mirror of
https://github.com/golang/go
synced 2024-11-11 19:51:37 -07:00
[dev.regabi] cmd/compile: arrange for walkstmt, walkexpr, to return from switch cases
Ending them in a returning switch makes it safe for each case to do an appropriate type assertion. Passes buildall w/ toolstash -cmp. Change-Id: I55d8f0a555006104164d84d27822aa8c5ad68515 Reviewed-on: https://go-review.googlesource.com/c/go/+/275882 Trust: Russ Cox <rsc@golang.org> Run-TryBot: Russ Cox <rsc@golang.org> TryBot-Result: Go Bot <gobot@golang.org> Reviewed-by: Matthew Dempsky <mdempsky@google.com>
This commit is contained in:
parent
4090af83c5
commit
0c49440664
@ -123,6 +123,7 @@ func walkstmt(n ir.Node) ir.Node {
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base.Errorf("%v is not a top level statement", n.Op())
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}
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ir.Dump("nottop", n)
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return n
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case ir.OAS,
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ir.OASOP,
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@ -166,6 +167,7 @@ func walkstmt(n ir.Node) ir.Node {
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n = ir.NewBlockStmt(n.Pos(), init.Slice())
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}
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}
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return n
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// special case for a receive where we throw away
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// the value received.
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@ -179,8 +181,7 @@ func walkstmt(n ir.Node) ir.Node {
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n.SetLeft(walkexpr(n.Left(), &init))
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n = mkcall1(chanfn("chanrecv1", 2, n.Left().Type()), nil, &init, n.Left(), nodnil())
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n = walkexpr(n, &init)
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n = initExpr(init.Slice(), n)
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return initExpr(init.Slice(), n)
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case ir.OBREAK,
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ir.OCONTINUE,
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@ -193,7 +194,7 @@ func walkstmt(n ir.Node) ir.Node {
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ir.OVARDEF,
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ir.OVARKILL,
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ir.OVARLIVE:
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break
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return n
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case ir.ODCL:
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v := n.Left()
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@ -209,12 +210,15 @@ func walkstmt(n ir.Node) ir.Node {
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nn = typecheck(nn, ctxStmt)
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return walkstmt(nn)
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}
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return n
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case ir.OBLOCK:
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walkstmtlist(n.List().Slice())
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return n
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case ir.OCASE:
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base.Errorf("case statement out of place")
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panic("unreachable")
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case ir.ODEFER:
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Curfn.SetHasDefer(true)
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@ -261,6 +265,7 @@ func walkstmt(n ir.Node) ir.Node {
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init.Append(n)
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n = ir.NewBlockStmt(n.Pos(), init.Slice())
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}
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return n
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case ir.OFOR, ir.OFORUNTIL:
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if n.Left() != nil {
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@ -276,16 +281,18 @@ func walkstmt(n ir.Node) ir.Node {
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walkstmtlist(n.List().Slice())
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}
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walkstmtlist(n.Body().Slice())
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return n
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case ir.OIF:
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n.SetLeft(walkexpr(n.Left(), n.PtrInit()))
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walkstmtlist(n.Body().Slice())
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walkstmtlist(n.Rlist().Slice())
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return n
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case ir.ORETURN:
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Curfn.NumReturns++
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if n.List().Len() == 0 {
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break
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return n
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}
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if (hasNamedResults(Curfn) && n.List().Len() > 1) || paramoutheap(Curfn) {
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// assign to the function out parameters,
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@ -317,7 +324,7 @@ func walkstmt(n ir.Node) ir.Node {
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ll := ascompatee(n.Op(), rl, n.List().Slice(), n.PtrInit())
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n.PtrList().Set(reorder3(ll))
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break
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return n
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}
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walkexprlist(n.List().Slice(), n.PtrInit())
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@ -334,27 +341,29 @@ func walkstmt(n ir.Node) ir.Node {
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res[i] = convas(a, n.PtrInit())
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}
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n.PtrList().Set(res)
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return n
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case ir.ORETJMP:
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break
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return n
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case ir.OINLMARK:
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break
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return n
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case ir.OSELECT:
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walkselect(n)
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return n
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case ir.OSWITCH:
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walkswitch(n)
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return n
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case ir.ORANGE:
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n = walkrange(n)
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return walkrange(n)
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}
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if n.Op() == ir.ONAME {
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base.Fatalf("walkstmt ended up with name: %+v", n)
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}
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return n
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// No return! Each case must return (or panic),
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// to avoid confusion about what gets returned
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// in the presence of type assertions.
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}
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// walk the whole tree of the body of an
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@ -477,31 +486,68 @@ func walkexpr(n ir.Node, init *ir.Nodes) ir.Node {
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return nn
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}
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opswitch:
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n = walkexpr1(n, init)
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// Expressions that are constant at run time but not
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// considered const by the language spec are not turned into
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// constants until walk. For example, if n is y%1 == 0, the
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// walk of y%1 may have replaced it by 0.
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// Check whether n with its updated args is itself now a constant.
