costmodel.go 79 KB

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  1. package costmodel
  2. import (
  3. "context"
  4. "encoding/json"
  5. "fmt"
  6. "math"
  7. "net/http"
  8. "os"
  9. "strconv"
  10. "strings"
  11. "sync"
  12. "time"
  13. costAnalyzerCloud "github.com/kubecost/cost-model/cloud"
  14. "github.com/kubecost/cost-model/clustercache"
  15. prometheusClient "github.com/prometheus/client_golang/api"
  16. v1 "k8s.io/api/core/v1"
  17. metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
  18. "k8s.io/apimachinery/pkg/labels"
  19. "k8s.io/client-go/kubernetes"
  20. "k8s.io/klog"
  21. "github.com/google/uuid"
  22. "golang.org/x/sync/singleflight"
  23. )
  24. const (
  25. statusAPIError = 422
  26. apiPrefix = "/api/v1"
  27. epAlertManagers = apiPrefix + "/alertmanagers"
  28. epQuery = apiPrefix + "/query"
  29. epQueryRange = apiPrefix + "/query_range"
  30. epLabelValues = apiPrefix + "/label/:name/values"
  31. epSeries = apiPrefix + "/series"
  32. epTargets = apiPrefix + "/targets"
  33. epSnapshot = apiPrefix + "/admin/tsdb/snapshot"
  34. epDeleteSeries = apiPrefix + "/admin/tsdb/delete_series"
  35. epCleanTombstones = apiPrefix + "/admin/tsdb/clean_tombstones"
  36. epConfig = apiPrefix + "/status/config"
  37. epFlags = apiPrefix + "/status/flags"
  38. clusterIDKey = "CLUSTER_ID"
  39. remoteEnabled = "REMOTE_WRITE_ENABLED"
  40. thanosEnabled = "THANOS_ENABLED"
  41. thanosQueryUrl = "THANOS_QUERY_URL"
  42. )
  43. type CostModel struct {
  44. Cache clustercache.ClusterCache
  45. RequestGroup *singleflight.Group
  46. }
  47. func NewCostModel(cache clustercache.ClusterCache) *CostModel {
  48. // request grouping to prevent over-requesting the same data prior to caching
  49. requestGroup := new(singleflight.Group)
  50. return &CostModel{
  51. Cache: cache,
  52. RequestGroup: requestGroup,
  53. }
  54. }
  55. type CostData struct {
  56. Name string `json:"name,omitempty"`
  57. PodName string `json:"podName,omitempty"`
  58. NodeName string `json:"nodeName,omitempty"`
  59. NodeData *costAnalyzerCloud.Node `json:"node,omitempty"`
  60. Namespace string `json:"namespace,omitempty"`
  61. Deployments []string `json:"deployments,omitempty"`
  62. Services []string `json:"services,omitempty"`
  63. Daemonsets []string `json:"daemonsets,omitempty"`
  64. Statefulsets []string `json:"statefulsets,omitempty"`
  65. Jobs []string `json:"jobs,omitempty"`
  66. RAMReq []*Vector `json:"ramreq,omitempty"`
  67. RAMUsed []*Vector `json:"ramused,omitempty"`
  68. RAMAllocation []*Vector `json:"ramallocated,omitempty"`
  69. CPUReq []*Vector `json:"cpureq,omitempty"`
  70. CPUUsed []*Vector `json:"cpuused,omitempty"`
  71. CPUAllocation []*Vector `json:"cpuallocated,omitempty"`
  72. GPUReq []*Vector `json:"gpureq,omitempty"`
  73. PVCData []*PersistentVolumeClaimData `json:"pvcData,omitempty"`
  74. NetworkData []*Vector `json:"network,omitempty"`
  75. Labels map[string]string `json:"labels,omitempty"`
  76. NamespaceLabels map[string]string `json:"namespaceLabels,omitempty"`
  77. ClusterID string `json:"clusterId"`
  78. }
  79. func (cd *CostData) String() string {
  80. return fmt.Sprintf("\n\tName: %s; PodName: %s, NodeName: %s\n\tNamespace: %s\n\tDeployments: %s\n\tServices: %s\n\tCPU (req, used, alloc): %d, %d, %d\n\tRAM (req, used, alloc): %d, %d, %d",
  81. cd.Name, cd.PodName, cd.NodeName, cd.Namespace, strings.Join(cd.Deployments, ", "), strings.Join(cd.Services, ", "),
  82. len(cd.CPUReq), len(cd.CPUUsed), len(cd.CPUAllocation),
  83. len(cd.RAMReq), len(cd.RAMUsed), len(cd.RAMAllocation))
  84. }
  85. const (
  86. queryRAMRequestsStr = `avg(
  87. label_replace(
  88. label_replace(
  89. avg(
  90. count_over_time(kube_pod_container_resource_requests_memory_bytes{container!="",container!="POD", node!=""}[%s] %s)
  91. *
  92. avg_over_time(kube_pod_container_resource_requests_memory_bytes{container!="",container!="POD", node!=""}[%s] %s)
  93. ) by (namespace,container,pod,node,cluster_id) , "container_name","$1","container","(.+)"
  94. ), "pod_name","$1","pod","(.+)"
  95. )
  96. ) by (namespace,container_name,pod_name,node,cluster_id)`
  97. queryRAMUsageStr = `sort_desc(
  98. avg(
  99. label_replace(count_over_time(container_memory_working_set_bytes{container_name!="",container_name!="POD", instance!=""}[%s] %s), "node", "$1", "instance","(.+)")
  100. *
  101. label_replace(avg_over_time(container_memory_working_set_bytes{container_name!="",container_name!="POD", instance!=""}[%s] %s), "node", "$1", "instance","(.+)")
  102. ) by (namespace,container_name,pod_name,node,cluster_id)
  103. )`
  104. queryCPURequestsStr = `avg(
  105. label_replace(
  106. label_replace(
  107. avg(
  108. count_over_time(kube_pod_container_resource_requests_cpu_cores{container!="",container!="POD", node!=""}[%s] %s)
  109. *
  110. avg_over_time(kube_pod_container_resource_requests_cpu_cores{container!="",container!="POD", node!=""}[%s] %s)
  111. ) by (namespace,container,pod,node,cluster_id) , "container_name","$1","container","(.+)"
  112. ), "pod_name","$1","pod","(.+)"
  113. )
  114. ) by (namespace,container_name,pod_name,node,cluster_id)`
  115. queryCPUUsageStr = `avg(
  116. label_replace(
  117. rate(
  118. container_cpu_usage_seconds_total{container_name!="",container_name!="POD",instance!=""}[%s] %s
  119. ) , "node", "$1", "instance", "(.+)"
  120. )
  121. ) by (namespace,container_name,pod_name,node,cluster_id)`
  122. queryGPURequestsStr = `avg(
  123. label_replace(
  124. label_replace(
  125. avg(
  126. count_over_time(kube_pod_container_resource_requests{resource="nvidia_com_gpu", container!="",container!="POD", node!=""}[%s] %s)
  127. *
  128. avg_over_time(kube_pod_container_resource_requests{resource="nvidia_com_gpu", container!="",container!="POD", node!=""}[%s] %s)
  129. ) by (namespace,container,pod,node,cluster_id) , "container_name","$1","container","(.+)"
  130. ), "pod_name","$1","pod","(.+)"
  131. )
  132. ) by (namespace,container_name,pod_name,node,cluster_id)
  133. * on (pod_name, namespace, node, cluster_id) group_right(container_name) label_replace(avg_over_time(kube_pod_status_phase{phase="Running"}[%s] %s), "pod_name","$1","pod","(.+)")`
  134. queryPVRequestsStr = `avg(kube_persistentvolumeclaim_info) by (persistentvolumeclaim, storageclass, namespace, volumename, cluster_id)
  135. *
  136. on (persistentvolumeclaim, namespace, cluster_id) group_right(storageclass, volumename)
  137. sum(kube_persistentvolumeclaim_resource_requests_storage_bytes) by (persistentvolumeclaim, namespace, cluster_id)`
  138. queryRAMAllocation = `avg(
  139. label_replace(
  140. label_replace(
  141. avg(
  142. count_over_time(container_memory_allocation_bytes{container!="",container!="POD", node!=""}[%s] %s)
  143. *
  144. avg_over_time(container_memory_allocation_bytes{container!="",container!="POD", node!=""}[%s] %s)
  145. ) by (namespace,container,pod,node,cluster_id) , "container_name","$1","container","(.+)"
  146. ), "pod_name","$1","pod","(.+)"
  147. )
  148. ) by (namespace,container_name,pod_name,node,cluster_id)`
  149. queryCPUAllocation = `avg(
  150. label_replace(
  151. label_replace(
  152. avg(
  153. count_over_time(container_cpu_allocation{container!="",container!="POD", node!=""}[%s] %s)
  154. *
  155. avg_over_time(container_cpu_allocation{container!="",container!="POD", node!=""}[%s] %s)
  156. ) by (namespace,container,pod,node,cluster_id) , "container_name","$1","container","(.+)"
  157. ), "pod_name","$1","pod","(.+)"
  158. )
  159. ) by (namespace,container_name,pod_name,node,cluster_id)`
  160. queryPVCAllocation = `avg_over_time(pod_pvc_allocation[%s])`
  161. queryPVHourlyCost = `avg_over_time(pv_hourly_cost[%s])`
  162. queryNSLabels = `avg_over_time(kube_namespace_labels[%s])`
  163. queryPodLabels = `avg_over_time(kube_pod_labels[%s])`
  164. queryDeploymentLabels = `avg_over_time(deployment_match_labels[%s])`
  165. queryStatefulsetLabels = `avg_over_time(statefulSet_match_labels[%s])`
  166. queryServiceLabels = `avg_over_time(service_selector_labels[%s])`
  167. queryZoneNetworkUsage = `sum(increase(kubecost_pod_network_egress_bytes_total{internet="false", sameZone="false", sameRegion="true"}[%s] %s)) by (namespace,pod_name,cluster_id) / 1024 / 1024 / 1024`
  168. queryRegionNetworkUsage = `sum(increase(kubecost_pod_network_egress_bytes_total{internet="false", sameZone="false", sameRegion="false"}[%s] %s)) by (namespace,pod_name,cluster_id) / 1024 / 1024 / 1024`
  169. queryInternetNetworkUsage = `sum(increase(kubecost_pod_network_egress_bytes_total{internet="true"}[%s] %s)) by (namespace,pod_name,cluster_id) / 1024 / 1024 / 1024`
  170. normalizationStr = `max(count_over_time(kube_pod_container_resource_requests_memory_bytes{}[%s] %s))`
  171. )
  172. type PrometheusMetadata struct {
  173. Running bool `json:"running"`
  174. KubecostDataExists bool `json:"kubecostDataExists"`
  175. }
  176. // ValidatePrometheus tells the model what data prometheus has on it.
  177. func ValidatePrometheus(cli prometheusClient.Client, isThanos bool) (*PrometheusMetadata, error) {
  178. q := "up"
  179. if isThanos {
  180. q += " offset 3h"
  181. }
  182. data, err := Query(cli, q)
  183. if err != nil {
  184. return &PrometheusMetadata{
  185. Running: false,
  186. KubecostDataExists: false,
  187. }, err
  188. }
  189. v, kcmetrics, err := getUptimeData(data)
  190. if err != nil {
  191. return &PrometheusMetadata{
  192. Running: false,
  193. KubecostDataExists: false,
  194. }, err
  195. }
  196. if len(v) > 0 {
  197. return &PrometheusMetadata{
  198. Running: true,
  199. KubecostDataExists: kcmetrics,
  200. }, nil
  201. } else {
  202. return &PrometheusMetadata{
  203. Running: false,
  204. KubecostDataExists: false,
  205. }, fmt.Errorf("No running jobs found on Prometheus at %s", cli.URL(epQuery, nil).Path)
  206. }
  207. }
  208. func getUptimeData(qr interface{}) ([]*Vector, bool, error) {
  209. data, ok := qr.(map[string]interface{})["data"]
  210. if !ok {
  211. e, err := wrapPrometheusError(qr)
  212. if err != nil {
  213. return nil, false, err
  214. }
  215. return nil, false, fmt.Errorf(e)
  216. }
  217. r, ok := data.(map[string]interface{})["result"]
  218. if !ok {
  219. return nil, false, fmt.Errorf("Improperly formatted data from prometheus, data has no result field")
  220. }
  221. results, ok := r.([]interface{})
  222. if !ok {
  223. return nil, false, fmt.Errorf("Improperly formatted results from prometheus, result field is not a slice")
  224. }
  225. jobData := []*Vector{}
  226. kubecostMetrics := false
  227. for _, val := range results {
  228. // For now, just do this for validation. TODO: This can be parsed to figure out the exact running jobs.
