mirror of
https://github.com/golang/go
synced 2024-11-21 20:54:45 -07:00
gob: add support for maps.
Because maps are mostly a hidden type, they must be implemented using reflection values and will not be as efficient as arrays and slices. R=rsc CC=golang-dev https://golang.org/cl/1127041
This commit is contained in:
parent
46152bb9fe
commit
7861da737e
@ -572,6 +572,7 @@ func TestEndToEnd(t *testing.T) {
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s2 := "string2"
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type T1 struct {
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a, b, c int
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m map[string]*float
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n *[3]float
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strs *[2]string
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int64s *[]int64
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@ -579,10 +580,13 @@ func TestEndToEnd(t *testing.T) {
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y []byte
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t *T2
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}
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pi := 3.14159
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e := 2.71828
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t1 := &T1{
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a: 17,
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b: 18,
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c: -5,
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m: map[string]*float{"pi": &pi, "e": &e},
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n: &[3]float{1.5, 2.5, 3.5},
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strs: &[2]string{s1, s2},
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int64s: &[]int64{77, 89, 123412342134},
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@ -921,6 +925,7 @@ type IT0 struct {
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ignore_g string
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ignore_h []byte
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ignore_i *RT1
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ignore_m map[string]int
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c float
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}
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@ -937,6 +942,7 @@ func TestIgnoredFields(t *testing.T) {
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it0.ignore_g = "pay no attention"
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it0.ignore_h = []byte("to the curtain")
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it0.ignore_i = &RT1{3.1, "hi", 7, "hello"}
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it0.ignore_m = map[string]int{"one": 1, "two": 2}
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b := new(bytes.Buffer)
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NewEncoder(b).Encode(it0)
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@ -447,6 +447,49 @@ func decodeArray(atyp *reflect.ArrayType, state *decodeState, p uintptr, elemOp
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return decodeArrayHelper(state, p, elemOp, elemWid, length, elemIndir, ovfl)
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}
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func decodeIntoValue(state *decodeState, op decOp, indir int, v reflect.Value, ovfl os.ErrorString) reflect.Value {
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instr := &decInstr{op, 0, indir, 0, ovfl}
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up := unsafe.Pointer(v.Addr())
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if indir > 1 {
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up = decIndirect(up, indir)
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}
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op(instr, state, up)
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return v
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}
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func decodeMap(mtyp *reflect.MapType, state *decodeState, p uintptr, keyOp, elemOp decOp, indir, keyIndir, elemIndir int, ovfl os.ErrorString) os.Error {
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if indir > 0 {
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up := unsafe.Pointer(p)
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if *(*unsafe.Pointer)(up) == nil {
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// Allocate object.
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*(*unsafe.Pointer)(up) = unsafe.New(mtyp)
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}
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p = *(*uintptr)(up)
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}
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up := unsafe.Pointer(p)
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if *(*unsafe.Pointer)(up) == nil { // maps are represented as a pointer in the runtime
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// Allocate map.
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*(*unsafe.Pointer)(up) = unsafe.Pointer(reflect.MakeMap(mtyp).Get())
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}
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// Maps cannot be accessed by moving addresses around the way
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// that slices etc. can. We must recover a full reflection value for
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// the iteration.