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t := n.Type()
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n = evalConst(n)
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if n.Type() != t {
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base.Fatalf("evconst changed Type: %v had type %v, now %v", n, t, n.Type())
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}
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if n.Op() == ir.OLITERAL {
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n = typecheck(n, ctxExpr)
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// Emit string symbol now to avoid emitting
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// any concurrently during the backend.
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if v := n.Val(); v.Kind() == constant.String {
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_ = stringsym(n.Pos(), constant.StringVal(v))
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}
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}
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updateHasCall(n)
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if base.Flag.LowerW != 0 && n != nil {
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ir.Dump("after walk expr", n)
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}
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base.Pos = lno
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return n
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}
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func walkexpr1(n ir.Node, init *ir.Nodes) ir.Node {
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switch n.Op() {
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default:
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ir.Dump("walk", n)
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base.Fatalf("walkexpr: switch 1 unknown op %+v", n.Op())
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panic("unreachable")
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case ir.ONONAME, ir.OGETG, ir.ONEWOBJ, ir.OMETHEXPR:
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return n
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case ir.OTYPE, ir.ONAME, ir.OLITERAL, ir.ONIL:
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// TODO(mdempsky): Just return n; see discussion on CL 38655.
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// Perhaps refactor to use Node.mayBeShared for these instead.
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// If these return early, make sure to still call
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// stringsym for constant strings.
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return n
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case ir.ONOT, ir.ONEG, ir.OPLUS, ir.OBITNOT, ir.OREAL, ir.OIMAG, ir.ODOTMETH, ir.ODOTINTER,
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ir.ODEREF, ir.OSPTR, ir.OITAB, ir.OIDATA, ir.OADDR:
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n.SetLeft(walkexpr(n.Left(), init))
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return n
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case ir.OEFACE, ir.OAND, ir.OANDNOT, ir.OSUB, ir.OMUL, ir.OADD, ir.OOR, ir.OXOR, ir.OLSH, ir.ORSH:
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n.SetLeft(walkexpr(n.Left(), init))
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n.SetRight(walkexpr(n.Right(), init))
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return n
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case ir.ODOT, ir.ODOTPTR:
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usefield(n)
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n.SetLeft(walkexpr(n.Left(), init))
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return n
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case ir.ODOTTYPE, ir.ODOTTYPE2:
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n.SetLeft(walkexpr(n.Left(), init))
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@ -513,12 +559,12 @@ opswitch:
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if !n.Type().IsInterface() && !n.Left().Type().IsEmptyInterface() {
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n.PtrList().Set1(itabname(n.Type(), n.Left().Type()))
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}
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return n
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case ir.OLEN, ir.OCAP:
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if isRuneCount(n) {
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// Replace len([]rune(string)) with runtime.countrunes(string).
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n = mkcall("countrunes", n.Type(), init, conv(n.Left().Left(), types.Types[types.TSTRING]))
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break
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return mkcall("countrunes", n.Type(), init, conv(n.Left().Left(), types.Types[types.TSTRING]))
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}
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n.SetLeft(walkexpr(n.Left(), init))
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@ -535,6 +581,7 @@ opswitch:
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n = origIntConst(n, t.NumElem())
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n.SetTypecheck(1)
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}
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return n
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case ir.OCOMPLEX:
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// Use results from call expression as arguments for complex.
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@ -544,9 +591,10 @@ opswitch:
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}
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n.SetLeft(walkexpr(n.Left(), init))
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n.SetRight(walkexpr(n.Right(), init))
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return n
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case ir.OEQ, ir.ONE, ir.OLT, ir.OLE, ir.OGT, ir.OGE:
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n = walkcompare(n, init)
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return walkcompare(n, init)
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case ir.OANDAND, ir.OOROR:
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n.SetLeft(walkexpr(n.Left(), init))
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@ -558,17 +606,19 @@ opswitch:
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n.SetRight(walkexpr(n.Right(), &ll))
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n.SetRight(initExpr(ll.Slice(), n.Right()))
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return n
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case ir.OPRINT, ir.OPRINTN:
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n = walkprint(n, init)
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return walkprint(n, init)
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case ir.OPANIC:
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n = mkcall("gopanic", nil, init, n.Left())
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return mkcall("gopanic", nil, init, n.Left())
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case ir.ORECOVER:
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n = mkcall("gorecover", n.Type(), init, ir.Nod(ir.OADDR, nodfp, nil))
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return mkcall("gorecover", n.Type(), init, ir.Nod(ir.OADDR, nodfp, nil))
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case ir.OCLOSUREREAD, ir.OCFUNC:
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return n
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case ir.OCALLINTER, ir.OCALLFUNC, ir.OCALLMETH:
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if n.Op() == ir.OCALLINTER {
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@ -597,6 +647,7 @@ opswitch:
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}
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walkCall(n, init)
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return n
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case ir.OAS, ir.OASOP:
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init.AppendNodes(n.PtrInit())
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@ -622,17 +673,16 @@ opswitch:
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}
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if oaslit(n, init) {
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n = ir.NodAt(n.Pos(), ir.OBLOCK, nil, nil)
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break
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return ir.NodAt(n.Pos(), ir.OBLOCK, nil, nil)
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}
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if n.Right() == nil {
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// TODO(austin): Check all "implicit zeroing"
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break
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return n
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}
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if !instrumenting && isZero(n.Right()) {
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break
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return n
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}
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switch n.Right().Op() {
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@ -646,9 +696,7 @@ opswitch:
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n1 := ir.Nod(ir.OADDR, n.Left(), nil)
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r := n.Right().Left() // the channel
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n = mkcall1(chanfn("chanrecv1", 2, r.Type()), nil, init, r, n1)
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n = walkexpr(n, init)
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break opswitch
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return mkcall1(chanfn("chanrecv1", 2, r.Type()), nil, init, r, n1)
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case ir.OAPPEND:
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// x = append(...)