  229. metrics, ok := val.(map[string]interface{})["metric"].(map[string]interface{})
  230. if !ok {
  231. return nil, false, fmt.Errorf("Prometheus vector does not have metric labels")
  232. }
  233. jobname, ok := metrics["job"]
  234. if !ok {
  235. return nil, false, fmt.Errorf("up query does not have job names")
  236. }
  237. if jobname == "kubecost" {
  238. kubecostMetrics = true
  239. }
  240. value, ok := val.(map[string]interface{})["value"]
  241. if !ok {
  242. return nil, false, fmt.Errorf("Improperly formatted results from prometheus, value is not a field in the vector")
  243. }
  244. dataPoint, ok := value.([]interface{})
  245. if !ok || len(dataPoint) != 2 {
  246. return nil, false, fmt.Errorf("Improperly formatted datapoint from Prometheus")
  247. }
  248. strVal := dataPoint[1].(string)
  249. v, _ := strconv.ParseFloat(strVal, 64)
  250. toReturn := &Vector{
  251. Timestamp: dataPoint[0].(float64),
  252. Value: v,
  253. }
  254. jobData = append(jobData, toReturn)
  255. }
  256. return jobData, kubecostMetrics, nil
  257. }
  258. func ComputeUptimes(cli prometheusClient.Client) (map[string]float64, error) {
  259. res, err := Query(cli, `container_start_time_seconds{container_name != "POD",container_name != ""}`)
  260. if err != nil {
  261. return nil, err
  262. }
  263. vectors, err := GetContainerMetricVector(res, false, 0, os.Getenv(clusterIDKey))
  264. if err != nil {
  265. return nil, err
  266. }
  267. results := make(map[string]float64)
  268. for key, vector := range vectors {
  269. if err != nil {
  270. return nil, err
  271. }
  272. val := vector[0].Value
  273. uptime := time.Now().Sub(time.Unix(int64(val), 0)).Seconds()
  274. results[key] = uptime
  275. }
  276. return results, nil
  277. }
  278. func (cm *CostModel) ComputeCostData(cli prometheusClient.Client, clientset kubernetes.Interface, cp costAnalyzerCloud.Provider, window string, offset string, filterNamespace string) (map[string]*CostData, error) {
  279. queryRAMRequests := fmt.Sprintf(queryRAMRequestsStr, window, offset, window, offset)
  280. queryRAMUsage := fmt.Sprintf(queryRAMUsageStr, window, offset, window, offset)
  281. queryCPURequests := fmt.Sprintf(queryCPURequestsStr, window, offset, window, offset)
  282. queryCPUUsage := fmt.Sprintf(queryCPUUsageStr, window, offset)
  283. queryGPURequests := fmt.Sprintf(queryGPURequestsStr, window, offset, window, offset, window, offset)
  284. queryPVRequests := fmt.Sprintf(queryPVRequestsStr)
  285. queryNetZoneRequests := fmt.Sprintf(queryZoneNetworkUsage, window, "")
  286. queryNetRegionRequests := fmt.Sprintf(queryRegionNetworkUsage, window, "")
  287. queryNetInternetRequests := fmt.Sprintf(queryInternetNetworkUsage, window, "")
  288. normalization := fmt.Sprintf(normalizationStr, window, offset)
  289. // Cluster ID is specific to the source cluster
  290. clusterID := os.Getenv(clusterIDKey)
  291. var wg sync.WaitGroup
  292. wg.Add(11)
  293. var promErr error
  294. var resultRAMRequests interface{}
  295. go func() {
  296. resultRAMRequests, promErr = Query(cli, queryRAMRequests)
  297. defer wg.Done()
  298. }()
  299. var resultRAMUsage interface{}
  300. go func() {
  301. resultRAMUsage, promErr = Query(cli, queryRAMUsage)
  302. defer wg.Done()
  303. }()
  304. var resultCPURequests interface{}
  305. go func() {
  306. resultCPURequests, promErr = Query(cli, queryCPURequests)
  307. defer wg.Done()
  308. }()
  309. var resultCPUUsage interface{}
  310. go func() {
  311. resultCPUUsage, promErr = Query(cli, queryCPUUsage)
  312. defer wg.Done()
  313. }()
  314. var resultGPURequests interface{}
  315. go func() {
  316. resultGPURequests, promErr = Query(cli, queryGPURequests)
  317. defer wg.Done()
  318. }()
  319. var resultPVRequests interface{}
  320. go func() {
  321. resultPVRequests, promErr = Query(cli, queryPVRequests)
  322. defer wg.Done()
  323. }()
  324. var resultNetZoneRequests interface{}
  325. go func() {
  326. resultNetZoneRequests, promErr = Query(cli, queryNetZoneRequests)
  327. defer wg.Done()
  328. }()
  329. var resultNetRegionRequests interface{}
  330. go func() {
  331. resultNetRegionRequests, promErr = Query(cli, queryNetRegionRequests)
  332. defer wg.Done()
  333. }()
  334. var resultNetInternetRequests interface{}
  335. go func() {
  336. resultNetInternetRequests, promErr = Query(cli, queryNetInternetRequests)
  337. defer wg.Done()
  338. }()
  339. var normalizationResult interface{}
  340. go func() {
  341. normalizationResult, promErr = Query(cli, normalization)
  342. defer wg.Done()
  343. }()
  344. podDeploymentsMapping := make(map[string]map[string][]string)
  345. podServicesMapping := make(map[string]map[string][]string)
  346. namespaceLabelsMapping := make(map[string]map[string]string)
  347. podlist := cm.Cache.GetAllPods()
  348. var k8sErr error
  349. go func() {
  350. defer wg.Done()
  351. podDeploymentsMapping, k8sErr = getPodDeployments(cm.Cache, podlist, clusterID)
  352. if k8sErr != nil {
  353. return
  354. }
  355. podServicesMapping, k8sErr = getPodServices(cm.Cache, podlist, clusterID)
  356. if k8sErr != nil {
  357. return
  358. }
  359. namespaceLabelsMapping, k8sErr = getNamespaceLabels(cm.Cache, clusterID)
  360. if k8sErr != nil {
  361. return
  362. }
  363. }()
  364. wg.Wait()
  365. defer measureTime(time.Now(), "ComputeCostData: Processing Query Data")
  366. if promErr != nil {
  367. return nil, fmt.Errorf("Error querying prometheus: %s", promErr.Error())
  368. }
  369. if k8sErr != nil {
  370. return nil, fmt.Errorf("Error querying the kubernetes api: %s", k8sErr.Error())
  371. }
  372. normalizationValue, err := getNormalization(normalizationResult)
  373. if err != nil {
  374. return nil, fmt.Errorf("Error parsing normalization values: " + err.Error())
  375. }
  376. nodes, err := cm.GetNodeCost(cp)
  377. if err != nil {
  378. klog.V(1).Infof("[Warning] no Node cost model available: " + err.Error())
  379. return nil, err
  380. }
  381. pvClaimMapping, err := GetPVInfo(resultPVRequests, clusterID)
  382. if err != nil {
  383. klog.Infof("[Warning] Unable to get PV Data: %s", err.Error())
  384. }
  385. if pvClaimMapping != nil {
  386. err = addPVData(cm.Cache, pvClaimMapping, cp)
  387. if err != nil {
  388. return nil, err
  389. }
  390. }
  391. networkUsageMap, err := GetNetworkUsageData(resultNetZoneRequests, resultNetRegionRequests, resultNetInternetRequests, clusterID)
  392. if err != nil {
  393. klog.V(1).Infof("[Warning] Unable to get Network Cost Data: %s", err.Error())
  394. networkUsageMap = make(map[string]*NetworkUsageData)
  395. }
  396. containerNameCost := make(map[string]*CostData)
  397. containers := make(map[string]bool)
  398. RAMReqMap, err := GetContainerMetricVector(resultRAMRequests, true, normalizationValue, clusterID)
  399. if err != nil {
  400. return nil, err
  401. }
  402. for key := range RAMReqMap {
  403. containers[key] = true
  404. }
  405. RAMUsedMap, err := GetContainerMetricVector(resultRAMUsage, true, normalizationValue, clusterID)
  406. if err != nil {
  407. return nil, err
  408. }
  409. for key := range RAMUsedMap {
  410. containers[key] = true
  411. }
  412. CPUReqMap, err := GetContainerMetricVector(resultCPURequests, true, normalizationValue, clusterID)
  413. if err != nil {
  414. return nil, err
  415. }
  416. for key := range CPUReqMap {
  417. containers[key] = true
  418. }
  419. GPUReqMap, err := GetContainerMetricVector(resultGPURequests, true, normalizationValue, clusterID)
  420. if err != nil {
  421. return nil, err
  422. }
  423. for key := range GPUReqMap {
  424. containers[key] = true
  425. }
  426. CPUUsedMap, err := GetContainerMetricVector(resultCPUUsage, false, 0, clusterID) // No need to normalize here, as this comes from a counter
  427. if err != nil {
  428. return nil, err
  429. }
  430. for key := range CPUUsedMap {
  431. containers[key] = true
  432. }
  433. currentContainers := make(map[string]v1.Pod)
  434. for _, pod := range podlist {
  435. if pod.Status.Phase != v1.PodRunning {
  436. continue
  437. }
  438. cs, err := newContainerMetricsFromPod(*pod, clusterID)
  439. if err != nil {
  440. return nil, err
  441. }
  442. for _, c := range cs {
  443. containers[c.Key()] = true // captures any containers that existed for a time < a prometheus scrape interval. We currently charge 0 for this but should charge something.
  444. currentContainers[c.Key()] = *pod
  445. }
  446. }
  447. missingNodes := make(map[string]*costAnalyzerCloud.Node)
  448. missingContainers := make(map[string]*CostData)
  449. for key := range containers {
  450. if _, ok := containerNameCost[key]; ok {
  451. continue // because ordering is important for the allocation model (all PV's applied to the first), just dedupe if it's already been added.
  452. }
  453. if pod, ok := currentContainers[key]; ok {
  454. podName := pod.GetObjectMeta().GetName()
  455. ns := pod.GetObjectMeta().GetNamespace()
  456. nsLabels := namespaceLabelsMapping[ns+","+clusterID]
  457. podLabels := pod.GetObjectMeta().GetLabels()
  458. if podLabels == nil {
  459. podLabels = make(map[string]string)
  460. }
  461. for k, v := range nsLabels {
  462. podLabels[k] = v
  463. }
  464. nodeName := pod.Spec.NodeName
  465. var nodeData *costAnalyzerCloud.Node
  466. if _, ok := nodes[nodeName]; ok {
  467. nodeData = nodes[nodeName]
  468. }
  469. nsKey := ns + "," + clusterID
  470. var podDeployments []string
  471. if _, ok := podDeploymentsMapping[nsKey]; ok {
  472. if ds, ok := podDeploymentsMapping[nsKey][pod.GetObjectMeta().GetName()]; ok {
  473. podDeployments = ds
  474. } else {
  475. podDeployments = []string{}
  476. }
  477. }
  478. var podPVs []*PersistentVolumeClaimData
  479. podClaims := pod.Spec.Volumes
  480. for _, vol := range podClaims {
  481. if vol.PersistentVolumeClaim != nil {
  482. name := vol.PersistentVolumeClaim.ClaimName
  483. if pvClaim, ok := pvClaimMapping[ns+","+name+","+clusterID]; ok {
  484. podPVs = append(podPVs, pvClaim)
  485. }
  486. }
  487. }
  488. var podNetCosts []*Vector
  489. if usage, ok := networkUsageMap[ns+","+podName+","+clusterID]; ok {
  490. netCosts, err := GetNetworkCost(usage, cp)
  491. if err != nil {
  492. klog.V(3).Infof("Error pulling network costs: %s", err.Error())
  493. } else {
  494. podNetCosts = netCosts
  495. }
  496. }
  497. var podServices []string
  498. if _, ok := podServicesMapping[nsKey]; ok {
  499. if svcs, ok := podServicesMapping[nsKey][pod.GetObjectMeta().GetName()]; ok {
  500. podServices = svcs
  501. } else {
  502. podServices = []string{}
  503. }
  504. }
  505. for i, container := range pod.Spec.Containers {
  506. containerName := container.Name
  507. // recreate the key and look up data for this container
  508. newKey := newContainerMetricFromValues(ns, podName, containerName, pod.Spec.NodeName, clusterID).Key()
  509. RAMReqV, ok := RAMReqMap[newKey]
  510. if !ok {
  511. klog.V(4).Info("no RAM requests for " + newKey)
  512. RAMReqV = []*Vector{&Vector{}}
  513. }
  514. RAMUsedV, ok := RAMUsedMap[newKey]
  515. if !ok {
  516. klog.V(4).Info("no RAM usage for " + newKey)
  517. RAMUsedV = []*Vector{&Vector{}}
  518. }
  519. CPUReqV, ok := CPUReqMap[newKey]
  520. if !ok {
  521. klog.V(4).Info("no CPU requests for " + newKey)
  522. CPUReqV = []*Vector{&Vector{}}
  523. }
  524. GPUReqV, ok := GPUReqMap[newKey]
  525. if !ok {
  526. klog.V(4).Info("no GPU requests for " + newKey)
  527. GPUReqV = []*Vector{&Vector{}}
  528. }
  529. CPUUsedV, ok := CPUUsedMap[newKey]
  530. if !ok {
  531. klog.V(4).Info("no CPU usage for " + newKey)
  532. CPUUsedV = []*Vector{&Vector{}}
  533. }
  534. var pvReq []*PersistentVolumeClaimData
  535. var netReq []*Vector
  536. if i == 0 { // avoid duplicating by just assigning all claims to the first container.
