mirror of
https://github.com/rancher/norman.git
synced 2025-09-03 08:14:40 +00:00
Add Generic Controller Related Metrics
To enhance operatability for the service using norman framework, It's better to expose internal state as detail as possible. This is the just starting point but at least which handler is executed often and which handler with which key's execution is often failed metrics is very useful to spot the place operator have to dig in when something happened. So this commit added 2 metrics. 1: handler execution total count 2: handler execution failure total count
This commit is contained in:
438
vendor/github.com/golang/protobuf/proto/properties.go
generated
vendored
438
vendor/github.com/golang/protobuf/proto/properties.go
generated
vendored
@@ -58,42 +58,6 @@ const (
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WireFixed32 = 5
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)
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const startSize = 10 // initial slice/string sizes
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// Encoders are defined in encode.go
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// An encoder outputs the full representation of a field, including its
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// tag and encoder type.
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type encoder func(p *Buffer, prop *Properties, base structPointer) error
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// A valueEncoder encodes a single integer in a particular encoding.
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type valueEncoder func(o *Buffer, x uint64) error
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// Sizers are defined in encode.go
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// A sizer returns the encoded size of a field, including its tag and encoder
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// type.
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type sizer func(prop *Properties, base structPointer) int
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// A valueSizer returns the encoded size of a single integer in a particular
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// encoding.
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type valueSizer func(x uint64) int
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// Decoders are defined in decode.go
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// A decoder creates a value from its wire representation.
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// Unrecognized subelements are saved in unrec.
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type decoder func(p *Buffer, prop *Properties, base structPointer) error
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// A valueDecoder decodes a single integer in a particular encoding.
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type valueDecoder func(o *Buffer) (x uint64, err error)
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// A oneofMarshaler does the marshaling for all oneof fields in a message.
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type oneofMarshaler func(Message, *Buffer) error
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// A oneofUnmarshaler does the unmarshaling for a oneof field in a message.
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type oneofUnmarshaler func(Message, int, int, *Buffer) (bool, error)
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// A oneofSizer does the sizing for all oneof fields in a message.
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type oneofSizer func(Message) int
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// tagMap is an optimization over map[int]int for typical protocol buffer
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// use-cases. Encoded protocol buffers are often in tag order with small tag
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// numbers.
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@@ -140,13 +104,6 @@ type StructProperties struct {
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decoderTags tagMap // map from proto tag to struct field number
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decoderOrigNames map[string]int // map from original name to struct field number
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order []int // list of struct field numbers in tag order
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unrecField field // field id of the XXX_unrecognized []byte field
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extendable bool // is this an extendable proto
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oneofMarshaler oneofMarshaler
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oneofUnmarshaler oneofUnmarshaler
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oneofSizer oneofSizer
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stype reflect.Type
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// OneofTypes contains information about the oneof fields in this message.
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// It is keyed by the original name of a field.
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@@ -182,41 +139,24 @@ type Properties struct {
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Repeated bool
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Packed bool // relevant for repeated primitives only
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Enum string // set for enum types only
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proto3 bool // whether this is known to be a proto3 field; set for []byte only
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proto3 bool // whether this is known to be a proto3 field
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oneof bool // whether this is a oneof field
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Default string // default value
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HasDefault bool // whether an explicit default was provided
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def_uint64 uint64
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enc encoder
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valEnc valueEncoder // set for bool and numeric types only
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field field
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tagcode []byte // encoding of EncodeVarint((Tag<<3)|WireType)
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tagbuf [8]byte
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stype reflect.Type // set for struct types only
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sprop *StructProperties // set for struct types only
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isMarshaler bool
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isUnmarshaler bool
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stype reflect.Type // set for struct types only
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sprop *StructProperties // set for struct types only
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mtype reflect.Type // set for map types only
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mkeyprop *Properties // set for map types only
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mvalprop *Properties // set for map types only
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size sizer
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valSize valueSizer // set for bool and numeric types only
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dec decoder
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valDec valueDecoder // set for bool and numeric types only
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// If this is a packable field, this will be the decoder for the packed version of the field.