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v := reflect.NewValue(unsafe.Unreflect(mtyp, unsafe.Pointer((p)))).(*reflect.MapValue)
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n := int(decodeUint(state))
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for i := 0; i < n && state.err == nil; i++ {
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key := decodeIntoValue(state, keyOp, keyIndir, reflect.MakeZero(mtyp.Key()), ovfl)
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if state.err != nil {
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break
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}
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elem := decodeIntoValue(state, elemOp, elemIndir, reflect.MakeZero(mtyp.Elem()), ovfl)
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if state.err != nil {
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break
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}
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v.SetElem(key, elem)
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}
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return state.err
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}
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func ignoreArrayHelper(state *decodeState, elemOp decOp, length int) os.Error {
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instr := &decInstr{elemOp, 0, 0, 0, os.ErrorString("no error")}
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for i := 0; i < length && state.err == nil; i++ {
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@ -462,6 +505,18 @@ func ignoreArray(state *decodeState, elemOp decOp, length int) os.Error {
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return ignoreArrayHelper(state, elemOp, length)
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}
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func ignoreMap(state *decodeState, keyOp, elemOp decOp) os.Error {
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n := int(decodeUint(state))
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keyInstr := &decInstr{keyOp, 0, 0, 0, os.ErrorString("no error")}
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elemInstr := &decInstr{elemOp, 0, 0, 0, os.ErrorString("no error")}
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for i := 0; i < n && state.err == nil; i++ {
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keyOp(keyInstr, state, nil)
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elemOp(elemInstr, state, nil)
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}
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return state.err
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}
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func decodeSlice(atyp *reflect.SliceType, state *decodeState, p uintptr, elemOp decOp, elemWid uintptr, indir, elemIndir int, ovfl os.ErrorString) os.Error {
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n := int(uintptr(decodeUint(state)))
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if indir > 0 {
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@ -517,6 +572,39 @@ func (dec *Decoder) decOpFor(wireId typeId, rt reflect.Type, name string) (decOp
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if !ok {
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// Special cases
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switch t := typ.(type) {
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case *reflect.ArrayType:
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name = "element of " + name
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elemId := dec.wireType[wireId].arrayT.Elem
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elemOp, elemIndir, err := dec.decOpFor(elemId, t.Elem(), name)
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if err != nil {
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return nil, 0, err
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}
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ovfl := overflow(name)
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op = func(i *decInstr, state *decodeState, p unsafe.Pointer) {
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state.err = decodeArray(t, state, uintptr(p), elemOp, t.Elem().Size(), t.Len(), i.indir, elemIndir, ovfl)
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}
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case *reflect.MapType:
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name = "element of " + name
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keyId := dec.wireType[wireId].mapT.Key
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elemId := dec.wireType[wireId].mapT.Elem
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keyOp, keyIndir, err := dec.decOpFor(keyId, t.Key(), name)
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if err != nil {
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return nil, 0, err
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}
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elemOp, elemIndir, err := dec.decOpFor(elemId, t.Elem(), name)
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if err != nil {
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return nil, 0, err
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}
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ovfl := overflow(name)
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op = func(i *decInstr, state *decodeState, p unsafe.Pointer) {
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up := unsafe.Pointer(p)
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if indir > 1 {
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up = decIndirect(up, indir)
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}
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state.err = decodeMap(t, state, uintptr(up), keyOp, elemOp, i.indir, keyIndir, elemIndir, ovfl)
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}
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case *reflect.SliceType:
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name = "element of " + name
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if _, ok := t.Elem().(*reflect.Uint8Type); ok {
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@ -527,7 +615,7 @@ func (dec *Decoder) decOpFor(wireId typeId, rt reflect.Type, name string) (decOp
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if tt, ok := builtinIdToType[wireId]; ok {
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elemId = tt.(*sliceType).Elem
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} else {
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elemId = dec.wireType[wireId].slice.Elem
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elemId = dec.wireType[wireId].sliceT.Elem
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}
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elemOp, elemIndir, err := dec.decOpFor(elemId, t.Elem(), name)
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if err != nil {
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@ -538,18 +626,6 @@ func (dec *Decoder) decOpFor(wireId typeId, rt reflect.Type, name string) (decOp
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state.err = decodeSlice(t, state, uintptr(p), elemOp, t.Elem().Size(), i.indir, elemIndir, ovfl)
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}
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case *reflect.ArrayType:
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name = "element of " + name
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elemId := dec.wireType[wireId].array.Elem
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elemOp, elemIndir, err := dec.decOpFor(elemId, t.Elem(), name)
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if err != nil {
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return nil, 0, err
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}
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ovfl := overflow(name)
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op = func(i *decInstr, state *decodeState, p unsafe.Pointer) {
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state.err = decodeArray(t, state, uintptr(p), elemOp, t.Elem().Size(), t.Len(), i.indir, elemIndir, ovfl)
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}
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case *reflect.StructType:
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// Generate a closure that calls out to the engine for the nested type.