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@ -671,7 +719,7 @@ opswitch:
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// Do not add a new write barrier.
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// Set up address of type for back end.
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r.SetLeft(typename(r.Type().Elem()))
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break opswitch
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return n
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}
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// Otherwise, lowered for race detector.
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// Treat as ordinary assignment.
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@ -680,6 +728,7 @@ opswitch:
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if n.Left() != nil && n.Right() != nil {
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n = convas(n, init)
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}
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return n
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case ir.OAS2:
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init.AppendNodes(n.PtrInit())
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@ -687,7 +736,7 @@ opswitch:
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walkexprlistsafe(n.Rlist().Slice(), init)
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ll := ascompatee(ir.OAS, n.List().Slice(), n.Rlist().Slice(), init)
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ll = reorder3(ll)
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n = liststmt(ll)
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return liststmt(ll)
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// a,b,... = fn()
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case ir.OAS2FUNC:
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@ -699,12 +748,12 @@ opswitch:
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if isIntrinsicCall(r) {
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n.PtrRlist().Set1(r)
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break
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return n
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}
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init.Append(r)
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ll := ascompatet(n.List(), r.Type())
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n = liststmt(ll)
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return liststmt(ll)
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// x, y = <-c
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// order.stmt made sure x is addressable or blank.
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@ -724,7 +773,7 @@ opswitch:
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ok := n.List().Second()
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call := mkcall1(fn, types.Types[types.TBOOL], init, r.Left(), n1)
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n = ir.Nod(ir.OAS, ok, call)
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n = typecheck(n, ctxStmt)
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return typecheck(n, ctxStmt)
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// a,b = m[i]
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case ir.OAS2MAPR:
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@ -784,7 +833,7 @@ opswitch:
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}
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n = typecheck(n, ctxStmt)
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n = walkexpr(n, init)
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return walkexpr(n, init)
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case ir.ODELETE:
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init.AppendNodes(n.PtrInit())
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@ -799,11 +848,12 @@ opswitch:
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// order.stmt made sure key is addressable.
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key = ir.Nod(ir.OADDR, key, nil)
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}
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n = mkcall1(mapfndel(mapdelete[fast], t), nil, init, typename(t), map_, key)
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return mkcall1(mapfndel(mapdelete[fast], t), nil, init, typename(t), map_, key)
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case ir.OAS2DOTTYPE:
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walkexprlistsafe(n.List().Slice(), init)
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n.PtrRlist().SetIndex(0, walkexpr(n.Rlist().First(), init))
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return n
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case ir.OCONVIFACE:
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n.SetLeft(walkexpr(n.Left(), init))
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@ -828,8 +878,7 @@ opswitch:
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l := ir.Nod(ir.OEFACE, typeword(), n.Left())
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l.SetType(toType)
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l.SetTypecheck(n.Typecheck())
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n = l
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break
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return l
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}
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if staticuint64s == nil {
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@ -878,8 +927,7 @@ opswitch:
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l := ir.Nod(ir.OEFACE, typeword(), typecheck(ir.Nod(ir.OADDR, value, nil), ctxExpr))
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l.SetType(toType)
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l.SetTypecheck(n.Typecheck())
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n = l
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break
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return l
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}
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// Implement interface to empty interface conversion.
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@ -906,8 +954,7 @@ opswitch:
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e := ir.Nod(ir.OEFACE, tmp, ifaceData(n.Pos(), c, types.NewPtr(types.Types[types.TUINT8])))
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e.SetType(toType) // assign type manually, typecheck doesn't understand OEFACE.