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packedDec decoder
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mtype reflect.Type // set for map types only
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MapKeyProp *Properties // set for map types only
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MapValProp *Properties // set for map types only
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}
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// String formats the properties in the protobuf struct field tag style.
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func (p *Properties) String() string {
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s := p.Wire
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s = ","
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s += ","
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s += strconv.Itoa(p.Tag)
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if p.Required {
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s += ",req"
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@@ -262,29 +202,14 @@ func (p *Properties) Parse(s string) {
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switch p.Wire {
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case "varint":
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p.WireType = WireVarint
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p.valEnc = (*Buffer).EncodeVarint
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p.valDec = (*Buffer).DecodeVarint
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p.valSize = sizeVarint
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case "fixed32":
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p.WireType = WireFixed32
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p.valEnc = (*Buffer).EncodeFixed32
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p.valDec = (*Buffer).DecodeFixed32
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p.valSize = sizeFixed32
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case "fixed64":
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p.WireType = WireFixed64
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p.valEnc = (*Buffer).EncodeFixed64
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p.valDec = (*Buffer).DecodeFixed64
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p.valSize = sizeFixed64
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case "zigzag32":
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p.WireType = WireVarint
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p.valEnc = (*Buffer).EncodeZigzag32
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p.valDec = (*Buffer).DecodeZigzag32
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p.valSize = sizeZigzag32
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case "zigzag64":
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p.WireType = WireVarint
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p.valEnc = (*Buffer).EncodeZigzag64
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p.valDec = (*Buffer).DecodeZigzag64
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p.valSize = sizeZigzag64
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case "bytes", "group":
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p.WireType = WireBytes
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// no numeric converter for non-numeric types
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@@ -299,6 +224,7 @@ func (p *Properties) Parse(s string) {
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return
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}
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outer:
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for i := 2; i < len(fields); i++ {
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f := fields[i]
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switch {
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@@ -326,256 +252,41 @@ func (p *Properties) Parse(s string) {
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if i+1 < len(fields) {
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// Commas aren't escaped, and def is always last.
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p.Default += "," + strings.Join(fields[i+1:], ",")
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break
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break outer
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}
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}
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}
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}
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func logNoSliceEnc(t1, t2 reflect.Type) {
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fmt.Fprintf(os.Stderr, "proto: no slice oenc for %T = []%T\n", t1, t2)
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}
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var protoMessageType = reflect.TypeOf((*Message)(nil)).Elem()
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// Initialize the fields for encoding and decoding.
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func (p *Properties) setEncAndDec(typ reflect.Type, f *reflect.StructField, lockGetProp bool) {
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p.enc = nil
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p.dec = nil
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p.size = nil
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// setFieldProps initializes the field properties for submessages and maps.
