From a1bfcc1096475b7278bb476f1763199b02380f7b Mon Sep 17 00:00:00 2001 From: Joe Richey Date: Thu, 24 Oct 2019 00:05:56 -0700 Subject: [PATCH 1/5] Delete vendored code and update CI to Go 1.13 As we now only support Go 1.12 and Go 1.13, there's no need to version things anymore. --- .travis.yml | 4 +- vendor/github.com/golang/protobuf/AUTHORS | 3 - .../github.com/golang/protobuf/CONTRIBUTORS | 3 - vendor/github.com/golang/protobuf/LICENSE | 28 - .../golang/protobuf/jsonpb/jsonpb.go | 1271 -------- .../github.com/golang/protobuf/proto/clone.go | 253 -- .../golang/protobuf/proto/decode.go | 428 --- .../golang/protobuf/proto/discard.go | 350 --- .../golang/protobuf/proto/encode.go | 203 -- .../github.com/golang/protobuf/proto/equal.go | 300 -- .../golang/protobuf/proto/extensions.go | 543 ---- .../github.com/golang/protobuf/proto/lib.go | 979 ------ .../golang/protobuf/proto/message_set.go | 314 -- .../golang/protobuf/proto/pointer_reflect.go | 357 --- .../golang/protobuf/proto/pointer_unsafe.go | 308 -- .../golang/protobuf/proto/properties.go | 544 ---- .../golang/protobuf/proto/table_marshal.go | 2767 ----------------- .../golang/protobuf/proto/table_merge.go | 654 ---- .../golang/protobuf/proto/table_unmarshal.go | 2051 ------------ .../github.com/golang/protobuf/proto/text.go | 843 ----- .../golang/protobuf/proto/text_parser.go | 880 ------ .../protobuf/ptypes/struct/struct.pb.go | 450 --- .../protobuf/ptypes/struct/struct.proto | 96 - vendor/github.com/pkg/errors/.gitignore | 24 - vendor/github.com/pkg/errors/.travis.yml | 11 - vendor/github.com/pkg/errors/LICENSE | 23 - vendor/github.com/pkg/errors/README.md | 52 - vendor/github.com/pkg/errors/appveyor.yml | 32 - vendor/github.com/pkg/errors/errors.go | 269 -- vendor/github.com/pkg/errors/stack.go | 178 -- vendor/github.com/urfave/cli/.flake8 | 2 - vendor/github.com/urfave/cli/.gitignore | 2 - vendor/github.com/urfave/cli/.travis.yml | 27 - 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vendor/golang.org/x/crypto/argon2/argon2.go | 285 -- vendor/golang.org/x/crypto/argon2/blake2b.go | 53 - .../x/crypto/argon2/blamka_amd64.go | 60 - .../golang.org/x/crypto/argon2/blamka_amd64.s | 243 -- .../x/crypto/argon2/blamka_generic.go | 163 - .../golang.org/x/crypto/argon2/blamka_ref.go | 15 - vendor/golang.org/x/crypto/blake2b/blake2b.go | 289 -- .../x/crypto/blake2b/blake2bAVX2_amd64.go | 37 - .../x/crypto/blake2b/blake2bAVX2_amd64.s | 750 ----- .../x/crypto/blake2b/blake2b_amd64.go | 24 - .../x/crypto/blake2b/blake2b_amd64.s | 281 -- .../x/crypto/blake2b/blake2b_generic.go | 179 -- .../x/crypto/blake2b/blake2b_ref.go | 11 - vendor/golang.org/x/crypto/blake2b/blake2x.go | 177 -- .../golang.org/x/crypto/blake2b/register.go | 32 - vendor/golang.org/x/crypto/hkdf/hkdf.go | 75 - .../x/crypto/ssh/terminal/terminal.go | 951 ------ .../golang.org/x/crypto/ssh/terminal/util.go | 114 - .../x/crypto/ssh/terminal/util_bsd.go | 12 - .../x/crypto/ssh/terminal/util_linux.go | 10 - .../x/crypto/ssh/terminal/util_plan9.go | 58 - .../x/crypto/ssh/terminal/util_solaris.go | 124 - .../x/crypto/ssh/terminal/util_windows.go | 103 - vendor/golang.org/x/sys/AUTHORS | 3 - vendor/golang.org/x/sys/CONTRIBUTORS | 3 - vendor/golang.org/x/sys/LICENSE | 27 - vendor/golang.org/x/sys/PATENTS | 22 - vendor/golang.org/x/sys/cpu/cpu.go | 38 - vendor/golang.org/x/sys/cpu/cpu_arm.go | 7 - vendor/golang.org/x/sys/cpu/cpu_arm64.go | 7 - vendor/golang.org/x/sys/cpu/cpu_gc_x86.go | 16 - vendor/golang.org/x/sys/cpu/cpu_gccgo.c | 43 - vendor/golang.org/x/sys/cpu/cpu_gccgo.go | 26 - vendor/golang.org/x/sys/cpu/cpu_mips64x.go | 9 - vendor/golang.org/x/sys/cpu/cpu_mipsx.go | 9 - vendor/golang.org/x/sys/cpu/cpu_ppc64x.go | 9 - vendor/golang.org/x/sys/cpu/cpu_s390x.go | 7 - vendor/golang.org/x/sys/cpu/cpu_x86.go | 55 - vendor/golang.org/x/sys/cpu/cpu_x86.s | 27 - vendor/golang.org/x/sys/unix/.gitignore | 2 - vendor/golang.org/x/sys/unix/README.md | 173 -- 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vendor/golang.org/x/sys/windows/eventlog.go | 20 - .../golang.org/x/sys/windows/exec_windows.go | 97 - .../x/sys/windows/memory_windows.go | 26 - vendor/golang.org/x/sys/windows/mksyscall.go | 7 - vendor/golang.org/x/sys/windows/race.go | 30 - vendor/golang.org/x/sys/windows/race0.go | 25 - .../x/sys/windows/security_windows.go | 478 --- vendor/golang.org/x/sys/windows/service.go | 183 -- vendor/golang.org/x/sys/windows/str.go | 22 - vendor/golang.org/x/sys/windows/syscall.go | 74 - .../x/sys/windows/syscall_windows.go | 1155 ------- .../golang.org/x/sys/windows/types_windows.go | 1467 --------- .../x/sys/windows/types_windows_386.go | 22 - .../x/sys/windows/types_windows_amd64.go | 22 - .../x/sys/windows/zsyscall_windows.go | 2700 ---------------- vendor/modules.txt | 17 - 356 files changed, 2 insertions(+), 202603 deletions(-) delete mode 100644 vendor/github.com/golang/protobuf/AUTHORS delete mode 100644 vendor/github.com/golang/protobuf/CONTRIBUTORS delete mode 100644 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vendor/modules.txt diff --git a/.travis.yml b/.travis.yml index eb2176a9..77990391 100644 --- a/.travis.yml +++ b/.travis.yml @@ -1,7 +1,7 @@ language: go sudo: false dist: bionic -go: 1.12.x +go: 1.13.x notifications: email: false @@ -39,7 +39,7 @@ jobs: - make - <<: *build - go: 1.11.x + go: 1.12.x - env: Integration Tests sudo: required diff --git a/vendor/github.com/golang/protobuf/AUTHORS b/vendor/github.com/golang/protobuf/AUTHORS deleted file mode 100644 index 15167cd7..00000000 --- a/vendor/github.com/golang/protobuf/AUTHORS +++ /dev/null @@ -1,3 +0,0 @@ -# This source code refers to The Go Authors for copyright purposes. -# The master list of authors is in the main Go distribution, -# visible at http://tip.golang.org/AUTHORS. diff --git a/vendor/github.com/golang/protobuf/CONTRIBUTORS b/vendor/github.com/golang/protobuf/CONTRIBUTORS deleted file mode 100644 index 1c4577e9..00000000 --- a/vendor/github.com/golang/protobuf/CONTRIBUTORS +++ /dev/null @@ -1,3 +0,0 @@ -# This source code was written by the Go contributors. -# The master list of contributors is in the main Go distribution, -# visible at http://tip.golang.org/CONTRIBUTORS. diff --git a/vendor/github.com/golang/protobuf/LICENSE b/vendor/github.com/golang/protobuf/LICENSE deleted file mode 100644 index 0f646931..00000000 --- a/vendor/github.com/golang/protobuf/LICENSE +++ /dev/null @@ -1,28 +0,0 @@ -Copyright 2010 The Go Authors. All rights reserved. - -Redistribution and use in source and binary forms, with or without -modification, are permitted provided that the following conditions are -met: - - * Redistributions of source code must retain the above copyright -notice, this list of conditions and the following disclaimer. - * Redistributions in binary form must reproduce the above -copyright notice, this list of conditions and the following disclaimer -in the documentation and/or other materials provided with the -distribution. - * Neither the name of Google Inc. nor the names of its -contributors may be used to endorse or promote products derived from -this software without specific prior written permission. - -THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - diff --git a/vendor/github.com/golang/protobuf/jsonpb/jsonpb.go