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enginePtr, err := dec.getDecEnginePtr(wireId, typ)
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@ -575,18 +651,33 @@ func (dec *Decoder) decIgnoreOpFor(wireId typeId) (decOp, os.Error) {
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// Special cases
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wire := dec.wireType[wireId]
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switch {
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case wire.array != nil:
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elemId := wire.array.Elem
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case wire.arrayT != nil:
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elemId := wire.arrayT.Elem
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elemOp, err := dec.decIgnoreOpFor(elemId)
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if err != nil {
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return nil, err
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}
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op = func(i *decInstr, state *decodeState, p unsafe.Pointer) {
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state.err = ignoreArray(state, elemOp, wire.array.Len)
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state.err = ignoreArray(state, elemOp, wire.arrayT.Len)
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}
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case wire.slice != nil:
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elemId := wire.slice.Elem
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case wire.mapT != nil:
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keyId := dec.wireType[wireId].mapT.Key
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elemId := dec.wireType[wireId].mapT.Elem
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keyOp, err := dec.decIgnoreOpFor(keyId)
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if err != nil {
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return nil, err
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}
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elemOp, err := dec.decIgnoreOpFor(elemId)
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if err != nil {
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return nil, err
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}
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op = func(i *decInstr, state *decodeState, p unsafe.Pointer) {
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state.err = ignoreMap(state, keyOp, elemOp)
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}
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case wire.sliceT != nil:
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elemId := wire.sliceT.Elem
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elemOp, err := dec.decIgnoreOpFor(elemId)
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if err != nil {
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return nil, err
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@ -595,7 +686,7 @@ func (dec *Decoder) decIgnoreOpFor(wireId typeId) (decOp, os.Error) {
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state.err = ignoreSlice(state, elemOp)
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}
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case wire.strct != nil:
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case wire.structT != nil:
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// Generate a closure that calls out to the engine for the nested type.
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enginePtr, err := dec.getIgnoreEnginePtr(wireId)
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if err != nil {
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@ -640,11 +731,18 @@ func (dec *Decoder) compatibleType(fr reflect.Type, fw typeId) bool {
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return fw == tString
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case *reflect.ArrayType:
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wire, ok := dec.wireType[fw]
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if !ok || wire.array == nil {
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if !ok || wire.arrayT == nil {
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return false
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}
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array := wire.array
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return ok && t.Len() == array.Len && dec.compatibleType(t.Elem(), array.Elem)
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array := wire.arrayT
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return t.Len() == array.Len && dec.compatibleType(t.Elem(), array.Elem)
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case *reflect.MapType:
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wire, ok := dec.wireType[fw]
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if !ok || wire.mapT == nil {
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return false
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}
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mapType := wire.mapT
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return dec.compatibleType(t.Key(), mapType.Key) && dec.compatibleType(t.Elem(), mapType.Elem)
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case *reflect.SliceType:
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// Is it an array of bytes?