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func (p *Properties) setFieldProps(typ reflect.Type, f *reflect.StructField, lockGetProp bool) {
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switch t1 := typ; t1.Kind() {
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default:
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fmt.Fprintf(os.Stderr, "proto: no coders for %v\n", t1)
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// proto3 scalar types
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case reflect.Bool:
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p.enc = (*Buffer).enc_proto3_bool
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p.dec = (*Buffer).dec_proto3_bool
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p.size = size_proto3_bool
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case reflect.Int32:
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p.enc = (*Buffer).enc_proto3_int32
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p.dec = (*Buffer).dec_proto3_int32
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p.size = size_proto3_int32
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case reflect.Uint32:
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p.enc = (*Buffer).enc_proto3_uint32
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p.dec = (*Buffer).dec_proto3_int32 // can reuse
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p.size = size_proto3_uint32
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case reflect.Int64, reflect.Uint64:
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p.enc = (*Buffer).enc_proto3_int64
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p.dec = (*Buffer).dec_proto3_int64
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p.size = size_proto3_int64
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case reflect.Float32:
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p.enc = (*Buffer).enc_proto3_uint32 // can just treat them as bits
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p.dec = (*Buffer).dec_proto3_int32
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p.size = size_proto3_uint32
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case reflect.Float64:
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p.enc = (*Buffer).enc_proto3_int64 // can just treat them as bits
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p.dec = (*Buffer).dec_proto3_int64
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p.size = size_proto3_int64
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case reflect.String:
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p.enc = (*Buffer).enc_proto3_string
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p.dec = (*Buffer).dec_proto3_string
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p.size = size_proto3_string
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case reflect.Ptr:
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switch t2 := t1.Elem(); t2.Kind() {
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default:
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fmt.Fprintf(os.Stderr, "proto: no encoder function for %v -> %v\n", t1, t2)
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break
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case reflect.Bool:
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p.enc = (*Buffer).enc_bool
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p.dec = (*Buffer).dec_bool
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p.size = size_bool
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case reflect.Int32:
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p.enc = (*Buffer).enc_int32
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p.dec = (*Buffer).dec_int32
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p.size = size_int32
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case reflect.Uint32:
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p.enc = (*Buffer).enc_uint32
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p.dec = (*Buffer).dec_int32 // can reuse
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p.size = size_uint32
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case reflect.Int64, reflect.Uint64:
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p.enc = (*Buffer).enc_int64
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p.dec = (*Buffer).dec_int64
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p.size = size_int64
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case reflect.Float32:
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p.enc = (*Buffer).enc_uint32 // can just treat them as bits
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p.dec = (*Buffer).dec_int32
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p.size = size_uint32
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case reflect.Float64:
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p.enc = (*Buffer).enc_int64 // can just treat them as bits
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p.dec = (*Buffer).dec_int64
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p.size = size_int64
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case reflect.String:
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p.enc = (*Buffer).enc_string
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p.dec = (*Buffer).dec_string
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p.size = size_string
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case reflect.Struct:
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if t1.Elem().Kind() == reflect.Struct {
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p.stype = t1.Elem()
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p.isMarshaler = isMarshaler(t1)
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p.isUnmarshaler = isUnmarshaler(t1)
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if p.Wire == "bytes" {
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p.enc = (*Buffer).enc_struct_message
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p.dec = (*Buffer).dec_struct_message
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p.size = size_struct_message
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} else {
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p.enc = (*Buffer).enc_struct_group
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p.dec = (*Buffer).dec_struct_group
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p.size = size_struct_group
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}
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}
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case reflect.Slice:
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switch t2 := t1.Elem(); t2.Kind() {
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default:
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logNoSliceEnc(t1, t2)
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break
