340 lines
8.5 KiB
Nim
340 lines
8.5 KiB
Nim
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import std/json except `%`, `%*`
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import std/macros
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import std/options
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import std/strutils
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import std/strformat
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import std/tables
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import std/typetraits
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import pkg/chronicles
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from pkg/libp2p import Cid, init
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import pkg/contractabi
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import pkg/stew/byteutils
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import pkg/stint
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import pkg/questionable/results
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import ../errors
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export json except `%`, `%*`
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logScope:
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topics = "json serialization"
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type
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SerializationError = object of CodexError
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UnexpectedKindError = object of SerializationError
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template serialize* {.pragma.}
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proc newUnexpectedKindError(
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expectedType: type,
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expectedKinds: string,
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json: JsonNode
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): ref UnexpectedKindError =
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let kind = if json.isNil: "nil"
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else: $json.kind
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newException(UnexpectedKindError,
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&"deserialization to {$expectedType} failed: expected {expectedKinds} " &
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&"but got {kind}")
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proc newUnexpectedKindError(
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expectedType: type,
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expectedKinds: set[JsonNodeKind],
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json: JsonNode
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): ref UnexpectedKindError =
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newUnexpectedKindError(expectedType, $expectedKinds, json)
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proc newUnexpectedKindError(
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expectedType: type,
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expectedKind: JsonNodeKind,
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json: JsonNode
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): ref UnexpectedKindError =
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newUnexpectedKindError(expectedType, {expectedKind}, json)
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template expectJsonKind(
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expectedType: type,
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expectedKinds: set[JsonNodeKind],
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json: JsonNode
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) =
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if json.isNil or json.kind notin expectedKinds:
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return failure(newUnexpectedKindError(expectedType, expectedKinds, json))
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template expectJsonKind(
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expectedType: type,
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expectedKind: JsonNodeKind,
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json: JsonNode
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) =
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expectJsonKind(expectedType, {expectedKind}, json)
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proc fromJson*(
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_: type string,
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json: JsonNode
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): ?!string =
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if json.isNil:
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let err = newException(ValueError, "'json' expected, but was nil")
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return failure(err)
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elif json.kind == JNull:
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return success("null")
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elif json.isNil or json.kind != JString:
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return failure(newUnexpectedKindError(string, JString, json))
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catch json.getStr
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proc fromJson*(
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_: type bool,
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json: JsonNode
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): ?!bool =
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expectJsonKind(bool, JBool, json)
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catch json.getBool
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proc fromJson*(
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_: type int,
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json: JsonNode
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): ?!int =
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expectJsonKind(int, JInt, json)
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catch json.getInt
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proc fromJson*[T: SomeInteger](
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_: type T,
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json: JsonNode
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): ?!T =
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when T is uint|uint64 or (not defined(js) and int.sizeof == 4):
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expectJsonKind(T, {JInt, JString}, json)
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case json.kind
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of JString:
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let x = parseBiggestUInt(json.str)
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return success cast[T](x)
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else:
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return success T(json.num)
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else:
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expectJsonKind(T, {JInt}, json)
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return success cast[T](json.num)
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proc fromJson*[T: SomeFloat](
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_: type T,
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json: JsonNode
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): ?!T =
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expectJsonKind(T, {JInt, JFloat, JString}, json)
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if json.kind == JString:
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case json.str
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of "nan":
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let b = NaN
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return success T(b)
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# dst = NaN # would fail some tests because range conversions would cause CT error
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# in some cases; but this is not a hot-spot inside this branch and backend can optimize this.
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of "inf":
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let b = Inf
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return success T(b)
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of "-inf":
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let b = -Inf
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return success T(b)
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else:
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let err = newUnexpectedKindError(T, "'nan|inf|-inf'", json)
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return failure(err)
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else:
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if json.kind == JFloat:
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return success T(json.fnum)
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else:
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return success T(json.num)
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proc fromJson*(
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_: type seq[byte],
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json: JsonNode
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): ?!seq[byte] =
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expectJsonKind(seq[byte], JString, json)
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hexToSeqByte(json.getStr).catch
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proc fromJson*[N: static[int], T: array[N, byte]](
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_: type T,
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json: JsonNode
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): ?!T =
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expectJsonKind(T, JString, json)
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T.fromHex(json.getStr).catch
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proc fromJson*[T: distinct](
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_: type T,
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json: JsonNode
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): ?!T =
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success T(? T.distinctBase.fromJson(json))
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proc fromJson*[N: static[int], T: StUint[N]](
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_: type T,
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json: JsonNode
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): ?!T =
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expectJsonKind(T, JString, json)
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catch parse(json.getStr, T)
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proc fromJson*[T](
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_: type Option[T],
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json: JsonNode
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): ?! Option[T] =
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if json.isNil or json.kind == JNull:
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return success(none T)