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e.SetTypecheck(1)
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n = e
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break
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return e
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}
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fnname, needsaddr := convFuncName(fromType, toType)
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@ -928,8 +975,7 @@ opswitch:
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e := ir.Nod(ir.OEFACE, typeword(), call)
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e.SetType(toType)
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e.SetTypecheck(1)
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n = e
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break
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return e
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}
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var tab ir.Node
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@ -962,7 +1008,7 @@ opswitch:
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n = ir.Nod(ir.OCALL, fn, nil)
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n.PtrList().Set2(tab, v)
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n = typecheck(n, ctxExpr)
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n = walkexpr(n, init)
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return walkexpr(n, init)
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case ir.OCONV, ir.OCONVNOP:
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n.SetLeft(walkexpr(n.Left(), init))
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@ -971,20 +1017,18 @@ opswitch:
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}
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if n.Op() == ir.OCONVNOP && checkPtr(Curfn, 1) {
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if n.Type().IsPtr() && n.Left().Type().IsUnsafePtr() { // unsafe.Pointer to *T
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n = walkCheckPtrAlignment(n, init, nil)
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break
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return walkCheckPtrAlignment(n, init, nil)
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}
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if n.Type().IsUnsafePtr() && n.Left().Type().IsUintptr() { // uintptr to unsafe.Pointer
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n = walkCheckPtrArithmetic(n, init)
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break
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return walkCheckPtrArithmetic(n, init)
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}
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}
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param, result := rtconvfn(n.Left().Type(), n.Type())
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if param == types.Txxx {
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break
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return n
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}
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fn := types.BasicTypeNames[param] + "to" + types.BasicTypeNames[result]
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n = conv(mkcall(fn, types.Types[result], init, conv(n.Left(), types.Types[param])), n.Type())
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return conv(mkcall(fn, types.Types[result], init, conv(n.Left(), types.Types[param])), n.Type())
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case ir.ODIV, ir.OMOD:
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n.SetLeft(walkexpr(n.Left(), init))
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@ -996,13 +1040,12 @@ opswitch:
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if isComplex[et] && n.Op() == ir.ODIV {
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t := n.Type()
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n = mkcall("complex128div", types.Types[types.TCOMPLEX128], init, conv(n.Left(), types.Types[types.TCOMPLEX128]), conv(n.Right(), types.Types[types.TCOMPLEX128]))
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n = conv(n, t)
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break
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return conv(n, t)
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}
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// Nothing to do for float divisions.
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if isFloat[et] {
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break
|
||||
return n
|
||||
}
|
||||
|
||||
// rewrite 64-bit div and mod on 32-bit architectures.
|
||||
@ -1019,15 +1062,15 @@ opswitch:
|
||||
c = -c
|
||||
}
|
||||
if c != 0 && c&(c-1) == 0 {
|
||||
break opswitch
|
||||
return n
|
||||
}
|
||||
case types.TUINT64:
|
||||
c := ir.Uint64Val(n.Right())
|
||||
if c < 1<<16 {
|
||||
break opswitch
|
||||
return n
|
||||
}
|
||||
if c != 0 && c&(c-1) == 0 {
|
||||
break opswitch
|
||||
return n
|
||||
}
|
||||
}
|
||||
}
|
||||
@ -1042,8 +1085,9 @@ opswitch:
|
||||
} else {
|
||||
fn += "mod"
|
||||
}
|
||||
n = mkcall(fn, n.Type(), init, conv(n.Left(), types.Types[et]), conv(n.Right(), types.Types[et]))
|
||||
return mkcall(fn, n.Type(), init, conv(n.Left(), types.Types[et]), conv(n.Right(), types.Types[et]))
|
||||
}
|
||||
return n
|
||||
|
||||
case ir.OINDEX:
|
||||
n.SetLeft(walkexpr(n.Left(), init))
|
||||
@ -1057,7 +1101,7 @@ opswitch:
|
||||
// if range of type cannot exceed static array bound,
|
||||
// disable bounds check.
|
||||
if n.Bounded() {
|
||||
break
|
||||
return n
|
||||
}
|
||||
t := n.Left().Type()
|
||||
if t != nil && t.IsPtr() {
|
||||
@ -1086,6 +1130,7 @@ opswitch:
|
||||
base.Errorf("index out of bounds")
|
||||
}
|
||||
}
|
||||
return n
|
||||
|
||||
case ir.OINDEXMAP:
|
||||
// Replace m[k] with *map{access1,assign}(maptype, m, &k)
|
||||
@ -1124,14 +1169,17 @@ opswitch:
|
||||
n = ir.Nod(ir.ODEREF, n, nil)
|
||||
n.SetType(t.Elem())
|
||||
n.SetTypecheck(1)
|
||||
return n
|
||||
|
||||
case ir.ORECV:
|
||||
base.Fatalf("walkexpr ORECV") // should see inside OAS only
|
||||
panic("unreachable")
|
||||
|
||||
case ir.OSLICEHEADER:
|
||||
n.SetLeft(walkexpr(n.Left(), init))
|
||||
n.List().SetFirst(walkexpr(n.List().First(), init))
|
||||
n.List().SetSecond(walkexpr(n.List().Second(), init))
|
||||
return n
|
||||
|
||||
case ir.OSLICE, ir.OSLICEARR, ir.OSLICESTR, ir.OSLICE3, ir.OSLICE3ARR:
|
||||
checkSlice := checkPtr(Curfn, 1) && n.Op() == ir.OSLICE3ARR && n.Left().Op() == ir.OCONVNOP && n.Left().Left().Type().IsUnsafePtr()
|
||||
@ -1160,11 +1208,11 @@ opswitch:
|
||||
} else {
|
||||
n.SetOp(ir.OSLICEARR)
|
||||
}
|
||||
n = reduceSlice(n)
|
||||
return reduceSlice(n)
|
||||
}
|
||||
} else {
|
||||
n = reduceSlice(n)
|
||||
return n
|
||||
}
|
||||
return reduceSlice(n)
|
||||
|
||||
case ir.ONEW:
|
||||
if n.Type().Elem().NotInHeap() {
|
||||
@ -1179,28 +1227,26 @@ opswitch:
|
||||
r = typecheck(r, ctxStmt)
|
||||
init.Append(r)
|
||||
r = ir.Nod(ir.OADDR, r.Left(), nil)
|
||||
r = typecheck(r, ctxExpr)
|
||||
n = r
|
||||
} else {
|
||||
n = callnew(n.Type().Elem())
|
||||
return typecheck(r, ctxExpr)
|
||||
}
|
||||
return callnew(n.Type().Elem())
|
||||
|
||||
case ir.OADDSTR:
|
||||
n = addstr(n, init)
|
||||
return addstr(n, init)
|
||||
|
||||
case ir.OAPPEND:
|
||||
// order should make sure we only see OAS(node, OAPPEND), which we handle above.