  537. pvReq = podPVs
  538. netReq = podNetCosts
  539. }
  540. costs := &CostData{
  541. Name: containerName,
  542. PodName: podName,
  543. NodeName: nodeName,
  544. Namespace: ns,
  545. Deployments: podDeployments,
  546. Services: podServices,
  547. Daemonsets: getDaemonsetsOfPod(pod),
  548. Jobs: getJobsOfPod(pod),
  549. Statefulsets: getStatefulSetsOfPod(pod),
  550. NodeData: nodeData,
  551. RAMReq: RAMReqV,
  552. RAMUsed: RAMUsedV,
  553. CPUReq: CPUReqV,
  554. CPUUsed: CPUUsedV,
  555. GPUReq: GPUReqV,
  556. PVCData: pvReq,
  557. NetworkData: netReq,
  558. Labels: podLabels,
  559. NamespaceLabels: nsLabels,
  560. ClusterID: clusterID,
  561. }
  562. costs.CPUAllocation = getContainerAllocation(costs.CPUReq, costs.CPUUsed, "CPU")
  563. costs.RAMAllocation = getContainerAllocation(costs.RAMReq, costs.RAMUsed, "RAM")
  564. if filterNamespace == "" {
  565. containerNameCost[newKey] = costs
  566. } else if costs.Namespace == filterNamespace {
  567. containerNameCost[newKey] = costs
  568. }
  569. }
  570. } else {
  571. // The container has been deleted. Not all information is sent to prometheus via ksm, so fill out what we can without k8s api
  572. klog.V(4).Info("The container " + key + " has been deleted. Calculating allocation but resulting object will be missing data.")
  573. c, err := NewContainerMetricFromKey(key)
  574. if err != nil {
  575. return nil, err
  576. }
  577. RAMReqV, ok := RAMReqMap[key]
  578. if !ok {
  579. klog.V(4).Info("no RAM requests for " + key)
  580. RAMReqV = []*Vector{&Vector{}}
  581. }
  582. RAMUsedV, ok := RAMUsedMap[key]
  583. if !ok {
  584. klog.V(4).Info("no RAM usage for " + key)
  585. RAMUsedV = []*Vector{&Vector{}}
  586. }
  587. CPUReqV, ok := CPUReqMap[key]
  588. if !ok {
  589. klog.V(4).Info("no CPU requests for " + key)
  590. CPUReqV = []*Vector{&Vector{}}
  591. }
  592. GPUReqV, ok := GPUReqMap[key]
  593. if !ok {
  594. klog.V(4).Info("no GPU requests for " + key)
  595. GPUReqV = []*Vector{&Vector{}}
  596. }
  597. CPUUsedV, ok := CPUUsedMap[key]
  598. if !ok {
  599. klog.V(4).Info("no CPU usage for " + key)
  600. CPUUsedV = []*Vector{&Vector{}}
  601. }
  602. node, ok := nodes[c.NodeName]
  603. if !ok {
  604. klog.V(4).Infof("Node \"%s\" has been deleted from Kubernetes. Query historical data to get it.", c.NodeName)
  605. if n, ok := missingNodes[c.NodeName]; ok {
  606. node = n
  607. } else {
  608. node = &costAnalyzerCloud.Node{}
  609. missingNodes[c.NodeName] = node
  610. }
  611. }
  612. namespacelabels, ok := namespaceLabelsMapping[c.Namespace+","+c.ClusterID]
  613. if !ok {
  614. klog.V(3).Infof("Missing data for namespace %s", c.Namespace)
  615. }
  616. costs := &CostData{
  617. Name: c.ContainerName,
  618. PodName: c.PodName,
  619. NodeName: c.NodeName,
  620. NodeData: node,
  621. Namespace: c.Namespace,
  622. RAMReq: RAMReqV,
  623. RAMUsed: RAMUsedV,
  624. CPUReq: CPUReqV,
  625. CPUUsed: CPUUsedV,
  626. GPUReq: GPUReqV,
  627. NamespaceLabels: namespacelabels,
  628. ClusterID: c.ClusterID,
  629. }
  630. costs.CPUAllocation = getContainerAllocation(costs.CPUReq, costs.CPUUsed, "CPU")
  631. costs.RAMAllocation = getContainerAllocation(costs.RAMReq, costs.RAMUsed, "RAM")
  632. if filterNamespace == "" {
  633. containerNameCost[key] = costs
  634. missingContainers[key] = costs
  635. } else if costs.Namespace == filterNamespace {
  636. containerNameCost[key] = costs
  637. missingContainers[key] = costs
  638. }
  639. }
  640. }
  641. err = findDeletedNodeInfo(cli, missingNodes, window)
  642. if err != nil {
  643. klog.V(1).Infof("Error fetching historical node data: %s", err.Error())
  644. }
  645. err = findDeletedPodInfo(cli, missingContainers, window)
  646. if err != nil {
  647. klog.V(1).Infof("Error fetching historical pod data: %s", err.Error())
  648. }
  649. return containerNameCost, err
  650. }
  651. func findDeletedPodInfo(cli prometheusClient.Client, missingContainers map[string]*CostData, window string) error {
  652. if len(missingContainers) > 0 {
  653. queryHistoricalPodLabels := fmt.Sprintf(`kube_pod_labels{}[%s]`, window)
  654. podLabelsResult, err := Query(cli, queryHistoricalPodLabels)
  655. if err != nil {
  656. klog.V(1).Infof("Error parsing historical labels: %s", err.Error())
  657. }
  658. podLabels := make(map[string]map[string]string)
  659. if podLabelsResult != nil {
  660. podLabels, err = labelsFromPrometheusQuery(podLabelsResult)
  661. if err != nil {
  662. klog.V(1).Infof("Error parsing historical labels: %s", err.Error())
  663. }
  664. }
  665. for key, costData := range missingContainers {
  666. cm, _ := NewContainerMetricFromKey(key)
  667. labels, ok := podLabels[cm.PodName]
  668. if !ok {
  669. klog.V(1).Infof("Unable to find historical data for pod '%s'", cm.PodName)
  670. labels = make(map[string]string)
  671. }
  672. for k, v := range costData.NamespaceLabels {
  673. labels[k] = v
  674. }
  675. costData.Labels = labels
  676. }
  677. }
  678. return nil
  679. }
  680. func labelsFromPrometheusQuery(qr interface{}) (map[string]map[string]string, error) {
  681. toReturn := make(map[string]map[string]string)
  682. data, ok := qr.(map[string]interface{})["data"]
  683. if !ok {
  684. e, err := wrapPrometheusError(qr)
  685. if err != nil {
  686. return toReturn, err
  687. }
  688. return toReturn, fmt.Errorf(e)
  689. }
  690. for _, val := range data.(map[string]interface{})["result"].([]interface{}) {
  691. metricInterface, ok := val.(map[string]interface{})["metric"]
  692. if !ok {
  693. return toReturn, fmt.Errorf("Metric field does not exist in data result vector")
  694. }
  695. metricMap, ok := metricInterface.(map[string]interface{})
  696. if !ok {
  697. return toReturn, fmt.Errorf("Metric field is improperly formatted")
  698. }
  699. pod, ok := metricMap["pod"]
  700. if !ok {
  701. return toReturn, fmt.Errorf("pod field does not exist in data result vector")
  702. }
  703. podName, ok := pod.(string)
  704. if !ok {
  705. return toReturn, fmt.Errorf("pod field is improperly formatted")
  706. }
  707. for labelName, labelValue := range metricMap {
  708. parsedLabelName := labelName
  709. parsedLv, ok := labelValue.(string)
  710. if !ok {
  711. return toReturn, fmt.Errorf("label value is improperly formatted")
  712. }
  713. if strings.HasPrefix(parsedLabelName, "label_") {
  714. l := strings.Replace(parsedLabelName, "label_", "", 1)
  715. if podLabels, ok := toReturn[podName]; ok {
  716. podLabels[l] = parsedLv
  717. } else {
  718. toReturn[podName] = make(map[string]string)
  719. toReturn[podName][l] = parsedLv
  720. }
  721. }
  722. }
  723. }
  724. return toReturn, nil
  725. }
  726. func findDeletedNodeInfo(cli prometheusClient.Client, missingNodes map[string]*costAnalyzerCloud.Node, window string) error {
  727. if len(missingNodes) > 0 {
  728. defer measureTime(time.Now(), "Finding Deleted Node Info")
  729. q := make([]string, 0, len(missingNodes))
  730. for nodename := range missingNodes {
  731. klog.V(4).Infof("Finding data for deleted node %v", nodename)
  732. q = append(q, nodename)
  733. }
  734. l := strings.Join(q, "|")
  735. queryHistoricalCPUCost := fmt.Sprintf(`avg_over_time(node_cpu_hourly_cost{instance=~"%s"}[%s])`, l, window)
  736. queryHistoricalRAMCost := fmt.Sprintf(`avg_over_time(node_ram_hourly_cost{instance=~"%s"}[%s])`, l, window)
  737. queryHistoricalGPUCost := fmt.Sprintf(`avg_over_time(node_gpu_hourly_cost{instance=~"%s"}[%s])`, l, window)
  738. cpuCostResult, err := Query(cli, queryHistoricalCPUCost)
  739. if err != nil {
  740. return fmt.Errorf("Error fetching cpu cost data: " + err.Error())
  741. }
  742. ramCostResult, err := Query(cli, queryHistoricalRAMCost)
  743. if err != nil {
  744. return fmt.Errorf("Error fetching ram cost data: " + err.Error())
  745. }
  746. gpuCostResult, err := Query(cli, queryHistoricalGPUCost)
  747. if err != nil {
  748. return fmt.Errorf("Error fetching gpu cost data: " + err.Error())
  749. }
  750. cpuCosts, err := getCost(cpuCostResult)
  751. if err != nil {
  752. return err
  753. }
  754. ramCosts, err := getCost(ramCostResult)
  755. if err != nil {
  756. return err
  757. }
  758. gpuCosts, err := getCost(gpuCostResult)
  759. if err != nil {
  760. return err
  761. }
  762. if len(cpuCosts) == 0 {
  763. klog.V(1).Infof("Historical data for node prices not available. Ingest this server's /metrics endpoint to get that data.")
