mirror of
https://github.com/ClusterCockpit/cc-metric-collector.git
synced 2024-12-25 23:19:06 +01:00
8e8be09ed9
* Add cpu_used (all-cpu_idle) to CpustatCollector * Update cc-metric-collector.init * Allow selection of timestamp precision in HttpSink * Add comment about precision requirement for cc-metric-store * Fix for API changes in gofish@v0.15.0 * Update requirements to latest version * Read sensors through redfish * Update golang toolchain to 1.21 * Remove stray error check * Update main config in configuration.md * Update Release action to use golang 1.22 stable release, no golang RPMs anymore * Update runonce action to use golang 1.22 stable release, no golang RPMs anymore * Update README.md Use right JSON type in configuration * Update sink's README * Test whether ipmitool or ipmi-sensors can be executed without errors --------- Co-authored-by: Holger Obermaier <Holger.Obermaier@kit.edu> Co-authored-by: Holger Obermaier <40787752+ho-ob@users.noreply.github.com>
351 lines
8.5 KiB
Go
351 lines
8.5 KiB
Go
package sinks
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import (
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"bytes"
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"encoding/json"
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"errors"
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"fmt"
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"net/http"
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"sync"
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"time"
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cclog "github.com/ClusterCockpit/cc-metric-collector/pkg/ccLogger"
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lp "github.com/ClusterCockpit/cc-metric-collector/pkg/ccMetric"
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influx "github.com/influxdata/line-protocol/v2/lineprotocol"
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"golang.org/x/exp/slices"
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)
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type HttpSinkConfig struct {
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defaultSinkConfig
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// The full URL of the endpoint
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URL string `json:"url"`
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// JSON web tokens for authentication (Using the *Bearer* scheme)
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JWT string `json:"jwt,omitempty"`
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// Basic authentication
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Username string `json:"username"`
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Password string `json:"password"`
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useBasicAuth bool
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// time limit for requests made by the http client
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Timeout string `json:"timeout,omitempty"`
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timeout time.Duration
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// Maximum amount of time an idle (keep-alive) connection will remain idle before closing itself
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// should be larger than the measurement interval to keep the connection open
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IdleConnTimeout string `json:"idle_connection_timeout,omitempty"`
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idleConnTimeout time.Duration
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// Batch all writes arriving in during this duration
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// (default '5s', batching can be disabled by setting it to 0)
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FlushDelay string `json:"flush_delay,omitempty"`
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flushDelay time.Duration
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// Maximum number of retries to connect to the http server (default: 3)
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MaxRetries int `json:"max_retries,omitempty"`
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// Timestamp precision
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Precision string `json:"precision,omitempty"`
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}
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type key_value_pair struct {
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key string
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value string
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}
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type HttpSink struct {
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sink
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client *http.Client
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// influx line protocol encoder
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encoder influx.Encoder
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// List of tags and meta data tags which should be used as tags
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extended_tag_list []key_value_pair
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// Flush() runs in another goroutine and accesses the influx line protocol encoder,
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// so this encoderLock has to protect the encoder
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encoderLock sync.Mutex
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// timer to run Flush()
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flushTimer *time.Timer
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// Lock to assure that only one timer is running at a time
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timerLock sync.Mutex
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config HttpSinkConfig
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}
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// Write sends metric m as http message
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func (s *HttpSink) Write(m lp.CCMetric) error {
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// Lock for encoder usage
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s.encoderLock.Lock()
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// Encode measurement name
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s.encoder.StartLine(m.Name())
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// copy tags and meta data which should be used as tags
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s.extended_tag_list = s.extended_tag_list[:0]
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for key, value := range m.Tags() {
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s.extended_tag_list =
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append(
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s.extended_tag_list,
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key_value_pair{
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key: key,
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value: value,
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},
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)
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}
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for _, key := range s.config.MetaAsTags {
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if value, ok := m.GetMeta(key); ok {
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s.extended_tag_list =
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append(
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s.extended_tag_list,
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key_value_pair{
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key: key,
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value: value,
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},
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)
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}
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}
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// Encode tags (they musts be in lexical order)
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slices.SortFunc(
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s.extended_tag_list,
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func(a key_value_pair, b key_value_pair) int {
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if a.key < b.key {
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return -1
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}
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if a.key > b.key {
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return +1
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}
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return 0
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},
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)
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for i := range s.extended_tag_list {
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s.encoder.AddTag(
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s.extended_tag_list[i].key,
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s.extended_tag_list[i].value,
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)
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}
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// Encode fields
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for key, value := range m.Fields() {
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s.encoder.AddField(key, influx.MustNewValue(value))
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}
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// Encode time stamp
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s.encoder.EndLine(m.Time())
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// Check for encoder errors
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err := s.encoder.Err()
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// Unlock encoder usage
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s.encoderLock.Unlock()
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// Check that encoding worked
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if err != nil {
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return fmt.Errorf("encoding failed: %v", err)
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}
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if s.config.flushDelay == 0 {
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// Directly flush if no flush delay is configured
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return s.Flush()
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} else if s.timerLock.TryLock() {
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// Setup flush timer when flush delay is configured
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// and no other timer is already running
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if s.flushTimer != nil {
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// Restarting existing flush timer
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cclog.ComponentDebug(s.name, "Write(): Restarting flush timer")
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s.flushTimer.Reset(s.config.flushDelay)
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} else {
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// Creating and starting flush timer
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cclog.ComponentDebug(s.name, "Write(): Starting new flush timer")
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s.flushTimer = time.AfterFunc(
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s.config.flushDelay,
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func() {
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defer s.timerLock.Unlock()
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cclog.ComponentDebug(s.name, "Starting flush triggered by flush timer")
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if err := s.Flush(); err != nil {
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cclog.ComponentError(s.name, "Flush triggered by flush timer: flush failed:", err)
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}
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})
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}
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}
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return nil
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}
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// Flush sends all metrics stored in encoder to HTTP server
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func (s *HttpSink) Flush() error {
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// Lock for encoder usage
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// Own lock for as short as possible: the time it takes to clone the buffer.