|
||||
base.Fatalf("append outside assignment")
|
||||
panic("unreachable")
|
||||
|
||||
case ir.OCOPY:
|
||||
n = copyany(n, init, instrumenting && !base.Flag.CompilingRuntime)
|
||||
return copyany(n, init, instrumenting && !base.Flag.CompilingRuntime)
|
||||
|
||||
// cannot use chanfn - closechan takes any, not chan any
|
||||
case ir.OCLOSE:
|
||||
// cannot use chanfn - closechan takes any, not chan any
|
||||
fn := syslook("closechan")
|
||||
|
||||
fn = substArgTypes(fn, n.Left().Type())
|
||||
n = mkcall1(fn, nil, init, n.Left())
|
||||
return mkcall1(fn, nil, init, n.Left())
|
||||
|
||||
case ir.OMAKECHAN:
|
||||
// When size fits into int, use makechan instead of
|
||||
@ -1217,7 +1263,7 @@ opswitch:
|
||||
argtype = types.Types[types.TINT]
|
||||
}
|
||||
|
||||
n = mkcall1(chanfn(fnname, 1, n.Type()), n.Type(), init, typename(n.Type()), conv(size, argtype))
|
||||
return mkcall1(chanfn(fnname, 1, n.Type()), n.Type(), init, typename(n.Type()), conv(size, argtype))
|
||||
|
||||
case ir.OMAKEMAP:
|
||||
t := n.Type()
|
||||
@ -1294,42 +1340,41 @@ opswitch:
|
||||
a = typecheck(a, ctxStmt)
|
||||
a = walkexpr(a, init)
|
||||
init.Append(a)
|
||||
n = convnop(h, t)
|
||||
} else {
|
||||
// Call runtime.makehmap to allocate an
|
||||
// hmap on the heap and initialize hmap's hash0 field.
|
||||
fn := syslook("makemap_small")
|
||||
fn = substArgTypes(fn, t.Key(), t.Elem())
|
||||
n = mkcall1(fn, n.Type(), init)
|
||||
return convnop(h, t)
|
||||
}
|
||||
} else {
|
||||
if n.Esc() != EscNone {
|
||||
h = nodnil()
|
||||
}
|
||||
// Map initialization with a variable or large hint is
|
||||
// more complicated. We therefore generate a call to
|
||||
// runtime.makemap to initialize hmap and allocate the
|
||||
// map buckets.
|
||||
|
||||
// When hint fits into int, use makemap instead of
|
||||
// makemap64, which is faster and shorter on 32 bit platforms.
|
||||
fnname := "makemap64"
|
||||
argtype := types.Types[types.TINT64]
|
||||
|
||||
// Type checking guarantees that TIDEAL hint is positive and fits in an int.
|
||||
// See checkmake call in TMAP case of OMAKE case in OpSwitch in typecheck1 function.
|
||||
// The case of hint overflow when converting TUINT or TUINTPTR to TINT
|
||||
// will be handled by the negative range checks in makemap during runtime.
|
||||
if hint.Type().IsKind(types.TIDEAL) || hint.Type().Size() <= types.Types[types.TUINT].Size() {
|
||||
fnname = "makemap"
|
||||
argtype = types.Types[types.TINT]
|
||||
}
|
||||
|
||||
fn := syslook(fnname)
|
||||
fn = substArgTypes(fn, hmapType, t.Key(), t.Elem())
|
||||
n = mkcall1(fn, n.Type(), init, typename(n.Type()), conv(hint, argtype), h)
|
||||
// Call runtime.makehmap to allocate an
|
||||
// hmap on the heap and initialize hmap's hash0 field.