  764. }
  765. for node, costv := range cpuCosts {
  766. if _, ok := missingNodes[node]; ok {
  767. missingNodes[node].VCPUCost = fmt.Sprintf("%f", costv[0].Value)
  768. }
  769. }
  770. for node, costv := range ramCosts {
  771. if _, ok := missingNodes[node]; ok {
  772. missingNodes[node].RAMCost = fmt.Sprintf("%f", costv[0].Value)
  773. }
  774. }
  775. for node, costv := range gpuCosts {
  776. if _, ok := missingNodes[node]; ok {
  777. missingNodes[node].GPUCost = fmt.Sprintf("%f", costv[0].Value)
  778. }
  779. }
  780. }
  781. return nil
  782. }
  783. func getContainerAllocation(req []*Vector, used []*Vector, allocationType string) []*Vector {
  784. // The result of the normalize operation will be a new []*Vector to replace the requests
  785. allocationOp := func(r *Vector, x *float64, y *float64) bool {
  786. if x != nil && y != nil {
  787. x1 := *x
  788. if math.IsNaN(x1) {
  789. klog.V(1).Infof("[Warning] NaN value found during %s allocation calculation for requests.", allocationType)
  790. x1 = 0.0
  791. }
  792. y1 := *y
  793. if math.IsNaN(y1) {
  794. klog.V(1).Infof("[Warning] NaN value found during %s allocation calculation for used.", allocationType)
  795. y1 = 0.0
  796. }
  797. r.Value = math.Max(x1, y1)
  798. } else if x != nil {
  799. r.Value = *x
  800. } else if y != nil {
  801. r.Value = *y
  802. }
  803. return true
  804. }
  805. return ApplyVectorOp(req, used, allocationOp)
  806. }
  807. func addPVData(cache clustercache.ClusterCache, pvClaimMapping map[string]*PersistentVolumeClaimData, cloud costAnalyzerCloud.Provider) error {
  808. cfg, err := cloud.GetConfig()
  809. if err != nil {
  810. return err
  811. }
  812. storageClasses := cache.GetAllStorageClasses()
  813. storageClassMap := make(map[string]map[string]string)
  814. for _, storageClass := range storageClasses {
  815. params := storageClass.Parameters
  816. storageClassMap[storageClass.ObjectMeta.Name] = params
  817. if storageClass.GetAnnotations()["storageclass.kubernetes.io/is-default-class"] == "true" || storageClass.GetAnnotations()["storageclass.beta.kubernetes.io/is-default-class"] == "true" {
  818. storageClassMap["default"] = params
  819. storageClassMap[""] = params
  820. }
  821. }
  822. pvs := cache.GetAllPersistentVolumes()
  823. pvMap := make(map[string]*costAnalyzerCloud.PV)
  824. for _, pv := range pvs {
  825. parameters, ok := storageClassMap[pv.Spec.StorageClassName]
  826. if !ok {
  827. klog.V(4).Infof("Unable to find parameters for storage class \"%s\". Does pv \"%s\" have a storageClassName?", pv.Spec.StorageClassName, pv.Name)
  828. }
  829. cacPv := &costAnalyzerCloud.PV{
  830. Class: pv.Spec.StorageClassName,
  831. Region: pv.Labels[v1.LabelZoneRegion],
  832. Parameters: parameters,
  833. }
  834. err := GetPVCost(cacPv, pv, cloud)
  835. if err != nil {
  836. return err
  837. }
  838. pvMap[pv.Name] = cacPv
  839. }
  840. for _, pvc := range pvClaimMapping {
  841. if vol, ok := pvMap[pvc.VolumeName]; ok {
  842. pvc.Volume = vol
  843. } else {
  844. klog.V(4).Infof("PV not found, using default")
  845. pvc.Volume = &costAnalyzerCloud.PV{
  846. Cost: cfg.Storage,
  847. }
  848. }
  849. }
  850. return nil
  851. }
  852. func GetPVCost(pv *costAnalyzerCloud.PV, kpv *v1.PersistentVolume, cp costAnalyzerCloud.Provider) error {
  853. cfg, err := cp.GetConfig()
  854. if err != nil {
  855. return err
  856. }
  857. key := cp.GetPVKey(kpv, pv.Parameters)
  858. pvWithCost, err := cp.PVPricing(key)
  859. if err != nil {
  860. pv.Cost = cfg.Storage
  861. return err
  862. }
  863. if pvWithCost == nil || pvWithCost.Cost == "" {
  864. pv.Cost = cfg.Storage
  865. return nil // set default cost
  866. }
  867. pv.Cost = pvWithCost.Cost
  868. return nil
  869. }
  870. func (cm *CostModel) GetNodeCost(cp costAnalyzerCloud.Provider) (map[string]*costAnalyzerCloud.Node, error) {
  871. cfg, err := cp.GetConfig()
  872. if err != nil {
  873. return nil, err
  874. }
  875. nodeList := cm.Cache.GetAllNodes()
  876. nodes := make(map[string]*costAnalyzerCloud.Node)
  877. for _, n := range nodeList {
  878. name := n.GetObjectMeta().GetName()
  879. nodeLabels := n.GetObjectMeta().GetLabels()
  880. nodeLabels["providerID"] = n.Spec.ProviderID
  881. cnode, err := cp.NodePricing(cp.GetKey(nodeLabels))
  882. if err != nil {
  883. klog.V(1).Infof("Error getting node. Error: " + err.Error())
  884. nodes[name] = cnode
  885. continue
  886. }
  887. newCnode := *cnode
  888. var cpu float64
  889. if newCnode.VCPU == "" {
  890. cpu = float64(n.Status.Capacity.Cpu().Value())
  891. newCnode.VCPU = n.Status.Capacity.Cpu().String()
  892. } else {
  893. cpu, _ = strconv.ParseFloat(newCnode.VCPU, 64)
  894. }
  895. var ram float64
  896. if newCnode.RAM == "" {
  897. newCnode.RAM = n.Status.Capacity.Memory().String()
  898. }
  899. ram = float64(n.Status.Capacity.Memory().Value())
  900. newCnode.RAMBytes = fmt.Sprintf("%f", ram)
  901. if newCnode.GPU != "" && newCnode.GPUCost == "" {
  902. // We couldn't find a gpu cost, so fix cpu and ram, then accordingly
  903. klog.V(4).Infof("GPU without cost found for %s, calculating...", cp.GetKey(nodeLabels).Features())
  904. defaultCPU, err := strconv.ParseFloat(cfg.CPU, 64)
  905. if err != nil {
  906. klog.V(3).Infof("Could not parse default cpu price")
  907. return nil, err
  908. }
  909. defaultRAM, err := strconv.ParseFloat(cfg.RAM, 64)
  910. if err != nil {
  911. klog.V(3).Infof("Could not parse default ram price")
  912. return nil, err
  913. }
  914. defaultGPU, err := strconv.ParseFloat(cfg.GPU, 64)
  915. if err != nil {
  916. klog.V(3).Infof("Could not parse default gpu price")
  917. return nil, err
  918. }
  919. cpuToRAMRatio := defaultCPU / defaultRAM
  920. gpuToRAMRatio := defaultGPU / defaultRAM
  921. ramGB := ram / 1024 / 1024 / 1024
  922. ramMultiple := gpuToRAMRatio + cpu*cpuToRAMRatio + ramGB
  923. var nodePrice float64
  924. if newCnode.Cost != "" {
  925. nodePrice, err = strconv.ParseFloat(newCnode.Cost, 64)
  926. if err != nil {
  927. klog.V(3).Infof("Could not parse total node price")
  928. return nil, err
  929. }
  930. } else {
  931. nodePrice, err = strconv.ParseFloat(newCnode.VCPUCost, 64) // all the price was allocated the the CPU
  932. if err != nil {
  933. klog.V(3).Infof("Could not parse node vcpu price")
  934. return nil, err
  935. }
  936. }
  937. ramPrice := (nodePrice / ramMultiple)
  938. cpuPrice := ramPrice * cpuToRAMRatio
  939. gpuPrice := ramPrice * gpuToRAMRatio
  940. newCnode.VCPUCost = fmt.Sprintf("%f", cpuPrice)
  941. newCnode.RAMCost = fmt.Sprintf("%f", ramPrice)
  942. newCnode.RAMBytes = fmt.Sprintf("%f", ram)
  943. newCnode.GPUCost = fmt.Sprintf("%f", gpuPrice)
  944. } else if newCnode.RAMCost == "" {
  945. // We couldn't find a ramcost, so fix cpu and allocate ram accordingly
  946. klog.V(4).Infof("No RAM cost found for %s, calculating...", cp.GetKey(nodeLabels).Features())
  947. defaultCPU, err := strconv.ParseFloat(cfg.CPU, 64)
  948. if err != nil {
  949. klog.V(3).Infof("Could not parse default cpu price")
  950. return nil, err
  951. }
  952. defaultRAM, err := strconv.ParseFloat(cfg.RAM, 64)
  953. if err != nil {
  954. klog.V(3).Infof("Could not parse default ram price")
  955. return nil, err
  956. }
  957. cpuToRAMRatio := defaultCPU / defaultRAM
  958. ramGB := ram / 1024 / 1024 / 1024
  959. ramMultiple := cpu*cpuToRAMRatio + ramGB
  960. var nodePrice float64
  961. if newCnode.Cost != "" {
  962. nodePrice, err = strconv.ParseFloat(newCnode.Cost, 64)
  963. if err != nil {
  964. klog.V(3).Infof("Could not parse total node price")
  965. return nil, err
  966. }
  967. } else {
  968. nodePrice, err = strconv.ParseFloat(newCnode.VCPUCost, 64) // all the price was allocated the the CPU
  969. if err != nil {
  970. klog.V(3).Infof("Could not parse node vcpu price")
  971. return nil, err
  972. }
  973. }
  974. ramPrice := (nodePrice / ramMultiple)
  975. cpuPrice := ramPrice * cpuToRAMRatio
  976. newCnode.VCPUCost = fmt.Sprintf("%f", cpuPrice)
  977. newCnode.RAMCost = fmt.Sprintf("%f", ramPrice)
  978. newCnode.RAMBytes = fmt.Sprintf("%f", ram)
  979. klog.V(4).Infof("Computed \"%s\" RAM Cost := %v", name, newCnode.RAMCost)
  980. }
  981. nodes[name] = &newCnode
  982. }
  983. cp.ApplyReservedInstancePricing(nodes)
  984. return nodes, nil
  985. }
  986. func getPodServices(cache clustercache.ClusterCache, podList []*v1.Pod, clusterID string) (map[string]map[string][]string, error) {
  987. servicesList := cache.GetAllServices()
  988. podServicesMapping := make(map[string]map[string][]string)
  989. for _, service := range servicesList {
  990. namespace := service.GetObjectMeta().GetNamespace()
  991. name := service.GetObjectMeta().GetName()
  992. key := namespace + "," + clusterID
  993. if _, ok := podServicesMapping[key]; !ok {
  994. podServicesMapping[key] = make(map[string][]string)
  995. }
  996. s := labels.Set(service.Spec.Selector).AsSelectorPreValidated()
  997. for _, pod := range podList {
  998. labelSet := labels.Set(pod.GetObjectMeta().GetLabels())
  999. if s.Matches(labelSet) && pod.GetObjectMeta().GetNamespace() == namespace {
  1000. services, ok := podServicesMapping[key][pod.GetObjectMeta().GetName()]
  1001. if ok {
  1002. podServicesMapping[key][pod.GetObjectMeta().GetName()] = append(services, name)
  1003. } else {
  1004. podServicesMapping[key][pod.GetObjectMeta().GetName()] = []string{name}
  1005. }
  1006. }
  1007. }
  1008. }
  1009. return podServicesMapping, nil
  1010. }
  1011. func getPodStatefulsets(cache clustercache.ClusterCache, podList []*v1.Pod, clusterID string) (map[string]map[string][]string, error) {
  1012. ssList := cache.GetAllStatefulSets()
  1013. podSSMapping := make(map[string]map[string][]string) // namespace: podName: [deploymentNames]
  1014. for _, ss := range ssList {
  1015. namespace := ss.GetObjectMeta().GetNamespace()
  1016. name := ss.GetObjectMeta().GetName()
  1017. key := namespace + "," + clusterID
  1018. if _, ok := podSSMapping[key]; !ok {
  1019. podSSMapping[key] = make(map[string][]string)
  1020. }
  1021. s, err := metav1.LabelSelectorAsSelector(ss.Spec.Selector)
  1022. if err != nil {
  1023. klog.V(2).Infof("Error doing deployment label conversion: " + err.Error())
  1024. }
  1025. for _, pod := range podList {
  1026. labelSet := labels.Set(pod.GetObjectMeta().GetLabels())
  1027. if s.Matches(labelSet) && pod.GetObjectMeta().GetNamespace() == namespace {
  1028. sss, ok := podSSMapping[key][pod.GetObjectMeta().GetName()]
  1029. if ok {
  1030. podSSMapping[key][pod.GetObjectMeta().GetName()] = append(sss, name)
  1031. } else {
  1032. podSSMapping[key][pod.GetObjectMeta().GetName()] = []string{name}
  1033. }
  1034. }
  1035. }
  1036. }
  1037. return podSSMapping, nil
  1038. }
  1039. func getPodDeployments(cache clustercache.ClusterCache, podList []*v1.Pod, clusterID string) (map[string]map[string][]string, error) {
  1040. deploymentsList := cache.GetAllDeployments()
  1041. podDeploymentsMapping := make(map[string]map[string][]string) // namespace: podName: [deploymentNames]
  1042. for _, deployment := range deploymentsList {
  1043. namespace := deployment.GetObjectMeta().GetNamespace()
  1044. name := deployment.GetObjectMeta().GetName()
  1045. key := namespace + "," + clusterID
  1046. if _, ok := podDeploymentsMapping[key]; !ok {
  1047. podDeploymentsMapping[key] = make(map[string][]string)
  1048. }
  1049. s, err := metav1.LabelSelectorAsSelector(deployment.Spec.Selector)
  1050. if err != nil {
  1051. klog.V(2).Infof("Error doing deployment label conversion: " + err.Error())
  1052. }
  1053. for _, pod := range podList {
  1054. labelSet := labels.Set(pod.GetObjectMeta().GetLabels())
  1055. if s.Matches(labelSet) && pod.GetObjectMeta().GetNamespace() == namespace {
  1056. deployments, ok := podDeploymentsMapping[key][pod.GetObjectMeta().GetName()]
  1057. if ok {
  1058. podDeploymentsMapping[key][pod.GetObjectMeta().GetName()] = append(deployments, name)
  1059. } else {
  1060. podDeploymentsMapping[key][pod.GetObjectMeta().GetName()] = []string{name}
  1061. }
  1062. }
  1063. }
  1064. }
  1065. return podDeploymentsMapping, nil
  1066. }
  1067. func getPodDeploymentsWithMetrics(deploymentLabels map[string]map[string]string, podLabels map[string]map[string]string) (map[string]map[string][]string, error) {
  1068. podDeploymentsMapping := make(map[string]map[string][]string)
  1069. for depKey, depLabels := range deploymentLabels {
  1070. kt, err := NewKeyTuple(depKey)
  1071. if err != nil {
  1072. continue
  1073. }
  1074. namespace := kt.Namespace
  1075. name := kt.Key
  1076. clusterID := kt.ClusterID
  1077. key := namespace + "," + clusterID
  1078. if _, ok := podDeploymentsMapping[key]; !ok {
  1079. podDeploymentsMapping[key] = make(map[string][]string)
  1080. }
  1081. s := labels.Set(depLabels).AsSelectorPreValidated()
  1082. for podKey, pLabels := range podLabels {
  1083. pkey, err := NewKeyTuple(podKey)
  1084. if err != nil {
  1085. continue
  1086. }
  1087. podNamespace := pkey.Namespace
  1088. podName := pkey.Key
  1089. podClusterID := pkey.ClusterID
  1090. labelSet := labels.Set(pLabels)
  1091. if s.Matches(labelSet) && podNamespace == namespace && podClusterID == clusterID {
  1092. deployments, ok := podDeploymentsMapping[key][podName]
  1093. if ok {
  1094. podDeploymentsMapping[key][podName] = append(deployments, name)
  1095. } else {
  1096. podDeploymentsMapping[key][podName] = []string{name}
  1097. }
  1098. }
  1099. }
  1100. }
  1101. // Remove any duplicate data created by metric names
  1102. pruneDuplicateData(podDeploymentsMapping)
  1103. return podDeploymentsMapping, nil
  1104. }
  1105. func getPodServicesWithMetrics(serviceLabels map[string]map[string]string, podLabels map[string]map[string]string) (map[string]map[string][]string, error) {
  1106. podServicesMapping := make(map[string]map[string][]string)
  1107. for servKey, servLabels := range serviceLabels {
  1108. kt, err := NewKeyTuple(servKey)
  1109. if err != nil {
  1110. continue
  1111. }
  1112. namespace := kt.Namespace
  1113. name := kt.Key
  1114. clusterID := kt.ClusterID
  1115. key := namespace + "," + clusterID
  1116. if _, ok := podServicesMapping[key]; !ok {
  1117. podServicesMapping[key] = make(map[string][]string)
  1118. }
  1119. s := labels.Set(servLabels).AsSelectorPreValidated()
  1120. for podKey, pLabels := range podLabels {
  1121. pkey, err := NewKeyTuple(podKey)
  1122. if err != nil {
  1123. continue
  1124. }
  1125. podNamespace := pkey.Namespace
  1126. podName := pkey.Key
  1127. podClusterID := pkey.ClusterID
  1128. labelSet := labels.Set(pLabels)
  1129. if s.Matches(labelSet) && podNamespace == namespace && podClusterID == clusterID {
  1130. services, ok := podServicesMapping[key][podName]
  1131. if ok {
  1132. podServicesMapping[key][podName] = append(services, name)
  1133. } else {
  1134. podServicesMapping[key][podName] = []string{name}
  1135. }
  1136. }
  1137. }
  1138. }
  1139. // Remove any duplicate data created by metric names
  1140. pruneDuplicateData(podServicesMapping)
  1141. return podServicesMapping, nil
  1142. }
  1143. // This method alleviates an issue with metrics that used a '_' to replace '-' in deployment
  1144. // and service names. To avoid counting these as multiple deployments/services, we'll remove
  1145. // the '_' version. Not optimal, but takes care of the issue
  1146. func pruneDuplicateData(data map[string]map[string][]string) {
  1147. for _, podMap := range data {
  1148. for podName, values := range podMap {
  1149. podMap[podName] = pruneDuplicates(values)
  1150. }
  1151. }
  1152. }
  1153. // Determine if there is an underscore in the value of a slice. If so, replace _ with -, and then
  1154. // check to see if the result exists in the slice. If both are true, then we DO NOT include that
  1155. // original value in the new slice.
