243 lines
8.2 KiB
Go
243 lines
8.2 KiB
Go
package kubernetes
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import (
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"encoding/json"
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"fmt"
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"io/ioutil"
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"net/http"
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"net/url"
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"sync"
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"time"
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"github.com/influxdata/telegraf"
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"github.com/influxdata/telegraf/internal"
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"github.com/influxdata/telegraf/internal/errchan"
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"github.com/influxdata/telegraf/registry/inputs"
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)
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// Kubernetes represents the config object for the plugin
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type Kubernetes struct {
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URL string
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// Bearer Token authorization file path
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BearerToken string `toml:"bearer_token"`
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// Path to CA file
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SSLCA string `toml:"ssl_ca"`
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// Path to host cert file
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SSLCert string `toml:"ssl_cert"`
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// Path to cert key file
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SSLKey string `toml:"ssl_key"`
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// Use SSL but skip chain & host verification
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InsecureSkipVerify bool
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RoundTripper http.RoundTripper
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}
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var sampleConfig = `
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## URL for the kubelet
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url = "http://1.1.1.1:10255"
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## Use bearer token for authorization
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# bearer_token = /path/to/bearer/token
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## Optional SSL Config
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# ssl_ca = /path/to/cafile
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# ssl_cert = /path/to/certfile
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# ssl_key = /path/to/keyfile
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## Use SSL but skip chain & host verification
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# insecure_skip_verify = false
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`
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const (
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summaryEndpoint = `%s/stats/summary`
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)
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func init() {
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inputs.Add("kubernetes", func() telegraf.Input {
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return &Kubernetes{}
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})
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}
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//SampleConfig returns a sample config
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func (k *Kubernetes) SampleConfig() string {
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return sampleConfig
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}
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//Description returns the description of this plugin
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func (k *Kubernetes) Description() string {
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return "Read metrics from the kubernetes kubelet api"
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}
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//Gather collects kubernetes metrics from a given URL
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func (k *Kubernetes) Gather(acc telegraf.Accumulator) error {
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var wg sync.WaitGroup
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errChan := errchan.New(1)
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wg.Add(1)
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go func(k *Kubernetes) {
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defer wg.Done()
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errChan.C <- k.gatherSummary(k.URL, acc)
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}(k)
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wg.Wait()
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return errChan.Error()
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}
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func buildURL(endpoint string, base string) (*url.URL, error) {
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u := fmt.Sprintf(endpoint, base)
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addr, err := url.Parse(u)
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if err != nil {
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return nil, fmt.Errorf("Unable to parse address '%s': %s", u, err)
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}
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return addr, nil
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}
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func (k *Kubernetes) gatherSummary(baseURL string, acc telegraf.Accumulator) error {
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url := fmt.Sprintf("%s/stats/summary", baseURL)
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var req, err = http.NewRequest("GET", url, nil)
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var token []byte
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var resp *http.Response
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tlsCfg, err := internal.GetTLSConfig(k.SSLCert, k.SSLKey, k.SSLCA, k.InsecureSkipVerify)
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if err != nil {
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return err
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}
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if k.RoundTripper == nil {
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k.RoundTripper = &http.Transport{
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TLSHandshakeTimeout: 5 * time.Second,
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TLSClientConfig: tlsCfg,
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ResponseHeaderTimeout: time.Duration(3 * time.Second),
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}
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}
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if k.BearerToken != "" {
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token, err = ioutil.ReadFile(k.BearerToken)
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if err != nil {
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return err
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}
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req.Header.Set("Authorization", "Bearer "+string(token))
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}
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resp, err = k.RoundTripper.RoundTrip(req)
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if err != nil {
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return fmt.Errorf("error making HTTP request to %s: %s", url, err)
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}
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defer resp.Body.Close()
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if resp.StatusCode != http.StatusOK {
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return fmt.Errorf("%s returned HTTP status %s", url, resp.Status)
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}
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summaryMetrics := &SummaryMetrics{}
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err = json.NewDecoder(resp.Body).Decode(summaryMetrics)
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if err != nil {
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return fmt.Errorf(`Error parsing response: %s`, err)
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}
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buildSystemContainerMetrics(summaryMetrics, acc)
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buildNodeMetrics(summaryMetrics, acc)
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buildPodMetrics(summaryMetrics, acc)
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return nil
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}
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func buildSystemContainerMetrics(summaryMetrics *SummaryMetrics, acc telegraf.Accumulator) {
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for _, container := range summaryMetrics.Node.SystemContainers {