b/vendor/github.com/golang/protobuf/jsonpb/jsonpb.go deleted file mode 100644 index ada2b78e..00000000 --- a/vendor/github.com/golang/protobuf/jsonpb/jsonpb.go +++ /dev/null @@ -1,1271 +0,0 @@ -// Go support for Protocol Buffers - Google's data interchange format -// -// Copyright 2015 The Go Authors. All rights reserved. -// https://github.com/golang/protobuf -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - -/* -Package jsonpb provides marshaling and unmarshaling between protocol buffers and JSON. -It follows the specification at https://developers.google.com/protocol-buffers/docs/proto3#json. - -This package produces a different output than the standard "encoding/json" package, -which does not operate correctly on protocol buffers. -*/ -package jsonpb - -import ( - "bytes" - "encoding/json" - "errors" - "fmt" - "io" - "math" - "reflect" - "sort" - "strconv" - "strings" - "time" - - "github.com/golang/protobuf/proto" - - stpb "github.com/golang/protobuf/ptypes/struct" -) - -const secondInNanos = int64(time.Second / time.Nanosecond) - -// Marshaler is a configurable object for converting between -// protocol buffer objects and a JSON representation for them. -type Marshaler struct { - // Whether to render enum values as integers, as opposed to string values. - EnumsAsInts bool - - // Whether to render fields with zero values. - EmitDefaults bool - - // A string to indent each level by. The presence of this field will - // also cause a space to appear between the field separator and - // value, and for newlines to be appear between fields and array - // elements. - Indent string - - // Whether to use the original (.proto) name for fields. - OrigName bool - - // A custom URL resolver to use when marshaling Any messages to JSON. - // If unset, the default resolution strategy is to extract the - // fully-qualified type name from the type URL and pass that to - // proto.MessageType(string). - AnyResolver AnyResolver -} - -// AnyResolver takes a type URL, present in an Any message, and resolves it into -// an instance of the associated message. -type AnyResolver interface { - Resolve(typeUrl string) (proto.Message, error) -} - -func defaultResolveAny(typeUrl string) (proto.Message, error) { - // Only the part of typeUrl after the last slash is relevant. - mname := typeUrl - if slash := strings.LastIndex(mname, "/"); slash >= 0 { - mname = mname[slash+1:] - } - mt := proto.MessageType(mname) - if mt == nil { - return nil, fmt.Errorf("unknown message type %q", mname) - } - return reflect.New(mt.Elem()).Interface().(proto.Message), nil -} - -// JSONPBMarshaler is implemented by protobuf messages that customize the -// way they are marshaled to JSON. Messages that implement this should -// also implement JSONPBUnmarshaler so that the custom format can be -// parsed. -// -// The JSON marshaling must follow the proto to JSON specification: -// https://developers.google.com/protocol-buffers/docs/proto3#json -type JSONPBMarshaler interface { - MarshalJSONPB(*Marshaler) ([]byte, error) -} - -// JSONPBUnmarshaler is implemented by protobuf messages that customize -// the way they are unmarshaled from JSON. Messages that implement this -// should also implement JSONPBMarshaler so that the custom format can be -// produced. -// -// The JSON unmarshaling must follow the JSON to proto specification: -// https://developers.google.com/protocol-buffers/docs/proto3#json -type JSONPBUnmarshaler interface { - UnmarshalJSONPB(*Unmarshaler, []byte) error -} - -// Marshal marshals a protocol buffer into JSON. -func (m *Marshaler) Marshal(out io.Writer, pb proto.Message) error { - v := reflect.ValueOf(pb) - if pb == nil || (v.Kind() == reflect.Ptr && v.IsNil()) { - return errors.New("Marshal called with nil") - } - // Check for unset required fields first. - if err := checkRequiredFields(pb); err != nil { - return err - } - writer := &errWriter{writer: out} - return m.marshalObject(writer, pb, "", "") -} - -// MarshalToString converts a protocol buffer object to JSON string. -func (m *Marshaler) MarshalToString(pb proto.Message) (string, error) { - var buf bytes.Buffer - if err := m.Marshal(&buf, pb); err != nil { - return "", err - } - return buf.String(), nil -} - -type int32Slice []int32 - -var nonFinite = map[string]float64{ - `"NaN"`: math.NaN(), - `"Infinity"`: math.Inf(1), - `"-Infinity"`: math.Inf(-1), -} - -// For sorting extensions ids to ensure stable output. -func (s int32Slice) Len() int { return len(s) } -func (s int32Slice) Less(i, j int) bool { return s[i] < s[j] } -func (s int32Slice) Swap(i, j int) { s[i], s[j] = s[j], s[i] } - -type wkt interface { - XXX_WellKnownType() string -} - -// marshalObject writes a struct to the Writer. -func (m *Marshaler) marshalObject(out *errWriter, v proto.Message, indent, typeURL string) error { - if jsm, ok := v.(JSONPBMarshaler); ok { - b, err := jsm.MarshalJSONPB(m) - if err != nil { - return err - } - if typeURL != "" { - // we are marshaling this object to an Any type - var js map[string]*json.RawMessage - if err = json.Unmarshal(b, &js); err != nil { - return fmt.Errorf("type %T produced invalid JSON: %v", v, err) - } - turl, err := json.Marshal(typeURL) - if err != nil { - return fmt.Errorf("failed to marshal type URL %q to JSON: %v", typeURL, err) - } - js["@type"] = (*json.RawMessage)(&turl) - if b, err = json.Marshal(js); err != nil { - return err - } - } - - out.write(string(b)) - return out.err - } - - s := reflect.ValueOf(v).Elem() - - // Handle well-known types. - if wkt, ok := v.(wkt); ok { - switch wkt.XXX_WellKnownType() { - case "DoubleValue", "FloatValue", "Int64Value", "UInt64Value", - "Int32Value", "UInt32Value", "BoolValue", "StringValue", "BytesValue": - // "Wrappers use the same representation in JSON - // as the wrapped primitive type, ..." - sprop := proto.GetProperties(s.Type()) - return m.marshalValue(out, sprop.Prop[0], s.Field(0), indent) - case "Any": - // Any is a bit more involved. - return m.marshalAny(out, v, indent) - case "Duration": - // "Generated output always contains 0, 3, 6, or 9 fractional digits, - // depending on required precision." - s, ns := s.Field(0).Int(), s.Field(1).Int() - if ns <= -secondInNanos || ns >= secondInNanos { - return fmt.Errorf("ns out of range (%v, %v)", -secondInNanos, secondInNanos) - } - if (s > 0 && ns < 0) || (s < 0 && ns > 0) { - return errors.New("signs of seconds and nanos do not match") - } - if s < 0 { - ns = -ns - } - x := fmt.Sprintf("%d.