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s.encoderLock.Lock()
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buf := slices.Clone(s.encoder.Bytes())
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s.encoder.Reset()
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// Unlock encoder usage
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s.encoderLock.Unlock()
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if len(buf) == 0 {
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return nil
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}
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cclog.ComponentDebug(s.name, "Flush(): Flushing")
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var res *http.Response
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for i := 0; i < s.config.MaxRetries; i++ {
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// Create new request to send buffer
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req, err := http.NewRequest(http.MethodPost, s.config.URL, bytes.NewReader(buf))
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if err != nil {
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cclog.ComponentError(s.name, "Flush(): Failed to create HTTP request:", err)
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return err
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}
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// Set authorization header
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if len(s.config.JWT) != 0 {
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req.Header.Set("Authorization", fmt.Sprintf("Bearer %s", s.config.JWT))
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}
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// Set basic authentication
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if s.config.useBasicAuth {
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req.SetBasicAuth(s.config.Username, s.config.Password)
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}
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// Do request
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res, err = s.client.Do(req)
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if err != nil {
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cclog.ComponentError(s.name, "Flush(): transport/tcp error:", err)
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// Wait between retries
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time.Sleep(time.Duration(i+1) * (time.Second / 2))
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continue
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}
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break
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}
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if res == nil {
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return errors.New("flush failed due to repeated errors")
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}
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// Handle application errors
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if res.StatusCode != http.StatusOK {
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err := errors.New(res.Status)
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cclog.ComponentError(s.name, "Flush(): Application error:", err)
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return err
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}
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return nil
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}
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func (s *HttpSink) Close() {
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cclog.ComponentDebug(s.name, "Closing HTTP connection")
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// Stop existing timer and immediately flush
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if s.flushTimer != nil {
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if ok := s.flushTimer.Stop(); ok {
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s.timerLock.Unlock()
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}
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}
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// Flush
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if err := s.Flush(); err != nil {
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cclog.ComponentError(s.name, "Close(): Flush failed:", err)
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}
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s.client.CloseIdleConnections()
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}
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// NewHttpSink creates a new http sink
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func NewHttpSink(name string, config json.RawMessage) (Sink, error) {
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s := new(HttpSink)
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// Set default values
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s.name = fmt.Sprintf("HttpSink(%s)", name)
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// should be larger than the measurement interval to keep the connection open
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s.config.IdleConnTimeout = "120s"
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s.config.Timeout = "5s"
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s.config.FlushDelay = "5s"
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s.config.MaxRetries = 3
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s.config.Precision = "ns"
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cclog.ComponentDebug(s.name, "Init()")
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// Read config
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if len(config) > 0 {
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d := json.NewDecoder(bytes.NewReader(config))
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d.DisallowUnknownFields()
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if err := d.Decode(&s.config); err != nil {
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cclog.ComponentError(s.name, "Error reading config:", err.Error())
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return nil, err
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}
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}
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if len(s.config.URL) == 0 {
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return nil, errors.New("`url` config option is required for HTTP sink")
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}
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// Check basic authentication config
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if len(s.config.Username) > 0 || len(s.config.Password) > 0 {
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s.config.useBasicAuth = true
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}
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if s.config.useBasicAuth && len(s.config.Username) == 0 {
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return nil, errors.New("basic authentication requires username")
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}
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if s.config.useBasicAuth && len(s.config.Password) == 0 {
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return nil, errors.New("basic authentication requires password")
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}
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if len(s.config.IdleConnTimeout) > 0 {
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t, err := time.ParseDuration(s.config.IdleConnTimeout)
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if err == nil {
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cclog.ComponentDebug(s.name, "Init(): idleConnTimeout", t)
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s.config.idleConnTimeout = t
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}
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}
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if len(s.config.Timeout) > 0 {
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t, err := time.ParseDuration(s.config.Timeout)
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if err == nil {
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s.config.timeout = t
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cclog.ComponentDebug(s.name, "Init(): timeout", t)
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}
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}
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if len(s.config.FlushDelay) > 0 {
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t, err := time.ParseDuration(s.config.FlushDelay)
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if err == nil {
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s.config.flushDelay = t
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cclog.ComponentDebug(s.name, "Init(): flushDelay", t)
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}
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}
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precision := influx.Nanosecond
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if len(s.config.Precision) > 0 {
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switch s.config.Precision {
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case "s":
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precision = influx.Second
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case "ms":
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precision = influx.Millisecond
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case "us":
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precision = influx.Microsecond
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case "ns":
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precision = influx.Nanosecond
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}
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}
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// Create http client
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s.client = &http.Client{
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Transport: &http.Transport{
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MaxIdleConns: 1, // We will only ever talk to one host.
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IdleConnTimeout: s.config.idleConnTimeout,
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},
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Timeout: s.config.timeout,
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}
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// Configure influx line protocol encoder
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s.encoder.SetPrecision(precision)
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s.extended_tag_list = make([]key_value_pair, 0)
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return s, nil
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}
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