Merge branch 'master' into only-update-latency-in-gc-if-stale

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ofekshenawa 2024-11-20 13:40:17 +02:00 committed by GitHub
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10 changed files with 3408 additions and 1807 deletions

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@ -54,6 +54,7 @@ stunnel
SynDump
TCP
TLS
UnstableResp
uri
URI
url
@ -62,3 +63,5 @@ RedisStack
RedisGears
RedisTimeseries
RediSearch
RawResult
RawVal

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@ -186,6 +186,21 @@ rdb := redis.NewClient(&redis.Options{
#### Unstable RESP3 Structures for RediSearch Commands
When integrating Redis with application functionalities using RESP3, it's important to note that some response structures aren't final yet. This is especially true for more complex structures like search and query results. We recommend using RESP2 when using the search and query capabilities, but we plan to stabilize the RESP3-based API-s in the coming versions. You can find more guidance in the upcoming release notes.
To enable unstable RESP3, set the option in your client configuration:
```go
redis.NewClient(&redis.Options{
UnstableResp3: true,
})
```
**Note:** When UnstableResp3 mode is enabled, it's necessary to use RawResult() and RawVal() to retrieve a raw data.
Since, raw response is the only option for unstable search commands Val() and Result() calls wouldn't have any affect on them:
```go
res1, err := client.FTSearchWithArgs(ctx, "txt", "foo bar", &redis.FTSearchOptions{}).RawResult()
val1 := client.FTSearchWithArgs(ctx, "txt", "foo bar", &redis.FTSearchOptions{}).RawVal()
```
## Contributing
Please see [out contributing guidelines](CONTRIBUTING.md) to help us improve this library!

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@ -1403,27 +1403,63 @@ func (cmd *MapStringSliceInterfaceCmd) Val() map[string][]interface{} {
}
func (cmd *MapStringSliceInterfaceCmd) readReply(rd *proto.Reader) (err error) {
n, err := rd.ReadMapLen()
readType, err := rd.PeekReplyType()
if err != nil {
return err
}
cmd.val = make(map[string][]interface{}, n)
for i := 0; i < n; i++ {
k, err := rd.ReadString()
cmd.val = make(map[string][]interface{})
if readType == proto.RespMap {
n, err := rd.ReadMapLen()
if err != nil {
return err
}
nn, err := rd.ReadArrayLen()
if err != nil {
return err
}
cmd.val[k] = make([]interface{}, nn)
for j := 0; j < nn; j++ {
value, err := rd.ReadReply()
for i := 0; i < n; i++ {
k, err := rd.ReadString()
if err != nil {
return err
}
cmd.val[k][j] = value
nn, err := rd.ReadArrayLen()
if err != nil {
return err
}
cmd.val[k] = make([]interface{}, nn)
for j := 0; j < nn; j++ {
value, err := rd.ReadReply()
if err != nil {
return err
}
cmd.val[k][j] = value
}
}
} else if readType == proto.RespArray {
// RESP2 response
n, err := rd.ReadArrayLen()
if err != nil {
return err
}
for i := 0; i < n; i++ {
// Each entry in this array is itself an array with key details
itemLen, err := rd.ReadArrayLen()
if err != nil {
return err
}
key, err := rd.ReadString()
if err != nil {
return err
}
cmd.val[key] = make([]interface{}, 0, itemLen-1)
for j := 1; j < itemLen; j++ {
// Read the inner array for timestamp-value pairs
data, err := rd.ReadReply()
if err != nil {
return err
}
cmd.val[key] = append(cmd.val[key], data)
}
}
}

