2020-04-14 15:46:37 -04:00
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/*
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* MinIO Cloud Storage, (C) 2020 MinIO, Inc.
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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package cmd
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import (
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"net/http"
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"sync"
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"time"
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2020-06-04 17:58:34 -04:00
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"github.com/minio/minio/cmd/config/api"
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2020-09-18 05:03:02 -04:00
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"github.com/minio/minio/cmd/logger"
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2020-09-04 22:37:37 -04:00
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"github.com/minio/minio/pkg/sys"
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2020-04-14 15:46:37 -04:00
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)
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2020-06-04 17:58:34 -04:00
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type apiConfig struct {
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mu sync.RWMutex
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2020-04-14 15:46:37 -04:00
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requestsDeadline time.Duration
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requestsPool chan struct{}
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2020-09-23 12:14:33 -04:00
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clusterDeadline time.Duration
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2020-11-02 20:21:56 -05:00
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listQuorum int
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2020-11-05 14:49:56 -05:00
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extendListLife time.Duration
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corsAllowOrigins []string
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2021-01-22 15:09:24 -05:00
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// total drives per erasure set across pools.
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totalDriveCount int
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replicationWorkers int
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}
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2021-01-22 15:09:24 -05:00
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func (t *apiConfig) init(cfg api.Config, setDriveCounts []int) {
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t.mu.Lock()
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defer t.mu.Unlock()
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2020-09-23 12:14:33 -04:00
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t.clusterDeadline = cfg.ClusterDeadline
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2020-09-12 02:03:08 -04:00
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t.corsAllowOrigins = cfg.CorsAllowOrigin
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for _, setDriveCount := range setDriveCounts {
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t.totalDriveCount += setDriveCount
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}
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2020-09-12 02:03:08 -04:00
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2020-09-04 22:37:37 -04:00
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var apiRequestsMaxPerNode int
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if cfg.RequestsMax <= 0 {
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stats, err := sys.GetStats()
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if err != nil {
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2020-09-18 05:03:02 -04:00
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logger.LogIf(GlobalContext, err)
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[feat]: change erasure coding default block size from 10MiB to 1MiB (#11721)
major performance improvements in range GETs to avoid large
read amplification when ranges are tiny and random
```
-------------------
Operation: GET
Operations: 142014 -> 339421
Duration: 4m50s -> 4m56s
* Average: +139.41% (+1177.3 MiB/s) throughput, +139.11% (+658.4) obj/s
* Fastest: +125.24% (+1207.4 MiB/s) throughput, +132.32% (+612.9) obj/s
* 50% Median: +139.06% (+1175.7 MiB/s) throughput, +133.46% (+660.9) obj/s
* Slowest: +203.40% (+1267.9 MiB/s) throughput, +198.59% (+753.5) obj/s
```
TTFB from 10MiB BlockSize
```
* First Access TTFB: Avg: 81ms, Median: 61ms, Best: 20ms, Worst: 2.056s
```
TTFB from 1MiB BlockSize
```
* First Access TTFB: Avg: 22ms, Median: 21ms, Best: 8ms, Worst: 91ms
```
Full object reads however do see a slight change which won't be
noticeable in real world, so not doing any comparisons
TTFB still had improvements with full object reads with 1MiB
```
* First Access TTFB: Avg: 68ms, Median: 35ms, Best: 11ms, Worst: 1.16s
```
v/s
TTFB with 10MiB
```
* First Access TTFB: Avg: 388ms, Median: 98ms, Best: 20ms, Worst: 4.156s
```
This change should affect all new uploads, previous uploads should
continue to work with business as usual. But dramatic improvements can
be seen with these changes.
2021-03-06 17:09:34 -05:00
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// Default to 8 GiB, not critical.
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stats.TotalRAM = 8 << 30
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}
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// max requests per node is calculated as
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// total_ram / ram_per_request
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[feat]: change erasure coding default block size from 10MiB to 1MiB (#11721)
major performance improvements in range GETs to avoid large
read amplification when ranges are tiny and random
```
-------------------
Operation: GET
Operations: 142014 -> 339421
Duration: 4m50s -> 4m56s
* Average: +139.41% (+1177.3 MiB/s) throughput, +139.11% (+658.4) obj/s
* Fastest: +125.24% (+1207.4 MiB/s) throughput, +132.32% (+612.9) obj/s
* 50% Median: +139.06% (+1175.7 MiB/s) throughput, +133.46% (+660.9) obj/s
* Slowest: +203.40% (+1267.9 MiB/s) throughput, +198.59% (+753.5) obj/s
```
TTFB from 10MiB BlockSize
```
* First Access TTFB: Avg: 81ms, Median: 61ms, Best: 20ms, Worst: 2.056s
```
TTFB from 1MiB BlockSize
```
* First Access TTFB: Avg: 22ms, Median: 21ms, Best: 8ms, Worst: 91ms
```
Full object reads however do see a slight change which won't be
noticeable in real world, so not doing any comparisons
TTFB still had improvements with full object reads with 1MiB
```
* First Access TTFB: Avg: 68ms, Median: 35ms, Best: 11ms, Worst: 1.16s
```
v/s
TTFB with 10MiB
```
* First Access TTFB: Avg: 388ms, Median: 98ms, Best: 20ms, Worst: 4.156s
```
This change should affect all new uploads, previous uploads should
continue to work with business as usual. But dramatic improvements can
be seen with these changes.