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et := t.Elem()
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@ -656,7 +754,7 @@ func (dec *Decoder) compatibleType(fr reflect.Type, fw typeId) bool {
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if tt, ok := builtinIdToType[fw]; ok {
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sw = tt.(*sliceType)
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} else {
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sw = dec.wireType[fw].slice
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sw = dec.wireType[fw].sliceT
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}
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elem, _ := indirect(t.Elem())
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return sw != nil && dec.compatibleType(elem, sw.Elem)
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@ -677,7 +775,7 @@ func (dec *Decoder) compileDec(remoteId typeId, rt reflect.Type) (engine *decEng
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if !ok1 || !ok2 {
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return nil, errNotStruct
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}
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wireStruct = w.strct
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wireStruct = w.structT
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}
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engine = new(decEngine)
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engine.instr = make([]decInstr, len(wireStruct.field))
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@ -760,7 +858,7 @@ func (dec *Decoder) decode(wireId typeId, e interface{}) os.Error {
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return err
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}
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engine := *enginePtr
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if engine.numInstr == 0 && st.NumField() > 0 && len(dec.wireType[wireId].strct.field) > 0 {
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if engine.numInstr == 0 && st.NumField() > 0 && len(dec.wireType[wireId].structT.field) > 0 {
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name := rt.Name()
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return os.ErrorString("gob: type mismatch: no fields matched compiling decoder for " + name)
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}
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@ -22,7 +22,7 @@ const uint64Size = unsafe.Sizeof(uint64(0))
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type encoderState struct {
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b *bytes.Buffer
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err os.Error // error encountered during encoding.
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inArray bool // encoding an array element
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inArray bool // encoding an array element or map key/value pair
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fieldnum int // the last field number written.
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buf [1 + uint64Size]byte // buffer used by the encoder; here to avoid allocation.
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}
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@ -297,7 +297,7 @@ func encodeStruct(engine *encEngine, b *bytes.Buffer, basep uintptr) os.Error {
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return state.err
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}
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func encodeArray(b *bytes.Buffer, p uintptr, op encOp, elemWid uintptr, length int, elemIndir int) os.Error {
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func encodeArray(b *bytes.Buffer, p uintptr, op encOp, elemWid uintptr, elemIndir int, length int) os.Error {
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state := new(encoderState)
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state.b = b
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state.fieldnum = -1
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@ -319,6 +319,39 @@ func encodeArray(b *bytes.Buffer, p uintptr, op encOp, elemWid uintptr, length i
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return state.err
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}
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func encodeReflectValue(state *encoderState, v reflect.Value, op encOp, indir int) {
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for i := 0; i < indir && v != nil; i++ {
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v = reflect.Indirect(v)
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}
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if v == nil {
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state.err = os.ErrorString("gob: encodeMap: nil element")
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return
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}
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op(nil, state, unsafe.Pointer(v.Addr()))
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}
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func encodeMap(b *bytes.Buffer, rt reflect.Type, p uintptr, keyOp, elemOp encOp, keyIndir, elemIndir int) os.Error {
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state := new(encoderState)
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state.b = b
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state.fieldnum = -1
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state.inArray = true
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// Maps cannot be accessed by moving addresses around the way
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// that slices etc. can. We must recover a full reflection value for
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// the iteration.
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v := reflect.NewValue(unsafe.Unreflect(rt, unsafe.Pointer((p))))
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mv := reflect.Indirect(v).(*reflect.MapValue)
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keys := mv.Keys()
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encodeUint(state, uint64(len(keys)))
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for _, key := range keys {
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if state.err != nil {
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break
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}
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encodeReflectValue(state, key, keyOp, keyIndir)
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encodeReflectValue(state, mv.Elem(key), elemOp, elemIndir)
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}
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return state.err
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}
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var encOpMap = map[reflect.Type]encOp{
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valueKind(false): encBool,
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valueKind(int(0)): encInt,
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@ -344,7 +377,6 @@ func encOpFor(rt reflect.Type) (encOp, int, os.Error) {
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typ, indir := indirect(rt)
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op, ok := encOpMap[reflect.Typeof(typ)]
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if !ok {
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typ, _ := indirect(rt)
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// Special cases
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switch t := typ.(type) {
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case *reflect.SliceType:
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@ -363,7 +395,7 @@ func encOpFor(rt reflect.Type) (encOp, int, os.Error) {
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return
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}
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state.update(i)
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state.err = encodeArray(state.b, slice.Data, elemOp, t.Elem().Size(), int(slice.Len), indir)
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state.err = encodeArray(state.b, slice.Data, elemOp, t.Elem().Size(), indir, int(slice.Len))
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}
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case *reflect.ArrayType:
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// True arrays have size in the type.
