Commit 2edb02b4 authored by Ken Thompson's avatar Ken Thompson

1. decommit complex(float) conversion

2. add complex algorithm for map/chan
3. test for use of complex in
   array, slice, field, chan, map,
   field, pointer.

R=rsc
CC=golang-dev
https://golang.org/cl/384041
parent 529369e4
......@@ -76,14 +76,12 @@ convlit1(Node **np, Type *t, int explicit)
if(!explicit && !isideal(n->type))
return;
//dump("convlit1", n);
if(n->op == OLITERAL) {
nn = nod(OXXX, N, N);
*nn = *n;
n = nn;
*np = n;
}
//dump("convlit2", n);
switch(n->op) {
default:
......@@ -203,6 +201,8 @@ convlit1(Node **np, Type *t, int explicit)
goto bad;
case CTFLT:
case CTINT:
if(explicit)
goto bad;
n->val = tocplx(n->val);
break;
case CTCPLX:
......
......@@ -58,18 +58,6 @@ complexmove(Node *f, Node *t)
cgen(&n1, &n3);
cgen(&n2, &n4);
break;
// these are depricated
case CASE(TFLOAT32,TCOMPLEX64):
case CASE(TFLOAT32,TCOMPLEX128):
case CASE(TFLOAT64,TCOMPLEX64):
case CASE(TFLOAT64,TCOMPLEX128):
// float to complex goes to real part
subnode(&n1, &n2, t);
cgen(f, &n1);
zero(&n2);
break;
}
}
......
......@@ -458,7 +458,8 @@ algtype(Type *t)
{
int a;
if(issimple[t->etype] || isptr[t->etype] || t->etype == TCHAN || t->etype == TFUNC || t->etype == TMAP)
if(issimple[t->etype] || isptr[t->etype] || iscomplex[t->etype] ||
t->etype == TCHAN || t->etype == TFUNC || t->etype == TMAP)
a = AMEM; // just bytes (int, ptr, etc)
else if(t->etype == TSTRING)
a = ASTRING; // string
......@@ -476,6 +477,7 @@ maptype(Type *key, Type *val)
{
Type *t;
if(key != nil && key->etype != TANY && algtype(key) == ANOEQ) {
if(key->etype == TFORW) {
// map[key] used during definition of key.
......
......@@ -1449,9 +1449,14 @@ checkconv(Type *nt, Type *t, int explicit, int *op, int *et, char *desc)
return 1;
}
// simple fix-float-complex
if(isint[t->etype] || isfloat[t->etype] || iscomplex[t->etype])
if(isint[nt->etype] || isfloat[nt->etype] || iscomplex[nt->etype])
// simple fix-float
if(isint[t->etype] || isfloat[t->etype])
if(isint[nt->etype] || isfloat[nt->etype])
return 1;
// simple complex-complex
if(iscomplex[t->etype])
if(iscomplex[nt->etype])
return 1;
// to string
......
......@@ -20,7 +20,7 @@ var complexBits = reflect.Typeof(complex(0i)).Size() * 8
func main() {
c0 := C1
c0 = (c0+c0+c0) / (c0+c0+3i)
c0 = (c0 + c0 + c0) / (c0 + c0 + 3i)
println(c0)
c := *(*complex)(unsafe.Pointer(&c0))
......@@ -32,11 +32,11 @@ func main() {
switch c := reflect.NewValue(a).(type) {
case *reflect.Complex64Value:
v := c.Get()
_,_ = complex64(v), true
_, _ = complex64(v), true
case *reflect.ComplexValue:
if complexBits == 64 {
v := c.Get()
_,_ = complex64(v), true
_, _ = complex64(v), true
}
}
}
......@@ -15,9 +15,7 @@ const (
C1 = R + I // ADD(5,6)
)
func doprint(c complex) {
fmt.Printf("c = %f\n", c)
}
func doprint(c complex) { fmt.Printf("c = %f\n", c) }
func main() {
......
// $G $D/$F.go && $L $F.$A && ./$A.out
// Copyright 2010 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.
package main
var a [12]complex
var s []complex
var c chan complex
var f struct {
c complex
}
var m map[complex]complex
func main() {
// array of complex
for i := 0; i < len(a); i++ {
a[i] = cmplx(float(i), float(-i))
}
println(a[5])
// slice of complex
s = make([]complex, len(a))
for i := 0; i < len(s); i++ {
s[i] = a[i]
}
println(s[5])
// chan
c = make(chan complex)
go chantest(c)
println(<-c)
// pointer of complex
v := a[5]
pv := &v
println(*pv)
// field of complex
f.c = a[5]
println(f.c)
// map of complex
m = make(map[complex]complex)
for i := 0; i < len(s); i++ {
m[-a[i]] = a[i]
}
println(m[5i-5])
println(m[cmplx(-5, 5)])
}
func chantest(c chan complex) { c <- a[5] }
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