Bl[R1 = A1, , Rp = Ap], 1 l < p in Java

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In addition, one variable arity member method named m is more speci c than another variable arity member method of the same name if either:
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If the second method is a generic method as described above then Al <:
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If the second method is generic then let R1 Rp p 1 , be its formal type parameters, let Bl be the declared bound of Rl, 1 l < p , let A1 Ap be the actual type arguments inferred ( 151227) for this invocation under the initial constraints Ti << Ui, 1 i n and let Si = Ui[R1 = A1, , Rp = Ap] 1 i n ; otherwise let Si = Ui 1 i n
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Compile-Time Step 2: Determine Method Signature 15122
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under the initial constraints Ui << Ti, 1 i k 1 , Uk << Ti, k i n and let Si = Ti[R1 = A1, , Rp = Ap] 1 i n ; otherwise let Si = Ti, 1 i n Then:
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If the second method is a generic method as described above then Al <:
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If all the maximally speci c methods have override-equivalent ( 842) signatures, then:
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Otherwise, we say that the method invocation is ambiguous, and a compiletime error occurs
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The above conditions are the only circumstances under which one method may be more speci c than another A method m1 is strictly more speci c than another method m2 if and only if m1 is more speci c than m2 and m2 is not more speci c than m1 A method is said to be maximally speci c for a method invocation if it is accessible and applicable and there is no other method that is applicable and accessible that is strictly more speci c If there is exactly one maximally speci c method, then that method is in fact the most speci c method; it is necessarily more speci c than any other accessible method that is applicable It is then subjected to some further compile-time checks as described in 15123 It is possible that no method is the most speci c, because there are two or more methods that are maximally speci c In this case:
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If exactly one of the maximally speci c methods is not declared abstract, it is the most speci c method Otherwise, if all the maximally speci c methods are declared abstract, and the signatures of all of the maximally speci c methods have the same erasure ( 46), then the most speci c method is chosen arbitrarily among the subset of the maximally speci c methods that have the most speci c return type However, the most speci c method is considered to throw a checked exception if and only if that exception or its erasure is declared in the throws clauses of each of the maximally speci c methods
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15122 Compile-Time Step 2: Determine Method Signature
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151226 Method Result and Throws Types The result type of the chosen method is determined as follows:
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If the method being invoked is declared with a return type of void, then the result is void
Otherwise, if the method being invoked is generic, then for 1 i n , let Fi be the formal type parameters of the method, let Ai be the actual type arguments inferred for the method invocation, and let R be the declared return type of the method being invoked The result type is obtained by applying capture conversion ( 5110) to R[F1 := A1, , Fn := An]
Otherwise, the result type is obtained by applying capture conversion ( 5110) to the type given in the method declaration
The exception types of the throws clause of the chosen method are determined as follows: If unchecked conversion was necessary for the method to be applicable then the throws clause is composed of the erasure ( 46) of the types in the method s declared throws clause Otherwise, if the method being invoked is generic, then for 1 i n , let Fi be the formal type parameters of the method, let Ai be the actual type arguments inferred for the method invocation, and let Ej, 1 j m be the exception types declared in the throws clause of the method being invoked The throws clause consists of the types to Ej[F1 := A1, , Fn := An]