  1156. func pruneDuplicates(s []string) []string {
  1157. m := sliceToSet(s)
  1158. for _, v := range s {
  1159. if strings.Contains(v, "_") {
  1160. name := strings.Replace(v, "_", "-", -1)
  1161. if !m[name] {
  1162. m[name] = true
  1163. }
  1164. delete(m, v)
  1165. }
  1166. }
  1167. return setToSlice(m)
  1168. }
  1169. // Creates a map[string]bool containing the slice values as keys
  1170. func sliceToSet(s []string) map[string]bool {
  1171. m := make(map[string]bool)
  1172. for _, v := range s {
  1173. m[v] = true
  1174. }
  1175. return m
  1176. }
  1177. func setToSlice(m map[string]bool) []string {
  1178. var result []string
  1179. for k, _ := range m {
  1180. result = append(result, k)
  1181. }
  1182. return result
  1183. }
  1184. func costDataPassesFilters(costs *CostData, namespace string, cluster string) bool {
  1185. passesNamespace := namespace == "" || costs.Namespace == namespace
  1186. passesCluster := cluster == "" || costs.ClusterID == cluster
  1187. return passesNamespace && passesCluster
  1188. }
  1189. // Attempt to create a key for the request. Reduce the times to minutes in order to more easily group requests based on
  1190. // real time ranges. If for any reason, the key generation fails, return a uuid to ensure uniqueness.
  1191. func requestKeyFor(startString string, endString string, windowString string, filterNamespace string, filterCluster string, remoteEnabled bool) string {
  1192. fullLayout := "2006-01-02T15:04:05.000Z"
  1193. keyLayout := "2006-01-02T15:04Z"
  1194. sTime, err := time.Parse(fullLayout, startString)
  1195. if err != nil {
  1196. return uuid.New().String()
  1197. }
  1198. eTime, err := time.Parse(fullLayout, startString)
  1199. if err != nil {
  1200. return uuid.New().String()
  1201. }
  1202. startKey := sTime.Format(keyLayout)
  1203. endKey := eTime.Format(keyLayout)
  1204. return fmt.Sprintf("%s,%s,%s,%s,%s,%t", startKey, endKey, windowString, filterNamespace, filterCluster, remoteEnabled)
  1205. }
  1206. // Executes a range query for cost data
  1207. func (cm *CostModel) ComputeCostDataRange(cli prometheusClient.Client, clientset kubernetes.Interface, cp costAnalyzerCloud.Provider,
  1208. startString, endString, windowString string, filterNamespace string, filterCluster string, remoteEnabled bool) (map[string]*CostData, error) {
  1209. // Create a request key for request grouping. This key will be used to represent the cost-model result
  1210. // for the specific inputs to prevent multiple queries for identical data.
  1211. key := requestKeyFor(startString, endString, windowString, filterNamespace, filterCluster, remoteEnabled)
  1212. klog.V(4).Infof("ComputeCostDataRange with Key: %s", key)
  1213. // If there is already a request out that uses the same data, wait for it to return to share the results.
  1214. // Otherwise, start executing.
  1215. result, err, _ := cm.RequestGroup.Do(key, func() (interface{}, error) {
  1216. return cm.costDataRange(cli, clientset, cp, startString, endString, windowString, filterNamespace, filterCluster, remoteEnabled)
  1217. })
  1218. data, ok := result.(map[string]*CostData)
  1219. if !ok {
  1220. return nil, fmt.Errorf("Failed to cast result as map[string]*CostData")
  1221. }
  1222. return data, err
  1223. }
  1224. func (cm *CostModel) costDataRange(cli prometheusClient.Client, clientset kubernetes.Interface, cp costAnalyzerCloud.Provider,
  1225. startString, endString, windowString string, filterNamespace string, filterCluster string, remoteEnabled bool) (map[string]*CostData, error) {
  1226. queryRAMRequests := fmt.Sprintf(queryRAMRequestsStr, windowString, "", windowString, "")
  1227. queryRAMUsage := fmt.Sprintf(queryRAMUsageStr, windowString, "", windowString, "")
  1228. queryCPURequests := fmt.Sprintf(queryCPURequestsStr, windowString, "", windowString, "")
  1229. queryCPUUsage := fmt.Sprintf(queryCPUUsageStr, windowString, "")
  1230. queryRAMAlloc := fmt.Sprintf(queryRAMAllocation, windowString, "", windowString, "")
  1231. queryCPUAlloc := fmt.Sprintf(queryCPUAllocation, windowString, "", windowString, "")
  1232. queryGPURequests := fmt.Sprintf(queryGPURequestsStr, windowString, "", windowString, "", windowString, "")
  1233. queryPVRequests := fmt.Sprintf(queryPVRequestsStr)
  1234. queryNetZoneRequests := fmt.Sprintf(queryZoneNetworkUsage, windowString, "")
  1235. queryNetRegionRequests := fmt.Sprintf(queryRegionNetworkUsage, windowString, "")
  1236. queryNetInternetRequests := fmt.Sprintf(queryInternetNetworkUsage, windowString, "")
  1237. normalization := fmt.Sprintf(normalizationStr, windowString, "")
  1238. layout := "2006-01-02T15:04:05.000Z"
  1239. start, err := time.Parse(layout, startString)
  1240. if err != nil {
  1241. klog.V(1).Infof("Error parsing time " + startString + ". Error: " + err.Error())
  1242. return nil, err
  1243. }
  1244. end, err := time.Parse(layout, endString)
  1245. if err != nil {
  1246. klog.V(1).Infof("Error parsing time " + endString + ". Error: " + err.Error())
  1247. return nil, err
  1248. }
  1249. window, err := time.ParseDuration(windowString)
  1250. if err != nil {
  1251. klog.V(1).Infof("Error parsing time " + windowString + ". Error: " + err.Error())
  1252. return nil, err
  1253. }
  1254. clusterID := os.Getenv(clusterIDKey)
  1255. durHrs := end.Sub(start).Hours() + 1
  1256. if remoteEnabled == true {
  1257. remoteLayout := "2006-01-02T15:04:05Z"
  1258. remoteStartStr := start.Format(remoteLayout)
  1259. remoteEndStr := end.Format(remoteLayout)
  1260. klog.V(1).Infof("Using remote database for query from %s to %s with window %s", startString, endString, windowString)
  1261. return CostDataRangeFromSQL("", "", windowString, remoteStartStr, remoteEndStr)
  1262. }
  1263. numQueries := 20
  1264. var wg sync.WaitGroup
  1265. wg.Add(numQueries)
  1266. queryProfileStart := time.Now()
  1267. queryProfileCh := make(chan string, numQueries)
  1268. var promErr error
  1269. var resultRAMRequests interface{}
  1270. go func() {
  1271. defer wg.Done()
  1272. defer measureTimeAsync(time.Now(), "RAMRequests", queryProfileCh)
  1273. resultRAMRequests, promErr = QueryRange(cli, queryRAMRequests, start, end, window)
  1274. }()
  1275. var resultRAMUsage interface{}
  1276. go func() {
  1277. defer wg.Done()
  1278. defer measureTimeAsync(time.Now(), "RAMUsage", queryProfileCh)
  1279. resultRAMUsage, promErr = QueryRange(cli, queryRAMUsage, start, end, window)
  1280. }()
  1281. var resultCPURequests interface{}
  1282. go func() {
  1283. defer wg.Done()
  1284. defer measureTimeAsync(time.Now(), "CPURequests", queryProfileCh)
  1285. resultCPURequests, promErr = QueryRange(cli, queryCPURequests, start, end, window)
  1286. }()
  1287. var resultCPUUsage interface{}
  1288. go func() {
  1289. defer wg.Done()
  1290. defer measureTimeAsync(time.Now(), "CPUUsage", queryProfileCh)
  1291. resultCPUUsage, promErr = QueryRange(cli, queryCPUUsage, start, end, window)
  1292. }()
  1293. var resultRAMAllocations interface{}
  1294. go func() {
  1295. defer wg.Done()
  1296. defer measureTimeAsync(time.Now(), "RAMAllocations", queryProfileCh)
  1297. resultRAMAllocations, promErr = QueryRange(cli, queryRAMAlloc, start, end, window)
  1298. }()
  1299. var resultCPUAllocations interface{}
  1300. go func() {
  1301. defer wg.Done()
  1302. defer measureTimeAsync(time.Now(), "CPUAllocations", queryProfileCh)
  1303. resultCPUAllocations, promErr = QueryRange(cli, queryCPUAlloc, start, end, window)
  1304. }()
  1305. var resultGPURequests interface{}
  1306. go func() {
  1307. defer wg.Done()
  1308. defer measureTimeAsync(time.Now(), "GPURequests", queryProfileCh)
  1309. resultGPURequests, promErr = QueryRange(cli, queryGPURequests, start, end, window)
  1310. }()
  1311. var resultPVRequests interface{}
  1312. go func() {
  1313. defer wg.Done()
  1314. defer measureTimeAsync(time.Now(), "PVRequests", queryProfileCh)
  1315. resultPVRequests, promErr = QueryRange(cli, queryPVRequests, start, end, window)
  1316. }()
  1317. var resultNetZoneRequests interface{}
  1318. go func() {
  1319. defer wg.Done()
  1320. defer measureTimeAsync(time.Now(), "NetZoneRequests", queryProfileCh)
  1321. resultNetZoneRequests, promErr = QueryRange(cli, queryNetZoneRequests, start, end, window)
  1322. }()
  1323. var resultNetRegionRequests interface{}
  1324. go func() {
  1325. defer wg.Done()
  1326. defer measureTimeAsync(time.Now(), "NetRegionRequests", queryProfileCh)
  1327. resultNetRegionRequests, promErr = QueryRange(cli, queryNetRegionRequests, start, end, window)
  1328. }()
  1329. var resultNetInternetRequests interface{}
  1330. go func() {
  1331. defer wg.Done()
  1332. defer measureTimeAsync(time.Now(), "NetInternetRequests", queryProfileCh)
  1333. resultNetInternetRequests, promErr = QueryRange(cli, queryNetInternetRequests, start, end, window)
  1334. }()
  1335. var pvPodAllocationResults interface{}
  1336. go func() {
  1337. defer wg.Done()
  1338. defer measureTimeAsync(time.Now(), "PVPodAllocation", queryProfileCh)
  1339. pvPodAllocationResults, promErr = QueryRange(cli, fmt.Sprintf(queryPVCAllocation, windowString), start, end, window)
  1340. }()
  1341. var pvCostResults interface{}
  1342. go func() {
  1343. defer wg.Done()
  1344. defer measureTimeAsync(time.Now(), "PVCost", queryProfileCh)
  1345. pvCostResults, promErr = QueryRange(cli, fmt.Sprintf(queryPVHourlyCost, windowString), start, end, window)
  1346. }()
  1347. var nsLabelsResults interface{}
  1348. go func() {
  1349. defer wg.Done()
  1350. defer measureTimeAsync(time.Now(), "NSLabels", queryProfileCh)
  1351. nsLabelsResults, promErr = QueryRange(cli, fmt.Sprintf(queryNSLabels, windowString), start, end, window)
  1352. }()
  1353. var podLabelsResults interface{}
  1354. go func() {
  1355. defer wg.Done()
  1356. defer measureTimeAsync(time.Now(), "PodLabels", queryProfileCh)
  1357. podLabelsResults, promErr = QueryRange(cli, fmt.Sprintf(queryPodLabels, windowString), start, end, window)
  1358. }()
  1359. var serviceLabelsResults interface{}
  1360. go func() {
  1361. defer wg.Done()
  1362. defer measureTimeAsync(time.Now(), "ServiceLabels", queryProfileCh)
  1363. serviceLabelsResults, promErr = QueryRange(cli, fmt.Sprintf(queryServiceLabels, windowString), start, end, window)
  1364. }()