%09d", s, ns) - x = strings.TrimSuffix(x, "000") - x = strings.TrimSuffix(x, "000") - x = strings.TrimSuffix(x, ".000") - out.write(`"`) - out.write(x) - out.write(`s"`) - return out.err - case "Struct", "ListValue": - // Let marshalValue handle the `Struct.fields` map or the `ListValue.values` slice. - // TODO: pass the correct Properties if needed. - return m.marshalValue(out, &proto.Properties{}, s.Field(0), indent) - case "Timestamp": - // "RFC 3339, where generated output will always be Z-normalized - // and uses 0, 3, 6 or 9 fractional digits." - s, ns := s.Field(0).Int(), s.Field(1).Int() - if ns < 0 || ns >= secondInNanos { - return fmt.Errorf("ns out of range [0, %v)", secondInNanos) - } - t := time.Unix(s, ns).UTC() - // time.RFC3339Nano isn't exactly right (we need to get 3/6/9 fractional digits). - x := t.Format("2006-01-02T15:04:05.000000000") - x = strings.TrimSuffix(x, "000") - x = strings.TrimSuffix(x, "000") - x = strings.TrimSuffix(x, ".000") - out.write(`"`) - out.write(x) - out.write(`Z"`) - return out.err - case "Value": - // Value has a single oneof. - kind := s.Field(0) - if kind.IsNil() { - // "absence of any variant indicates an error" - return errors.New("nil Value") - } - // oneof -> *T -> T -> T.F - x := kind.Elem().Elem().Field(0) - // TODO: pass the correct Properties if needed. - return m.marshalValue(out, &proto.Properties{}, x, indent) - } - } - - out.write("{") - if m.Indent != "" { - out.write("\n") - } - - firstField := true - - if typeURL != "" { - if err := m.marshalTypeURL(out, indent, typeURL); err != nil { - return err - } - firstField = false - } - - for i := 0; i < s.NumField(); i++ { - value := s.Field(i) - valueField := s.Type().Field(i) - if strings.HasPrefix(valueField.Name, "XXX_") { - continue - } - - // IsNil will panic on most value kinds. - switch value.Kind() { - case reflect.Chan, reflect.Func, reflect.Interface: - if value.IsNil() { - continue - } - } - - if !m.EmitDefaults { - switch value.Kind() { - case reflect.Bool: - if !value.Bool() { - continue - } - case reflect.Int32, reflect.Int64: - if value.Int() == 0 { - continue - } - case reflect.Uint32, reflect.Uint64: - if value.Uint() == 0 { - continue - } - case reflect.Float32, reflect.Float64: - if value.Float() == 0 { - continue - } - case reflect.String: - if value.Len() == 0 { - continue - } - case reflect.Map, reflect.Ptr, reflect.Slice: - if value.IsNil() { - continue - } - } - } - - // Oneof fields need special handling. - if valueField.Tag.Get("protobuf_oneof") != "" { - // value is an interface containing &T{real_value}. - sv := value.Elem().Elem() // interface -> *T -> T - value = sv.Field(0) - valueField = sv.Type().Field(0) - } - prop := jsonProperties(valueField, m.OrigName) - if !firstField { - m.writeSep(out) - } - if err := m.marshalField(out, prop, value, indent); err != nil { - return err - } - firstField = false - } - - // Handle proto2 extensions. - if ep, ok := v.(proto.Message); ok { - extensions := proto.RegisteredExtensions(v) - // Sort extensions for stable output. - ids := make([]int32, 0, len(extensions)) - for id, desc := range extensions { - if !proto.HasExtension(ep, desc) { - continue - } - ids = append(ids, id) - } - sort.Sort(int32Slice(ids)) - for _, id := range ids { - desc := extensions[id] - if desc == nil { - // unknown extension - continue - } - ext, extErr := proto.GetExtension(ep, desc) - if extErr != nil { - return extErr - } - value := reflect.ValueOf(ext) - var prop proto.Properties - prop.Parse(desc.Tag) - prop.JSONName = fmt.Sprintf("[%s]", desc.Name) - if !firstField { - m.writeSep(out) - } - if err := m.marshalField(out, &prop, value, indent); err != nil { - return err - } - firstField = false - } - - } - - if m.Indent != "" { - out.write("\n") - out.write(indent) - } - out.write("}") - return out.err -} - -func (m *Marshaler) writeSep(out *errWriter) { - if m.Indent != "" { - out.write(",\n") - } else { - out.write(",") - } -} - -func (m *Marshaler) marshalAny(out *errWriter, any proto.Message, indent string) error { - // "If the Any contains a value that has a special JSON mapping, - // it will be converted as follows: {"@type": xxx, "value": yyy}. - // Otherwise, the value will be converted into a JSON object, - // and the "@type" field will be inserted to indicate the actual data type." - v := reflect.ValueOf(any).Elem() - turl := v.Field(0).String() - val := v.Field(1).Bytes() - - var msg proto.Message - var err error - if m.AnyResolver != nil { - msg, err = m.AnyResolver.Resolve(turl) - } else { - msg, err = defaultResolveAny(turl) - } - if err != nil { - return err - } - - if err := proto.Unmarshal(val, msg); err != nil { - return err - } - - if _, ok := msg.(wkt); ok { - out.write("{") - if m.Indent != "" { - out.write("\n") - } - if err := m.marshalTypeURL(out, indent, turl); err != nil { - return err - } - m.writeSep(out) - if m.Indent != "" { - out.write(indent) - out.write(m.Indent) - out.write(`"value": `) - } else { - out.write(`"value":`) - } - if err := m.marshalObject(out, msg, indent+m.Indent, ""); err != nil { - return err - } - if m.Indent != "" { - out.write("\n") - out.write(indent) - } - out.write("}") - return out.err - } - - return m.marshalObject(out, msg, indent, turl) -} - -func (m *Marshaler) marshalTypeURL(out *errWriter, indent, typeURL string) error { - if m.Indent != "" { - out.write(indent) - out.write(m.Indent) - } - out.write(`"@type":`) - if m.Indent != "" { - out.write(" ") - } - b, err := json.Marshal(typeURL) - if err != nil { - return err - } - out.write(string(b)) - return out.err -} - -// marshalField writes field description and value to the Writer. -func (m *Marshaler) marshalField(out *errWriter, prop *proto.Properties, v reflect.Value, indent string) error { - if m.Indent != "" { - out.write(indent) - out.write(m.Indent) - } - out.write(`"`) - out.write(prop.JSONName) - out.write(`":`) - if m.Indent != "" { - out.write(" ") - } - if err := m.marshalValue(out, prop, v, indent); err != nil { - return err - } - return nil -} - -// marshalValue writes the value to the Writer. -func (m *Marshaler) marshalValue(out *errWriter, prop *proto.Properties, v reflect.Value, indent string) error { - var err error - v = reflect.Indirect(v) - - // Handle nil pointer - if v.Kind() == reflect.Invalid { - out.write("null") - return out.err - } - - // Handle repeated elements. - if v.Kind() == reflect.Slice && v.Type().Elem().Kind() != reflect.Uint8 { - out.write("[") - comma := "" - for i := 0; i < v.Len(); i++ { - sliceVal := v.Index(i) - out.write(comma) - if m.Indent != "" { - out.write("\n") - out.write(indent) - out.write(m.Indent) - out.write(m.Indent) - } - if err := m.marshalValue(out, prop, sliceVal, indent+m.Indent); err != nil { - return err - } - comma = "," - } - if m.Indent != "" { - out.write("\n") - out.write(indent) - out.write(m.Indent) - } - out.write("]") - return out.err - } - - // Handle well-known types. - // Most are handled up in marshalObject (because 99% are messages). - if wkt, ok := v.Interface().(wkt); ok { - switch wkt.XXX_WellKnownType() { - case "NullValue": - out.write("null") - return out.err - } - } - - // Handle enumerations. - if !m.EnumsAsInts && prop.Enum != "" { - // Unknown enum values will are stringified by the proto library as their - // value. Such values should _not_ be quoted or they will be interpreted - // as an enum string instead of their value. - enumStr := v.Interface().(fmt.Stringer).String() - var valStr string - if v.Kind() == reflect.Ptr { - valStr = strconv.Itoa(int(v.Elem().Int())) - } else { - valStr = strconv.Itoa(int(v.Int())) - } - isKnownEnum := enumStr != valStr - if isKnownEnum { - out.write(`"`) - } - out.write(enumStr) - if isKnownEnum { - out.write(`"`) - } - return out.err - } - - // Handle nested messages. - if v.Kind() == reflect.Struct { - return m.marshalObject(out, v.Addr().Interface().