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case reflect.Bool:
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if p.Packed {
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p.enc = (*Buffer).enc_slice_packed_bool
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p.size = size_slice_packed_bool
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} else {
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p.enc = (*Buffer).enc_slice_bool
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p.size = size_slice_bool
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}
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p.dec = (*Buffer).dec_slice_bool
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p.packedDec = (*Buffer).dec_slice_packed_bool
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case reflect.Int32:
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if p.Packed {
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p.enc = (*Buffer).enc_slice_packed_int32
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p.size = size_slice_packed_int32
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} else {
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p.enc = (*Buffer).enc_slice_int32
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p.size = size_slice_int32
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}
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p.dec = (*Buffer).dec_slice_int32
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p.packedDec = (*Buffer).dec_slice_packed_int32
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case reflect.Uint32:
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if p.Packed {
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p.enc = (*Buffer).enc_slice_packed_uint32
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p.size = size_slice_packed_uint32
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} else {
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p.enc = (*Buffer).enc_slice_uint32
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p.size = size_slice_uint32
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}
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p.dec = (*Buffer).dec_slice_int32
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p.packedDec = (*Buffer).dec_slice_packed_int32
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case reflect.Int64, reflect.Uint64:
|
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if p.Packed {
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p.enc = (*Buffer).enc_slice_packed_int64
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p.size = size_slice_packed_int64
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} else {
|
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p.enc = (*Buffer).enc_slice_int64
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p.size = size_slice_int64
|
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}
|
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p.dec = (*Buffer).dec_slice_int64
|
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p.packedDec = (*Buffer).dec_slice_packed_int64
|
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case reflect.Uint8:
|
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p.dec = (*Buffer).dec_slice_byte
|
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if p.proto3 {
|
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p.enc = (*Buffer).enc_proto3_slice_byte
|
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p.size = size_proto3_slice_byte
|
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} else {
|
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p.enc = (*Buffer).enc_slice_byte
|
||||
p.size = size_slice_byte
|
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}
|
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case reflect.Float32, reflect.Float64:
|
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switch t2.Bits() {
|
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case 32:
|
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// can just treat them as bits
|
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if p.Packed {
|
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p.enc = (*Buffer).enc_slice_packed_uint32
|
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p.size = size_slice_packed_uint32
|
||||
} else {
|
||||
p.enc = (*Buffer).enc_slice_uint32
|
||||
p.size = size_slice_uint32
|
||||
}
|
||||
p.dec = (*Buffer).dec_slice_int32
|
||||
p.packedDec = (*Buffer).dec_slice_packed_int32
|
||||
case 64:
|
||||
// can just treat them as bits
|
||||
if p.Packed {
|
||||
p.enc = (*Buffer).enc_slice_packed_int64
|
||||
p.size = size_slice_packed_int64
|
||||
} else {
|
||||
p.enc = (*Buffer).enc_slice_int64
|
||||
p.size = size_slice_int64
|
||||
}
|
||||
p.dec = (*Buffer).dec_slice_int64
|
||||
p.packedDec = (*Buffer).dec_slice_packed_int64
|
||||
default:
|
||||
logNoSliceEnc(t1, t2)
|
||||
break
|
||||
}
|
||||
case reflect.String:
|
||||
p.enc = (*Buffer).enc_slice_string
|
||||
p.dec = (*Buffer).dec_slice_string
|
||||
p.size = size_slice_string
|
||||
case reflect.Ptr:
|
||||
switch t3 := t2.Elem(); t3.Kind() {
|
||||
default:
|
||||
fmt.Fprintf(os.Stderr, "proto: no ptr oenc for %T -> %T -> %T\n", t1, t2, t3)
|
||||
break
|
||||
case reflect.Struct:
|
||||
p.stype = t2.Elem()
|
||||
p.isMarshaler = isMarshaler(t2)
|
||||
p.isUnmarshaler = isUnmarshaler(t2)
|
||||
if p.Wire == "bytes" {
|
||||
p.enc = (*Buffer).enc_slice_struct_message
|
||||
p.dec = (*Buffer).dec_slice_struct_message
|
||||
p.size = size_slice_struct_message
|
||||
} else {
|
||||
p.enc = (*Buffer).enc_slice_struct_group
|
||||
p.dec = (*Buffer).dec_slice_struct_group
|
||||
p.size = size_slice_struct_group
|
||||
}
|
||||
}
|
||||
case reflect.Slice:
|
||||
switch t2.Elem().Kind() {
|
||||
default:
|
||||
fmt.Fprintf(os.Stderr, "proto: no slice elem oenc for %T -> %T -> %T\n", t1, t2, t2.Elem())
|
||||
break
|
||||
case reflect.Uint8:
|
||||
p.enc = (*Buffer).enc_slice_slice_byte
|
||||
p.dec = (*Buffer).dec_slice_slice_byte
|
||||
p.size = size_slice_slice_byte
|
||||
}
|
||||
if t2 := t1.Elem(); t2.Kind() == reflect.Ptr && t2.Elem().Kind() == reflect.Struct {
|
||||
p.stype = t2.Elem()
|
||||
}
|
||||
|
||||
case reflect.Map:
|
||||
p.enc = (*Buffer).enc_new_map
|
||||
p.dec = (*Buffer).dec_new_map
|
||||
p.size = size_new_map
|
||||
|
||||
p.mtype = t1
|
||||
p.mkeyprop = &Properties{}
|
||||
p.mkeyprop.init(reflect.PtrTo(p.mtype.Key()), "Key", f.Tag.Get("protobuf_key"), nil, lockGetProp)
|
||||
p.mvalprop = &Properties{}
|
||||
p.MapKeyProp = &Properties{}
|
||||
p.MapKeyProp.init(reflect.PtrTo(p.mtype.Key()), "Key", f.Tag.Get("protobuf_key"), nil, lockGetProp)
|
||||
p.MapValProp = &Properties{}
|
||||
vtype := p.mtype.Elem()
|
||||
if vtype.Kind() != reflect.Ptr && vtype.Kind() != reflect.Slice {
|
||||
// The value type is not a message (*T) or bytes ([]byte),
|
||||
// so we need encoders for the pointer to this type.