  1365. var deploymentLabelsResults interface{}
  1366. go func() {
  1367. defer wg.Done()
  1368. defer measureTimeAsync(time.Now(), "DeploymentLabels", queryProfileCh)
  1369. deploymentLabelsResults, promErr = QueryRange(cli, fmt.Sprintf(queryDeploymentLabels, windowString), start, end, window)
  1370. }()
  1371. var statefulsetLabelsResults interface{}
  1372. go func() {
  1373. defer wg.Done()
  1374. defer measureTimeAsync(time.Now(), "StatefulSetLabels", queryProfileCh)
  1375. statefulsetLabelsResults, promErr = QueryRange(cli, fmt.Sprintf(queryStatefulsetLabels, windowString), start, end, window)
  1376. }()
  1377. var normalizationResults interface{}
  1378. go func() {
  1379. defer wg.Done()
  1380. defer measureTimeAsync(time.Now(), "Normalization", queryProfileCh)
  1381. normalizationResults, promErr = QueryRange(cli, normalization, start, end, window)
  1382. }()
  1383. podDeploymentsMapping := make(map[string]map[string][]string)
  1384. podStatefulsetsMapping := make(map[string]map[string][]string)
  1385. podServicesMapping := make(map[string]map[string][]string)
  1386. namespaceLabelsMapping := make(map[string]map[string]string)
  1387. podlist := cm.Cache.GetAllPods()
  1388. var k8sErr error
  1389. go func() {
  1390. defer wg.Done()
  1391. podDeploymentsMapping, k8sErr = getPodDeployments(cm.Cache, podlist, clusterID)
  1392. if k8sErr != nil {
  1393. return
  1394. }
  1395. podStatefulsetsMapping, k8sErr = getPodStatefulsets(cm.Cache, podlist, clusterID)
  1396. if k8sErr != nil {
  1397. return
  1398. }
  1399. podServicesMapping, k8sErr = getPodServices(cm.Cache, podlist, clusterID)
  1400. if k8sErr != nil {
  1401. return
  1402. }
  1403. namespaceLabelsMapping, k8sErr = getNamespaceLabels(cm.Cache, clusterID)
  1404. if k8sErr != nil {
  1405. return
  1406. }
  1407. }()
  1408. wg.Wait()
  1409. // collect all query profiling messages
  1410. close(queryProfileCh)
  1411. queryProfileBreakdown := ""
  1412. for msg := range queryProfileCh {
  1413. queryProfileBreakdown += "\n - " + msg
  1414. }
  1415. measureTime(queryProfileStart, fmt.Sprintf("costDataRange(%fh): Prom/k8s Queries: %s", durHrs, queryProfileBreakdown))
  1416. defer measureTime(time.Now(), fmt.Sprintf("costDataRange(%fh): Processing Query Data", durHrs))
  1417. if promErr != nil {
  1418. return nil, fmt.Errorf("Error querying prometheus: %s", promErr.Error())
  1419. }
  1420. if k8sErr != nil {
  1421. return nil, fmt.Errorf("Error querying the kubernetes api: %s", k8sErr.Error())
  1422. }
  1423. profileStart := time.Now()
  1424. normalizationValue, err := getNormalizations(normalizationResults)
  1425. if err != nil {
  1426. return nil, fmt.Errorf("error computing normalization for start=%s, end=%s, window=%s: %s",
  1427. start, end, window, err.Error())
  1428. }
  1429. measureTime(profileStart, fmt.Sprintf("costDataRange(%fh): compute normalizations", durHrs))
  1430. profileStart = time.Now()
  1431. nodes, err := cm.GetNodeCost(cp)
  1432. if err != nil {
  1433. klog.V(1).Infof("[Warning] no cost model available: " + err.Error())
  1434. return nil, err
  1435. }
  1436. measureTime(profileStart, fmt.Sprintf("costDataRange(%fh): GetNodeCost", durHrs))
  1437. profileStart = time.Now()
  1438. pvClaimMapping, err := GetPVInfo(resultPVRequests, clusterID)
  1439. if err != nil {
  1440. // Just log for compatibility with KSM less than 1.6
  1441. klog.Infof("Unable to get PV Data: %s", err.Error())
  1442. }
  1443. if pvClaimMapping != nil {
  1444. err = addPVData(cm.Cache, pvClaimMapping, cp)
  1445. if err != nil {
  1446. return nil, err
  1447. }
  1448. }
  1449. pvCostMapping, err := GetPVCostMetrics(pvCostResults, clusterID)
  1450. if err != nil {
  1451. klog.V(1).Infof("Unable to get PV Hourly Cost Data: %s", err.Error())
  1452. }
  1453. pvAllocationMapping, err := GetPVAllocationMetrics(pvPodAllocationResults, clusterID)
  1454. if err != nil {
  1455. klog.V(1).Infof("Unable to get PV Allocation Cost Data: %s", err.Error())
  1456. }
  1457. if pvAllocationMapping != nil {
  1458. addMetricPVData(pvAllocationMapping, pvCostMapping, cp)
  1459. }
  1460. measureTime(profileStart, fmt.Sprintf("costDataRange(%fh): process PV data", durHrs))
  1461. profileStart = time.Now()
  1462. nsLabels, err := GetNamespaceLabelsMetrics(nsLabelsResults, clusterID)
  1463. if err != nil {
  1464. klog.V(1).Infof("Unable to get Namespace Labels for Metrics: %s", err.Error())
  1465. }
  1466. if nsLabels != nil {
  1467. appendNamespaceLabels(namespaceLabelsMapping, nsLabels)
  1468. }
  1469. podLabels, err := GetPodLabelsMetrics(podLabelsResults, clusterID)
  1470. if err != nil {
  1471. klog.V(1).Infof("Unable to get Pod Labels for Metrics: %s", err.Error())
  1472. }
  1473. serviceLabels, err := GetServiceSelectorLabelsMetrics(serviceLabelsResults, clusterID)
  1474. if err != nil {
  1475. klog.V(1).Infof("Unable to get Service Selector Labels for Metrics: %s", err.Error())
  1476. }
  1477. deploymentLabels, err := GetDeploymentMatchLabelsMetrics(deploymentLabelsResults, clusterID)
  1478. if err != nil {
  1479. klog.V(1).Infof("Unable to get Deployment Match Labels for Metrics: %s", err.Error())
  1480. }
  1481. statefulsetLabels, err := GetStatefulsetMatchLabelsMetrics(statefulsetLabelsResults, clusterID)
  1482. if err != nil {
  1483. klog.V(1).Infof("Unable to get Deployment Match Labels for Metrics: %s", err.Error())
  1484. }
  1485. measureTime(profileStart, fmt.Sprintf("costDataRange(%fh): process labels", durHrs))
  1486. profileStart = time.Now()
  1487. podStatefulsetMetricsMapping, err := getPodDeploymentsWithMetrics(statefulsetLabels, podLabels)
  1488. if err != nil {
  1489. klog.V(1).Infof("Unable to get match Statefulset Labels Metrics to Pods: %s", err.Error())
  1490. }
  1491. appendLabelsList(podStatefulsetsMapping, podStatefulsetMetricsMapping)
  1492. podDeploymentsMetricsMapping, err := getPodDeploymentsWithMetrics(deploymentLabels, podLabels)
  1493. if err != nil {
  1494. klog.V(1).Infof("Unable to get match Deployment Labels Metrics to Pods: %s", err.Error())
  1495. }
  1496. appendLabelsList(podDeploymentsMapping, podDeploymentsMetricsMapping)
  1497. podServicesMetricsMapping, err := getPodServicesWithMetrics(serviceLabels, podLabels)
  1498. if err != nil {
  1499. klog.V(1).Infof("Unable to get match Service Labels Metrics to Pods: %s", err.Error())
  1500. }
  1501. appendLabelsList(podServicesMapping, podServicesMetricsMapping)
  1502. networkUsageMap, err := GetNetworkUsageData(resultNetZoneRequests, resultNetRegionRequests, resultNetInternetRequests, clusterID)
  1503. if err != nil {
  1504. klog.V(1).Infof("Unable to get Network Cost Data: %s", err.Error())
  1505. networkUsageMap = make(map[string]*NetworkUsageData)
  1506. }
  1507. measureTime(profileStart, fmt.Sprintf("costDataRange(%fh): process deployments, services, and network usage", durHrs))
  1508. profileStart = time.Now()
  1509. containerNameCost := make(map[string]*CostData)
  1510. containers := make(map[string]bool)
  1511. otherClusterPVRecorded := make(map[string]bool)
  1512. RAMReqMap, err := GetContainerMetricVectors(resultRAMRequests, true, normalizationValue, clusterID)
  1513. if err != nil {
  1514. return nil, err
  1515. }
  1516. for key := range RAMReqMap {
  1517. containers[key] = true
  1518. }
  1519. RAMUsedMap, err := GetContainerMetricVectors(resultRAMUsage, true, normalizationValue, clusterID)
  1520. if err != nil {
  1521. return nil, err
  1522. }
  1523. for key := range RAMUsedMap {
  1524. containers[key] = true
  1525. }
  1526. CPUReqMap, err := GetContainerMetricVectors(resultCPURequests, true, normalizationValue, clusterID)
  1527. if err != nil {
  1528. return nil, err
  1529. }
  1530. for key := range CPUReqMap {
  1531. containers[key] = true
  1532. }
  1533. CPUUsedMap, err := GetContainerMetricVectors(resultCPUUsage, false, normalizationValue, clusterID) // No need to normalize here, as this comes from a counter
  1534. if err != nil {
  1535. return nil, err
  1536. }
  1537. for key := range CPUUsedMap {
  1538. containers[key] = true
  1539. }
  1540. RAMAllocMap, err := GetContainerMetricVectors(resultRAMAllocations, true, normalizationValue, clusterID)
  1541. if err != nil {
  1542. return nil, err
  1543. }
  1544. for key := range RAMAllocMap {
  1545. containers[key] = true
  1546. }
  1547. CPUAllocMap, err := GetContainerMetricVectors(resultCPUAllocations, true, normalizationValue, clusterID)
  1548. if err != nil {
  1549. return nil, err
  1550. }
  1551. for key := range CPUAllocMap {
  1552. containers[key] = true
  1553. }
  1554. GPUReqMap, err := GetContainerMetricVectors(resultGPURequests, true, normalizationValue, clusterID)
  1555. if err != nil {
  1556. return nil, err
  1557. }
  1558. for key := range GPUReqMap {
  1559. containers[key] = true
  1560. }
  1561. measureTime(profileStart, fmt.Sprintf("costDataRange(%fh): GetContainerMetricVectors", durHrs))
  1562. profileStart = time.Now()
  1563. // Request metrics can show up after pod eviction and completion.
  1564. // This method synchronizes requests to allocations such that when
  1565. // allocation is 0, so are requests
  1566. applyAllocationToRequests(RAMAllocMap, RAMReqMap)
  1567. applyAllocationToRequests(CPUAllocMap, CPUReqMap)
  1568. currentContainers := make(map[string]v1.Pod)
  1569. for _, pod := range podlist {
  1570. if pod.Status.Phase != v1.PodRunning {
  1571. continue
  1572. }
  1573. cs, err := newContainerMetricsFromPod(*pod, clusterID)
  1574. if err != nil {
  1575. return nil, err
  1576. }
  1577. for _, c := range cs {
  1578. containers[c.Key()] = true // captures any containers that existed for a time < a prometheus scrape interval. We currently charge 0 for this but should charge something.
  1579. currentContainers[c.Key()] = *pod
  1580. }
  1581. }
  1582. measureTime(profileStart, fmt.Sprintf("costDataRange(%fh): applyAllocationToRequests", durHrs))
  1583. profileStart = time.Now()
  1584. missingNodes := make(map[string]*costAnalyzerCloud.Node)
  1585. missingContainers := make(map[string]*CostData)
  1586. for key := range containers {
  1587. if _, ok := containerNameCost[key]; ok {
  1588. continue // because ordering is important for the allocation model (all PV's applied to the first), just dedupe if it's already been added.