|
||||
fn := syslook("makemap_small")
|
||||
fn = substArgTypes(fn, t.Key(), t.Elem())
|
||||
return mkcall1(fn, n.Type(), init)
|
||||
}
|
||||
|
||||
if n.Esc() != EscNone {
|
||||
h = nodnil()
|
||||
}
|
||||
// Map initialization with a variable or large hint is
|
||||
// more complicated. We therefore generate a call to
|
||||
// runtime.makemap to initialize hmap and allocate the
|
||||
// map buckets.
|
||||
|
||||
// When hint fits into int, use makemap instead of
|
||||
// makemap64, which is faster and shorter on 32 bit platforms.
|
||||
fnname := "makemap64"
|
||||
argtype := types.Types[types.TINT64]
|
||||
|
||||
// Type checking guarantees that TIDEAL hint is positive and fits in an int.
|
||||
// See checkmake call in TMAP case of OMAKE case in OpSwitch in typecheck1 function.
|
||||
// The case of hint overflow when converting TUINT or TUINTPTR to TINT
|
||||
// will be handled by the negative range checks in makemap during runtime.
|
||||
if hint.Type().IsKind(types.TIDEAL) || hint.Type().Size() <= types.Types[types.TUINT].Size() {
|
||||
fnname = "makemap"
|
||||
argtype = types.Types[types.TINT]
|
||||
}
|
||||
|
||||
fn := syslook(fnname)
|
||||
fn = substArgTypes(fn, hmapType, t.Key(), t.Elem())
|
||||
return mkcall1(fn, n.Type(), init, typename(n.Type()), conv(hint, argtype), h)
|
||||
|
||||
case ir.OMAKESLICE:
|
||||
l := n.Left()
|
||||
r := n.Right()
|
||||
@ -1376,39 +1421,39 @@ opswitch:
|
||||
r = conv(r, n.Type()) // in case n.Type is named.
|
||||
r = typecheck(r, ctxExpr)
|
||||
r = walkexpr(r, init)
|
||||
n = r
|
||||
} else {
|
||||
// n escapes; set up a call to makeslice.
|
||||
// When len and cap can fit into int, use makeslice instead of
|
||||
// makeslice64, which is faster and shorter on 32 bit platforms.
|
||||
|
||||
len, cap := l, r
|
||||
|
||||
fnname := "makeslice64"
|
||||
argtype := types.Types[types.TINT64]
|
||||
|
||||
// Type checking guarantees that TIDEAL len/cap are positive and fit in an int.
|
||||
// The case of len or cap overflow when converting TUINT or TUINTPTR to TINT
|
||||
// will be handled by the negative range checks in makeslice during runtime.
|
||||
if (len.Type().IsKind(types.TIDEAL) || len.Type().Size() <= types.Types[types.TUINT].Size()) &&
|
||||
(cap.Type().IsKind(types.TIDEAL) || cap.Type().Size() <= types.Types[types.TUINT].Size()) {
|
||||
fnname = "makeslice"
|
||||
argtype = types.Types[types.TINT]
|
||||
}
|
||||
|
||||
m := ir.Nod(ir.OSLICEHEADER, nil, nil)
|
||||
m.SetType(t)
|
||||
|
||||
fn := syslook(fnname)
|
||||
m.SetLeft(mkcall1(fn, types.Types[types.TUNSAFEPTR], init, typename(t.Elem()), conv(len, argtype), conv(cap, argtype)))
|
||||
m.Left().MarkNonNil()
|
||||
m.PtrList().Set2(conv(len, types.Types[types.TINT]), conv(cap, types.Types[types.TINT]))
|
||||
|
||||
m = typecheck(m, ctxExpr)
|
||||
m = walkexpr(m, init)
|
||||
n = m
|
||||
return r
|
||||
}
|
||||
|
||||
// n escapes; set up a call to makeslice.
|
||||
// When len and cap can fit into int, use makeslice instead of
|
||||
// makeslice64, which is faster and shorter on 32 bit platforms.
|
||||
|
||||
len, cap := l, r
|
||||
|
||||
fnname := "makeslice64"
|
||||
argtype := types.Types[types.TINT64]
|
||||
|
||||
// Type checking guarantees that TIDEAL len/cap are positive and fit in an int.
|
||||
// The case of len or cap overflow when converting TUINT or TUINTPTR to TINT
|
||||
// will be handled by the negative range checks in makeslice during runtime.
|
||||
if (len.Type().IsKind(types.TIDEAL) || len.Type().Size() <= types.Types[types.TUINT].Size()) &&
|
||||
(cap.Type().IsKind(types.TIDEAL) || cap.Type().Size() <= types.Types[types.TUINT].Size()) {
|
||||
fnname = "makeslice"
|
||||
argtype = types.Types[types.TINT]
|
||||
}
|
||||
|
||||
m := ir.Nod(ir.OSLICEHEADER, nil, nil)
|
||||
m.SetType(t)
|
||||
|
||||
fn := syslook(fnname)
|
||||
m.SetLeft(mkcall1(fn, types.Types[types.TUNSAFEPTR], init, typename(t.Elem()), conv(len, argtype), conv(cap, argtype)))
|
||||
m.Left().MarkNonNil()
|
||||
m.PtrList().Set2(conv(len, types.Types[types.TINT]), conv(cap, types.Types[types.TINT]))
|
||||
|
||||
m = typecheck(m, ctxExpr)
|
||||
m = walkexpr(m, init)
|
||||
return m
|
||||
|
||||
case ir.OMAKESLICECOPY:
|
||||
if n.Esc() == EscNone {
|
||||
base.Fatalf("OMAKESLICECOPY with EscNone: %v", n)
|
||||
@ -1453,18 +1498,18 @@ opswitch:
|
||||
ncopy = walkexpr(ncopy, init)
|
||||
init.Append(ncopy)
|
||||
|
||||
n = s
|
||||
} else { // Replace make+copy with runtime.makeslicecopy.