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@ -0,0 +1,199 @@
// EXAMPLE: go_home_json
// HIDE_START
package example_commands_test
// HIDE_END
// STEP_START import
import (
"context"
"fmt"
"sort"
"github.com/redis/go-redis/v9"
)
// STEP_END
func ExampleClient_search_json() {
// STEP_START connect
ctx := context.Background()
rdb := redis.NewClient(&redis.Options{
Addr: "localhost:6379",
Password: "", // no password docs
DB: 0, // use default DB
Protocol: 2,
})
// STEP_END
// REMOVE_START
rdb.Del(ctx, "user:1", "user:2", "user:3")
rdb.FTDropIndex(ctx, "idx:users")
// REMOVE_END
// STEP_START create_data
user1 := map[string]interface{}{
"name": "Paul John",
"email": "paul.john@example.com",
"age": 42,
"city": "London",
}
user2 := map[string]interface{}{
"name": "Eden Zamir",
"email": "eden.zamir@example.com",
"age": 29,
"city": "Tel Aviv",
}
user3 := map[string]interface{}{
"name": "Paul Zamir",
"email": "paul.zamir@example.com",
"age": 35,
"city": "Tel Aviv",
}
// STEP_END
// STEP_START make_index
_, err := rdb.FTCreate(
ctx,
"idx:users",
// Options:
&redis.FTCreateOptions{
OnJSON: true,
Prefix: []interface{}{"user:"},
},
// Index schema fields:
&redis.FieldSchema{
FieldName: "$.name",
As: "name",
FieldType: redis.SearchFieldTypeText,
},
&redis.FieldSchema{
FieldName: "$.city",
As: "city",
FieldType: redis.SearchFieldTypeTag,
},
&redis.FieldSchema{
FieldName: "$.age",
As: "age",
FieldType: redis.SearchFieldTypeNumeric,
},
).Result()
if err != nil {
panic(err)
}
// STEP_END
// STEP_START add_data
_, err = rdb.JSONSet(ctx, "user:1", "$", user1).Result()
if err != nil {
panic(err)
}
_, err = rdb.JSONSet(ctx, "user:2", "$", user2).Result()
if err != nil {
panic(err)
}
_, err = rdb.JSONSet(ctx, "user:3", "$", user3).Result()
if err != nil {
panic(err)
}
// STEP_END
// STEP_START query1
findPaulResult, err := rdb.FTSearch(
ctx,
"idx:users",
"Paul @age:[30 40]",
).Result()
if err != nil {
panic(err)
}
fmt.Println(findPaulResult)
// >>> {1 [{user:3 <nil> <nil> <nil> map[$:{"age":35,"city":"Tel Aviv"...
// STEP_END
// STEP_START query2
citiesResult, err := rdb.FTSearchWithArgs(
ctx,
"idx:users",
"Paul",
&redis.FTSearchOptions{
Return: []redis.FTSearchReturn{
{
FieldName: "$.city",
As: "city",
},
},
},
).Result()
if err != nil {
panic(err)
}
sort.Slice(citiesResult.Docs, func(i, j int) bool {
return citiesResult.Docs[i].Fields["city"] < citiesResult.Docs[j].Fields["city"]
})
for _, result := range citiesResult.Docs {
fmt.Println(result.Fields["city"])
}
// >>> London
// >>> Tel Aviv
// STEP_END
// STEP_START query3
aggOptions := redis.FTAggregateOptions{
GroupBy: []redis.FTAggregateGroupBy{
{
Fields: []interface{}{"@city"},
Reduce: []redis.FTAggregateReducer{
{
Reducer: redis.SearchCount,
As: "count",
},
},
},
},
}
aggResult, err := rdb.FTAggregateWithArgs(
ctx,
"idx:users",
"*",
&aggOptions,
).Result()
if err != nil {
panic(err)
}
sort.Slice(aggResult.Rows, func(i, j int) bool {
return aggResult.Rows[i].Fields["city"].(string) <
aggResult.Rows[j].Fields["city"].(string)
})
for _, row := range aggResult.Rows {
fmt.Printf("%v - %v\n",
row.Fields["city"], row.Fields["count"],
)
}
// >>> City: London - 1
// >>> City: Tel Aviv - 2
// STEP_END
// Output:
// {1 [{user:3 <nil> <nil> <nil> map[$:{"age":35,"city":"Tel Aviv","email":"paul.zamir@example.com","name":"Paul Zamir"}]}]}
// London
// Tel Aviv
// London - 1
// Tel Aviv - 2
}

