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SerializationExamples.scala
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SerializationExamples.scala
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/*
* Copyright 2009-2011 WorldWide Conferencing, LLC
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
package net.liftweb
package json
import java.util.Date
import org.specs.Specification
object SerializationExamples extends Specification {
import Serialization.{read, write => swrite}
implicit val formats = Serialization.formats(NoTypeHints)
val project = Project("test", new Date, Some(Language("Scala", 2.75)), List(
Team("QA", List(Employee("John Doe", 5), Employee("Mike", 3))),
Team("Impl", List(Employee("Mark", 4), Employee("Mary", 5), Employee("Nick Noob", 1)))))
"Project serialization example" in {
val ser = swrite(project)
read[Project](ser) mustEqual project
}
case class Project(name: String, startDate: Date, lang: Option[Language], teams: List[Team])
case class Language(name: String, version: Double)
case class Team(role: String, members: List[Employee])
case class Employee(name: String, experience: Int)
"Null example" in {
val ser = swrite(Nullable(null))
read[Nullable](ser) mustEqual Nullable(null)
}
case class Nullable(name: String)
"Lotto serialization example" in {
import LottoExample.{Lotto, lotto}
val ser = swrite(lotto)
read[Lotto](ser) mustEqual lotto
}
"Primitive serialization example" in {
val primitives = Primitives(124, 123L, 126.5, 127.5.floatValue, "128", 's, 125, 129.byteValue, true)
val ser = swrite(primitives)
read[Primitives](ser) mustEqual primitives
}
"Multidimensional list example" in {
val ints = Ints(List(List(1, 2), List(3), List(4, 5)))
val ser = swrite(ints)
read[Ints](ser) mustEqual ints
}
"Map serialization example" in {
val p = PersonWithAddresses("joe", Map("address1" -> Address("Bulevard", "Helsinki"),
"address2" -> Address("Soho", "London")))
val ser = swrite(p)
read[PersonWithAddresses](ser) mustEqual p
}
"Recursive type serialization example" in {
val r1 = Rec(1, Nil)
val r2 = Rec(2, Nil)
val r3 = Rec(3, r1 :: r2 :: Nil)
val ser = swrite(r3)
read[Rec](ser) mustEqual r3
}
"Set serialization example" in {
val s = SetContainer(Set("foo", "bar"))
val ser = swrite(s)
read[SetContainer](ser) mustEqual s
}
"Array serialization example" in {
val s = ArrayContainer(Array("foo", "bar"))
val ser = swrite(s);
val unser = read[ArrayContainer](ser)
s.array.toList mustEqual unser.array.toList
}
"Seq serialization example" in {
val s = SeqContainer(List("foo", "bar"))
val ser = swrite(s)
read[SeqContainer](ser) mustEqual s
}
"None Option of tuple serialization example" in {
// This is a regression test case, failed in lift json
val s = OptionOfTupleOfDouble(None)
val ser = swrite(s)
read[OptionOfTupleOfDouble](ser) mustEqual s
}
"Case class with internal state example" in {
val m = Members("s", 1)
val ser = swrite(m)
ser mustEqual """{"x":"s","y":1}"""
read[Members](ser) mustEqual m
}
case class Ints(x: List[List[Int]])
case class Rec(n: Int, xs: List[Rec])
case class Members(x: String, y: Int) {
val foo1 = "foo"
lazy val foo2 = "foo"
}
}
object ShortTypeHintExamples extends TypeHintExamples {
implicit val formats = Serialization.formats(ShortTypeHints(classOf[Fish] :: classOf[Dog] :: Nil))
}
object FullTypeHintExamples extends TypeHintExamples {
import Serialization.{read, write => swrite}
implicit val formats = Serialization.formats(FullTypeHints(List[Class[_]](classOf[Animal], classOf[True], classOf[False], classOf[Falcon], classOf[Chicken])))
"Ambiguous field decomposition example" in {
val a = Ambiguous(False())
val ser = swrite(a)
read[Ambiguous](ser) mustEqual a
}
"Ambiguous parameterized field decomposition example" in {
val o = AmbiguousP(Chicken(23))
val ser = swrite(o)
read[AmbiguousP](ser) mustEqual o
}
"Option of ambiguous field decomposition example" in {
val o = OptionOfAmbiguous(Some(True()))
val ser = swrite(o)
read[OptionOfAmbiguous](ser) mustEqual o
}
"Option of ambiguous parameterized field decomposition example" in {
val o = OptionOfAmbiguousP(Some(Falcon(200.0)))
val ser = swrite(o)
read[OptionOfAmbiguousP](ser) mustEqual o
}
}
object CustomTypeHintFieldNameExample extends TypeHintExamples {
import Serialization.{read, write => swrite}
implicit val formats = new Formats {
val dateFormat = DefaultFormats.lossless.dateFormat
override val typeHints = ShortTypeHints(classOf[Fish] :: classOf[Dog] :: Nil)
override val typeHintFieldName = "$type$"
}
"Serialized JSON contains configured field name" in {
val animals = Animals(Dog("pluto") :: Fish(1.2) :: Nil, Dog("pluto"))
val ser = swrite(animals)
ser mustEqual """{"animals":[{"$type$":"Dog","name":"pluto"},{"$type$":"Fish","weight":1.2}],"pet":{"$type$":"Dog","name":"pluto"}}"""
}
}
trait TypeHintExamples extends Specification {
import Serialization.{read, write => swrite}
implicit val formats: Formats
"Polymorphic List serialization example" in {