|
||||
// instantiate makeslicecopy(typ *byte, tolen int, fromlen int, from unsafe.Pointer) unsafe.Pointer
|
||||
fn := syslook("makeslicecopy")
|
||||
s := ir.Nod(ir.OSLICEHEADER, nil, nil)
|
||||
s.SetLeft(mkcall1(fn, types.Types[types.TUNSAFEPTR], init, typename(t.Elem()), length, copylen, conv(copyptr, types.Types[types.TUNSAFEPTR])))
|
||||
s.Left().MarkNonNil()
|
||||
s.PtrList().Set2(length, length)
|
||||
s.SetType(t)
|
||||
n = typecheck(s, ctxExpr)
|
||||
n = walkexpr(n, init)
|
||||
return s
|
||||
}
|
||||
// Replace make+copy with runtime.makeslicecopy.
|
||||
// instantiate makeslicecopy(typ *byte, tolen int, fromlen int, from unsafe.Pointer) unsafe.Pointer
|
||||
fn := syslook("makeslicecopy")
|
||||
s := ir.Nod(ir.OSLICEHEADER, nil, nil)
|
||||
s.SetLeft(mkcall1(fn, types.Types[types.TUNSAFEPTR], init, typename(t.Elem()), length, copylen, conv(copyptr, types.Types[types.TUNSAFEPTR])))
|
||||
s.Left().MarkNonNil()
|
||||
s.PtrList().Set2(length, length)
|
||||
s.SetType(t)
|
||||
n = typecheck(s, ctxExpr)
|
||||
return walkexpr(n, init)
|
||||
|
||||
case ir.ORUNESTR:
|
||||
a := nodnil()
|
||||
@ -1473,7 +1518,7 @@ opswitch:
|
||||
a = ir.Nod(ir.OADDR, temp(t), nil)
|
||||
}
|
||||
// intstring(*[4]byte, rune)
|
||||
n = mkcall("intstring", n.Type(), init, a, conv(n.Left(), types.Types[types.TINT64]))
|
||||
return mkcall("intstring", n.Type(), init, a, conv(n.Left(), types.Types[types.TINT64]))
|
||||
|
||||
case ir.OBYTES2STR, ir.ORUNES2STR:
|
||||
a := nodnil()
|
||||
@ -1484,25 +1529,24 @@ opswitch:
|
||||
}
|
||||
if n.Op() == ir.ORUNES2STR {
|
||||
// slicerunetostring(*[32]byte, []rune) string
|
||||
n = mkcall("slicerunetostring", n.Type(), init, a, n.Left())
|
||||
} else {
|
||||
// slicebytetostring(*[32]byte, ptr *byte, n int) string
|
||||
n.SetLeft(cheapexpr(n.Left(), init))
|
||||
ptr, len := backingArrayPtrLen(n.Left())
|
||||
n = mkcall("slicebytetostring", n.Type(), init, a, ptr, len)
|
||||
return mkcall("slicerunetostring", n.Type(), init, a, n.Left())
|
||||
}
|
||||
// slicebytetostring(*[32]byte, ptr *byte, n int) string
|
||||
n.SetLeft(cheapexpr(n.Left(), init))
|
||||
ptr, len := backingArrayPtrLen(n.Left())
|
||||
return mkcall("slicebytetostring", n.Type(), init, a, ptr, len)
|
||||
|
||||
case ir.OBYTES2STRTMP:
|
||||
n.SetLeft(walkexpr(n.Left(), init))
|
||||
if !instrumenting {
|
||||
// Let the backend handle OBYTES2STRTMP directly
|
||||
// to avoid a function call to slicebytetostringtmp.