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@ -319,37 +319,69 @@ func (cmd *BFInfoCmd) Result() (BFInfo, error) {
}
func (cmd *BFInfoCmd) readReply(rd *proto.Reader) (err error) {
n, err := rd.ReadMapLen()
result := BFInfo{}
// Create a mapping from key names to pointers of struct fields
respMapping := map[string]*int64{
"Capacity": &result.Capacity,
"CAPACITY": &result.Capacity,
"Size": &result.Size,
"SIZE": &result.Size,
"Number of filters": &result.Filters,
"FILTERS": &result.Filters,
"Number of items inserted": &result.ItemsInserted,
"ITEMS": &result.ItemsInserted,
"Expansion rate": &result.ExpansionRate,
"EXPANSION": &result.ExpansionRate,
}
// Helper function to read and assign a value based on the key
readAndAssignValue := func(key string) error {
fieldPtr, exists := respMapping[key]
if !exists {
return fmt.Errorf("redis: BLOOM.INFO unexpected key %s", key)
}
// Read the integer and assign to the field via pointer dereferencing
val, err := rd.ReadInt()
if err != nil {
return err
}
*fieldPtr = val
return nil
}
readType, err := rd.PeekReplyType()
if err != nil {
return err
}
var key string
var result BFInfo
for f := 0; f < n; f++ {
key, err = rd.ReadString()
if len(cmd.args) > 2 && readType == proto.RespArray {
n, err := rd.ReadArrayLen()
if err != nil {
return err
}
switch key {
case "Capacity":
result.Capacity, err = rd.ReadInt()
case "Size":
result.Size, err = rd.ReadInt()
case "Number of filters":
result.Filters, err = rd.ReadInt()
case "Number of items inserted":
result.ItemsInserted, err = rd.ReadInt()
case "Expansion rate":
result.ExpansionRate, err = rd.ReadInt()
default:
return fmt.Errorf("redis: BLOOM.INFO unexpected key %s", key)
if key, ok := cmd.args[2].(string); ok && n == 1 {
if err := readAndAssignValue(key); err != nil {
return err
}
} else {
return fmt.Errorf("redis: BLOOM.INFO invalid argument key type")
}
} else {
n, err := rd.ReadMapLen()
if err != nil {
return err
}
for i := 0; i < n; i++ {
key, err := rd.ReadString()
if err != nil {
return err
}
if err := readAndAssignValue(key); err != nil {
return err
}
}
}
cmd.val = result

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@ -176,8 +176,6 @@ func (hs *hooksMixin) withProcessPipelineHook(
}
func (hs *hooksMixin) dialHook(ctx context.Context, network, addr string) (net.Conn, error) {
hs.hooksMu.Lock()
defer hs.hooksMu.Unlock()
return hs.current.dial(ctx, network, addr)
}

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@ -6,6 +6,7 @@ import (
"errors"
"fmt"
"net"
"sync"
"testing"
"time"
@ -633,3 +634,67 @@ var _ = Describe("Hook with MinIdleConns", func() {
}))
})
})
var _ = Describe("Dialer connection timeouts", func() {
var client *redis.Client
const dialSimulatedDelay = 1 * time.Second
BeforeEach(func() {
options := redisOptions()
options.Dialer = func(ctx context.Context, network, addr string) (net.Conn, error) {
// Simulated slow dialer.
// Note that the following sleep is deliberately not context-aware.
time.Sleep(dialSimulatedDelay)
return net.Dial("tcp", options.Addr)
}
options.MinIdleConns = 1
client = redis.NewClient(options)
})
AfterEach(func() {
err := client.Close()
Expect(err).NotTo(HaveOccurred())
})
It("does not contend on connection dial for concurrent commands", func() {
var wg sync.WaitGroup
const concurrency = 10
durations := make(chan time.Duration, concurrency)
errs := make(chan error, concurrency)
start := time.Now()
wg.Add(concurrency)
for i := 0; i < concurrency; i++ {
go func() {
defer wg.Done()
start := time.Now()
err := client.Ping(ctx).Err()
durations <- time.Since(start)
errs <- err
}()
}
wg.Wait()
close(durations)
close(errs)
// All commands should eventually succeed, after acquiring a connection.
for err := range errs {
Expect(err).NotTo(HaveOccurred())
}
// Each individual command should complete within the simulated dial duration bound.
for duration := range durations {
Expect(duration).To(BeNumerically("<", 2*dialSimulatedDelay))
}
// Due to concurrent execution, the entire test suite should also complete within
// the same dial duration bound applied for individual commands.
Expect(time.Since(start)).To(BeNumerically("<", 2*dialSimulatedDelay))
})
})

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