(proto.Message), indent+m.Indent, "") - } - - // Handle maps. - // Since Go randomizes map iteration, we sort keys for stable output. - if v.Kind() == reflect.Map { - out.write(`{`) - keys := v.MapKeys() - sort.Sort(mapKeys(keys)) - for i, k := range keys { - if i > 0 { - out.write(`,`) - } - if m.Indent != "" { - out.write("\n") - out.write(indent) - out.write(m.Indent) - out.write(m.Indent) - } - - // TODO handle map key prop properly - b, err := json.Marshal(k.Interface()) - if err != nil { - return err - } - s := string(b) - - // If the JSON is not a string value, encode it again to make it one. - if !strings.HasPrefix(s, `"`) { - b, err := json.Marshal(s) - if err != nil { - return err - } - s = string(b) - } - - out.write(s) - out.write(`:`) - if m.Indent != "" { - out.write(` `) - } - - vprop := prop - if prop != nil && prop.MapValProp != nil { - vprop = prop.MapValProp - } - if err := m.marshalValue(out, vprop, v.MapIndex(k), indent+m.Indent); err != nil { - return err - } - } - if m.Indent != "" { - out.write("\n") - out.write(indent) - out.write(m.Indent) - } - out.write(`}`) - return out.err - } - - // Handle non-finite floats, e.g. NaN, Infinity and -Infinity. - if v.Kind() == reflect.Float32 || v.Kind() == reflect.Float64 { - f := v.Float() - var sval string - switch { - case math.IsInf(f, 1): - sval = `"Infinity"` - case math.IsInf(f, -1): - sval = `"-Infinity"` - case math.IsNaN(f): - sval = `"NaN"` - } - if sval != "" { - out.write(sval) - return out.err - } - } - - // Default handling defers to the encoding/json library. - b, err := json.Marshal(v.Interface()) - if err != nil { - return err - } - needToQuote := string(b[0]) != `"` && (v.Kind() == reflect.Int64 || v.Kind() == reflect.Uint64) - if needToQuote { - out.write(`"`) - } - out.write(string(b)) - if needToQuote { - out.write(`"`) - } - return out.err -} - -// Unmarshaler is a configurable object for converting from a JSON -// representation to a protocol buffer object. -type Unmarshaler struct { - // Whether to allow messages to contain unknown fields, as opposed to - // failing to unmarshal. - AllowUnknownFields bool - - // A custom URL resolver to use when unmarshaling Any messages from JSON. - // If unset, the default resolution strategy is to extract the - // fully-qualified type name from the type URL and pass that to - // proto.MessageType(string). - AnyResolver AnyResolver -} - -// UnmarshalNext unmarshals the next protocol buffer from a JSON object stream. -// This function is lenient and will decode any options permutations of the -// related Marshaler. -func (u *Unmarshaler) UnmarshalNext(dec *json.Decoder, pb proto.Message) error { - inputValue := json.RawMessage{} - if err := dec.Decode(&inputValue); err != nil { - return err - } - if err := u.unmarshalValue(reflect.ValueOf(pb).Elem(), inputValue, nil); err != nil { - return err - } - return checkRequiredFields(pb) -} - -// Unmarshal unmarshals a JSON object stream into a protocol -// buffer. This function is lenient and will decode any options -// permutations of the related Marshaler. -func (u *Unmarshaler) Unmarshal(r io.Reader, pb proto.Message) error { - dec := json.NewDecoder(r) - return u.UnmarshalNext(dec, pb) -} - -// UnmarshalNext unmarshals the next protocol buffer from a JSON object stream. -// This function is lenient and will decode any options permutations of the -// related Marshaler. -func UnmarshalNext(dec *json.Decoder, pb proto.Message) error { - return new(Unmarshaler).UnmarshalNext(dec, pb) -} - -// Unmarshal unmarshals a JSON object stream into a protocol -// buffer. This function is lenient and will decode any options -// permutations of the related Marshaler. -func Unmarshal(r io.Reader, pb proto.Message) error { - return new(Unmarshaler).Unmarshal(r, pb) -} - -// UnmarshalString will populate the fields of a protocol buffer based -// on a JSON string. This function is lenient and will decode any options -// permutations of the related Marshaler. -func UnmarshalString(str string, pb proto.Message) error { - return new(Unmarshaler).Unmarshal(strings.NewReader(str), pb) -} - -// unmarshalValue converts/copies a value into the target. -// prop may be nil. -func (u *Unmarshaler) unmarshalValue(target reflect.Value, inputValue json.RawMessage, prop *proto.Properties) error { - targetType := target.Type() - - // Allocate memory for pointer fields. - if targetType.Kind() == reflect.Ptr { - // If input value is "null" and target is a pointer type, then the field should be treated as not set - // UNLESS the target is structpb.Value, in which case it should be set to structpb.NullValue. - _, isJSONPBUnmarshaler := target.Interface().(JSONPBUnmarshaler) - if string(inputValue) == "null" && targetType != reflect.TypeOf(&stpb.Value{}) && !isJSONPBUnmarshaler { - return nil - } - target.Set(reflect.New(targetType.Elem())) - - return u.unmarshalValue(target.Elem(), inputValue, prop) - } - - if jsu, ok := target.Addr().Interface().(JSONPBUnmarshaler); ok { - return jsu.UnmarshalJSONPB(u, []byte(inputValue)) - } - - // Handle well-known types that are not pointers. - if w, ok := target.Addr().Interface().(wkt); ok { - switch w.XXX_WellKnownType() { - case "DoubleValue", "FloatValue", "Int64Value", "UInt64Value", - "Int32Value", "UInt32Value", "BoolValue", "StringValue", "BytesValue": - return u.unmarshalValue(target.Field(0), inputValue, prop) - case "Any": - // Use json.RawMessage pointer type instead of value to support pre-1.8 version. - // 1.8 changed RawMessage.MarshalJSON from pointer type to value type, see - // https://github.com/golang/go/issues/14493 - var jsonFields map[string]*json.RawMessage - if err := json.Unmarshal(inputValue, &jsonFields); err != nil { - return err - } - - val, ok := jsonFields["@type"] - if !ok || val == nil { - return errors.New("Any JSON doesn't have '@type'") - } - - var turl string - if err := json.Unmarshal([]byte(*val), &turl); err != nil { - return fmt.Errorf("can't unmarshal Any's '@type': %q", *val) - } - target.Field(0).SetString(turl) - - var m proto.Message - var err error - if u.AnyResolver != nil { - m, err = u.AnyResolver.Resolve(turl) - } else { - m, err = defaultResolveAny(turl) - } - if err != nil { - return err - } - - if _, ok := m.(wkt); ok { - val, ok := jsonFields["value"] - if !ok { - return errors.New("Any JSON doesn't have 'value'") - } - - if err := u.unmarshalValue(reflect.ValueOf(m).Elem(), *val, nil); err != nil { - return fmt.Errorf("can't unmarshal Any nested proto %T: %v", m, err) - } - } else { - delete(jsonFields, "@type") - nestedProto, err := json.Marshal(jsonFields) - if err != nil { - return fmt.Errorf("can't generate JSON for Any's nested proto to be unmarshaled: %v", err) - } - - if err = u.unmarshalValue(reflect.ValueOf(m).Elem(), nestedProto, nil); err != nil { - return fmt.Errorf("can't unmarshal Any nested proto %T: %v", m, err) - } - } - - b, err := proto.Marshal(m) - if err != nil { - return fmt.Errorf("can't marshal proto %T into Any.Value: %v", m, err) - } - target.Field(1).SetBytes(b) - - return nil - case "Duration": - unq, err := unquote(string(inputValue)) - if err != nil { - return err - } - - d, err := time.ParseDuration(unq) - if err != nil { - return fmt.Errorf("bad Duration: %v", err) - } - - ns := d.Nanoseconds() - s := ns / 1e9 - ns %= 1e9 - target.Field(0).SetInt(s) - target.Field(1).SetInt(ns) - return nil - case "Timestamp": - unq, err := unquote(string(inputValue)) - if err != nil { - return err - } - - t, err := time.Parse(time.RFC3339Nano, unq) - if