|
||||
vtype = reflect.PtrTo(vtype)
|
||||
}
|
||||
p.mvalprop.init(vtype, "Value", f.Tag.Get("protobuf_val"), nil, lockGetProp)
|
||||
p.MapValProp.init(vtype, "Value", f.Tag.Get("protobuf_val"), nil, lockGetProp)
|
||||
}
|
||||
|
||||
// precalculate tag code
|
||||
wire := p.WireType
|
||||
if p.Packed {
|
||||
wire = WireBytes
|
||||
}
|
||||
x := uint32(p.Tag)<<3 | uint32(wire)
|
||||
i := 0
|
||||
for i = 0; x > 127; i++ {
|
||||
p.tagbuf[i] = 0x80 | uint8(x&0x7F)
|
||||
x >>= 7
|
||||
}
|
||||
p.tagbuf[i] = uint8(x)
|
||||
p.tagcode = p.tagbuf[0 : i+1]
|
||||
|
||||
if p.stype != nil {
|
||||
if lockGetProp {
|
||||
p.sprop = GetProperties(p.stype)
|
||||
@@ -586,32 +297,9 @@ func (p *Properties) setEncAndDec(typ reflect.Type, f *reflect.StructField, lock
|
||||
}
|
||||
|
||||
var (
|
||||
marshalerType = reflect.TypeOf((*Marshaler)(nil)).Elem()
|
||||
unmarshalerType = reflect.TypeOf((*Unmarshaler)(nil)).Elem()
|
||||
marshalerType = reflect.TypeOf((*Marshaler)(nil)).Elem()
|
||||
)
|
||||
|
||||
// isMarshaler reports whether type t implements Marshaler.
|
||||
func isMarshaler(t reflect.Type) bool {
|
||||
// We're checking for (likely) pointer-receiver methods
|
||||
// so if t is not a pointer, something is very wrong.
|
||||
// The calls above only invoke isMarshaler on pointer types.
|
||||
if t.Kind() != reflect.Ptr {
|
||||
panic("proto: misuse of isMarshaler")
|
||||
}
|
||||
return t.Implements(marshalerType)
|
||||
}
|
||||
|
||||
// isUnmarshaler reports whether type t implements Unmarshaler.
|
||||
func isUnmarshaler(t reflect.Type) bool {
|
||||
// We're checking for (likely) pointer-receiver methods
|
||||
// so if t is not a pointer, something is very wrong.
|
||||
// The calls above only invoke isUnmarshaler on pointer types.
|
||||
if t.Kind() != reflect.Ptr {
|
||||
panic("proto: misuse of isUnmarshaler")
|
||||
}
|
||||
return t.Implements(unmarshalerType)
|
||||
}
|
||||
|
||||
// Init populates the properties from a protocol buffer struct tag.
|
||||
func (p *Properties) Init(typ reflect.Type, name, tag string, f *reflect.StructField) {
|
||||
p.init(typ, name, tag, f, true)
|
||||
@@ -621,14 +309,11 @@ func (p *Properties) init(typ reflect.Type, name, tag string, f *reflect.StructF
|
||||
// "bytes,49,opt,def=hello!"
