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@ -160,6 +160,8 @@ class Example7Class {
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example7() {
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Example7Class.sayItFromClass();
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new Example7Class().sayItFromInstance();
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//the new keyword is optional, so this is the same
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Example7Class().sayItFromInstance();
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}
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/// Dart supports Generics.
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@ -175,7 +177,7 @@ example7() {
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/// K,V - Key Value(used for Map)
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class GenericExample<T>{
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void printType(){
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print("$T")
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print("$T");
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}
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// methods can also have generics
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genericMethod<M>(){
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@ -200,8 +202,8 @@ class GenericExample<T>{
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const example8List = ["Example8 const array"];
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const example8Map = {"someKey": "Example8 const map"};
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/// Declare List or Maps as Objects.
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List<String> explicitList = new List<String>();
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Map<String,dynamic> explicitMaps = new Map<String,dynamic>();
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List<String> explicitList = <String>[]; //new List<String>() is now
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Map<String,dynamic> explicitMaps = <String,dynamic>{};
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explicitList.add("SomeArray");
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example8() {
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@ -214,8 +216,8 @@ example8() {
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/// So when you assign an existing list to a new variable.
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/// Instead of List, it becomes an Iterable
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var iterableExplicitList = explicitList;
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print(iterableExplicitList) // ("SomeArray"); "[]" becomes "()"
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var newExplicitLists = explicitList.toList() // Converts Iterable<E> to List<E>
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print(iterableExplicitList); // ("SomeArray"); "[]" becomes "()"
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var newExplicitLists = explicitList.toList(); // Converts Iterable<E> to List<E>
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/// Loops in Dart take the form of standard for () {} or while () {} loops,
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/// slightly more modern for (.. in ..) {}, or functional callbacks with many
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@ -308,12 +310,12 @@ example13() {
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/// Boolean expressions support implicit conversions and dynamic type
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example14() {
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var a = true;
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bool? a = true;
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if (a) {
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print("true, a is $a");
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}
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a = false;
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if (a) {
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a = null;
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if (a ?? false) { //if null count as false
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print("true, a is $a");
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} else {
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print("false, a is $a"); /// runs here
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@ -416,39 +418,6 @@ example20() {
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print("Example20 \$ interpolation ${s1} or $s2 works.");
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}
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/// Optional types allow for the annotation of APIs and come to the aid of
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/// IDEs so the IDEs can better refactor, auto-complete and check for
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/// errors. So far we haven't declared any types and the programs have
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/// worked just fine. In fact, types are disregarded during runtime.
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/// Types can even be wrong and the program will still be given the
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/// benefit of the doubt and be run as though the types didn't matter.
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/// There's a runtime parameter that checks for type errors which is
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/// the checked mode, which is said to be useful during development time,
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/// but which is also slower because of the extra checking and is thus
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/// avoided during deployment runtime.
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class Example21 {
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List<String> _names;
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Example21() {
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_names = ["a", "b"];
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}
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List<String> get names => _names;
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set names(List<String> list) {
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_names = list;
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}
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int get length => _names.length;
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void add(String name) {
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_names.add(name);
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}
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}
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void example21() {
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Example21 o = new Example21();
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o.add("c");
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print("Example21 names '${o.names}' and length '${o.length}'");
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o.names = ["d", "e"];
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print("Example21 names '${o.names}' and length '${o.length}'");
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}
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/// Class inheritance takes the form of class name extends AnotherClassName {}.
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class Example22A {
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@ -470,7 +439,7 @@ example22() {
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/// Mixin is mostly used to share methods with distant classes, so the
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/// single inheritance doesn't get in the way of reusable code.
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/// Mixins follow the "with" statement during the class declaration.
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class Example23A {}
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mixin class Example23A {}
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class Example23Utils {
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addTwo(n1, n2) {
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@ -496,14 +465,14 @@ example23() {
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/// super-parent's constructor.
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class Example24A {
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var _value;
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Example24A({value: "someValue"}) {
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Example24A({value = "someValue"}) {
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_value = value;
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}
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get value => _value;
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}
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class Example24B extends Example24A {
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Example24B({value: "someOtherValue"}) : super(value: value);
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Example24B({value = "someOtherValue"}) : super(value: value);
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}
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example24() {
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@ -606,7 +575,7 @@ example29() {
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}
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rand() {
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v = new DM.Random().nextInt(50);
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v = new math.Random().nextInt(50);
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return v;
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}
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@ -631,7 +600,7 @@ example30() {
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top = int.parse("123") ~/ n2,
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bottom = 0;
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top = top ~/ 6;
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gn = new DM.Random().nextInt(top + 1); /// +1 because nextInt top is exclusive
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gn = new math.Random().nextInt(top + 1); /// +1 because nextInt top is exclusive
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print("Example30 Guess a number between 0 and ${top}");
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guessNumber(i) {
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if (n == gn) {
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@ -709,7 +678,7 @@ main() {
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example6, example7, example8, example9, example10,
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example11, example12, example13, example14, example15,
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example16, example17, example18, example19, example20,
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example21, example22, example23, example24, example25,
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example22, example23, example24, example25,
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example26, example27, example28, example29,
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example30 // Adding this comment stops the dart formatter from putting all items on a new line
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].forEach((ef) => ef());
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