err != nil { - return fmt.Errorf("bad Timestamp: %v", err) - } - - target.Field(0).SetInt(t.Unix()) - target.Field(1).SetInt(int64(t.Nanosecond())) - return nil - case "Struct": - var m map[string]json.RawMessage - if err := json.Unmarshal(inputValue, &m); err != nil { - return fmt.Errorf("bad StructValue: %v", err) - } - - target.Field(0).Set(reflect.ValueOf(map[string]*stpb.Value{})) - for k, jv := range m { - pv := &stpb.Value{} - if err := u.unmarshalValue(reflect.ValueOf(pv).Elem(), jv, prop); err != nil { - return fmt.Errorf("bad value in StructValue for key %q: %v", k, err) - } - target.Field(0).SetMapIndex(reflect.ValueOf(k), reflect.ValueOf(pv)) - } - return nil - case "ListValue": - var s []json.RawMessage - if err := json.Unmarshal(inputValue, &s); err != nil { - return fmt.Errorf("bad ListValue: %v", err) - } - - target.Field(0).Set(reflect.ValueOf(make([]*stpb.Value, len(s)))) - for i, sv := range s { - if err := u.unmarshalValue(target.Field(0).Index(i), sv, prop); err != nil { - return err - } - } - return nil - case "Value": - ivStr := string(inputValue) - if ivStr == "null" { - target.Field(0).Set(reflect.ValueOf(&stpb.Value_NullValue{})) - } else if v, err := strconv.ParseFloat(ivStr, 0); err == nil { - target.Field(0).Set(reflect.ValueOf(&stpb.Value_NumberValue{v})) - } else if v, err := unquote(ivStr); err == nil { - target.Field(0).Set(reflect.ValueOf(&stpb.Value_StringValue{v})) - } else if v, err := strconv.ParseBool(ivStr); err == nil { - target.Field(0).Set(reflect.ValueOf(&stpb.Value_BoolValue{v})) - } else if err := json.Unmarshal(inputValue, &[]json.RawMessage{}); err == nil { - lv := &stpb.ListValue{} - target.Field(0).Set(reflect.ValueOf(&stpb.Value_ListValue{lv})) - return u.unmarshalValue(reflect.ValueOf(lv).Elem(), inputValue, prop) - } else if err := json.Unmarshal(inputValue, &map[string]json.RawMessage{}); err == nil { - sv := &stpb.Struct{} - target.Field(0).Set(reflect.ValueOf(&stpb.Value_StructValue{sv})) - return u.unmarshalValue(reflect.ValueOf(sv).Elem(), inputValue, prop) - } else { - return fmt.Errorf("unrecognized type for Value %q", ivStr) - } - return nil - } - } - - // Handle enums, which have an underlying type of int32, - // and may appear as strings. - // The case of an enum appearing as a number is handled - // at the bottom of this function. - if inputValue[0] == '"' && prop != nil && prop.Enum != "" { - vmap := proto.EnumValueMap(prop.Enum) - // Don't need to do unquoting; valid enum names - // are from a limited character set. - s := inputValue[1 : len(inputValue)-1] - n, ok := vmap[string(s)] - if !ok { - return fmt.Errorf("unknown value %q for enum %s", s, prop.Enum) - } - if target.Kind() == reflect.Ptr { // proto2 - target.Set(reflect.New(targetType.Elem())) - target = target.Elem() - } - if targetType.Kind() != reflect.Int32 { - return fmt.Errorf("invalid target %q for enum %s", targetType.Kind(), prop.Enum) - } - target.SetInt(int64(n)) - return nil - } - - // Handle nested messages. - if targetType.Kind() == reflect.Struct { - var jsonFields map[string]json.RawMessage - if err := json.Unmarshal(inputValue, &jsonFields); err != nil { - return err - } - - consumeField := func(prop *proto.Properties) (json.RawMessage, bool) { - // Be liberal in what names we accept; both orig_name and camelName are okay. - fieldNames := acceptedJSONFieldNames(prop) - - vOrig, okOrig := jsonFields[fieldNames.orig] - vCamel, okCamel := jsonFields[fieldNames.camel] - if !okOrig && !okCamel { - return nil, false - } - // If, for some reason, both are present in the data, favour the camelName. - var raw json.RawMessage - if okOrig { - raw = vOrig - delete(jsonFields, fieldNames.orig) - } - if okCamel { - raw = vCamel - delete(jsonFields, fieldNames.camel) - } - return raw, true - } - - sprops := proto.GetProperties(targetType) - for i := 0; i < target.NumField(); i++ { - ft := target.Type().Field(i) - if strings.HasPrefix(ft.Name, "XXX_") { - continue - } - - valueForField, ok := consumeField(sprops.Prop[i]) - if !ok { - continue - } - - if err := u.unmarshalValue(target.Field(i), valueForField, sprops.Prop[i]); err != nil { - return err - } - } - // Check for any oneof fields. - if len(jsonFields) > 0 { - for _, oop := range sprops.OneofTypes { - raw, ok := consumeField(oop.Prop) - if !ok { - continue - } - nv := reflect.New(oop.Type.Elem()) - target.Field(oop.Field).Set(nv) - if err := u.unmarshalValue(nv.Elem().Field(0), raw, oop.Prop); err != nil { - return err - } - } - } - // Handle proto2 extensions. - if len(jsonFields) > 0 { - if ep, ok := target.Addr().Interface().(proto.Message); ok { - for _, ext := range proto.RegisteredExtensions(ep) { - name := fmt.Sprintf("[%s]", ext.Name) - raw, ok := jsonFields[name] - if !ok { - continue - } - delete(jsonFields, name) - nv := reflect.New(reflect.TypeOf(ext.ExtensionType).Elem()) - if err := u.unmarshalValue(nv.Elem(), raw, nil); err != nil { - return err - } - if err := proto.SetExtension(ep, ext, nv.Interface()); err != nil { - return err - } - } - } - } - if !u.AllowUnknownFields && len(jsonFields) > 0 { - // Pick any field to be the scapegoat. - var f string - for fname := range jsonFields { - f = fname - break - } - return fmt.Errorf("unknown field %q in %v", f, targetType) - } - return nil - } - - // Handle arrays (which aren't encoded bytes) - if targetType.Kind() == reflect.Slice && targetType.Elem().Kind() != reflect.Uint8 { - var slc []json.RawMessage - if err := json.Unmarshal(inputValue, &slc); err != nil { - return err - } - if slc != nil { - l := len(slc) - target.Set(reflect.MakeSlice(targetType, l, l)) - for i := 0; i < l; i++ { - if err := u.unmarshalValue(target.Index(i), slc[i], prop); err != nil { - return err - } - } - } - return nil - } - - // Handle maps (whose keys are always strings) - if targetType.Kind() == reflect.Map { - var mp map[string]json.RawMessage - if err := json.Unmarshal(inputValue, &mp); err != nil { - return err - } - if mp != nil { - target.Set(reflect.MakeMap(targetType)) - for ks, raw := range mp { - // Unmarshal map key. The core json library already decoded the key into a - // string, so we handle that specially. Other types were quoted post-serialization. - var k reflect.Value - if targetType.Key().Kind() == reflect.String { - k = reflect.ValueOf(ks) - } else { - k = reflect.New(targetType.Key()).Elem() - var kprop *proto.Properties - if prop != nil && prop.MapKeyProp != nil { - kprop = prop.MapKeyProp - } - if err := u.unmarshalValue(k, json.RawMessage(ks), kprop); err != nil { - return err - } - } - - // Unmarshal map value. - v := reflect.New(targetType.Elem()).Elem() - var vprop *proto.Properties - if prop != nil && prop.MapValProp != nil { - vprop = prop.MapValProp - } - if err := u.unmarshalValue(v, raw, vprop); err != nil { - return err - } - target.SetMapIndex(k, v) - } - } - return nil - } - - // Non-finite numbers can be encoded as strings. - isFloat := targetType.Kind() == reflect.Float32 || targetType.Kind() == reflect.Float64 - if isFloat { - if num, ok := nonFinite[string(inputValue)]; ok { - target.SetFloat(num) - return nil - } - } - - // integers & floats can be encoded as strings. In this case we drop - // the quotes and proceed as normal. - isNum := targetType.Kind() == reflect.Int64 || targetType.Kind() == reflect.Uint64 || - targetType.Kind() == reflect.Int32 || targetType.Kind() == reflect.Uint32 || - targetType.Kind() == reflect.Float32 || targetType.Kind() == reflect.Float64 - if isNum && strings.HasPrefix(string(inputValue), `"`) { - inputValue = inputValue[1 : len(inputValue)-1] - } - - // Use the encoding/json for parsing other value types. - return json.Unmarshal(inputValue, target.Addr().Interface()) -} - -func unquote(s string) (string, error) { - var ret string - err := json.Unmarshal([]byte(s), &ret) - return ret, err -} - -// jsonProperties returns parsed proto.Properties for the field and corrects JSONName attribute. -func jsonProperties(f reflect.StructField, origName bool) *proto.Properties { - var prop proto.Properties - prop.Init(f.Type, f.Name, f.Tag.Get("protobuf"), &f) - if origName || prop.JSONName == "" { - prop.JSONName = prop.OrigName - } - return &prop -} - -type fieldNames struct { - orig, camel string -} - -func acceptedJSONFieldNames(prop *proto.Properties) fieldNames { - opts := fieldNames{orig: prop.OrigName, camel: prop.OrigName} - if prop.JSONName != "" { - opts.camel = prop.JSONName - } - return opts -} - -// Writer wrapper inspired by https://blog.golang.org/errors-are-values -type errWriter struct { - writer io.Writer - err error -} - -func (w *errWriter) write(str string) { - if w.err != nil { - return - } - _, w.err = w.writer.Write([]byte(str)) -} - -// Map fields may have key types of non-float scalars, strings and enums. -// The easiest way to sort them in some deterministic order is to use fmt. -// If this turns out to be inefficient we can always consider other options, -// such as doing a Schwartzian transform. -// -// Numeric keys are sorted in numeric order per -// https://developers.google.com/protocol-buffers/docs/proto#maps. -type mapKeys []reflect.Value - -func (s mapKeys) Len() int { return len(s) } -func (s mapKeys) Swap(i, j int) { s[i], s[j] = s[j], s[i] } -func (s mapKeys) Less(i, j int) bool { - if k := s[i].Kind(); k == s[j].Kind() { - switch k { - case reflect.String: - return s[i].String() < s[j].String() - case reflect.Int32, reflect.Int64: - return s[i].Int() < s[j].Int() - case reflect.Uint32, reflect.Uint64: - return s[i].Uint() < s[j].Uint() - } - } - return fmt.Sprint(s[i].Interface()) < fmt.Sprint(s[j].Interface()) -} - -// checkRequiredFields returns an error if any required field in the given proto message is not set. -// This function is used by both Marshal and Unmarshal. While required fields only exist in a -// proto2 message, a proto3 message can contain proto2 message(s). -func checkRequiredFields(pb proto.Message) error { - // Most well-known type messages do not contain required fields. The "Any" type may contain - // a message that has required fields. - // - // When an Any message is being marshaled, the code will invoked proto.Unmarshal on Any.Value - // field in order to transform that into JSON, and that should have returned an error if a - // required field is not set in the embedded message. - // - // When an Any message is being unmarshaled, the code will have invoked proto.Marshal on the - // embedded message to store the serialized message in Any.Value field, and that should have - // returned an error if a required field is not set. - if _, ok := pb.(wkt); ok { - return nil - } - - v := reflect.ValueOf(pb) - // Skip message if it is not a struct pointer. - if v.Kind() != reflect.Ptr { - return nil - } - v = v.Elem() - if v.Kind() != reflect.Struct { - return nil - } - - for i := 0; i < v.NumField(); i++ { - field := v.Field(i) - sfield := v.Type().Field(i) - - if sfield.PkgPath != "" { - // blank PkgPath means the field is exported; skip if not exported - continue - } - - if strings.HasPrefix(sfield.Name, "XXX_") { - continue - } - - // Oneof field is an interface implemented by wrapper structs containing the actual oneof - // field, i.e. an interface containing &T{real_value}. - if sfield.Tag.Get("protobuf_oneof") != "" { - if field.Kind() != reflect.Interface { - continue - } - v := field.Elem() - if v.Kind() != reflect.Ptr || v.IsNil() { - continue - } - v = v.Elem() - if v.Kind() != reflect.Struct || v.NumField() < 1 { - continue - } - field = v.Field(0) - sfield = v.Type().Field(0) - } - - protoTag := sfield.Tag.Get("protobuf") - if protoTag == "" { - continue - } - var prop proto.Properties - prop.Init(sfield.Type, sfield.Name, protoTag, &sfield) - - switch field.Kind() { - case reflect.Map: - if field.IsNil() { - continue - } - // Check each map value. - keys := field.MapKeys() - for _, k := range keys { - v := field.MapIndex(k) - if err := checkRequiredFieldsInValue(v); err != nil { - return err - } - } - case reflect.Slice: - // Handle non-repeated type, e.g. bytes. - if !prop.Repeated { - if prop.Required && field.IsNil() { - return fmt.Errorf("required field %q is not set", prop.Name) - } - continue - } - - // Handle repeated type. - if field.IsNil() { - continue - } - // Check each slice item. - for i := 0; i < field.Len(); i++ { - v := field.Index(i) - if err := checkRequiredFieldsInValue(v); err != nil { - return err - } - } - case reflect.Ptr: - if field.IsNil() { - if prop.Required { - return fmt.Errorf("required field %q is not set", prop.Name) - } - continue - } - if err := checkRequiredFieldsInValue(field); err != nil { - return err - } - } - } - - // Handle proto2 extensions. - for _, ext := range proto.RegisteredExtensions(pb) { - if !proto.HasExtension(pb, ext) { - continue - } - ep, err := proto.GetExtension(pb, ext) - if err != nil { - return err - } - err = checkRequiredFieldsInValue(reflect.ValueOf(ep)) - if err != nil { - return err - } - } - - return nil -} - -func checkRequiredFieldsInValue(v reflect.Value) error { - if pm, ok := v.Interface().(proto.Message); ok { - return checkRequiredFields(pm) - } - return nil -} diff --git a/vendor/github.com/golang/protobuf/proto/clone.go b/vendor/github.com/golang/protobuf/proto/clone.go deleted file mode 100644 index 3cd3249f..00000000 --- a/vendor/github.com/golang/protobuf/proto/clone.go +++ /dev/null @@ -1,253 +0,0 @@ -// Go support for Protocol Buffers - Google's data interchange format -// -// Copyright 2011 The Go Authors. All rights reserved. -// https://github.com/golang/protobuf -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - -// Protocol buffer deep copy and merge. -// TODO: RawMessage. - -package proto - -import ( - "fmt" - "log" - "reflect" - "strings" -) - -// Clone returns a deep copy of a protocol buffer. -func Clone(src Message) Message { - in := reflect.ValueOf(src) - if in.IsNil() { - return src - } - out := reflect.New(in.Type().Elem()) - dst := out.Interface().(Message) - Merge(dst, src) - return dst -} - -// Merger is the interface representing objects that can merge messages of the same type. -type Merger interface { - // Merge merges src into this message. - // Required and optional fields that are set in src will be set to that value in dst. - // Elements of repeated fields will be appended. - // - // Merge may panic if called with a different argument type than the receiver. - Merge(src Message) -} - -// generatedMerger is the custom merge method that generated protos will have. -// We must add this method since a generate Merge method will conflict with -// many existing protos that have a Merge data field already defined. -type generatedMerger interface { - XXX_Merge(src Message) -} - -// Merge merges src into dst. -// Required and optional fields that are set in src will be set to that value in dst. -// Elements of repeated fields will be appended. -// Merge panics if src and dst are not the same type, or if dst is nil. -func Merge(dst, src Message) { - if m, ok := dst.