cmme.CPUPriceRecorder.WithLabelValues(nodeName, nodeName, nodeType, nodeRegion, node.ProviderID).Set(cpuCost)
  391. cmme.RAMPriceRecorder.WithLabelValues(nodeName, nodeName, nodeType, nodeRegion, node.ProviderID).Set(ramCost)
  392. cmme.GPUPriceRecorder.WithLabelValues(nodeName, nodeName, nodeType, nodeRegion, node.ProviderID).Set(gpuCost)
  393. cmme.GPUCountRecorder.WithLabelValues(nodeName, nodeName, nodeType, nodeRegion, node.ProviderID).Set(gpu)
  394. cmme.NodeTotalPriceRecorder.WithLabelValues(nodeName, nodeName, nodeType, nodeRegion, node.ProviderID).Set(totalCost)
  395. if node.IsSpot() {
  396. cmme.NodeSpotRecorder.WithLabelValues(nodeName, nodeName, nodeType, nodeRegion, node.ProviderID).Set(1.0)
  397. } else {
  398. cmme.NodeSpotRecorder.WithLabelValues(nodeName, nodeName, nodeType, nodeRegion, node.ProviderID).Set(0.0)
  399. }
  400. labelKey := getKeyFromLabelStrings(nodeName, nodeName, nodeType, nodeRegion, node.ProviderID)
  401. nodeSeen[labelKey] = true
  402. }
  403. // TODO: Pass CloudProvider into CostModel on instantiation so this isn't so awkward
  404. loadBalancers, err := cmme.Model.GetLBCost(cmme.CloudProvider)
  405. if err != nil {
  406. log.Warningf("Metric emission: error getting LoadBalancer cost: %s", err)
  407. }
  408. for lbKey, lb := range loadBalancers {
  409. // TODO: parse (if necessary) and calculate cost associated with loadBalancer based on dynamic cloud prices fetched into each lb struct on GetLBCost() call
  410. keyParts := getLabelStringsFromKey(lbKey)
  411. namespace := keyParts[0]
  412. serviceName := keyParts[1]
  413. ingressIP := ""
  414. if len(lb.IngressIPAddresses) > 0 {
  415. ingressIP = lb.IngressIPAddresses[0] // assumes one ingress IP per load balancer
  416. }
  417. cmme.LBCostRecorder.WithLabelValues(ingressIP, namespace, serviceName).Set(lb.Cost)
  418. labelKey := getKeyFromLabelStrings(ingressIP, namespace, serviceName)
  419. loadBalancerSeen[labelKey] = true
  420. }
  421. for _, costs := range data {
  422. nodeName := costs.NodeName
  423. namespace := costs.Namespace
  424. podName := costs.PodName
  425. containerName := costs.Name
  426. if costs.PVCData != nil {
  427. for _, pvc := range costs.PVCData {
  428. if pvc.Volume != nil {
  429. timesClaimed := pvc.TimesClaimed
  430. if timesClaimed == 0 {
  431. timesClaimed = 1 // unallocated PVs are unclaimed but have a full allocation
  432. }
  433. cmme.PVAllocationRecorder.WithLabelValues(namespace, podName, pvc.Claim, pvc.VolumeName).Set(pvc.Values[0].Value / float64(timesClaimed))
  434. labelKey := getKeyFromLabelStrings(namespace, podName, pvc.Claim, pvc.VolumeName)
  435. pvcSeen[labelKey] = true
  436. }
  437. }
  438. }
  439. if len(costs.RAMAllocation) > 0 {
  440. cmme.RAMAllocationRecorder.WithLabelValues(namespace, podName, containerName, nodeName, nodeName).Set(costs.RAMAllocation[0].Value)
  441. }
  442. if len(costs.CPUAllocation) > 0 {
  443. cmme.CPUAllocationRecorder.WithLabelValues(namespace, podName, containerName, nodeName, nodeName).Set(costs.CPUAllocation[0].Value)
  444. }
  445. if len(costs.GPUReq) > 0 {
  446. // allocation here is set to the request because shared GPU usage not yet supported.
  447. cmme.GPUAllocationRecorder.WithLabelValues(namespace, podName, containerName, nodeName, nodeName).Set(costs.GPUReq[0].Value)
  448. }
  449. labelKey := getKeyFromLabelStrings(namespace, podName, containerName, nodeName, nodeName)
  450. if podStatus[podName] == v1.PodRunning { // Only report data for current pods
  451. containerSeen[labelKey] = true
  452. } else {
  453. containerSeen[labelKey] = false
  454. }
  455. }
  456. storageClasses := cmme.KubeClusterCache.GetAllStorageClasses()
  457. storageClassMap := make(map[string]map[string]string)
  458. for _, storageClass := range storageClasses {
  459. params := storageClass.Parameters
  460. storageClassMap[storageClass.ObjectMeta.Name] = params
  461. if storageClass.GetAnnotations()["storageclass.kubernetes.io/is-default-class"] == "true" || storageClass.GetAnnotations()["storageclass.beta.kubernetes.io/is-default-class"] == "true" {
  462. storageClassMap["default"] = params
  463. storageClassMap[""] = params
  464. }
  465. }
  466. pvs := cmme.KubeClusterCache.GetAllPersistentVolumes()
  467. for _, pv := range pvs {
  468. // Omit pv_hourly_cost if the volume status is failed
  469. if pv.Status.Phase == v1.VolumeFailed {
  470. continue
  471. }
  472. parameters, ok := storageClassMap[pv.Spec.StorageClassName]
  473. if !ok {
  474. klog.V(4).Infof("Unable to find parameters for storage class \"%s\". Does pv \"%s\" have a storageClassName?", pv.Spec.StorageClassName, pv.Name)
  475. }
  476. var region string
  477. if r, ok := util.GetRegion(pv.Labels); ok {
  478. region = r
  479. } else {
  480. region = defaultRegion
  481. }
  482. cacPv := &cloud.PV{
  483. Class: pv.Spec.StorageClassName,
  484. Region: region,
  485. Parameters: parameters,
  486. }
  487. // TODO: GetPVCost should be a method in CostModel?
