This module implements a simple high performance JSON parser. JSON (JavaScript Object Notation) is a lightweight data-interchange format that is easy for humans to read and write (unlike XML). It is easy for machines to parse and generate. JSON is based on a subset of the JavaScript Programming Language, Standard ECMA-262 3rd Edition - December 1999.
This module allows you to access fields in a parsed JSON object in two different ways, one of them is described in this section.
The parseJson procedure takes a string containing JSON and returns a JsonNode object. This is an object variant and it is either a JObject, JArray, JString, JInt, JFloat, JBool or JNull. You check the kind of this object variant by using the kind accessor.
For a JsonNode who's kind is JObject, you can acess its fields using the [] operator. The following example shows how to do this:
let jsonNode = parseJson("""{"key": 3.14}""")
doAssert jsonNode.kind == JObject
doAssert jsonNode["key"].kind == JFloat
Retrieving the value of a JSON node can then be achieved using one of the helper procedures, which include:
getIntgetFloatgetStrgetBoolTo retrieve the value of "key" you can do the following:
doAssert jsonNode["key"].getFloat() == 3.14
The [] operator will raise an exception when the specified field does not exist. If you wish to avoid this behaviour you can use the {} operator instead, it will simply return nil when the field is not found. The get-family of procedures will return a default value when called on nil.
This module allows you to access fields in a parsed JSON object in two different ways, one of them is described in this section.
This is done using the to macro. Take a look at its documentation to see an example of its use.
This module can also be used to comfortably create JSON using the %* operator:
var hisName = "John"
let herAge = 31
var j = %*
[
{
"name": hisName,
"age": 30
},
{
"name": "Susan",
"age": herAge
}
]
var j2 = %* {"name": "Isaac", "books": ["Robot Dreams"]}
j2["details"] = %* {"age":35, "pi":3.1415}
echo j2 JsonNodeKind = enum JNull, JBool, JInt, JFloat, JString, JObject, JArray
JsonNode = ref JsonNodeObj
JsonNodeObj {...}{.acyclic.} = object
case kind*: JsonNodeKind
of JString:
str*: string
of JInt:
num*: BiggestInt
of JFloat:
fnum*: float
of JBool:
bval*: bool
of JNull:
nil
of JObject:
fields*: OrderedTable[string, JsonNode]
of JArray:
elems*: seq[JsonNode]proc newJString(s: string): JsonNode {...}{.raises: [], tags: [].}proc newJInt(n: BiggestInt): JsonNode {...}{.raises: [], tags: [].}proc newJFloat(n: float): JsonNode {...}{.raises: [], tags: [].}proc newJBool(b: bool): JsonNode {...}{.raises: [], tags: [].}proc newJNull(): JsonNode {...}{.raises: [], tags: [].}proc newJObject(): JsonNode {...}{.raises: [], tags: [].}proc newJArray(): JsonNode {...}{.raises: [], tags: [].}proc getStr(n: JsonNode; default: string = ""): string {...}{.raises: [], tags: [].}Retrieves the string value of a JString JsonNode.
Returns default if n is not a JString, or if n is nil.
proc getInt(n: JsonNode; default: int = 0): int {...}{.raises: [], tags: [].}Retrieves the int value of a JInt JsonNode.
Returns default if n is not a JInt, or if n is nil.
proc getBiggestInt(n: JsonNode; default: BiggestInt = 0): BiggestInt {...}{.raises: [],
tags: [].}Retrieves the BiggestInt value of a JInt JsonNode.
Returns default if n is not a JInt, or if n is nil.
proc getNum(n: JsonNode; default: BiggestInt = 0): BiggestInt {...}{.
deprecated: "use getInt or getBiggestInt instead", raises: [], tags: [].}getInt or getBiggestInt instead. proc getFloat(n: JsonNode; default: float = 0.0): float {...}{.raises: [], tags: [].}Retrieves the float value of a JFloat JsonNode.
Returns default if n is not a JFloat or JInt, or if n is nil.
proc getFNum(n: JsonNode; default: float = 0.0): float {...}{.
deprecated: "use getFloat instead", raises: [], tags: [].}getFloat instead. proc getBool(n: JsonNode; default: bool = false): bool {...}{.raises: [], tags: [].}Retrieves the bool value of a JBool JsonNode.
Returns default if n is not a JBool, or if n is nil.
proc getBVal(n: JsonNode; default: bool = false): bool {...}{.
deprecated: "use getBool instead", raises: [], tags: [].}getBool instead. proc getFields(n: JsonNode; default = initOrderedTable(4)): OrderedTable[string,
JsonNode] {...}{.raises: [], tags: [].}Retrieves the key, value pairs of a JObject JsonNode.
Returns default if n is not a JObject, or if n is nil.
proc getElems(n: JsonNode; default: seq[JsonNode] = @[]): seq[JsonNode] {...}{.raises: [],
tags: [].}Retrieves the array of a JArray JsonNode.