  1589. }
  1590. if pod, ok := currentContainers[key]; ok {
  1591. podName := pod.GetObjectMeta().GetName()
  1592. ns := pod.GetObjectMeta().GetNamespace()
  1593. nodeName := pod.Spec.NodeName
  1594. var nodeData *costAnalyzerCloud.Node
  1595. if _, ok := nodes[nodeName]; ok {
  1596. nodeData = nodes[nodeName]
  1597. }
  1598. nsKey := ns + "," + clusterID
  1599. var podDeployments []string
  1600. if _, ok := podDeploymentsMapping[nsKey]; ok {
  1601. if ds, ok := podDeploymentsMapping[nsKey][pod.GetObjectMeta().GetName()]; ok {
  1602. podDeployments = ds
  1603. } else {
  1604. podDeployments = []string{}
  1605. }
  1606. }
  1607. var podStatefulSets []string
  1608. if _, ok := podStatefulsetsMapping[nsKey]; ok {
  1609. if ds, ok := podStatefulsetsMapping[nsKey][pod.GetObjectMeta().GetName()]; ok {
  1610. podStatefulSets = ds
  1611. } else {
  1612. podStatefulSets = []string{}
  1613. }
  1614. }
  1615. var podPVs []*PersistentVolumeClaimData
  1616. podClaims := pod.Spec.Volumes
  1617. for _, vol := range podClaims {
  1618. if vol.PersistentVolumeClaim != nil {
  1619. name := vol.PersistentVolumeClaim.ClaimName
  1620. if pvClaim, ok := pvClaimMapping[ns+","+name+","+clusterID]; ok {
  1621. podPVs = append(podPVs, pvClaim)
  1622. }
  1623. }
  1624. }
  1625. var podNetCosts []*Vector
  1626. if usage, ok := networkUsageMap[ns+","+podName+","+clusterID]; ok {
  1627. netCosts, err := GetNetworkCost(usage, cp)
  1628. if err != nil {
  1629. klog.V(3).Infof("Error pulling network costs: %s", err.Error())
  1630. } else {
  1631. podNetCosts = netCosts
  1632. }
  1633. }
  1634. var podServices []string
  1635. if _, ok := podServicesMapping[nsKey]; ok {
  1636. if svcs, ok := podServicesMapping[nsKey][pod.GetObjectMeta().GetName()]; ok {
  1637. podServices = svcs
  1638. } else {
  1639. podServices = []string{}
  1640. }
  1641. }
  1642. nsLabels := namespaceLabelsMapping[nsKey]
  1643. podLabels := pod.GetObjectMeta().GetLabels()
  1644. if podLabels == nil {
  1645. podLabels = make(map[string]string)
  1646. }
  1647. for k, v := range nsLabels {
  1648. podLabels[k] = v
  1649. }
  1650. for i, container := range pod.Spec.Containers {
  1651. containerName := container.Name
  1652. newKey := newContainerMetricFromValues(ns, podName, containerName, pod.Spec.NodeName, clusterID).Key()
  1653. RAMReqV, ok := RAMReqMap[newKey]
  1654. if !ok {
  1655. klog.V(4).Info("no RAM requests for " + newKey)
  1656. RAMReqV = []*Vector{}
  1657. }
  1658. RAMUsedV, ok := RAMUsedMap[newKey]
  1659. if !ok {
  1660. klog.V(4).Info("no RAM usage for " + newKey)
  1661. RAMUsedV = []*Vector{}
  1662. }
  1663. CPUReqV, ok := CPUReqMap[newKey]
  1664. if !ok {
  1665. klog.V(4).Info("no CPU requests for " + newKey)
  1666. CPUReqV = []*Vector{}
  1667. }
  1668. CPUUsedV, ok := CPUUsedMap[newKey]
  1669. if !ok {
  1670. klog.V(4).Info("no CPU usage for " + newKey)
  1671. CPUUsedV = []*Vector{}
  1672. }
  1673. RAMAllocsV, ok := RAMAllocMap[newKey]
  1674. if !ok {
  1675. klog.V(4).Info("no RAM allocation for " + newKey)
  1676. RAMAllocsV = []*Vector{}
  1677. }
  1678. CPUAllocsV, ok := CPUAllocMap[newKey]
  1679. if !ok {
  1680. klog.V(4).Info("no CPU allocation for " + newKey)
  1681. CPUAllocsV = []*Vector{}
  1682. }
  1683. GPUReqV, ok := GPUReqMap[newKey]
  1684. if !ok {
  1685. klog.V(4).Info("no GPU requests for " + newKey)
  1686. GPUReqV = []*Vector{}
  1687. }
  1688. var pvReq []*PersistentVolumeClaimData
  1689. var netReq []*Vector
  1690. if i == 0 { // avoid duplicating by just assigning all claims to the first container.
  1691. pvReq = podPVs
  1692. netReq = podNetCosts
  1693. }
  1694. costs := &CostData{
  1695. Name: containerName,
  1696. PodName: podName,
  1697. NodeName: nodeName,
  1698. Namespace: ns,
  1699. Deployments: podDeployments,
  1700. Services: podServices,
  1701. Daemonsets: getDaemonsetsOfPod(pod),
  1702. Jobs: getJobsOfPod(pod),
  1703. Statefulsets: podStatefulSets,
  1704. NodeData: nodeData,
  1705. RAMReq: RAMReqV,
  1706. RAMUsed: RAMUsedV,
  1707. CPUReq: CPUReqV,
  1708. CPUUsed: CPUUsedV,
  1709. RAMAllocation: RAMAllocsV,
  1710. CPUAllocation: CPUAllocsV,
  1711. GPUReq: GPUReqV,
  1712. PVCData: pvReq,
  1713. Labels: podLabels,
  1714. NetworkData: netReq,
  1715. NamespaceLabels: nsLabels,
  1716. ClusterID: clusterID,
  1717. }
  1718. if costDataPassesFilters(costs, filterNamespace, filterCluster) {
  1719. containerNameCost[newKey] = costs
  1720. }
  1721. }
  1722. } else {
  1723. // The container has been deleted, or is from a different clusterID
  1724. // Not all information is sent to prometheus via ksm, so fill out what we can without k8s api
  1725. klog.V(4).Info("The container " + key + " has been deleted. Calculating allocation but resulting object will be missing data.")
  1726. c, _ := NewContainerMetricFromKey(key)
  1727. RAMReqV, ok := RAMReqMap[key]
  1728. if !ok {
  1729. klog.V(4).Info("no RAM requests for " + key)
  1730. RAMReqV = []*Vector{}
  1731. }
  1732. RAMUsedV, ok := RAMUsedMap[key]
  1733. if !ok {
  1734. klog.V(4).Info("no RAM usage for " + key)
  1735. RAMUsedV = []*Vector{}
  1736. }
  1737. CPUReqV, ok := CPUReqMap[key]
  1738. if !ok {
  1739. klog.V(4).Info("no CPU requests for " + key)
  1740. CPUReqV = []*Vector{}
  1741. }
  1742. CPUUsedV, ok := CPUUsedMap[key]
  1743. if !ok {
  1744. klog.V(4).Info("no CPU usage for " + key)
  1745. CPUUsedV = []*Vector{}
  1746. }
  1747. RAMAllocsV, ok := RAMAllocMap[key]
  1748. if !ok {
  1749. klog.V(4).Info("no RAM allocation for " + key)
  1750. RAMAllocsV = []*Vector{}
  1751. }
  1752. CPUAllocsV, ok := CPUAllocMap[key]
  1753. if !ok {
  1754. klog.V(4).Info("no CPU allocation for " + key)
  1755. CPUAllocsV = []*Vector{}
  1756. }
  1757. GPUReqV, ok := GPUReqMap[key]
  1758. if !ok {
  1759. klog.V(4).Info("no GPU requests for " + key)
  1760. GPUReqV = []*Vector{}
  1761. }
  1762. node, ok := nodes[c.NodeName]
  1763. if !ok {
  1764. klog.V(4).Infof("Node \"%s\" has been deleted from Kubernetes. Query historical data to get it.", c.NodeName)
  1765. if n, ok := missingNodes[c.NodeName]; ok {
  1766. node = n
  1767. } else {
  1768. node = &costAnalyzerCloud.Node{}
  1769. missingNodes[c.NodeName] = node
  1770. }
  1771. }
  1772. nsKey := c.Namespace + "," + c.ClusterID
  1773. podKey := c.Namespace + "," + c.PodName + "," + c.ClusterID
  1774. namespaceLabels, ok := namespaceLabelsMapping[nsKey]
  1775. if !ok {
  1776. klog.V(3).Infof("Missing data for namespace %s", c.Namespace)
  1777. }
  1778. pLabels := podLabels[podKey]
  1779. if pLabels == nil {
  1780. pLabels = make(map[string]string)
  1781. }
  1782. for k, v := range namespaceLabels {
  1783. pLabels[k] = v
  1784. }
  1785. var podDeployments []string
  1786. if _, ok := podDeploymentsMapping[nsKey]; ok {
  1787. if ds, ok := podDeploymentsMapping[nsKey][c.PodName]; ok {
  1788. podDeployments = ds
  1789. } else {
  1790. podDeployments = []string{}
  1791. }
  1792. }
  1793. var podServices []string
  1794. if _, ok := podServicesMapping[nsKey]; ok {
  1795. if svcs, ok := podServicesMapping[nsKey][c.PodName]; ok {
  1796. podServices = svcs
  1797. } else {
  1798. podServices = []string{}
  1799. }
  1800. }
  1801. var podPVs []*PersistentVolumeClaimData
  1802. var podNetCosts []*Vector
  1803. // For PVC data, we'll need to find the claim mapping and cost data. Will need to append
  1804. // cost data since that was populated by cluster data previously. We do this with
  1805. // the pod_pvc_allocation metric
  1806. podPVData, ok := pvAllocationMapping[podKey]
  1807. if !ok {
  1808. klog.V(4).Infof("Failed to locate pv allocation mapping for missing pod.")
  1809. }
  1810. // For network costs, we'll use existing map since it should still contain the
  1811. // correct data.
  1812. var podNetworkCosts []*Vector
  1813. if usage, ok := networkUsageMap[podKey]; ok {
  1814. netCosts, err := GetNetworkCost(usage, cp)
  1815. if err != nil {
  1816. klog.V(3).Infof("Error pulling network costs: %s", err.Error())
  1817. } else {
  1818. podNetworkCosts = netCosts
  1819. }
  1820. }
  1821. // Check to see if any other data has been recorded for this namespace, pod, clusterId
  1822. // Follow the pattern of only allowing claims data per pod
  1823. if !otherClusterPVRecorded[podKey] {
  1824. otherClusterPVRecorded[podKey] = true
  1825. podPVs = podPVData
  1826. podNetCosts = podNetworkCosts
  1827. }
  1828. costs := &CostData{
  1829. Name: c.ContainerName,
  1830. PodName: c.PodName,
  1831. NodeName: c.NodeName,
  1832. NodeData: node,
  1833. Namespace: c.Namespace,
  1834. Services: podServices,
  1835. Deployments: podDeployments,
  1836. RAMReq: RAMReqV,
  1837. RAMUsed: RAMUsedV,
  1838. CPUReq: CPUReqV,
  1839. CPUUsed: CPUUsedV,
  1840. RAMAllocation: RAMAllocsV,
  1841. CPUAllocation: CPUAllocsV,
  1842. GPUReq: GPUReqV,
  1843. Labels: pLabels,
  1844. NamespaceLabels: namespaceLabels,
  1845. PVCData: podPVs,
  1846. NetworkData: podNetCosts,
  1847. ClusterID: c.ClusterID,
  1848. }
  1849. if costDataPassesFilters(costs, filterNamespace, filterCluster) {
  1850. containerNameCost[key] = costs
  1851. missingContainers[key] = costs
  1852. }
  1853. }
  1854. }
  1855. measureTime(profileStart, fmt.Sprintf("costDataRange(%fh): build CostData map", durHrs))
  1856. w := end.Sub(start)
  1857. w += window
  1858. if w.Minutes() > 0 {
  1859. wStr := fmt.Sprintf("%dm", int(w.Minutes()))
  1860. err = findDeletedNodeInfo(cli, missingNodes, wStr)
  1861. if err != nil {
  1862. klog.V(1).Infof("Error fetching historical node data: %s", err.Error())
  1863. }
  1864. }
  1865. return containerNameCost, err
  1866. }
  1867. func applyAllocationToRequests(allocationMap map[string][]*Vector, requestMap map[string][]*Vector) {
  1868. // The result of the normalize operation will be a new []*Vector to replace the requests
  1869. normalizeOp := func(r *Vector, x *float64, y *float64) bool {
  1870. // Omit data (return false) if both x and y inputs don't exist
  1871. if x == nil || y == nil {
  1872. return false
  1873. }
  1874. // If the allocation value is 0, 0 out request value
  1875. if *x == 0 {
  1876. r.Value = 0
  1877. } else {
  1878. r.Value = *y
  1879. }
  1880. return true
  1881. }
  1882. // Run normalization on all request vectors in the mapping
  1883. for k, requests := range requestMap {
  1884. // Only run normalization where there are valid allocations
  1885. allocations, ok := allocationMap[k]
  1886. if !ok {
  1887. delete(requestMap, k)
  1888. continue
  1889. }
  1890. // Replace request map with normalized
  1891. requestMap[k] = ApplyVectorOp(allocations, requests, normalizeOp)
  1892. }
  1893. }
  1894. func addMetricPVData(pvAllocationMap map[string][]*PersistentVolumeClaimData, pvCostMap map[string]*costAnalyzerCloud.PV, cp costAnalyzerCloud.Provider) {
  1895. cfg, err := cp.GetConfig()
  1896. if err != nil {
  1897. klog.V(1).Infof("Failed to get provider config while adding pv metrics data.")