  488. GetPVCost(cacPv, pv, cmme.CloudProvider, region)
  489. c, _ := strconv.ParseFloat(cacPv.Cost, 64)
  490. cmme.PersistentVolumePriceRecorder.WithLabelValues(pv.Name, pv.Name, cacPv.ProviderID).Set(c)
  491. labelKey := getKeyFromLabelStrings(pv.Name, pv.Name)
  492. pvSeen[labelKey] = true
  493. }
  494. for labelString, seen := range nodeSeen {
  495. if !seen {
  496. klog.V(4).Infof("Removing %s from nodes", labelString)
  497. labels := getLabelStringsFromKey(labelString)
  498. ok := cmme.NodeTotalPriceRecorder.DeleteLabelValues(labels...)
  499. if ok {
  500. klog.V(4).Infof("removed %s from totalprice", labelString)
  501. } else {
  502. klog.Infof("FAILURE TO REMOVE %s from totalprice", labelString)
  503. }
  504. ok = cmme.NodeSpotRecorder.DeleteLabelValues(labels...)
  505. if ok {
  506. klog.V(4).Infof("removed %s from spot records", labelString)
  507. } else {
  508. klog.Infof("FAILURE TO REMOVE %s from spot records", labelString)
  509. }
  510. ok = cmme.CPUPriceRecorder.DeleteLabelValues(labels...)
  511. if ok {
  512. klog.V(4).Infof("removed %s from cpuprice", labelString)
  513. } else {
  514. klog.Infof("FAILURE TO REMOVE %s from cpuprice", labelString)
  515. }
  516. ok = cmme.GPUPriceRecorder.DeleteLabelValues(labels...)
  517. if ok {
  518. klog.V(4).Infof("removed %s from gpuprice", labelString)
  519. } else {
  520. klog.Infof("FAILURE TO REMOVE %s from gpuprice", labelString)
  521. }
  522. ok = cmme.GPUCountRecorder.DeleteLabelValues(labels...)
  523. if ok {
  524. klog.V(4).Infof("removed %s from gpucount", labelString)
  525. } else {
  526. klog.Infof("FAILURE TO REMOVE %s from gpucount", labelString)
  527. }
  528. ok = cmme.RAMPriceRecorder.DeleteLabelValues(labels...)
  529. if ok {
  530. klog.V(4).Infof("removed %s from ramprice", labelString)
  531. } else {
  532. klog.Infof("FAILURE TO REMOVE %s from ramprice", labelString)
  533. }
  534. delete(nodeSeen, labelString)
  535. } else {
  536. nodeSeen[labelString] = false
  537. }
  538. }
  539. for labelString, seen := range loadBalancerSeen {
  540. if !seen {
  541. labels := getLabelStringsFromKey(labelString)
  542. ok := cmme.LBCostRecorder.DeleteLabelValues(labels...)
  543. if !ok {
  544. log.Warningf("Metric emission: failed to delete LoadBalancer with labels: %v", labels)
  545. }
  546. delete(loadBalancerSeen, labelString)
  547. } else {
  548. loadBalancerSeen[labelString] = false
  549. }
  550. }
  551. for labelString, seen := range containerSeen {
  552. if !seen {
  553. labels := getLabelStringsFromKey(labelString)
  554. cmme.RAMAllocationRecorder.DeleteLabelValues(labels...)
  555. cmme.CPUAllocationRecorder.DeleteLabelValues(labels...)
  556. cmme.GPUAllocationRecorder.DeleteLabelValues(labels...)
  557. delete(containerSeen, labelString)
  558. } else {
  559. containerSeen[labelString] = false
  560. }
  561. }
  562. for labelString, seen := range pvSeen {
  563. if !seen {
  564. labels := getLabelStringsFromKey(labelString)
  565. cmme.PersistentVolumePriceRecorder.DeleteLabelValues(labels...)
  566. delete(pvSeen, labelString)
  567. } else {
  568. pvSeen[labelString] = false
  569. }
  570. }
  571. for labelString, seen := range pvcSeen {
  572. if !seen {
  573. labels := getLabelStringsFromKey(labelString)
  574. cmme.PVAllocationRecorder.DeleteLabelValues(labels...)
  575. delete(pvcSeen, labelString)
  576. } else {
  577. pvcSeen[labelString] = false
  578. }
  579. }
  580. select {
  581. case <-time.After(time.Minute):
  582. case <-cmme.recordingStop:
  583. cmme.recordingLock.Lock()
  584. cmme.recordingStopping = false
  585. cmme.recordingStop = nil
  586. cmme.recordingLock.Unlock()
  587. return
  588. }
  589. }
  590. }()
  591. return true
  592. }
  593. // Stop halts the metrics emission loop after the current emission is completed
  594. // or if the emission is paused.
  595. func (cmme *CostModelMetricsEmitter) Stop() {
  596. cmme.recordingLock.Lock()
  597. defer cmme.recordingLock.Unlock()
  598. if !cmme.recordingStopping && cmme.recordingStop != nil {
  599. cmme.recordingStopping = true
  600. close(cmme.recordingStop)
  601. }
  602. }