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@ -373,7 +405,20 @@ func encOpFor(rt reflect.Type) (encOp, int, os.Error) {
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}
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op = func(i *encInstr, state *encoderState, p unsafe.Pointer) {
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state.update(i)
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state.err = encodeArray(state.b, uintptr(p), elemOp, t.Elem().Size(), t.Len(), indir)
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state.err = encodeArray(state.b, uintptr(p), elemOp, t.Elem().Size(), indir, t.Len())
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}
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case *reflect.MapType:
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keyOp, keyIndir, err := encOpFor(t.Key())
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if err != nil {
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return nil, 0, err
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}
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elemOp, elemIndir, err := encOpFor(t.Elem())
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if err != nil {
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return nil, 0, err
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}
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op = func(i *encInstr, state *encoderState, p unsafe.Pointer) {
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state.update(i)
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state.err = encodeMap(state.b, typ, uintptr(p), keyOp, elemOp, keyIndir, elemIndir)
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}
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case *reflect.StructType:
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// Generate a closure that calls out to the engine for the nested type.
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@ -71,9 +71,8 @@
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Structs, arrays and slices are also supported. Strings and arrays of bytes are
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supported with a special, efficient representation (see below).
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Maps are not supported yet, but they will be. Interfaces, functions, and channels
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cannot be sent in a gob. Attempting to encode a value that contains one will
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fail.
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Interfaces, functions, and channels cannot be sent in a gob. Attempting
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to encode a value that contains one will fail.
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The rest of this comment documents the encoding, details that are not important
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for most users. Details are presented bottom-up.
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@ -263,10 +262,13 @@ func (enc *Encoder) sendType(origt reflect.Type) {
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case *reflect.ArrayType:
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// arrays must be sent so we know their lengths and element types.
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break
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case *reflect.MapType:
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// maps must be sent so we know their lengths and key/value types.
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break
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case *reflect.StructType:
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// structs must be sent so we know their fields.
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break
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case *reflect.ChanType, *reflect.FuncType, *reflect.MapType, *reflect.InterfaceType:
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case *reflect.ChanType, *reflect.FuncType, *reflect.InterfaceType:
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// Probably a bad field in a struct.
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enc.badType(rt)
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return
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@ -142,6 +142,31 @@ func (a *arrayType) safeString(seen map[typeId]bool) string {
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func (a *arrayType) string() string { return a.safeString(make(map[typeId]bool)) }
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// Map type
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type mapType struct {
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commonType
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Key typeId
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Elem typeId
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}
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func newMapType(name string, key, elem gobType) *mapType {
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m := &mapType{commonType{name: name}, key.id(), elem.id()}
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setTypeId(m)
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return m
|
||||
}
|
||||
|
||||
func (m *mapType) safeString(seen map[typeId]bool) string {
|
||||
if seen[m._id] {
|
||||
return m.name
|
||||
}
|
||||
seen[m._id] = true
|
||||
key := m.Key.gobType().safeString(seen)
|
||||
elem := m.Elem.gobType().safeString(seen)
|
||||
return fmt.Sprintf("map[%s]%s", key, elem)
|
||||
}
|
||||
|
||||
func (m *mapType) string() string { return m.safeString(make(map[typeId]bool)) }
|
||||
|
||||
// Slice type
|
||||
type sliceType struct {
|
||||
commonType
|
||||
@ -239,6 +264,17 @@ func newTypeObject(name string, rt reflect.Type) (gobType, os.Error) {
|
||||
}
|
||||
return newArrayType(name, gt, t.Len()), nil
|
||||
|
||||
case *reflect.MapType:
|
||||
kt, err := getType("", t.Key())
|
||||
if err != nil {
|
||||
return nil, err
|
||||
}
|
||||
vt, err := getType("", t.Elem())
|
||||
if err != nil {
|
||||
return nil, err
|
||||
}
|
||||
return newMapType(name, kt, vt), nil
|
||||
|
||||
case *reflect.SliceType:
|
||||
// []byte == []uint8 is a special case
|
||||
if _, ok := t.Elem().(*reflect.Uint8Type); ok {
|
||||
@ -330,16 +366,18 @@ func bootstrapType(name string, e interface{}, expect typeId) typeId {
|
||||
// using the gob rules for sending a structure, except that we assume the
|
||||
// ids for wireType and structType are known. The relevant pieces
|
||||
// are built in encode.go's init() function.
