OopNegativeSemanticTest.ttcn 8.98 KB
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/******************************************************************************
 * Copyright (c) 2000-2021 Ericsson Telecom AB
 * All rights reserved. This program and the accompanying materials
 * are made available under the terms of the Eclipse Public License v2.0
 * which accompanies this distribution, and is available at
 * https://www.eclipse.org/org/documents/epl-2.0/EPL-2.0.html
 *
 * Contributors:
 *   Magyari, Miklos
 *
 ******************************************************************************/

module classesNegativeSemantic { 

type component CT {
	port PT pt_PT;
}

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type component CT2 {
	port PT pt2_PT;
}

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type port PT message { inout integer; } with { extension "internal" }

type union MyUnion {
	integer a,
	charstring b
};

type class CorrectClass1 { }

type class BadInheritance extends MyUnion {

}

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type class MinimalClass { }
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type class @trait BaseClass { }
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type class @abstract MinimalAbstractClass { }
type class @final MinimalFinalClass { }
type class @trait MinimalTraitClass { }

type class BadExtends extends MinimalClass, MinimalAbstractClass, MinimalFinalClass, MinimalTraitClass {
	// dummy
}

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type class @trait BadExtends2 extends MinimalClass, MinimalTraitClass {
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	// dummy
}

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type class BadExtends3 extends MinimalFinalClass {
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}

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type class RepeatedExtends extends MinimalClass, BaseClass, MinimalClass {
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}

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// runs on compatibility
type class RunsonClass1 runs on CT { }
type class RunsonClass2 extends RunsonClass1 runs on CT { }
type class RunsonClass3 extends RunsonClass1 runs on CT2 { }

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// mtc compatibility
type class MtcClass1 mtc CT { }
type class MtcClass2 extends MtcClass1 mtc CT { }
type class MtcClass3 extends MtcClass1 mtc CT2 { }

// system compatibility
type class SystemClass1 system CT { }
type class SystemClass2 extends SystemClass1 system CT2 { }
type class SystemClass3 extends SystemClass1 system CT { }

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// self extend
type class @trait TC {}
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type class AA extends DD, TC, DD { }
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type class BB extends AA { }
type class CC extends BB { } 
type class DD extends CC { }
type class EE extends EE { }

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type class @trait BadTraitClass {
	public var integer m_int := 0;
	public timer Timer;
	
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	create (charstring pl_str) {
		var float vl_float := 1.0;
	}
	
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	private function @abstract f_valid(integer pl_int);
	public function f_invalid_non_abstract(in charstring pl_cstr);
	private function @abstract f_invalid(integer pl_int) {
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		// this should not be here
	}
	
}

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type class ClassWithAbstract1 {
	function @abstract f_abs();
}

type class @final ClassWithAbstract2 {
	function @abstract f_abs();
}

type class @trait ClassWithAbstract3 {
	function @abstract f_abs();
}

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type class @abstract ClassWithAbstract4 {
	function @abstract f_abs1(in charstring pl_str);
	function f_non_abs(in charstring pl_str) { 
		//dummy implementation
	}
	public function @abstract f_abs2();
}

type class InheritedAbstract extends ClassWithAbstract4 { }
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type class SuperClass {
	var integer vl_a;
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	template MyUnion t_union := { a := 10 }
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}
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type class SubClass extends SuperClass {
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	public var integer vl_b;
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}

type class GrandSubClass extends SubClass {
	var integer vl_c;
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	template MyUnion t_union2 := { nonexist := 10 }		// non-existing template member
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}

type class GrandSubClass2 extends SubClass {
	var charstring vl_b;
}

type class BaseFunctionClass {
	public function f_get_one() return integer {
		return 1; 
	}
}

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// constructor
type class ConstructorClass {
	create(integer pl_i1, in integer pl_i2, inout integer pl_i3, out integer pl_i4) {}
}

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type class OuterClass {
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	private var integer m_int := 0; 
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	class NestedClass {
		const charstring c_text := "abc";

		class InnerClass {
			private template MyUnion t_union;
			public var integer badInteger := "xyz";
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			public class EvenDeeper {
				public const charstring chr := "abc";
				
				public class Core {			  
    				public function f_inside(in integer pl_int) return charstring {
    					return this.chr;
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					}
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				}
			}
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		}
	}
}

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// constant initialization
type class ConstantInitialization1 {
	const integer const_int; 
	
	function f_create(integer pl_create_int) {
		const_int := pl_create_int;
	}
}

type class ConstantInitialization2 {
	const integer const_int := 0; 
	
	create(integer pl_create_int) {
		const_int := pl_create_int;
	}
}

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type class ReuseClass {
	var charstring vl_orig := "abc";
	
	function f_reuse_id(in integer pl_param) {
		var integer vl_orig := 1;
		vl_orig := 2;
		vl_orig := "abc";	// type mismatch: local definition takes precedence
	}
}

