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1
.gitignore
vendored
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1
.gitignore
vendored
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@@ -0,0 +1 @@
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/bin
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5
.vscode/settings.json
vendored
Normal file
5
.vscode/settings.json
vendored
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@@ -0,0 +1,5 @@
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{
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"haxe.displayConfigurations": [
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["tests.hxml"]
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]
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}
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6
.vscode/tasks.json
vendored
Normal file
6
.vscode/tasks.json
vendored
Normal file
@@ -0,0 +1,6 @@
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{
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"version": "0.1.0",
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"command": "haxelib",
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"args": ["run", "travix", "node"],
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"problemMatcher": "$haxe"
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}
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@@ -1,5 +1,7 @@
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# Tinkerbell Macro Library
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[](https://gitter.im/haxetink/public)
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[](https://travis-ci.org/haxetink/tink_macro)
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[](https://gitter.im/haxetink/public)
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Explained in current marketing speak, `tink_macro` is *the* macro toolkit ;)
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@@ -301,7 +303,7 @@ abstract Member from Field to Field {
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Most of the API should be self-explaining. The `isBound` property is a bad name to convey the concept that a field can be either `inline` (`true`) or `dynamic` (`false`) or neither (`null`). Equally, `isPublic` is nullable which means that normally defaults to `private`.
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The `publish` method will make a field `public` if it is not `private`. This can also be done with `if (m.isPublic == null) m.isPublic = true;` but the implementation is far more efficient - for what its worth.
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The `publish` method will make a field `public` if it is not explicitly marked as `private`. This can also be done with `if (m.isPublic == null) m.isPublic = true;` but the implementation is far more efficient - for what its worth.
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The `extractMeta` method will "peel of" the first tag with a given `name` - if available. Note that the tag will be removed from the member.
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@@ -389,7 +391,7 @@ The `init` method is the swiss army knife of initializing fields. The `options.p
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#### Setter Bypass
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It is important to know that when you initialize a field with `options.bypass` set to true, existing setters will by bypassed. That's particularly helpful if your setter triggers a side effect that you don't want triggered. This is achieved by generating the assignment as `(untyped this).$name = $value`. To make the code typesafe again, this is prefixed with `if (false) { var __tmp = this.$name; __tmp = $value; }`. This code is later thrown out by the compiler. Its role is to ensure type safety without interfering with the normal typing order.
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It is important to know that when you initialize a field with `options.bypass` set to true, existing setters will be bypassed. That's particularly helpful if your setter triggers a side effect that you don't want triggered. This is achieved by generating the assignment as `(untyped this).$name = $value`. To make the code typesafe again, this is prefixed with `if (false) { var __tmp = this.$name; __tmp = $value; }`. This code is later thrown out by the compiler. Its role is to ensure type safety without interfering with the normal typing order.
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Setter bypass also causes the field to gain an `@:isVar`. And currently, with `-dce full`, additional code will be generated to avoid the field to be eliminated.
