Prometheus endpoint (#5256)
* Add prometheus collector and route * dep ensure -add github.com/prometheus/client_golang/prometheus * dep ensure -update github.com/golang/protobuf * add metrics to reserved usernames * add comment head in metrics package * fix style imports * add metrics settings * add bearer token check * mapping metrics configs * fix lint * update config cheat sheet * update conf sample, typo fix
This commit is contained in:
parent
92fb89f6e1
commit
078c404c3b
112 changed files with 24693 additions and 3011 deletions
466
vendor/github.com/golang/protobuf/proto/properties.go
generated
vendored
466
vendor/github.com/golang/protobuf/proto/properties.go
generated
vendored
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@ -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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@ -326,260 +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.enc = (*Buffer).enc_slice_byte
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p.dec = (*Buffer).dec_slice_byte
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p.size = size_slice_byte
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// This is a []byte, which is either a bytes field,
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// or the value of a map field. In the latter case,
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// we always encode an empty []byte, so we should not
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// use the proto3 enc/size funcs.
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// f == nil iff this is the key/value of a map field.
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if p.proto3 && f != nil {
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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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}
|
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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
|
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} else {
|
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p.enc = (*Buffer).enc_slice_uint32
|
||||
p.size = size_slice_uint32
|
||||
}
|
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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 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)
|
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break
|
||||
}
|
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case reflect.String:
|
||||
p.enc = (*Buffer).enc_slice_string
|
||||
p.dec = (*Buffer).dec_slice_string
|
||||
p.size = size_slice_string
|
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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
|
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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)
|
||||
|
@ -590,32 +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)
|
||||
|
@ -625,14 +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 (
|
||||
|
@ -682,8 +363,6 @@ func getPropertiesLocked(t reflect.Type) *StructProperties {
|
|||
propertiesMap[t] = prop
|
||||
|
||||
// build properties
|
||||
prop.extendable = reflect.PtrTo(t).Implements(extendableProtoType)
|
||||
prop.unrecField = invalidField
|
||||
prop.Prop = make([]*Properties, t.NumField())
|
||||
prop.order = make([]int, t.NumField())
|
||||
|
||||
|
@ -693,15 +372,11 @@ func getPropertiesLocked(t reflect.Type) *StructProperties {
|
|||
name := f.Name
|
||||
p.init(f.Type, name, f.Tag.Get("protobuf"), &f, false)
|
||||
|
||||
if f.Name == "XXX_extensions" { // special case
|
||||
p.enc = (*Buffer).enc_map
|
||||
p.dec = nil // not needed
|
||||
p.size = size_map
|
||||
oneof := f.Tag.Get("protobuf_oneof") // special case
|
||||
if oneof != "" {
|
||||
// Oneof fields don't use the traditional protobuf tag.
|
||||
p.OrigName = oneof
|
||||
}
|
||||
if f.Name == "XXX_unrecognized" { // special case
|
||||
prop.unrecField = toField(&f)
|
||||
}
|
||||
oneof := f.Tag.Get("protobuf_oneof") != "" // special case
|
||||
prop.Prop[i] = p
|
||||
prop.order[i] = i
|
||||
if debug {
|
||||
|
@ -711,9 +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.
|
||||
|
@ -724,8 +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)
|
||||
|
@ -775,30 +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.
|
||||
|
||||
|
@ -822,25 +469,76 @@ 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
|
||||
}
|
||||
|
||||
// MessageName returns the fully-qualified proto name for the given message type.
|
||||
func MessageName(x Message) string { return revProtoTypes[reflect.TypeOf(x)] }
|
||||
func MessageName(x Message) string {
|
||||
type xname interface {
|
||||
XXX_MessageName() string
|
||||
}
|
||||
if m, ok := x.(xname); ok {
|
||||
return m.XXX_MessageName()
|
||||
}
|
||||
return revProtoTypes[reflect.TypeOf(x)]
|
||||
}
|
||||
|
||||
// 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 (
|
||||
protoFiles = make(map[string][]byte) // file name => fileDescriptor
|
||||
)
|
||||
|
||||
// RegisterFile is called from generated code and maps from the
|
||||
// full file name of a .proto file to its compressed FileDescriptorProto.
|
||||
func RegisterFile(filename string, fileDescriptor []byte) {
|
||||
protoFiles[filename] = fileDescriptor
|
||||
}
|
||||
|
||||
// FileDescriptor returns the compressed FileDescriptorProto for a .proto file.
|
||||
func FileDescriptor(filename string) []byte { return protoFiles[filename] }
|
||||
|
|
Loading…
Add table
Add a link
Reference in a new issue