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const integer cg_uninitConst1;

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type class SubFunctionClass extends BaseFunctionClass {  
	private const integer m_const := 1;
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	private const integer m_uninitConst2;
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	public function f_get_one() return integer {		// FIXME : incomplete marker
		return m_const;
	}
}

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// an abstract class can have a finally block
type class @abstract FinallyClass {
	public const integer m_const := 0;
} finally {
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	log(this.m_const);
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}

// a trait class cannot have a finally block
type class @trait FinallyClass2 {
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	public function f_pub();
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} finally {
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	log(this.m_const);
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}

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// finally blocks canot have a return clause
type class FinallyClass3 {
	public function f_pub() { }
} finally {
	return;
}

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// bad combination of class modifiers
type class @final @abstract BadClass1 { }
type class @final @trait BadClass3 { }
type class @abstract @trait BadClass2 { }

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// class with this
type class ClassWithThis {
	public var integer vl_a;
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	public var integer vl_b;
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	public function pl_dummy(in integer pl_int) return integer {
		return 1;
	}

	public function f_dummy2(in charstring pl_dummy) {
		var charstring vl_int := this.pl_dummy(1);
	}
	
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	create (integer pl_a, float pl_b) { 
		this.vl_a := pl_a;
		this.vl_b := pl_b;
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	}
}

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function f_fake_super() return charstring {
	return "abc";
}

// bad super references
function f_notinclass(in integer pl_int) {
	var charstring vl_ch := super.f_fake_super();
}

type class FuncClass extends BaseFunctionClass {
	public function f_get_one() return charstring {
		return "xyz";
	}
	
	private function f_test_super() {
	  	// type mismatches 
		var integer vl_int := f_get_one();
		var charstring vl_cs:= super.f_get_one();
	}
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	public function f_dummy(in integer pl_int) return float {
		return 0.1;
	}
}

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// private methods can be overridden in subclass
// protected and public classes can only be overriden with the same formal param list
type class ClassWithPrivate {
	private function f_override(in float pl_float) return integer {
		return 1;
	}

	function f_override2(in float pl_float) return integer {
		return 1;
	}

	public function f_override3(in float pl_float) return integer {
		return 1;
	}
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	public function f_override4() {
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	}
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	function f_override5() {
	  
	}
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}
 
type class ClassWithPrivateExt extends ClassWithPrivate {
	public function f_override(charstring pl_chr) return charstring {
		return pl_chr;
	}

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	public function f_override2(in float pl_float) return charstring {
		return pl_float;
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	}

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	public function f_override3(charstring pl_float) return charstring {
		return pl_float;
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	}
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	function f_override4() { }
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	private function f_override5() { }
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}

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// function with class parameter 
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function f_class_param(FuncClass pl_fun) {
	var integer vl_int := pl_fun.f_dummy(1);		// type mismatch
	var charstring vl_chr := pl_fun.f_get_one();	// correct
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}

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// class function with `runs on`, `mtc` and `system` clause
type class BadClauses {
	public function f_with_runson() runs on CT {
	  
	}
	
	public function f_with_mtc() mtc CT return integer {
		return 1;
	}
	
	public function f_with_system() system CT {
	  
	}
	
	public function f_with_more() runs on CT mtc CT system CT {
	  
	}
}

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testcase tc_basicSyntax() runs on CT {
	var GrandSubClass vl_gsc := GrandSubClass.create;
	
	var integer vl_int1 := vl_gsc.vl_c;		// correct : own class member
	var integer vl_int2 := vl_gsc.vl_b;		// correct : inherited from direct parent
	var integer vl_int3 := vl_gsc.vl_a;		// correct : inherited from upper parent
	
	var charstring vl_int4 := vl_gsc.vl_d;		// incorrect : nonexisting member
	var charstring vl_int5 := vl_gsc.vl_a;		// incorrect : type mismatch
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	var OuterClass vl_outer := OuterClass.create;
	var OuterClass vl_outer2;
	if (vl_outer of OuterClass) {			
		vl_outer := vl_outer2;
	}
	
	var integer vl_integer := vl_outer of OuterClass;			// type mismatch
	var boolean vl_boolean := vl_outer of BaseFunctionClass;	// semanticall correct
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	// nested class member reference
	var octetstring vl_octet := vl_outer.NestedClass.InnerClass.EvenDeeper.Core.f_inside(1)
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	// instantiating abstract and trait classes is not allowed
	var object vl_trait := MinimalTraitClass.create;
	var MinimalAbstractClass vl_abstract := MinimalAbstractClass.create;
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	var SubFunctionClass vl_sub := SubFunctionClass.create;
	var integer vl_subint := vl_sub.m_const;
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}

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}