Make TypeMap work exacly with anons.
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@@ -138,7 +138,7 @@ class Sisyphus {
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}
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}
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static function exactBase<T:BaseType>(r:haxe.macro.Type.Ref<T>, params:Array<Type>) {
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static function exactBase<T:BaseType>(r:Ref<T>, params:Array<Type>) {
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var t = r.get();
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var isMain = !t.isPrivate && switch t.pack {
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case []: t.module == t.name || t.module == 'StdTypes';
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@@ -197,4 +197,29 @@ class Sisyphus {
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case TLazy(f): toExactString(f());
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}
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static function eager(t:Type)
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return switch t {
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case TLazy(f): eager(f());
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default: t;
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}
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static public function compare(t1:Type, t2:Type, ?follow:Bool = true) {
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if (follow) {
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t1 = t1.reduce();
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t2 = t2.reduce();
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}
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else {
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t1 = eager(t1);
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t2 = eager(t2);
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}
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return switch t1.getIndex() - t2.getIndex() {
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case 0:
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switch Reflect.compare(t1.toString(), t2.toString()) {
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case 0: Reflect.compare(t1.toExactString(), t2.toExactString());
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case v: v;
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}
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case v: v;
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}
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}
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}
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@@ -10,6 +10,8 @@ using haxe.macro.Tools;
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using tink.MacroApi;
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using tink.CoreApi;
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import haxe.macro.Type.Ref;
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class Types {
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static public function definedType(typeName:String)
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@@ -355,18 +357,8 @@ class Types {
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throw 'assert';
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}
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static public function compare(t1:Type, t2:Type, ?follow:Bool = true) {
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if (follow) {
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t1 = t1.reduce();
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t2 = t2.reduce();
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}
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return switch t1.getIndex() - t2.getIndex() {
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case 0:
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Reflect.compare(t1.toString(), t2.toString());//much to my surprise, this actually seems to work (at least with 3.4)
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case v: v;
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}
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}
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static public function compare(t1:Type, t2:Type, ?follow:Bool = true)
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return Sisyphus.compare(t1, t2, follow);
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static var SUGGESTIONS = ~/ \(Suggestions?: .*\)$/;
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@@ -1,4 +1,3 @@
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import haxe.macro.Context;
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import haxe.macro.Context.typeof;
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using tink.MacroApi;
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@@ -12,6 +11,8 @@ class ExactStrings extends Base {
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expect('Dummy.Private', macro Dummy.p);
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expect('nested.Dummy.Private', macro nested.Dummy.p);
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expect('{ @foo var x:Int; }', macro (null:{@foo var x:Int;}));
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expect('{ @foo @bar var x:Int; }', macro (null:{@foo @bar var x:Int;}));
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expect('{ @bar @foo var x:Int; }', macro (null:{@bar @foo var x:Int;}));// not 100% sure this is always the best choice, but let's roll with it
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expect('{ @bar var x:Int; }', macro (null:{@bar var x:Int;}));
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expect('{ var x:Int; var y:Int; }', macro (null:{x:Int,y:Int}));
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expect('{ var x:Int; var y:Int; }', macro (null:{y:Int,x:Int}));
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@@ -11,6 +11,8 @@ class TypeMapTest extends TestCase {
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var t = new TypeMap();
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var t1 = (macro [{ foo: [{ bar: '5' }]}]).typeof().sure();
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var t2 = (macro [{ foo: [{ bar: 5 }]}]).typeof().sure();
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var t3 = (macro [{ foo: [{ bar: 5 }]}]).typeof().sure();
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var t4 = (macro [{ foo: [({ bar: 5 }:{ @foo var bar:Int; })]}]).typeof().sure();
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t.set(t1, 0);
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assertEquals(Lambda.count(t), 1);
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@@ -19,7 +21,10 @@ class TypeMapTest extends TestCase {
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t.set(t1, 2);
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assertEquals(Lambda.count(t), 2);
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t.set(t2, 3);
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t.set(t3, 3);
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assertEquals(Lambda.count(t), 2);
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t.set(t4, 4);
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assertEquals(Lambda.count(t), 3);
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assertEquals(t.get(t1), 2);
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assertEquals(t.get(t2), 3);
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@@ -10,36 +10,35 @@ using tink.MacroApi;
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class Types extends Base {
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function type(c:ComplexType)
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return c.toType().sure();
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function resolve(type:String)
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return Context.getType(type);
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inline function assertSuccess<S, F>(o:Outcome<S, F>)
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assertTrue(o.isSuccess());
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inline function assertFailure<S, F>(o:Outcome<S, F>)
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assertFalse(o.isSuccess());
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function testIs() {
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assertSuccess(resolve('Int').isSubTypeOf(resolve('Float')));
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assertFailure(resolve('Float').isSubTypeOf(resolve('Int')));
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}
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}
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function testFields() {
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var expected = type(macro : Void -> Iterator<Arrayish>),
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iterator = type(macro : haxe.ds.StringMap<Arrayish>).getFields(true).sure().filter(function (c) return c.name == 'iterator')[0];
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assertSuccess(iterator.type.isSubTypeOf(expected));
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assertSuccess(expected.isSubTypeOf(iterator.type));
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}
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function testConvert() {
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assertSuccess((macro : Int).toType());
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assertFailure((macro : Tni).toType());
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function blank()
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return type(MacroApi.pos().makeBlankType());
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var bool = type(macro : Bool);
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assertTrue(blank().isSubTypeOf(bool).isSuccess());
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assertTrue(bool.isSubTypeOf(blank()).isSuccess());
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@@ -65,7 +64,7 @@ class Types extends Base {
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assertEquals('String', Context.getType('String').toComplex().toString());
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assertEquals('tink.CoreApi.Noise', Context.getType('tink.CoreApi.Noise').toComplex().toString());
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}
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function testDeduceCommonType() {
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function ct2t(ct:ComplexType) return ct.toType().sure();
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assertEquals('StdTypes.Float', tink.macro.Types.deduceCommonType([(macro:Float), (macro:Int)].map(ct2t)).sure().toComplex().toString());
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