val animals = Animals(Dog("pluto") :: Fish(1.2) :: Dog("devil") :: Nil, Dog("pluto"))
val ser = swrite(animals)
read[Animals](ser) mustEqual animals
}
"Parameterized type serialization example" in {
val objs = Objs(Obj(Fish(1.2)) :: Obj(Dog("pluto")) :: Nil)
val ser = swrite(objs)
read[Objs](ser) mustEqual objs
}
"Tuple serialization example" in {
val t: (Animal, Animal) = (Fish(1.5), Dog("pluto"))
val ser = swrite(t)
read[(Animal, Animal)](ser) mustEqual t
}
}
case class Animals(animals: List[Animal], pet: Animal)
trait Animal
case class Dog(name: String) extends Animal
case class Fish(weight: Double) extends Animal
case class Objs(objects: List[Obj[_]])
case class Obj[A](a: A)
object CustomClassExamples extends Specification {
import Serialization.{read, write => swrite}
import JsonAST._
import java.util.regex.Pattern
class IntervalSerializer extends Serializer[Interval] {
private val IntervalClass = classOf[Interval]
def deserialize(implicit format: Formats): PartialFunction[(TypeInfo, JValue), Interval] = {
case (TypeInfo(IntervalClass, _), json) => json match {
case JObject(JField("start", JInt(s)) :: JField("end", JInt(e)) :: Nil) =>
new Interval(s.longValue, e.longValue)
case x => throw new MappingException("Can't convert " + x + " to Interval")
}
}
def serialize(implicit format: Formats): PartialFunction[Any, JValue] = {
case x: Interval =>
JObject(JField("start", JInt(BigInt(x.startTime))) ::
JField("end", JInt(BigInt(x.endTime))) :: Nil)
}
}
class PatternSerializer extends Serializer[Pattern] {
private val PatternClass = classOf[Pattern]
def deserialize(implicit format: Formats): PartialFunction[(TypeInfo, JValue), Pattern] = {
case (TypeInfo(PatternClass, _), json) => json match {
case JObject(JField("$pattern", JString(s)) :: Nil) => Pattern.compile(s)
case x => throw new MappingException("Can't convert " + x + " to Pattern")
}
}
def serialize(implicit format: Formats): PartialFunction[Any, JValue] = {
case x: Pattern => JObject(JField("$pattern", JString(x.pattern)) :: Nil)
}
}
class DateSerializer extends Serializer[Date] {
private val DateClass = classOf[Date]
def deserialize(implicit format: Formats): PartialFunction[(TypeInfo, JValue), Date] = {
case (TypeInfo(DateClass, _), json) => json match {
case JObject(List(JField("$dt", JString(s)))) =>
format.dateFormat.parse(s).getOrElse(throw new MappingException("Can't parse "+ s + " to Date"))
case x => throw new MappingException("Can't convert " + x + " to Date")
}
}
def serialize(implicit format: Formats): PartialFunction[Any, JValue] = {
case x: Date => JObject(JField("$dt", JString(format.dateFormat.format(x))) :: Nil)
}
}
implicit val formats = Serialization.formats(NoTypeHints) +
new IntervalSerializer + new PatternSerializer + new DateSerializer
val i = new Interval(1, 4)
val ser = swrite(i)
ser mustEqual """{"start":1,"end":4}"""
val i2 = read[Interval](ser)
i2.startTime mustEqual i.startTime
i2.endTime mustEqual i.endTime
val p = Pattern.compile("^Curly")
val pser = swrite(p)
pser mustEqual """{"$pattern":"^Curly"}"""
read[Pattern](pser).pattern mustEqual p.pattern
val d = new Date(0)
var dser = swrite(d)
dser mustEqual """{"$dt":"1970-01-01T00:00:00.000Z"}"""
read[Date](dser) mustEqual d
}
class Interval(start: Long, end: Long) {
val startTime = start
val endTime = end
}
object CustomClassWithTypeHintsExamples extends Specification {
import Serialization.{read, write => swrite}
import JsonAST._
val hints = new ShortTypeHints(classOf[DateTime] :: Nil) {
override def serialize: PartialFunction[Any, JObject] = {
case t: DateTime => JObject(JField("t", JInt(t.time)) :: Nil)
}
override def deserialize: PartialFunction[(String, JObject), Any] = {
case ("DateTime", JObject(JField("t", JInt(t)) :: Nil)) => new DateTime(t.longValue)
}
}
implicit val formats = Serialization.formats(hints)
"Custom class serialization using provided serialization and deserialization functions" in {
val m = Meeting("The place", new DateTime(1256681210802L))
val ser = swrite(m)
val m2 = read[Meeting](ser)
m.place mustEqual m2.place
m.time.time mustEqual m2.time.time
}
"List of custom classes example" in {
val ts = Times(List(new DateTime(123L), new DateTime(234L)))
val ser = swrite(ts)
val ts2 = read[Times](ser)
ts2.times(0).time mustEqual 123L
ts2.times(1).time mustEqual 234L
ts2.times.size mustEqual 2
}
}
case class Meeting(place: String, time: DateTime)
class DateTime(val time: Long)
case class Times(times: List[DateTime])
sealed abstract class Bool
case class True() extends Bool
case class False() extends Bool
case class Ambiguous(child: Bool)
trait Bird
case class Falcon(weight: Double) extends Bird
case class Chicken(eggs: Int) extends Bird
case class AmbiguousP(bird: Bird)
case class OptionOfAmbiguous(opt: Option[Bool])
case class OptionOfAmbiguousP(opt: Option[Bird])
case class SetContainer(set: Set[String])
case class ArrayContainer(array: Array[String])
case class SeqContainer(seq: Seq[String])
case class OptionOfTupleOfDouble(position: Option[Tuple2[Double, Double]])