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1
bin/.gitignore
vendored
1
bin/.gitignore
vendored
@@ -1 +0,0 @@
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*.n
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24
haxelib.json
24
haxelib.json
@@ -1,20 +1,20 @@
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{
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"name": "tink_macro",
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"license": "MIT",
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"description": "The macro toolkit ;)",
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"classPath": "src",
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"dependencies": {
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"tink_core": ""
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},
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"url": "http://haxetink.org/tink_macro",
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"contributors": [
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"back2dos"
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],
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"version": "0.15.0",
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"releasenote": "Keep up with Haxe 4.",
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"tags": [
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"tink",
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"macro",
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"utility"
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],
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"classPath": "src",
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"description": "The macro toolkit ;)",
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"contributors": [
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"back2dos"
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],
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"releasenote": "Alias for TypeMap",
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"version": "0.13.3",
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"url": "http://haxetink.org/tink_macro",
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"dependencies": {
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"tink_core": ""
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}
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"license": "MIT"
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}
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@@ -9,51 +9,51 @@ using tink.MacroApi;
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using Lambda;
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class ClassBuilder {
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var memberList:Array<Member>;
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var macros:Map<String,Field>;
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var constructor:Null<Constructor>;
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public var target(default, null):ClassType;
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var superFields:Map<String,Bool>;
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var initializeFrom:Array<Field>;
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public function new(?target, ?fields) {
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if (target == null)
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public function new(?target, ?fields) {
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if (target == null)
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target = Context.getLocalClass().get();
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if (fields == null)
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fields = Context.getBuildFields();
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this.initializeFrom = fields;
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this.target = target;
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}
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function init() {
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if (initializeFrom == null) return;
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var fields = initializeFrom;
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initializeFrom = null;
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this.memberList = [];
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this.macros = new Map();
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for (field in fields)
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for (field in fields)
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if (field.access.has(AMacro))
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macros.set(field.name, field)
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else if (field.name == 'new') {
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var m:Member = field;
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this.constructor = new Constructor(this, m.getFunction().sure(), m.isPublic, m.pos, field.meta);
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}
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else
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else
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doAddMember(field);
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}
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public function getConstructor(?fallback:Function):Constructor {
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init();
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if (constructor == null)
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if (constructor == null)
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if (fallback != null)
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constructor = new Constructor(this, fallback);
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else {
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@@ -64,18 +64,18 @@ class ClassBuilder {
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try {
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var ctor = cl.constructor.get();
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var func = Context.getTypedExpr(ctor.expr()).getFunction().sure();
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for (arg in func.args) //this is to deal with type parameter substitutions
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arg.type = null;
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func.expr = "super".resolve().call(func.getArgIdents());
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constructor = new Constructor(this, func);
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if (ctor.isPublic)
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constructor.publish();
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constructor.publish();
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}
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catch (e:Dynamic) {//fails for unknown reason
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if (e == 'assert')
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neko.Lib.rethrow(e);
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tink.core.Error.rethrow(e);
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constructor = new Constructor(this, null);
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}
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break;
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@@ -85,15 +85,15 @@ class ClassBuilder {
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if (constructor == null)
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constructor = new Constructor(this, null);
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}
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return constructor;
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}
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public function hasConstructor():Bool {
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init();
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return this.constructor != null;
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}
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public function export(?verbose):Array<Field> {
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if (initializeFrom != null) return null;
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var ret = (constructor == null || target.isInterface) ? [] : [constructor.toHaxe()];
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@@ -108,24 +108,24 @@ class ClassBuilder {
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}
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for (m in macros)
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ret.push(m);
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if (verbose)
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for (field in ret)
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if (verbose)
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for (field in ret)
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Context.warning(new Printer().printField(field), field.pos);
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return ret;
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return ret;
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}
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public function iterator():Iterator<Member> {
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init();
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return this.memberList.copy().iterator();
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}
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public function hasOwnMember(name:String):Bool {
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init();
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return
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return
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macros.exists(name) || memberByName(name).isSuccess();
