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< p align = "center" > get a json value quickly< / a > < / p >
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GJSON is a Go package the provides a [very fast ](#performance ) and simple way to get a value from a json document. The reason for this library it to give efficient json indexing for the [BuntDB ](https://github.com/tidwall/buntdb ) project.
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For a command line interface check out [JSONed ](https://github.com/tidwall/jsoned ).
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Getting Started
===============
## Installing
To start using GJSON, install Go and run `go get` :
```sh
$ go get -u github.com/tidwall/gjson
```
This will retrieve the library.
## Get a value
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Get searches json for the specified path. A path is in dot syntax, such as "name.last" or "age". This function expects that the json is well-formed and validates. Invalid json will not panic, but it may return back unexpected results. When the value is found it's returned immediately.
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```go
package main
import "github.com/tidwall/gjson"
const json = `{"name":{"first":"Janet","last":"Prichard"},"age":47}`
func main() {
value := gjson.Get(json, "name.last")
println(value.String())
}
```
This will print:
```
Prichard
```
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*There's also the [GetBytes ](#working-with-bytes ) function for working with JSON byte slices.*
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## Path Syntax
A path is a series of keys separated by a dot.
A key may contain special wildcard characters '\*' and '?'.
To access an array value use the index as the key.
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To get the number of elements in an array or to access a child path, use the '#' character.
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The dot and wildcard characters can be escaped with '\'.
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```json
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{
"name": {"first": "Tom", "last": "Anderson"},
"age":37,
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"children": ["Sara","Alex","Jack"],
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"fav.movie": "Deer Hunter",
"friends": [
{"first": "James", "last": "Murphy"},
{"first": "Roger", "last": "Craig"}
]
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}
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```
```
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"name.last" >> "Anderson"
"age" >> 37
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"children" >> ["Sara","Alex","Jack"]
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"children.#" >> 3
"children.1" >> "Alex"
"child*.2" >> "Jack"
"c?ildren.0" >> "Sara"
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"fav\.movie" >> "Deer Hunter"
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"friends.#.first" >> ["James","Roger"]
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"friends.1.last" >> "Craig"
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```
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To query an array:
```
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`friends.#[last="Murphy"].first` >> "James"
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```
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## Result Type
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GJSON supports the json types `string` , `number` , `bool` , and `null` .
Arrays and Objects are returned as their raw json types.
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The `Result` type holds one of these:
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```
bool, for JSON booleans
float64, for JSON numbers
string, for JSON string literals
nil, for JSON null
```
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To directly access the value:
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```go
result.Type // can be String, Number, True, False, Null, or JSON
result.Str // holds the string
result.Num // holds the float64 number
result.Raw // holds the raw json
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result.Index // index of raw value in original json, zero means index unknown
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```
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There are a variety of handy functions that work on a result:
```go
result.Value() interface{}
result.Int() int64
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result.Uint() uint64
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result.Float() float64
result.String() string
result.Bool() bool
result.Array() []gjson.Result
result.Map() map[string]gjson.Result
result.Get(path string) Result
```
The `result.Value()` function returns an `interface{}` which requires type assertion and is one of the following Go types:
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The `result.Array()` funtion returns back an array of values.
If the result represents a non-existent value, then an empty array will be returned.
If the result is not a JSON array, the return value will be an array containing one result.
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```go
boolean >> bool
number >> float64
string >> string
null >> nil
array >> []interface{}
object >> map[string]interface{}
```
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## Get nested array values
Suppose you want all the last names from the following json:
```json
{
"programmers": [
{
"firstName": "Janet",
"lastName": "McLaughlin",
}, {
"firstName": "Elliotte",
"lastName": "Hunter",
}, {
"firstName": "Jason",
"lastName": "Harold",
}
]
}`
```
You would use the path "programmers.#.lastName" like such:
```go
result := gjson.Get(json, "programmers.#.lastName")
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for _,name := range result.Array() {
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println(name.String())
}
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```
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You can also query an object inside an array:
```go
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name := gjson.Get(json, `programmers.#[lastName="Hunter"].firstName` )
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println(name.String()) // prints "Elliotte"
```
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## Simple Parse and Get
There's a `Parse(json)` function that will do a simple parse, and `result.Get(path)` that will search a result.
For example, all of these will return the same result:
```go
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gjson.Parse(json).Get("name").Get("last")
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gjson.Get(json, "name").Get("last")
gjson.Get(json, "name.last")
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```
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## Check for the existence of a value
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Sometimes you just want to know if a value exists.
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```go
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value := gjson.Get(json, "name.last")
if !value.Exists() {
println("no last name")
} else {
println(value.String())
}
// Or as one step
if gjson.Get(json, "name.last").Exists(){
println("has a last name")
}
```
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## Unmarshal to a map
To unmarshal to a `map[string]interface{}` :
```go
m, ok := gjson.Parse(json).Value().(map[string]interface{})
if !ok{
// not a map
}
```
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## Working with Bytes
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If your JSON is contained in a `[]byte` slice, there's the [GetBytes ](https://godoc.org/github.com/tidwall/gjson#GetBytes ) function. This is preferred over `Get(string(data), path)` .
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```go
var data []byte = ...
res := gjson.GetBytes(data, path)
```
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## Performance
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Benchmarks of GJSON alongside [encoding/json ](https://golang.org/pkg/encoding/json/ ),
[ffjson ](https://github.com/pquerna/ffjson ),
[EasyJSON ](https://github.com/mailru/easyjson ),
and [jsonparser ](https://github.com/buger/jsonparser )
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```
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BenchmarkGJSONGet-8 15000000 333 ns/op 0 B/op 0 allocs/op
BenchmarkGJSONUnmarshalMap-8 900000 4188 ns/op 1920 B/op 26 allocs/op
BenchmarkJSONUnmarshalMap-8 600000 8908 ns/op 3048 B/op 69 allocs/op
BenchmarkJSONUnmarshalStruct-8 600000 9026 ns/op 1832 B/op 69 allocs/op
BenchmarkJSONDecoder-8 300000 14339 ns/op 4224 B/op 184 allocs/op
BenchmarkFFJSONLexer-8 1500000 3156 ns/op 896 B/op 8 allocs/op
BenchmarkEasyJSONLexer-8 3000000 938 ns/op 613 B/op 6 allocs/op
BenchmarkJSONParserGet-8 3000000 442 ns/op 21 B/op 0 allocs/op
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```
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JSON document used:
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```json
{
"widget": {
"debug": "on",
"window": {
"title": "Sample Konfabulator Widget",
"name": "main_window",
"width": 500,
"height": 500
},
"image": {
"src": "Images/Sun.png",
"hOffset": 250,
"vOffset": 250,
"alignment": "center"
},
"text": {
"data": "Click Here",
"size": 36,
"style": "bold",
"vOffset": 100,
"alignment": "center",
"onMouseUp": "sun1.opacity = (sun1.opacity / 100) * 90;"
}
}
}
```
Each operation was rotated though one of the following search paths:
```
widget.window.name
widget.image.hOffset
widget.text.onMouseUp
```
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*These benchmarks were run on a MacBook Pro 15" 2.8 GHz Intel Core i7 using Go 1.7.*
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## Contact
Josh Baker [@tidwall ](http://twitter.com/tidwall )
## License
GJSON source code is available under the MIT [License ](/LICENSE ).