Returns default if n is not a JArray, or if n is nil.
proc add(father, child: JsonNode) {...}{.raises: [], tags: [].}proc add(obj: JsonNode; key: string; val: JsonNode) {...}{.raises: [], tags: [].}proc `%`(s: string): JsonNode {...}{.raises: [], tags: [].}proc `%`(n: BiggestInt): JsonNode {...}{.raises: [], tags: [].}proc `%`(n: float): JsonNode {...}{.raises: [], tags: [].}proc `%`(b: bool): JsonNode {...}{.raises: [], tags: [].}proc `%`(keyVals: openArray[tuple[key: string, val: JsonNode]]): JsonNode {...}{.raises: [],
tags: [].}proc `%`[T](elements: openArray[T]): JsonNode
proc `%`(o: object): JsonNode
proc `%`(o: ref object): JsonNode
proc `%`(o: enum): JsonNode
JString JsonNode. proc `==`(a, b: JsonNode): bool {...}{.raises: [KeyError], tags: [].}proc hash(n: JsonNode): Hash {...}{.raises: [Exception], tags: [RootEffect].}proc hash(n: OrderedTable[string, JsonNode]): Hash {...}{.noSideEffect,
raises: [Exception], tags: [RootEffect].}proc len(n: JsonNode): int {...}{.raises: [], tags: [].}proc `[]`(node: JsonNode; name: string): JsonNode {...}{.inline, raises: [KeyError], tags: [].}Gets a field from a JObject, which must not be nil. If the value at name does not exist, raises KeyError.
Note: The behaviour of this procedure changed in version 0.14.0. To get a list of usages and to restore the old behaviour of this procedure, compile with the -d:nimJsonGet flag.
proc `[]`(node: JsonNode; index: int): JsonNode {...}{.inline, raises: [], tags: [].}proc hasKey(node: JsonNode; key: string): bool {...}{.raises: [], tags: [].}proc contains(node: JsonNode; key: string): bool {...}{.raises: [], tags: [].}proc contains(node: JsonNode; val: JsonNode): bool {...}{.raises: [KeyError], tags: [].}proc existsKey(node: JsonNode; key: string): bool {...}{.deprecated: "use hasKey instead",
raises: [], tags: [].}proc `[]=`(obj: JsonNode; key: string; val: JsonNode) {...}{.inline, raises: [], tags: [].}proc `{}`(node: JsonNode; keys: varargs[string]): JsonNode {...}{.raises: [], tags: [].}Traverses the node and gets the given value. If any of the keys do not exist, returns nil. Also returns nil if one of the intermediate data structures is not an object.
This proc can be used to create tree structures on the fly (sometimes called autovivification):
myjson{"parent", "child", "grandchild"} = newJInt(1) proc `{}`(node: JsonNode; index: varargs[int]): JsonNode {...}{.raises: [], tags: [].}nil. Also returns nil if one of the intermediate data structures is not an array. proc getOrDefault(node: JsonNode; key: string): JsonNode {...}{.raises: [], tags: [].}proc `{}=`(node: JsonNode; keys: varargs[string]; value: JsonNode) {...}{.
raises: [KeyError], tags: [].}value. If any of the keys are missing, they are added. proc delete(obj: JsonNode; key: string) {...}{.raises: [KeyError], tags: [].}obj[key]. proc copy(p: JsonNode): JsonNode {...}{.raises: [], tags: [].}proc escapeJsonUnquoted(s: string; result: var string) {...}{.raises: [], tags: [].}result. proc escapeJsonUnquoted(s: string): string {...}{.raises: [], tags: [].}proc escapeJson(s: string; result: var string) {...}{.raises: [], tags: [].}result. proc escapeJson(s: string): string {...}{.raises: [], tags: [].}proc pretty(node: JsonNode; indent = 2): string {...}{.raises: [], tags: [].}proc toUgly(result: var string; node: JsonNode) {...}{.raises: [], tags: [].}Converts node to its JSON Representation, without regard for human readability. Meant to improve $ string conversion performance.
JSON representation is stored in the passed result
This provides higher efficiency than the pretty procedure as it does not attempt to format the resulting JSON to make it human readable.
proc `$`(node: JsonNode): string {...}{.raises: [], tags: [].}proc parseJson(s: Stream; filename: string = ""): JsonNode {...}{.
raises: [Exception, Exception, ValueError, JsonParsingError],
tags: [ReadIOEffect].}proc parseJson(buffer: string): JsonNode {...}{.raises: [Exception, ValueError,
JsonParsingError], tags: [ReadIOEffect].}proc parseFile(filename: string): JsonNode {...}{.
raises: [IOError, Exception, ValueError, JsonParsingError], tags: [ReadIOEffect].}iterator items(node: JsonNode): JsonNode {...}{.raises: [], tags: [].}iterator mitems(node: var JsonNode): var JsonNode {...}{.raises: [], tags: [].}iterator pairs(node: JsonNode): tuple[key: string, val: JsonNode] {...}{.raises: [], tags: [].}iterator mpairs(node: var JsonNode): tuple[key: string, val: var JsonNode] {...}{.raises: [],
tags: [].}macro `%*`(x: untyped): untyped
macro to(node: JsonNode; T: typedesc): untyped
Unmarshals the specified node into the object type specified.
Known limitations:
- Heterogeneous arrays are not supported.
- Sets in object variants are not supported.
- Not nil annotations are not supported.
Example:
let jsonNode = parseJson("""
{
"person": {
"name": "Nimmer",
"age": 21
},
"list": [1, 2, 3, 4]
}
""")
type
Person = object
name: string
age: int
Data = object
person: Person
list: seq[int]
var data = to(jsonNode, Data)
doAssert data.person.name == "Nimmer"
doAssert data.person.age == 21
doAssert data.list == @[1, 2, 3, 4] template `%`(j: JsonNode): JsonNode
template simpleGetOrDefault{
{}(node, [key])
}(node: JsonNode; key: string): JsonNode
© 2006–2018 Andreas Rumpf
Licensed under the MIT License.
https://nim-lang.org/docs/json.html