|
||||
p.Name = name
|
||||
p.OrigName = name
|
||||
if f != nil {
|
||||
p.field = toField(f)
|
||||
}
|
||||
if tag == "" {
|
||||
return
|
||||
}
|
||||
p.Parse(tag)
|
||||
p.setEncAndDec(typ, f, lockGetProp)
|
||||
p.setFieldProps(typ, f, lockGetProp)
|
||||
}
|
||||
|
||||
var (
|
||||
@@ -678,9 +363,6 @@ func getPropertiesLocked(t reflect.Type) *StructProperties {
|
||||
propertiesMap[t] = prop
|
||||
|
||||
// build properties
|
||||
prop.extendable = reflect.PtrTo(t).Implements(extendableProtoType) ||
|
||||
reflect.PtrTo(t).Implements(extendableProtoV1Type)
|
||||
prop.unrecField = invalidField
|
||||
prop.Prop = make([]*Properties, t.NumField())
|
||||
prop.order = make([]int, t.NumField())
|
||||
|
||||
@@ -690,17 +372,6 @@ func getPropertiesLocked(t reflect.Type) *StructProperties {
|
||||
name := f.Name
|
||||
p.init(f.Type, name, f.Tag.Get("protobuf"), &f, false)
|
||||
|
||||
if f.Name == "XXX_InternalExtensions" { // special case
|
||||
p.enc = (*Buffer).enc_exts
|
||||
p.dec = nil // not needed
|
||||
p.size = size_exts
|
||||
} else if f.Name == "XXX_extensions" { // special case
|
||||
p.enc = (*Buffer).enc_map
|
||||
p.dec = nil // not needed
|
||||
p.size = size_map
|
||||
} else if f.Name == "XXX_unrecognized" { // special case
|
||||
prop.unrecField = toField(&f)
|
||||
}
|
||||
oneof := f.Tag.Get("protobuf_oneof") // special case
|
||||
if oneof != "" {
|
||||
// Oneof fields don't use the traditional protobuf tag.
|
||||
@@ -715,9 +386,6 @@ func getPropertiesLocked(t reflect.Type) *StructProperties {
|
||||
}
|
||||
print("\n")
|
||||
}
|
||||
if p.enc == nil && !strings.HasPrefix(f.Name, "XXX_") && oneof == "" {
|
||||
fmt.Fprintln(os.Stderr, "proto: no encoder for", f.Name, f.Type.String(), "[GetProperties]")
|
||||
}
|
||||
}
|
||||
|
||||
// Re-order prop.order.
|
||||
@@ -728,8 +396,7 @@ func getPropertiesLocked(t reflect.Type) *StructProperties {
|
||||
}
|
||||
if om, ok := reflect.Zero(reflect.PtrTo(t)).Interface().(oneofMessage); ok {
|
||||
var oots []interface{}
|
||||
prop.oneofMarshaler, prop.oneofUnmarshaler, prop.oneofSizer, oots = om.XXX_OneofFuncs()
|
||||
prop.stype = t
|
||||
_, _, _, oots = om.XXX_OneofFuncs()
|
||||
|
||||
// Interpret oneof metadata.
|
||||
prop.OneofTypes = make(map[string]*OneofProperties)
|
||||
@@ -779,30 +446,6 @@ func getPropertiesLocked(t reflect.Type) *StructProperties {
|
||||
return prop
|
||||
}
|
||||
|
||||
// Return the Properties object for the x[0]'th field of the structure.
|
||||
func propByIndex(t reflect.Type, x []int) *Properties {
|
||||
if len(x) != 1 {
|
||||
fmt.Fprintf(os.Stderr, "proto: field index dimension %d (not 1) for type %s\n", len(x), t)
|
||||
return nil
|
||||
}
|
||||
prop := GetProperties(t)
|
||||
return prop.Prop[x[0]]
|
||||
}
|
||||
|
||||
// Get the address and type of a pointer to a struct from an interface.