  1898. return
  1899. }
  1900. for _, pvcDataArray := range pvAllocationMap {
  1901. for _, pvcData := range pvcDataArray {
  1902. costKey := fmt.Sprintf("%s,%s", pvcData.VolumeName, pvcData.ClusterID)
  1903. pvCost, ok := pvCostMap[costKey]
  1904. if !ok {
  1905. pvcData.Volume = &costAnalyzerCloud.PV{
  1906. Cost: cfg.Storage,
  1907. }
  1908. continue
  1909. }
  1910. pvcData.Volume = pvCost
  1911. }
  1912. }
  1913. }
  1914. // Append labels into nsLabels iff the ns key doesn't already exist
  1915. func appendNamespaceLabels(nsLabels map[string]map[string]string, labels map[string]map[string]string) {
  1916. for k, v := range labels {
  1917. if _, ok := nsLabels[k]; !ok {
  1918. nsLabels[k] = v
  1919. }
  1920. }
  1921. }
  1922. func appendLabelsList(mainLabels map[string]map[string][]string, labels map[string]map[string][]string) {
  1923. for k, v := range labels {
  1924. mainLabels[k] = v
  1925. }
  1926. }
  1927. func getNamespaceLabels(cache clustercache.ClusterCache, clusterID string) (map[string]map[string]string, error) {
  1928. nsToLabels := make(map[string]map[string]string)
  1929. nss := cache.GetAllNamespaces()
  1930. for _, ns := range nss {
  1931. nsToLabels[ns.Name+","+clusterID] = ns.Labels
  1932. }
  1933. return nsToLabels, nil
  1934. }
  1935. func getDaemonsetsOfPod(pod v1.Pod) []string {
  1936. for _, ownerReference := range pod.ObjectMeta.OwnerReferences {
  1937. if ownerReference.Kind == "DaemonSet" {
  1938. return []string{ownerReference.Name}
  1939. }
  1940. }
  1941. return []string{}
  1942. }
  1943. func getJobsOfPod(pod v1.Pod) []string {
  1944. for _, ownerReference := range pod.ObjectMeta.OwnerReferences {
  1945. if ownerReference.Kind == "Job" {
  1946. return []string{ownerReference.Name}
  1947. }
  1948. }
  1949. return []string{}
  1950. }
  1951. func getStatefulSetsOfPod(pod v1.Pod) []string {
  1952. for _, ownerReference := range pod.ObjectMeta.OwnerReferences {
  1953. if ownerReference.Kind == "StatefulSet" {
  1954. return []string{ownerReference.Name}
  1955. }
  1956. }
  1957. return []string{}
  1958. }
  1959. type PersistentVolumeClaimData struct {
  1960. Class string `json:"class"`
  1961. Claim string `json:"claim"`
  1962. Namespace string `json:"namespace"`
  1963. ClusterID string `json:"clusterId"`
  1964. VolumeName string `json:"volumeName"`
  1965. Volume *costAnalyzerCloud.PV `json:"persistentVolume"`
  1966. Values []*Vector `json:"values"`
  1967. }
  1968. func getCost(qr interface{}) (map[string][]*Vector, error) {
  1969. toReturn := make(map[string][]*Vector)
  1970. result, err := NewQueryResults(qr)
  1971. if err != nil {
  1972. return toReturn, err
  1973. }
  1974. for _, val := range result {
  1975. instance, err := val.GetString("instance")
  1976. if err != nil {
  1977. return toReturn, err
  1978. }
  1979. toReturn[instance] = val.Values
  1980. }
  1981. return toReturn, nil
  1982. }
  1983. func QueryRange(cli prometheusClient.Client, query string, start, end time.Time, step time.Duration) (interface{}, error) {
  1984. u := cli.URL(epQueryRange, nil)
  1985. q := u.Query()
  1986. q.Set("query", query)
  1987. q.Set("start", start.Format(time.RFC3339Nano))
  1988. q.Set("end", end.Format(time.RFC3339Nano))
  1989. q.Set("step", strconv.FormatFloat(step.Seconds(), 'f', 3, 64))
  1990. u.RawQuery = q.Encode()
  1991. req, err := http.NewRequest(http.MethodPost, u.String(), nil)
  1992. if err != nil {
  1993. return nil, err
  1994. }
  1995. _, body, warnings, err := cli.Do(context.Background(), req)
  1996. for _, w := range warnings {
  1997. klog.V(3).Infof("%s", w)
  1998. }
  1999. if err != nil {
  2000. return nil, fmt.Errorf("Error %s fetching query %s", err.Error(), query)
  2001. }
  2002. var toReturn interface{}
  2003. err = json.Unmarshal(body, &toReturn)
  2004. if err != nil {
  2005. return nil, fmt.Errorf("Error %s fetching query %s", err.Error(), query)
  2006. }
  2007. return toReturn, err
  2008. }
  2009. func Query(cli prometheusClient.Client, query string) (interface{}, error) {
  2010. u := cli.URL(epQuery, nil)
  2011. q := u.Query()
  2012. q.Set("query", query)
  2013. u.RawQuery = q.Encode()
  2014. req, err := http.NewRequest(http.MethodPost, u.String(), nil)
  2015. if err != nil {
  2016. return nil, err
  2017. }
  2018. resp, body, warnings, err := cli.Do(context.Background(), req)
  2019. for _, w := range warnings {
  2020. klog.V(3).Infof("%s", w)
  2021. }
  2022. if err != nil {
  2023. if resp == nil {
  2024. return nil, fmt.Errorf("Error %s fetching query %s", err.Error(), query)
  2025. }
  2026. return nil, fmt.Errorf("%d Error %s fetching query %s", resp.StatusCode, err.Error(), query)
  2027. }
  2028. var toReturn interface{}
  2029. err = json.Unmarshal(body, &toReturn)
  2030. if err != nil {
  2031. return nil, fmt.Errorf("Error %s fetching query %s", err.Error(), query)
  2032. }
  2033. return toReturn, nil
  2034. }
  2035. //todo: don't cast, implement unmarshaler interface
  2036. func getNormalization(qr interface{}) (float64, error) {
  2037. queryResults, err := NewQueryResults(qr)
  2038. if err != nil {
  2039. return 0, err
  2040. }
  2041. if len(queryResults) > 0 {
  2042. values := queryResults[0].Values
  2043. if len(values) > 0 {
  2044. return values[0].Value, nil
  2045. }
  2046. return 0, fmt.Errorf("Improperly formatted datapoint from Prometheus")
  2047. }
  2048. return 0, fmt.Errorf("Normalization data is empty, kube-state-metrics or node-exporter may not be running")
  2049. }
  2050. //todo: don't cast, implement unmarshaler interface
  2051. func getNormalizations(qr interface{}) ([]*Vector, error) {
  2052. queryResults, err := NewQueryResults(qr)
  2053. if err != nil {
  2054. return nil, err
  2055. }
  2056. if len(queryResults) > 0 {
  2057. vectors := []*Vector{}
  2058. for _, value := range queryResults {
  2059. vectors = append(vectors, value.Values...)
  2060. }
  2061. return vectors, nil
  2062. }
  2063. return nil, fmt.Errorf("normalization data is empty: time window may be invalid or kube-state-metrics or node-exporter may not be running")
  2064. }
  2065. type ContainerMetric struct {
  2066. Namespace string
  2067. PodName string
  2068. ContainerName string
  2069. NodeName string
  2070. ClusterID string
  2071. }
  2072. func (c *ContainerMetric) Key() string {
  2073. return c.Namespace + "," + c.PodName + "," + c.ContainerName + "," + c.NodeName + "," + c.ClusterID
  2074. }
  2075. func NewContainerMetricFromKey(key string) (*ContainerMetric, error) {
  2076. s := strings.Split(key, ",")
  2077. if len(s) == 5 {
  2078. return &ContainerMetric{
  2079. Namespace: s[0],
  2080. PodName: s[1],
  2081. ContainerName: s[2],
  2082. NodeName: s[3],
  2083. ClusterID: s[4],
  2084. }, nil
  2085. }
  2086. return nil, fmt.Errorf("Not a valid key")
  2087. }
  2088. func newContainerMetricFromValues(ns string, podName string, containerName string, nodeName string, clusterId string) *ContainerMetric {
  2089. return &ContainerMetric{
  2090. Namespace: ns,
  2091. PodName: podName,
  2092. ContainerName: containerName,
  2093. NodeName: nodeName,
  2094. ClusterID: clusterId,
  2095. }
  2096. }
  2097. func newContainerMetricsFromPod(pod v1.Pod, clusterID string) ([]*ContainerMetric, error) {
  2098. podName := pod.GetObjectMeta().GetName()
  2099. ns := pod.GetObjectMeta().GetNamespace()
  2100. node := pod.Spec.NodeName
  2101. var cs []*ContainerMetric
  2102. for _, container := range pod.Spec.Containers {
  2103. containerName := container.Name
  2104. cs = append(cs, &ContainerMetric{
  2105. Namespace: ns,
  2106. PodName: podName,
  2107. ContainerName: containerName,
  2108. NodeName: node,
  2109. ClusterID: clusterID,
  2110. })
  2111. }
  2112. return cs, nil
  2113. }
  2114. func newContainerMetricFromPrometheus(metrics map[string]interface{}, defaultClusterID string) (*ContainerMetric, error) {
  2115. cName, ok := metrics["container_name"]
  2116. if !ok {
  2117. return nil, fmt.Errorf("Prometheus vector does not have container name")
  2118. }
  2119. containerName, ok := cName.(string)
  2120. if !ok {
  2121. return nil, fmt.Errorf("Prometheus vector does not have string container name")
  2122. }
  2123. pName, ok := metrics["pod_name"]
  2124. if !ok {
  2125. return nil, fmt.Errorf("Prometheus vector does not have pod name")
  2126. }
  2127. podName, ok := pName.(string)
  2128. if !ok {
  2129. return nil, fmt.Errorf("Prometheus vector does not have string pod name")
  2130. }
  2131. ns, ok := metrics["namespace"]
  2132. if !ok {
  2133. return nil, fmt.Errorf("Prometheus vector does not have namespace")
  2134. }
  2135. namespace, ok := ns.(string)
  2136. if !ok {
  2137. return nil, fmt.Errorf("Prometheus vector does not have string namespace")
  2138. }
  2139. node, ok := metrics["node"]
  2140. if !ok {
  2141. klog.V(4).Info("Prometheus vector does not have node name")
  2142. node = ""
  2143. }
  2144. nodeName, ok := node.(string)
  2145. if !ok {
  2146. return nil, fmt.Errorf("Prometheus vector does not have string node")
  2147. }
  2148. cid, ok := metrics["cluster_id"]
  2149. if !ok {
  2150. klog.V(4).Info("Prometheus vector does not have cluster id")
  2151. cid = defaultClusterID
  2152. }
  2153. clusterID, ok := cid.(string)
  2154. if !ok {
  2155. return nil, fmt.Errorf("Prometheus vector does not have string cluster_id")
  2156. }
  2157. return &ContainerMetric{
  2158. ContainerName: containerName,
  2159. PodName: podName,
  2160. Namespace: namespace,
  2161. NodeName: nodeName,
  2162. ClusterID: clusterID,
  2163. }, nil
  2164. }
  2165. type KeyTuple struct {
  2166. Namespace string
  2167. Key string
  2168. ClusterID string
  2169. }
  2170. func NewKeyTuple(key string) (*KeyTuple, error) {
  2171. r := strings.Split(key, ",")
  2172. if len(r) != 3 {
  2173. return nil, fmt.Errorf("NewKeyTuple() Provided key not containing exactly 3 components.")
  2174. }
  2175. return &KeyTuple{
  2176. Namespace: r[0],
  2177. Key: r[1],
  2178. ClusterID: r[2],
  2179. }, nil
  2180. }
  2181. func GetContainerMetricVector(qr interface{}, normalize bool, normalizationValue float64, defaultClusterID string) (map[string][]*Vector, error) {
  2182. result, err := NewQueryResults(qr)
  2183. if err != nil {
  2184. return nil, err
  2185. }
  2186. containerData := make(map[string][]*Vector)
  2187. for _, val := range result {
  2188. containerMetric, err := newContainerMetricFromPrometheus(val.Metric, defaultClusterID)
  2189. if err != nil {
  2190. return nil, err
  2191. }
  2192. if normalize && normalizationValue != 0 {
  2193. for _, v := range val.Values {
  2194. v.Value = v.Value / normalizationValue
  2195. }
  2196. }
  2197. containerData[containerMetric.Key()] = val.Values
  2198. }
  2199. return containerData, nil
  2200. }
  2201. func GetContainerMetricVectors(qr interface{}, normalize bool, normalizationValues []*Vector, defaultClusterID string) (map[string][]*Vector, error) {
  2202. result, err := NewQueryResults(qr)
  2203. if err != nil {
  2204. return nil, err
  2205. }
  2206. containerData := make(map[string][]*Vector)
  2207. for _, val := range result {
  2208. containerMetric, err := newContainerMetricFromPrometheus(val.Metric, defaultClusterID)
  2209. if err != nil {
  2210. return nil, err
  2211. }
  2212. normalizedVectors := NormalizeVectorByVector(val.Values, normalizationValues)
  2213. containerData[containerMetric.Key()] = normalizedVectors
  2214. }
  2215. return containerData, nil
  2216. }
  2217. func wrapPrometheusError(qr interface{}) (string, error) {
  2218. e, ok := qr.(map[string]interface{})["error"]
  2219. if !ok {
  2220. return "", fmt.Errorf("Unexpected response from Prometheus")
  2221. }
  2222. eStr, ok := e.(string)
  2223. return eStr, nil
  2224. }
  2225. func measureTime(start time.Time, name string) {
  2226. elapsed := time.Since(start)
  2227. klog.V(3).Infof("[Profiler] %s: %s", elapsed, name)
  2228. }
  2229. func measureTimeAsync(start time.Time, name string, ch chan string) {
  2230. ch <- fmt.Sprintf("%s took %s", name, time.Since(start))
  2231. }