// Copyright 2012 The Go Authors. All rights reserved. // Use of this source code is governed by a BSD-style // license that can be found in the LICENSE file. // MakeFunc implementation. package reflect import ( "runtime" "unsafe" ) // makeFuncImpl is the closure value implementing the function // returned by MakeFunc. type makeFuncImpl struct { code uintptr typ *funcType fn func([]Value) []Value // For gccgo we use the same entry point for functions and for // method values. method int rcvr Value } // MakeFunc returns a new function of the given Type // that wraps the function fn. When called, that new function // does the following: // // - converts its arguments to a slice of Values. // - runs results := fn(args). // - returns the results as a slice of Values, one per formal result. // // The implementation fn can assume that the argument Value slice // has the number and type of arguments given by typ. // If typ describes a variadic function, the final Value is itself // a slice representing the variadic arguments, as in the // body of a variadic function. The result Value slice returned by fn // must have the number and type of results given by typ. // // The Value.Call method allows the caller to invoke a typed function // in terms of Values; in contrast, MakeFunc allows the caller to implement // a typed function in terms of Values. // // The Examples section of the documentation includes an illustration // of how to use MakeFunc to build a swap function for different types. // func MakeFunc(typ Type, fn func(args []Value) (results []Value)) Value { if typ.Kind() != Func { panic("reflect: call of MakeFunc with non-Func type") } switch runtime.GOARCH { case "amd64", "386": default: panic("reflect.MakeFunc not implemented for " + runtime.GOARCH) } t := typ.common() ftyp := (*funcType)(unsafe.Pointer(t)) // Indirect Go func value (dummy) to obtain // actual code address. (A Go func value is a pointer // to a C function pointer. http://golang.org/s/go11func.) dummy := makeFuncStub code := **(**uintptr)(unsafe.Pointer(&dummy)) impl := &makeFuncImpl{code: code, typ: ftyp, fn: fn, method: -1} return Value{t, unsafe.Pointer(&impl), flag(Func<>flagMethodShift) fv := &makeFuncImpl{ code: code, typ: (*funcType)(unsafe.Pointer(t)), method: int(v.flag) >> flagMethodShift, rcvr: rcvr, } return Value{ft, unsafe.Pointer(&fv), v.flag&flagRO | flag(Func)<