2021-03-06 17:09:34 -05:00
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// ram_per_request is (2MiB+128KiB) * driveCount \
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// + 2 * 10MiB (default erasure block size v1) + 2 * 1MiB (default erasure block size v2)
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apiRequestsMaxPerNode = int(stats.TotalRAM / uint64(t.totalDriveCount*(blockSizeLarge+blockSizeSmall)+int(blockSizeV1*2+blockSizeV2*2)))
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} else {
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apiRequestsMaxPerNode = cfg.RequestsMax
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2020-09-04 22:37:37 -04:00
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if len(globalEndpoints.Hostnames()) > 0 {
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apiRequestsMaxPerNode /= len(globalEndpoints.Hostnames())
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}
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2020-04-14 15:46:37 -04:00
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}
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2020-12-04 12:32:35 -05:00
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if cap(t.requestsPool) < apiRequestsMaxPerNode {
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// Only replace if needed.
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// Existing requests will use the previous limit,
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// but new requests will use the new limit.
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// There will be a short overlap window,
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// but this shouldn't last long.
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t.requestsPool = make(chan struct{}, apiRequestsMaxPerNode)
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}
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t.requestsDeadline = cfg.RequestsDeadline
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t.listQuorum = cfg.GetListQuorum()
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t.extendListLife = cfg.ExtendListLife
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if globalReplicationPool != nil &&
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cfg.ReplicationWorkers != t.replicationWorkers {
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globalReplicationPool.Resize(cfg.ReplicationWorkers)
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}
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t.replicationWorkers = cfg.ReplicationWorkers
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2020-11-02 20:21:56 -05:00
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}
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func (t *apiConfig) getListQuorum() int {
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t.mu.RLock()
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defer t.mu.RUnlock()
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return t.listQuorum
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2020-06-04 17:58:34 -04:00
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}
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2020-11-05 14:49:56 -05:00
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func (t *apiConfig) getExtendListLife() time.Duration {
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t.mu.RLock()
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defer t.mu.RUnlock()
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return t.extendListLife
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}
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2020-06-04 17:58:34 -04:00
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func (t *apiConfig) getCorsAllowOrigins() []string {
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t.mu.RLock()
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defer t.mu.RUnlock()
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2020-09-12 02:03:08 -04:00
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corsAllowOrigins := make([]string, len(t.corsAllowOrigins))
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copy(corsAllowOrigins, t.corsAllowOrigins)
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return corsAllowOrigins
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2020-06-04 17:58:34 -04:00
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}
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2020-09-23 12:14:33 -04:00
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func (t *apiConfig) getClusterDeadline() time.Duration {
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t.mu.RLock()
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defer t.mu.RUnlock()
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2020-09-23 12:14:33 -04:00
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if t.clusterDeadline == 0 {
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2020-06-04 17:58:34 -04:00
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return 10 * time.Second
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}
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2020-09-23 12:14:33 -04:00
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return t.clusterDeadline
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2020-04-14 15:46:37 -04:00
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}
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2020-12-03 22:23:19 -05:00
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func (t *apiConfig) getRequestsPool() (chan struct{}, time.Duration) {
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t.mu.RLock()
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defer t.mu.RUnlock()
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2020-06-04 17:58:34 -04:00
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if t.requestsPool == nil {
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2020-12-03 22:23:19 -05:00
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return nil, time.Duration(0)
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2020-11-04 11:25:42 -05:00
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}
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2020-04-14 15:46:37 -04:00
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2020-12-03 22:23:19 -05:00
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return t.requestsPool, t.requestsDeadline
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2020-04-14 15:46:37 -04:00
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}
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// maxClients throttles the S3 API calls
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func maxClients(f http.HandlerFunc) http.HandlerFunc {
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return func(w http.ResponseWriter, r *http.Request) {
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pool, deadline := globalAPIConfig.getRequestsPool()
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if pool == nil {
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f.ServeHTTP(w, r)
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return
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}
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2021-02-20 03:21:55 -05:00
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globalHTTPStats.addRequestsInQueue(1)
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2020-12-03 22:23:19 -05:00
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deadlineTimer := time.NewTimer(deadline)
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defer deadlineTimer.Stop()
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2020-04-14 15:46:37 -04:00
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select {
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case pool <- struct{}{}:
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defer func() { <-pool }()
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globalHTTPStats.addRequestsInQueue(-1)
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f.ServeHTTP(w, r)
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case <-deadlineTimer.C:
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// Send a http timeout message
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writeErrorResponse(r.Context(), w,
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errorCodes.ToAPIErr(ErrOperationMaxedOut),
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r.URL, guessIsBrowserReq(r))
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2021-02-20 03:21:55 -05:00
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globalHTTPStats.addRequestsInQueue(-1)
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2020-04-14 15:46:37 -04:00
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return
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case <-r.Context().Done():
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globalHTTPStats.addRequestsInQueue(-1)
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2020-04-14 15:46:37 -04:00
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return
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}
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}
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}
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2021-02-02 06:15:06 -05:00
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func (t *apiConfig) getReplicationWorkers() int {
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t.mu.RLock()
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defer t.mu.RUnlock()
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return t.replicationWorkers
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}
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