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without val =? T.fromJson(json), error:
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return failure(error)
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success(val.some)
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proc fromJson*(
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_: type Cid,
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json: JsonNode
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): ?!Cid =
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expectJsonKind(Cid, JString, json)
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Cid.init($json).mapFailure
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proc fromJson*[T](
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_: type seq[T],
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json: JsonNode
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): ?! seq[T] =
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expectJsonKind(seq[T], JArray, json)
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var arr: seq[T] = @[]
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for elem in json.elems:
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arr.add(? T.fromJson(elem))
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success arr
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proc fromJson*[T: object](
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_: type T,
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json: JsonNode
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): ?!T =
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expectJsonKind(T, JObject, json)
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var res = T.default
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# Leave this in, it's good for debugging:
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# trace "deserializing object", to = $T, json
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for name, value in fieldPairs(res):
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if json{name} != nil:
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without parsed =? type(value).fromJson(json{name}), e:
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error "error deserializing field",
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field = $T & "." & name,
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json = json{name},
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error = e.msg
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return failure(e)
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value = parsed
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success(res)
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proc fromJson*[T: ref object](
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_: type T,
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json: JsonNode
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): ?!T =
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expectJsonKind(T, JObject, json)
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var res = T.new()
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# Leave this in, it's good for debugging:
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# trace "deserializing object", to = $T, json
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for name, value in fieldPairs(res[]):
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if json{name} != nil:
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without parsed =? type(value).fromJson(json{name}), e:
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error "error deserializing field",
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field = $T & "." & name,
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json = json{name},
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error = e.msg
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return failure(e)
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value = parsed
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success(res)
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proc fromJson*[T: object](
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_: type T,
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bytes: seq[byte]
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): ?!T =
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let json = ?catch parseJson(string.fromBytes(bytes))
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T.fromJson(json)
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func `%`*(s: string): JsonNode = newJString(s)
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func `%`*(n: uint): JsonNode =
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if n > cast[uint](int.high):
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newJString($n)
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else:
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newJInt(BiggestInt(n))
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func `%`*(n: int): JsonNode = newJInt(n)
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func `%`*(n: BiggestUInt): JsonNode =
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if n > cast[BiggestUInt](BiggestInt.high):
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newJString($n)
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else:
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newJInt(BiggestInt(n))
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func `%`*(n: BiggestInt): JsonNode = newJInt(n)
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func `%`*(n: float): JsonNode =
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if n != n: newJString("nan")
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elif n == Inf: newJString("inf")
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elif n == -Inf: newJString("-inf")
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else: newJFloat(n)
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func `%`*(b: bool): JsonNode = newJBool(b)
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func `%`*(keyVals: openArray[tuple[key: string, val: JsonNode]]): JsonNode =
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if keyVals.len == 0: return newJArray()
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let jObj = newJObject()
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for key, val in items(keyVals): jObj.fields[key] = val
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jObj
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template `%`*(j: JsonNode): JsonNode = j
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func `%`*[T](table: Table[string, T]|OrderedTable[string, T]): JsonNode =
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let jObj = newJObject()
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for k, v in table: jObj[k] = ? %v
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jObj
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func `%`*[T](opt: Option[T]): JsonNode =
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if opt.isSome: %(opt.get) else: newJNull()
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func `%`*[T: object](obj: T): JsonNode =
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let jsonObj = newJObject()
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for name, value in obj.fieldPairs:
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when value.hasCustomPragma(serialize):
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jsonObj[name] = %value
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jsonObj
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func `%`*[T: ref object](obj: T): JsonNode =
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let jsonObj = newJObject()
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for name, value in obj[].fieldPairs:
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when value.hasCustomPragma(serialize):
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jsonObj[name] = %(value)
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jsonObj
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proc `%`*(o: enum): JsonNode = % $o
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func `%`*(stint: StInt|StUint): JsonNode = %stint.toString
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func `%`*(cstr: cstring): JsonNode = % $cstr
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func `%`*(arr: openArray[byte]): JsonNode = % arr.to0xHex
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func `%`*[T](elements: openArray[T]): JsonNode =
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let jObj = newJArray()
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for elem in elements: jObj.add(%elem)
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jObj
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func `%`*[T: distinct](id: T): JsonNode =
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type baseType = T.distinctBase
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% baseType(id)
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proc toJsnImpl(x: NimNode): NimNode =
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case x.kind
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of nnkBracket: # array
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if x.len == 0: return newCall(bindSym"newJArray")
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result = newNimNode(nnkBracket)
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for i in 0 ..< x.len:
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result.add(toJsnImpl(x[i]))
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result = newCall(bindSym("%", brOpen), result)
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of nnkTableConstr: # object
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if x.len == 0: return newCall(bindSym"newJObject")
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result = newNimNode(nnkTableConstr)
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for i in 0 ..< x.len:
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x[i].expectKind nnkExprColonExpr
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result.add newTree(nnkExprColonExpr, x[i][0], toJsnImpl(x[i][1]))
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result = newCall(bindSym("%", brOpen), result)
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of nnkCurly: # empty object
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x.expectLen(0)
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result = newCall(bindSym"newJObject")
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of nnkNilLit:
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result = newCall(bindSym"newJNull")
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of nnkPar:
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if x.len == 1: result = toJsnImpl(x[0])
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else: result = newCall(bindSym("%", brOpen), x)
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else:
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result = newCall(bindSym("%", brOpen), x)
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macro `%*`*(x: untyped): JsonNode =
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## Convert an expression to a JsonNode directly, without having to specify
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## `%` for every element.
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result = toJsnImpl(x)
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