This patch enables cgo utility to correctly convert enums in the C source

into consts in the resulting Go source.  Previously known as issue 161047,
which I deleted accidentally.  Fixes issue 207.

R=rsc
https://golang.org/cl/166059
This commit is contained in:
Moriyoshi Koizumi 2009-12-15 21:24:17 -08:00 committed by Russ Cox
parent 52114724b7
commit a8fbf5dc2c
6 changed files with 77 additions and 29 deletions

View file

@ -35,6 +35,7 @@ Kei Son <hey.calmdown@gmail.com>
Kevin Ballard <kevin@sb.org>
Michael Elkins <michael.elkins@gmail.com>
Michael Hoisie <hoisie@gmail.com>
Moriyoshi Koizumi <mozo@mozo.jp>
Môshe van der Sterre <moshevds@gmail.com>
Peter Froehlich <peter.hans.froehlich@gmail.com>
Roger Peppe <rogpeppe@gmail.com>

View file

@ -69,6 +69,7 @@ Larry Hosken <lahosken@golang.org>
Maxim Ushakov <ushakov@google.com>
Michael Elkins <michael.elkins@gmail.com>
Michael Hoisie <hoisie@gmail.com>
Moriyoshi Koizumi <mozo@mozo.jp>
Môshe van der Sterre <moshevds@gmail.com>
Nigel Tao <nigeltao@golang.org>
Peter Froehlich <peter.hans.froehlich@gmail.com>

View file

@ -35,16 +35,18 @@ type Prog struct {
Typedef map[string]ast.Expr
Vardef map[string]*Type
Funcdef map[string]*FuncType
Enumdef map[string]int64
PtrSize int64
GccOptions []string
}
// A Type collects information about a type in both the C and Go worlds.
type Type struct {
Size int64
Align int64
C string
Go ast.Expr
Size int64
Align int64
C string
Go ast.Expr
EnumValues map[string]int64
}
// A FuncType collects information about a function type in both the C and Go worlds.

View file

@ -120,6 +120,7 @@ func (p *Prog) loadDebugInfo() {
// Scan DWARF info for top-level TagVariable entries with AttrName __cgo__i.
types := make([]dwarf.Type, len(names))
enums := make([]dwarf.Offset, len(names))
r := d.Reader()
for {
e, err := r.Next()
@ -129,32 +130,56 @@ func (p *Prog) loadDebugInfo() {
if e == nil {
break
}
if e.Tag != dwarf.TagVariable {
goto Continue
switch e.Tag {
case dwarf.TagEnumerationType:
offset := e.Offset
for {
e, err := r.Next()
if err != nil {
fatal("reading DWARF entry: %s", err)
}
if e.Tag == 0 {
break
}
if e.Tag == dwarf.TagEnumerator {
entryName := e.Val(dwarf.AttrName).(string)
i, ok := m[entryName]
if ok {
enums[i] = offset
}
}
}
case dwarf.TagVariable:
name, _ := e.Val(dwarf.AttrName).(string)
typOff, _ := e.Val(dwarf.AttrType).(dwarf.Offset)
if name == "" || typOff == 0 {
fatal("malformed DWARF TagVariable entry")
}
if !strings.HasPrefix(name, "__cgo__") {
break
}
typ, err := d.Type(typOff)
if err != nil {
fatal("loading DWARF type: %s", err)
}
t, ok := typ.(*dwarf.PtrType)
if !ok || t == nil {
fatal("internal error: %s has non-pointer type", name)
}
i, err := strconv.Atoi(name[7:])
if err != nil {
fatal("malformed __cgo__ name: %s", name)
}
if enums[i] != 0 {
t, err := d.Type(enums[i])
if err != nil {
fatal("loading DWARF type: %s", err)
}
types[i] = t
} else {
types[i] = t.Type
}
}
name, _ := e.Val(dwarf.AttrName).(string)
typOff, _ := e.Val(dwarf.AttrType).(dwarf.Offset)
if name == "" || typOff == 0 {
fatal("malformed DWARF TagVariable entry")
}
if !strings.HasPrefix(name, "__cgo__") {
goto Continue
}
typ, err := d.Type(typOff)
if err != nil {
fatal("loading DWARF type: %s", err)
}
t, ok := typ.(*dwarf.PtrType)
if !ok || t == nil {
fatal("internal error: %s has non-pointer type", name)
}
i, err := strconv.Atoi(name[7:])
if err != nil {
fatal("malformed __cgo__ name: %s", name)
}
types[i] = t.Type
Continue:
if e.Tag != dwarf.TagCompileUnit {
r.SkipChildren()
}
@ -315,6 +340,7 @@ func (c *typeConv) Type(dtype dwarf.Type) *Type {
t.Size = dtype.Size()
t.Align = -1
t.C = dtype.Common().Name
t.EnumValues = nil
c.m[dtype] = t
if t.Size < 0 {
// Unsized types are [0]byte
@ -376,6 +402,10 @@ func (c *typeConv) Type(dtype dwarf.Type) *Type {
t.Align = c.ptrSize
}
t.C = "enum " + dt.EnumName
t.EnumValues = make(map[string]int64)
for _, ev := range dt.Val {
t.EnumValues[ev.Name] = ev.Val
}
case *dwarf.FloatType:
switch t.Size {

View file

@ -71,6 +71,7 @@ func main() {
p.loadDebugInfo()
p.Vardef = make(map[string]*Type)
p.Funcdef = make(map[string]*FuncType)
p.Enumdef = make(map[string]int64)
for _, cref := range p.Crefs {
switch cref.Context {
@ -86,6 +87,14 @@ func main() {
if cref.TypeName {
error((*cref.Expr).Pos(), "type C.%s used as expression", cref.Name)
}
// If the expression refers to an enumerated value, then
// place the identifier for the value and add it to Enumdef so
// it will be declared as a constant in the later stage.
if cref.Type.EnumValues != nil {
*cref.Expr = &ast.Ident{Value: cref.Name}
p.Enumdef[cref.Name] = cref.Type.EnumValues[cref.Name]
break
}
// Reference to C variable.
// We declare a pointer and arrange to have it filled in.
*cref.Expr = &ast.StarExpr{X: &ast.Ident{Value: "_C_" + cref.Name}}

View file

@ -69,6 +69,11 @@ func (p *Prog) writeOutput(srcfile string) {
}
fmt.Fprintf(fc, "\n")
for name, value := range p.Enumdef {
fmt.Fprintf(fgo2, "const %s = %d\n", name, value)
}
fmt.Fprintf(fgo2, "\n")
for name, def := range p.Funcdef {
// Go func declaration.
d := &ast.FuncDecl{