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}
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public function hasSuperField(name:String):Bool {
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if (superFields == null) {
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superFields = new Map();
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@@ -139,51 +139,51 @@ class ClassBuilder {
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}
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return superFields.get(name);
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}
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public function memberByName(name:String, ?pos:Position) {
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init();
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for (m in memberList)
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if (m.name == name)
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if (m.name == name)
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return Success(m);
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return pos.makeFailure('unknown member $name');
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}
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public function removeMember(member:Member):Bool {
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init();
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return
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return
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memberList.remove(member);
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}
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public function hasMember(name:String):Bool
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public function hasMember(name:String):Bool
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return hasOwnMember(name) || hasSuperField(name);
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function doAddMember(m:Member, ?front:Bool = false):Member {
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init();
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if (m.name == 'new')
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if (m.name == 'new')
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throw 'Constructor must not be registered as ordinary member';
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//if (hasOwnMember(m.name))
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//if (hasOwnMember(m.name))
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//m.pos.error('duplicate member declaration ' + m.name);
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if (front)
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if (front)
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memberList.unshift(m);
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else
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memberList.push(m);
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return m;
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}
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public function addMember(m:Member, ?front:Bool = false):Member {
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doAddMember(m, front);
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if (!m.isStatic && hasSuperField(m.name))
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m.overrides = true;
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else
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memberList.push(m);
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return m;
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}
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public function addMember(m:Member, ?front:Bool = false):Member {
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doAddMember(m, front);
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if (!m.isStatic && hasSuperField(m.name))
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m.overrides = true;
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return m;
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}
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static public function run(plugins:Array<ClassBuilder->Void>, ?verbose) {
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var builder = new ClassBuilder();
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for (p in plugins)
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@@ -62,6 +62,10 @@ class Constructor {
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default: [].toBlock();
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}
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}
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public function getArgList():Array<FunctionArg>
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return beforeArgs.concat(args).concat(afterArgs);
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public function addStatement(e:Expr, ?prepend)
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if (prepend)
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this.nuStatements.unshift(e)
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@@ -241,7 +241,7 @@ class Exprs {
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}
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static public inline function iterate(target:Expr, body:Expr, ?loopVar:String = 'i', ?pos:Position)
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return EFor(EIn(loopVar.resolve(pos), target).at(pos), body).at(pos);
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return macro @:pos(pos.sanitize()) for ($i{loopVar} in $target) $body;
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static public function toFields(object:Dynamic<Expr>, ?pos:Position)
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return EObjectDecl([for (field in Reflect.fields(object))
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@@ -17,6 +17,7 @@ class Sisyphus {
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case AccCall: getOrSet;
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case AccInline: "default";
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case AccRequire(_, _): "default";
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default: throw "not implemented";
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}
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}
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if (cf.params.length == 0) {
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@@ -102,4 +103,4 @@ class Sisyphus {
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params: [ for (t in params) TPType(toComplexType(t)) ],
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}
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}
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}
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}
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@@ -19,10 +19,10 @@ class Types {
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try {
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Some(Context.getType(typeName));
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}
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catch (e:Dynamic)
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catch (e:Dynamic)
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if (Std.string(e) == 'Type not found \'$typeName\'') None;
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else neko.Lib.rethrow(e);
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else tink.core.Error.rethrow(e);
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||||
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static var types = new Map<Int,Void->Type>();
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static var idCounter = 0;
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static public function getID(t:Type, ?reduced = true)
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@@ -49,6 +49,16 @@ class Types {
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throw 'not implemented';
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}
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static public function getMeta(type:Type)
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return switch type {
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case TInst(_.get().meta => m, _): [m];
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case TEnum(_.get().meta => m, _): [m];
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case TAbstract(_.get().meta => m, _): [m];
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case TType(_.get() => t, _): [t.meta].concat(getMeta(t.type));
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case TLazy(f): getMeta(f());
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default: [];
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||||
}
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|
||||
static function getDeclaredFields(t:ClassType, out:Array<ClassField>, marker:Map<String,Bool>) {
|
||||
for (field in t.fields.get())
|
||||
if (!marker.exists(field.name)) {
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||||
@@ -173,14 +183,14 @@ class Types {
|
||||
params : [TPExpr(register(f).toExpr())],
|
||||
sub : null,
|
||||
});
|
||||
|
||||
|
||||
static function resolveDirectType()
|
||||
return
|
||||
return
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switch reduce(Context.getLocalType()) {
|
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case TInst(_, [TInst(_.get() => { kind: KExpr(e) }, _)]):
|
||||
case TInst(_, [TInst(_.get() => { kind: KExpr(e) }, _)]):
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types[e.getInt().sure()]();//When using compiler server, this call throws on occasion, in which case modifying this file (to update mtime and invalidate the cache) will solve the problem
|
||||
default:
|
||||
default:
|
||||
throw 'assert';
|
||||
}
|
||||
|
||||
|
||||
}
|
||||
|
Reference in New Issue
Block a user