|
||||
break
|
||||
return n
|
||||
}
|
||||
// slicebytetostringtmp(ptr *byte, n int) string
|
||||
n.SetLeft(cheapexpr(n.Left(), init))
|
||||
ptr, len := backingArrayPtrLen(n.Left())
|
||||
n = mkcall("slicebytetostringtmp", n.Type(), init, ptr, len)
|
||||
return mkcall("slicebytetostringtmp", n.Type(), init, ptr, len)
|
||||
|
||||
case ir.OSTR2BYTES:
|
||||
s := n.Left()
|
||||
@ -1534,8 +1578,7 @@ opswitch:
|
||||
slice := ir.NodAt(n.Pos(), ir.OSLICEARR, p, nil)
|
||||
slice.SetType(n.Type())
|
||||
slice.SetTypecheck(1)
|
||||
n = walkexpr(slice, init)
|
||||
break
|
||||
return walkexpr(slice, init)
|
||||
}
|
||||
|
||||
a := nodnil()
|
||||
@ -1545,7 +1588,7 @@ opswitch:
|
||||
a = ir.Nod(ir.OADDR, temp(t), nil)
|
||||
}
|
||||
// stringtoslicebyte(*32[byte], string) []byte
|
||||
n = mkcall("stringtoslicebyte", n.Type(), init, a, conv(s, types.Types[types.TSTRING]))
|
||||
return mkcall("stringtoslicebyte", n.Type(), init, a, conv(s, types.Types[types.TSTRING]))
|
||||
|
||||
case ir.OSTR2BYTESTMP:
|
||||
// []byte(string) conversion that creates a slice
|
||||
@ -1556,6 +1599,7 @@ opswitch:
|
||||
// The only such case today is:
|
||||
// for i, c := range []byte(string)
|
||||
n.SetLeft(walkexpr(n.Left(), init))
|
||||
return n
|
||||
|
||||
case ir.OSTR2RUNES:
|
||||
a := nodnil()
|
||||
@ -1565,7 +1609,7 @@ opswitch:
|
||||
a = ir.Nod(ir.OADDR, temp(t), nil)
|
||||
}
|
||||
// stringtoslicerune(*[32]rune, string) []rune
|
||||
n = mkcall("stringtoslicerune", n.Type(), init, a, conv(n.Left(), types.Types[types.TSTRING]))
|
||||
return mkcall("stringtoslicerune", n.Type(), init, a, conv(n.Left(), types.Types[types.TSTRING]))
|
||||
|
||||
case ir.OARRAYLIT, ir.OSLICELIT, ir.OMAPLIT, ir.OSTRUCTLIT, ir.OPTRLIT:
|
||||
if isStaticCompositeLiteral(n) && !canSSAType(n.Type()) {
|
||||
@ -1573,55 +1617,29 @@ opswitch:
|
||||
// Make direct reference to the static data. See issue 12841.
|
||||
vstat := readonlystaticname(n.Type())
|
||||
fixedlit(inInitFunction, initKindStatic, n, vstat, init)
|
||||
n = vstat
|
||||
n = typecheck(n, ctxExpr)
|
||||
break
|
||||
return typecheck(vstat, ctxExpr)
|
||||
}
|
||||
var_ := temp(n.Type())
|
||||
anylit(n, var_, init)
|
||||
n = var_
|
||||
return var_
|
||||
|
||||
case ir.OSEND:
|
||||
n1 := n.Right()
|
||||
n1 = assignconv(n1, n.Left().Type().Elem(), "chan send")
|
||||
n1 = walkexpr(n1, init)
|
||||
n1 = ir.Nod(ir.OADDR, n1, nil)
|
||||
n = mkcall1(chanfn("chansend1", 2, n.Left().Type()), nil, init, n.Left(), n1)
|
||||
return mkcall1(chanfn("chansend1", 2, n.Left().Type()), nil, init, n.Left(), n1)
|
||||
|
||||
case ir.OCLOSURE:
|
||||
n = walkclosure(n, init)
|
||||
return walkclosure(n, init)
|
||||
|
||||
case ir.OCALLPART:
|
||||
n = walkpartialcall(n.(*ir.CallPartExpr), init)
|
||||
return walkpartialcall(n.(*ir.CallPartExpr), init)
|
||||
}
|
||||
|
||||
// Expressions that are constant at run time but not
|
||||
// considered const by the language spec are not turned into
|
||||
// constants until walk. For example, if n is y%1 == 0, the
|
||||
// walk of y%1 may have replaced it by 0.
|
||||
// Check whether n with its updated args is itself now a constant.
|
||||
t := n.Type()
|
||||
n = evalConst(n)
|
||||
if n.Type() != t {
|
||||
base.Fatalf("evconst changed Type: %v had type %v, now %v", n, t, n.Type())
|
||||
}
|
||||
if n.Op() == ir.OLITERAL {
|
||||
n = typecheck(n, ctxExpr)
|
||||
// Emit string symbol now to avoid emitting
|
||||
// any concurrently during the backend.
|
||||
if v := n.Val(); v.Kind() == constant.String {
|
||||
_ = stringsym(n.Pos(), constant.StringVal(v))
|
||||
}
|
||||
}
|
||||
|
||||
updateHasCall(n)
|
||||
|
||||
if base.Flag.LowerW != 0 && n != nil {
|
||||
ir.Dump("after walk expr", n)
|
||||
}
|
||||
|
||||
base.Pos = lno
|
||||
return n
|
||||
// No return! Each case must return (or panic),
|
||||
// to avoid confusion about what gets returned
|
||||
// in the presence of type assertions.
|
||||
}
|
||||
|
||||
// markTypeUsedInInterface marks that type t is converted to an interface.
|
||||
|
Loading…
Reference in New Issue
Block a user