|
||||
|
||||
// To maintain binary compatibility, if you extend this type, always put
|
||||
// the new fields last.
|
||||
type wireType struct {
|
||||
array *arrayType
|
||||
slice *sliceType
|
||||
strct *structType
|
||||
arrayT *arrayType
|
||||
sliceT *sliceType
|
||||
structT *structType
|
||||
mapT *mapType
|
||||
}
|
||||
|
||||
func (w *wireType) name() string {
|
||||
if w.strct != nil {
|
||||
return w.strct.name
|
||||
if w.structT != nil {
|
||||
return w.structT.name
|
||||
}
|
||||
return "unknown"
|
||||
}
|
||||
@ -370,14 +408,16 @@ func getTypeInfo(rt reflect.Type) (*typeInfo, os.Error) {
|
||||
t := info.id.gobType()
|
||||
switch typ := rt.(type) {
|
||||
case *reflect.ArrayType:
|
||||
info.wire = &wireType{array: t.(*arrayType)}
|
||||
info.wire = &wireType{arrayT: t.(*arrayType)}
|
||||
case *reflect.MapType:
|
||||
info.wire = &wireType{mapT: t.(*mapType)}
|
||||
case *reflect.SliceType:
|
||||
// []byte == []uint8 is a special case handled separately
|
||||
if _, ok := typ.Elem().(*reflect.Uint8Type); !ok {
|
||||
info.wire = &wireType{slice: t.(*sliceType)}
|
||||
info.wire = &wireType{sliceT: t.(*sliceType)}
|
||||
}
|
||||
case *reflect.StructType:
|
||||
info.wire = &wireType{strct: t.(*structType)}
|
||||
info.wire = &wireType{structT: t.(*structType)}
|
||||
}
|
||||
typeInfoMap[rt] = info
|
||||
}
|
||||
|
@ -105,6 +105,26 @@ func TestSliceType(t *testing.T) {
|
||||
}
|
||||
}
|
||||
|
||||
func TestMapType(t *testing.T) {
|
||||
var m map[string]int
|
||||
mapStringInt := getTypeUnlocked("map", reflect.Typeof(m))
|
||||
var newm map[string]int
|
||||
newMapStringInt := getTypeUnlocked("map1", reflect.Typeof(newm))
|
||||
if mapStringInt != newMapStringInt {
|
||||
t.Errorf("second registration of map[string]int creates new type")
|
||||
}
|
||||
var b map[string]bool
|
||||
mapStringBool := getTypeUnlocked("", reflect.Typeof(b))
|
||||
if mapStringBool == mapStringInt {
|
||||
t.Errorf("registration of map[string]bool creates same type as map[string]int")
|
||||
}
|
||||
str := mapStringBool.string()
|
||||
expected := "map[string]bool"
|
||||
if str != expected {
|
||||
t.Errorf("map printed as %q; expected %q", str, expected)
|
||||
}
|
||||
}
|
||||
|
||||
type Bar struct {
|
||||
x string
|
||||
}
|
||||
|
Loading…
Reference in New Issue
Block a user