|
||||
func getbase(pb Message) (t reflect.Type, b structPointer, err error) {
|
||||
if pb == nil {
|
||||
err = ErrNil
|
||||
return
|
||||
}
|
||||
// get the reflect type of the pointer to the struct.
|
||||
t = reflect.TypeOf(pb)
|
||||
// get the address of the struct.
|
||||
value := reflect.ValueOf(pb)
|
||||
b = toStructPointer(value)
|
||||
return
|
||||
}
|
||||
|
||||
// A global registry of enum types.
|
||||
// The generated code will register the generated maps by calling RegisterEnum.
|
||||
|
||||
@@ -826,20 +469,42 @@ func EnumValueMap(enumType string) map[string]int32 {
|
||||
// A registry of all linked message types.
|
||||
// The string is a fully-qualified proto name ("pkg.Message").
|
||||
var (
|
||||
protoTypes = make(map[string]reflect.Type)
|
||||
revProtoTypes = make(map[reflect.Type]string)
|
||||
protoTypedNils = make(map[string]Message) // a map from proto names to typed nil pointers
|
||||
protoMapTypes = make(map[string]reflect.Type) // a map from proto names to map types
|
||||
revProtoTypes = make(map[reflect.Type]string)
|
||||
)
|
||||
|
||||
// RegisterType is called from generated code and maps from the fully qualified
|
||||
// proto name to the type (pointer to struct) of the protocol buffer.
|
||||
func RegisterType(x Message, name string) {
|
||||
if _, ok := protoTypes[name]; ok {
|
||||
if _, ok := protoTypedNils[name]; ok {
|
||||
// TODO: Some day, make this a panic.
|
||||
log.Printf("proto: duplicate proto type registered: %s", name)
|
||||
return
|
||||
}
|
||||
t := reflect.TypeOf(x)
|
||||
protoTypes[name] = t
|
||||
if v := reflect.ValueOf(x); v.Kind() == reflect.Ptr && v.Pointer() == 0 {
|
||||
// Generated code always calls RegisterType with nil x.
|
||||
// This check is just for extra safety.
|
||||
protoTypedNils[name] = x
|
||||
} else {
|
||||
protoTypedNils[name] = reflect.Zero(t).Interface().(Message)
|
||||
}
|
||||
revProtoTypes[t] = name
|
||||
}
|
||||
|
||||
// RegisterMapType is called from generated code and maps from the fully qualified
|
||||
// proto name to the native map type of the proto map definition.
|
||||
func RegisterMapType(x interface{}, name string) {
|
||||
if reflect.TypeOf(x).Kind() != reflect.Map {
|
||||
panic(fmt.Sprintf("RegisterMapType(%T, %q); want map", x, name))
|
||||
}
|
||||
if _, ok := protoMapTypes[name]; ok {
|
||||
log.Printf("proto: duplicate proto type registered: %s", name)
|
||||
return
|
||||
}
|
||||
t := reflect.TypeOf(x)
|
||||
protoMapTypes[name] = t
|
||||
revProtoTypes[t] = name
|
||||
}
|
||||
|
||||
@@ -855,7 +520,14 @@ func MessageName(x Message) string {
|
||||
}
|
||||
|
||||
// MessageType returns the message type (pointer to struct) for a named message.
|
||||
func MessageType(name string) reflect.Type { return protoTypes[name] }
|
||||
// The type is not guaranteed to implement proto.Message if the name refers to a
|
||||
// map entry.
|
||||
func MessageType(name string) reflect.Type {
|
||||
if t, ok := protoTypedNils[name]; ok {
|
||||
return reflect.TypeOf(t)
|
||||
}
|
||||
return protoMapTypes[name]
|
||||
}
|
||||
|
||||
// A registry of all linked proto files.
|
||||
var (
|
||||
|
Reference in New Issue
Block a user