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tags := map[string]string{
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"node_name": summaryMetrics.Node.NodeName,
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"container_name": container.Name,
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}
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fields := make(map[string]interface{})
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fields["cpu_usage_nanocores"] = container.CPU.UsageNanoCores
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fields["cpu_usage_core_nanoseconds"] = container.CPU.UsageCoreNanoSeconds
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fields["memory_usage_bytes"] = container.Memory.UsageBytes
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fields["memory_working_set_bytes"] = container.Memory.WorkingSetBytes
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fields["memory_rss_bytes"] = container.Memory.RSSBytes
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fields["memory_page_faults"] = container.Memory.PageFaults
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fields["memory_major_page_faults"] = container.Memory.MajorPageFaults
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fields["rootfs_available_bytes"] = container.RootFS.AvailableBytes
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fields["rootfs_capacity_bytes"] = container.RootFS.CapacityBytes
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fields["logsfs_avaialble_bytes"] = container.LogsFS.AvailableBytes
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fields["logsfs_capacity_bytes"] = container.LogsFS.CapacityBytes
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acc.AddFields("kubernetes_system_container", fields, tags)
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}
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}
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func buildNodeMetrics(summaryMetrics *SummaryMetrics, acc telegraf.Accumulator) {
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tags := map[string]string{
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"node_name": summaryMetrics.Node.NodeName,
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}
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fields := make(map[string]interface{})
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fields["cpu_usage_nanocores"] = summaryMetrics.Node.CPU.UsageNanoCores
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fields["cpu_usage_core_nanoseconds"] = summaryMetrics.Node.CPU.UsageCoreNanoSeconds
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fields["memory_available_bytes"] = summaryMetrics.Node.Memory.AvailableBytes
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fields["memory_usage_bytes"] = summaryMetrics.Node.Memory.UsageBytes
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fields["memory_working_set_bytes"] = summaryMetrics.Node.Memory.WorkingSetBytes
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fields["memory_rss_bytes"] = summaryMetrics.Node.Memory.RSSBytes
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fields["memory_page_faults"] = summaryMetrics.Node.Memory.PageFaults
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fields["memory_major_page_faults"] = summaryMetrics.Node.Memory.MajorPageFaults
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fields["network_rx_bytes"] = summaryMetrics.Node.Network.RXBytes
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fields["network_rx_errors"] = summaryMetrics.Node.Network.RXErrors
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fields["network_tx_bytes"] = summaryMetrics.Node.Network.TXBytes
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fields["network_tx_errors"] = summaryMetrics.Node.Network.TXErrors
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fields["fs_available_bytes"] = summaryMetrics.Node.FileSystem.AvailableBytes
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fields["fs_capacity_bytes"] = summaryMetrics.Node.FileSystem.CapacityBytes
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fields["fs_used_bytes"] = summaryMetrics.Node.FileSystem.UsedBytes
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fields["runtime_image_fs_available_bytes"] = summaryMetrics.Node.Runtime.ImageFileSystem.AvailableBytes
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fields["runtime_image_fs_capacity_bytes"] = summaryMetrics.Node.Runtime.ImageFileSystem.CapacityBytes
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fields["runtime_image_fs_used_bytes"] = summaryMetrics.Node.Runtime.ImageFileSystem.UsedBytes
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acc.AddFields("kubernetes_node", fields, tags)
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}
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func buildPodMetrics(summaryMetrics *SummaryMetrics, acc telegraf.Accumulator) {
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for _, pod := range summaryMetrics.Pods {
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for _, container := range pod.Containers {
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tags := map[string]string{
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"node_name": summaryMetrics.Node.NodeName,
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"namespace": pod.PodRef.Namespace,
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"container_name": container.Name,
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"pod_name": pod.PodRef.Name,
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}
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fields := make(map[string]interface{})
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fields["cpu_usage_nanocores"] = container.CPU.UsageNanoCores
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fields["cpu_usage_core_nanoseconds"] = container.CPU.UsageCoreNanoSeconds
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fields["memory_usage_bytes"] = container.Memory.UsageBytes
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fields["memory_working_set_bytes"] = container.Memory.WorkingSetBytes
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fields["memory_rss_bytes"] = container.Memory.RSSBytes
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fields["memory_page_faults"] = container.Memory.PageFaults
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fields["memory_major_page_faults"] = container.Memory.MajorPageFaults
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fields["rootfs_available_bytes"] = container.RootFS.AvailableBytes
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fields["rootfs_capacity_bytes"] = container.RootFS.CapacityBytes
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fields["rootfs_used_bytes"] = container.RootFS.UsedBytes
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fields["logsfs_avaialble_bytes"] = container.LogsFS.AvailableBytes
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fields["logsfs_capacity_bytes"] = container.LogsFS.CapacityBytes
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fields["logsfs_used_bytes"] = container.LogsFS.UsedBytes
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acc.AddFields("kubernetes_pod_container", fields, tags)
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}
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for _, volume := range pod.Volumes {
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tags := map[string]string{
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"node_name": summaryMetrics.Node.NodeName,
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"pod_name": pod.PodRef.Name,
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"namespace": pod.PodRef.Namespace,
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"volume_name": volume.Name,
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}
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fields := make(map[string]interface{})
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fields["available_bytes"] = volume.AvailableBytes
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fields["capacity_bytes"] = volume.CapacityBytes
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fields["used_bytes"] = volume.UsedBytes
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acc.AddFields("kubernetes_pod_volume", fields, tags)
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}
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tags := map[string]string{
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"node_name": summaryMetrics.Node.NodeName,
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"pod_name": pod.PodRef.Name,
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"namespace": pod.PodRef.Namespace,
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}
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fields := make(map[string]interface{})
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fields["rx_bytes"] = pod.Network.RXBytes
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fields["rx_errors"] = pod.Network.RXErrors
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fields["tx_bytes"] = pod.Network.TXBytes
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fields["tx_errors"] = pod.Network.TXErrors
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acc.AddFields("kubernetes_pod_network", fields, tags)
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}
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}
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