(Merger); ok { - m.Merge(src) - return - } - - in := reflect.ValueOf(src) - out := reflect.ValueOf(dst) - if out.IsNil() { - panic("proto: nil destination") - } - if in.Type() != out.Type() { - panic(fmt.Sprintf("proto.Merge(%T, %T) type mismatch", dst, src)) - } - if in.IsNil() { - return // Merge from nil src is a noop - } - if m, ok := dst.(generatedMerger); ok { - m.XXX_Merge(src) - return - } - mergeStruct(out.Elem(), in.Elem()) -} - -func mergeStruct(out, in reflect.Value) { - sprop := GetProperties(in.Type()) - for i := 0; i < in.NumField(); i++ { - f := in.Type().Field(i) - if strings.HasPrefix(f.Name, "XXX_") { - continue - } - mergeAny(out.Field(i), in.Field(i), false, sprop.Prop[i]) - } - - if emIn, err := extendable(in.Addr().Interface()); err == nil { - emOut, _ := extendable(out.Addr().Interface()) - mIn, muIn := emIn.extensionsRead() - if mIn != nil { - mOut := emOut.extensionsWrite() - muIn.Lock() - mergeExtension(mOut, mIn) - muIn.Unlock() - } - } - - uf := in.FieldByName("XXX_unrecognized") - if !uf.IsValid() { - return - } - uin := uf.Bytes() - if len(uin) > 0 { - out.FieldByName("XXX_unrecognized").SetBytes(append([]byte(nil), uin...)) - } -} - -// mergeAny performs a merge between two values of the same type. -// viaPtr indicates whether the values were indirected through a pointer (implying proto2). -// prop is set if this is a struct field (it may be nil). -func mergeAny(out, in reflect.Value, viaPtr bool, prop *Properties) { - if in.Type() == protoMessageType { - if !in.IsNil() { - if out.IsNil() { - out.Set(reflect.ValueOf(Clone(in.Interface().(Message)))) - } else { - Merge(out.Interface().(Message), in.Interface().(Message)) - } - } - return - } - switch in.Kind() { - case reflect.Bool, reflect.Float32, reflect.Float64, reflect.Int32, reflect.Int64, - reflect.String, reflect.Uint32, reflect.Uint64: - if !viaPtr && isProto3Zero(in) { - return - } - out.Set(in) - case reflect.Interface: - // Probably a oneof field; copy non-nil values. - if in.IsNil() { - return - } - // Allocate destination if it is not set, or set to a different type. - // Otherwise we will merge as normal. - if out.IsNil() || out.Elem().Type() != in.Elem().Type() { - out.Set(reflect.New(in.Elem().Elem().Type())) // interface -> *T -> T -> new(T) - } - mergeAny(out.Elem(), in.Elem(), false, nil) - case reflect.Map: - if in.Len() == 0 { - return - } - if out.IsNil() { - out.Set(reflect.MakeMap(in.Type())) - } - // For maps with value types of *T or []byte we need to deep copy each value. - elemKind := in.Type().Elem().Kind() - for _, key := range in.MapKeys() { - var val reflect.Value - switch elemKind { - case reflect.Ptr: - val = reflect.New(in.Type().Elem().Elem()) - mergeAny(val, in.MapIndex(key), false, nil) - case reflect.Slice: - val = in.MapIndex(key) - val = reflect.ValueOf(append([]byte{}, val.Bytes()...)) - default: - val = in.MapIndex(key) - } - out.SetMapIndex(key, val) - } - case reflect.Ptr: - if in.IsNil() { - return - } - if out.IsNil() { - out.Set(reflect.New(in.Elem().Type())) - } - mergeAny(out.Elem(), in.Elem(), true, nil) - case reflect.Slice: - if in.IsNil() { - return - } - if in.Type().Elem().Kind() == reflect.Uint8 { - // []byte is a scalar bytes field, not a repeated field. - - // Edge case: if this is in a proto3 message, a zero length - // bytes field is considered the zero value, and should not - // be merged. - if prop != nil && prop.proto3 && in.Len() == 0 { - return - } - - // Make a deep copy. - // Append to []byte{} instead of []byte(nil) so that we never end up - // with a nil result. - out.SetBytes(append([]byte{}, in.Bytes()...)) - return - } - n := in.Len() - if out.IsNil() { - out.Set(reflect.MakeSlice(in.Type(), 0, n)) - } - switch in.Type().Elem().Kind() { - case reflect.Bool, reflect.Float32, reflect.Float64, reflect.Int32, reflect.Int64, - reflect.String, reflect.Uint32, reflect.Uint64: - out.Set(reflect.AppendSlice(out, in)) - default: - for i := 0; i < n; i++ { - x := reflect.Indirect(reflect.New(in.Type().Elem())) - mergeAny(x, in.Index(i), false, nil) - out.Set(reflect.Append(out, x)) - } - } - case reflect.Struct: - mergeStruct(out, in) - default: - // unknown type, so not a protocol buffer - log.Printf("proto: don't know how to copy %v", in) - } -} - -func mergeExtension(out, in map[int32]Extension) { - for extNum, eIn := range in { - eOut := Extension{desc: eIn.desc} - if eIn.value != nil { - v := reflect.New(reflect.TypeOf(eIn.value)).Elem() - mergeAny(v, reflect.ValueOf(eIn.value), false, nil) - eOut.value = v.Interface() - } - if eIn.enc != nil { - eOut.enc = make([]byte, len(eIn.enc)) - copy(eOut.enc, eIn.enc) - } - - out[extNum] = eOut - } -} diff --git a/vendor/github.com/golang/protobuf/proto/decode.go b/vendor/github.com/golang/protobuf/proto/decode.go deleted file mode 100644 index d9aa3c42..00000000 --- a/vendor/github.com/golang/protobuf/proto/decode.go +++ /dev/null @@ -1,428 +0,0 @@ -// Go support for Protocol Buffers - Google's data interchange format -// -// Copyright 2010 The Go Authors. All rights reserved. -// https://github.com/golang/protobuf -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - -package proto - -/* - * Routines for decoding protocol buffer data to construct in-memory representations. - */ - -import ( - "errors" - "fmt" - "io" -) - -// errOverflow is returned when an integer is too large to be represented. -var errOverflow = errors.New("proto: integer overflow") - -// ErrInternalBadWireType is returned by generated code when an incorrect -// wire type is encountered. It does not get returned to user code. -var ErrInternalBadWireType = errors.New("proto: internal error: bad wiretype for oneof") - -// DecodeVarint reads a varint-encoded integer from the slice. -// It returns the integer and the number of bytes consumed, or -// zero if there is not enough. -// This is the format for the -// int32, int64, uint32, uint64, bool, and enum -// protocol buffer types. -func DecodeVarint(buf []byte) (x uint64, n int) { - for shift := uint(0); shift < 64; shift += 7 { - if n >= len(buf) { - return 0, 0 - } - b := uint64(buf[n]) - n++ - x |= (b & 0x7F) << shift - if (b & 0x80) == 0 { - return x, n - } - } - - // The number is too large to represent in a 64-bit value. - return 0, 0 -} - -func (p *Buffer) decodeVarintSlow() (x uint64, err error) { - i := p.index - l := len(p.buf) - - for shift := uint(0); shift < 64; shift += 7 { - if i >= l { - err = io.ErrUnexpectedEOF - return - } - b := p.buf[i] - i++ - x |= (uint64(b) & 0x7F) << shift - if b < 0x80 { - p.index = i - return - } - } - - // The number is too large to represent in a 64-bit value. - err = errOverflow - return -} - -// DecodeVarint reads a varint-encoded integer from the Buffer. -// This is the format for the -// int32, int64, uint32, uint64, bool, and enum -// protocol buffer types. -func (p *Buffer) DecodeVarint() (x uint64, err error) { - i := p.index - buf := p.buf - - if i >= len(buf) { - return 0, io.ErrUnexpectedEOF - } else if buf[i] < 0x80 { - p.index++ - return uint64(buf[i]), nil - } else if len(buf)-i < 10 { - return p.decodeVarintSlow() - } - - var b uint64 - // we already checked the first byte - x = uint64(buf[i]) - 0x80 - i++ - - b = uint64(buf[i]) - i++ - x += b << 7 - if b&0x80 == 0 { - goto done - } - x -= 0x80 << 7 - - b = uint64(buf[i]) - i++ - x += b << 14 - if b&0x80 == 0 { - goto done - } - x -= 0x80 << 14 - - b = uint64(buf[i]) - i++ - x += b << 21 - if b&0x80 == 0 { - goto done - } - x -= 0x80 << 21 - - b = uint64(buf[i]) - i++ - x += b << 28 - if b&0x80 == 0 { - goto done - } - x -= 0x80 << 28 - - b = uint64(buf[i]) - i++ - x += b << 35 - if b&0x80 == 0 { - goto done - } - x -= 0x80 << 35 - - b = uint64(buf[i]) - i++ - x += b << 42 - if b&0x80 == 0 { - goto done - } - x -= 0x80 << 42 - - b = uint64(buf[i]) - i++ - x += b << 49 - if b&0x80 == 0 { - goto done - } - x -= 0x80 << 49 - - b = uint64(buf[i]) - i++ - x += b << 56 - if b&0x80 == 0 { - goto done - } - x -= 0x80 << 56 - - b = uint64(buf[i]) - i++ - x += b << 63 - if b&0x80 == 0 { - goto done - } - // x -= 0x80 << 63 // Always zero. - - return 0, errOverflow - -done: - p.index = i - return x, nil -} - -// DecodeFixed64 reads a 64-bit integer from the Buffer. -// This is the format for the -// fixed64, sfixed64, and double protocol buffer types. -func (p *Buffer) DecodeFixed64() (x uint64, err error) { - // x, err already 0 - i := p.index + 8 - if i < 0 || i > len(p.buf) { - err = io.ErrUnexpectedEOF - return - } - p.index = i - - x = uint64(p.buf[i-8]) - x |= uint64(p.buf[i-7]) << 8 - x |= uint64(p.buf[i-6]) << 16 - x |= uint64(p.buf[i-5]) << 24 - x |= uint64(p.buf[i-4]) << 32 - x |= uint64(p.buf[i-3]) << 40 - x |= uint64(p.buf[i-2]) << 48 - x |= uint64(p.buf[i-1]) << 56 - return -} - -// DecodeFixed32 reads a 32-bit integer from the Buffer. -// This is the format for the -// fixed32, sfixed32, and float protocol buffer types. -func (p *Buffer) DecodeFixed32() (x uint64, err error) { - // x, err already 0 - i := p.index + 4 - if i < 0 || i > len(p.buf) { - err = io.ErrUnexpectedEOF - return - } - p.index = i - - x = uint64(p.buf[i-4]) - x |= uint64(p.buf[i-3]) << 8 - x |= uint64(p.buf[i-2]) << 16 - x |= uint64(p.buf[i-1]) << 24 - return -} - -// DecodeZigzag64 reads a zigzag-encoded 64-bit integer -// from the Buffer. -// This is the format used for the sint64 protocol buffer type. -func (p *Buffer) DecodeZigzag64() (x uint64, err error) { - x, err = p.DecodeVarint() - if err != nil { - return - } - x = (x >> 1) ^ uint64((int64(x&1)<<63)>>63) - return -} - -// DecodeZigzag32 reads a zigzag-encoded 32-bit integer -// from the Buffer. -// This is the format used for the sint32 protocol buffer type. -func (p *Buffer) DecodeZigzag32() (x uint64, err error) { - x, err = p.DecodeVarint() - if err != nil { - return - } - x = uint64((uint32(x) >> 1) ^ uint32((int32(x&1)<<31)>>31)) - return -} - -// DecodeRawBytes reads a count-delimited byte buffer from the Buffer. -// This is the format used for the bytes protocol buffer -// type and for embedded messages. -func (p *Buffer) DecodeRawBytes(alloc bool) (buf []byte, err error) { - n, err := p.DecodeVarint() - if err != nil { - return nil, err - } - - nb := int(n) - if nb < 0 { - return nil, fmt.Errorf("proto: bad byte length %d", nb) - } - end := p.index + nb - if end < p.index || end > len(p.buf) { - return nil, io.ErrUnexpectedEOF - } - - if !alloc { - // todo: check if can get more uses of alloc=false - buf = p.buf[p.index:end] - p.index += nb - return - } - - buf = make([]byte, nb) - copy(buf, p.buf[p.index:]) - p.index += nb - return -} - -// DecodeStringBytes reads an encoded string from the Buffer. -// This is the format used for the proto2 string type. -func (p *Buffer) DecodeStringBytes() (s string, err error) { - buf, err := p.DecodeRawBytes(false) - if err != nil { - return - } - return string(buf), nil -} - -// Unmarshaler is the interface representing objects that can -// unmarshal themselves. The argument points to data that may be -// overwritten, so implementations should not keep references to the -// buffer. -// Unmarshal implementations should not clear the receiver. -// Any unmarshaled data should be merged into the receiver. -// Callers of Unmarshal that do not want to retain existing data -// should Reset the receiver before calling Unmarshal. -type Unmarshaler interface { - Unmarshal([]byte) error -} - -// newUnmarshaler is the interface representing objects that can -// unmarshal themselves. The semantics are identical to Unmarshaler. -// -// This exists to support protoc-gen-go generated messages. -// The proto package will stop type-asserting to this interface in the future. -// -// DO NOT DEPEND ON THIS. -type newUnmarshaler interface { - XXX_Unmarshal([]byte) error -} - -// Unmarshal parses the protocol buffer representation in buf and places the -// decoded result in pb. If the struct underlying pb does not match -// the data in buf, the results can be unpredictable. -// -// Unmarshal resets pb before starting to unmarshal, so any -// existing data in pb is always removed. Use UnmarshalMerge -// to preserve and append to existing data. -func Unmarshal(buf []byte, pb Message) error { - pb.Reset() - if u, ok := pb.(newUnmarshaler); ok { - return u.XXX_Unmarshal(buf) - } - if u, ok := pb.(Unmarshaler); ok { - return u.Unmarshal(buf) - } - return NewBuffer(buf).Unmarshal(pb) -} - -// UnmarshalMerge parses the protocol buffer representation in buf and -// writes the decoded result to pb. If the struct underlying pb does not match -// the data in buf, the results can be unpredictable. -// -// UnmarshalMerge merges into existing data in pb. -// Most code should use Unmarshal instead. -func UnmarshalMerge(buf []byte, pb Message) error { - if u, ok := pb.(newUnmarshaler); ok { - return u.XXX_Unmarshal(buf) - } - if u, ok := pb.(Unmarshaler); ok { - // NOTE: The history of proto have unfortunately been inconsistent - // whether Unmarshaler should or should not implicitly clear itself. - // Some implementations do, most do not. - // Thus, calling this here may or may not do what people want. - // - // See https://github.com/golang/protobuf/issues/424 - return u.Unmarshal(buf) - } - return NewBuffer(buf).Unmarshal(pb) -} - -// DecodeMessage reads a count-delimited message from the Buffer. -func (p *Buffer) DecodeMessage(pb Message) error { - enc, err := p.DecodeRawBytes(false) - if err != nil { - return err - } - return NewBuffer(enc).Unmarshal(pb) -} - -// DecodeGroup reads a tag-delimited group from the Buffer. -// StartGroup tag is already consumed. This function consumes -// EndGroup tag. -func (p *Buffer) DecodeGroup(pb Message) error { - b := p.buf[p.index:] - x, y := findEndGroup(b) - if x < 0 { - return io.ErrUnexpectedEOF - } - err := Unmarshal(b[:x], pb) - p.index += y - return err -} - -// Unmarshal parses the protocol buffer representation in the -// Buffer and places the decoded result in pb. If the struct -// underlying pb does not match the data in the buffer, the results can be -// unpredictable. -// -// Unlike proto.Unmarshal, this does not reset pb before starting to unmarshal. -func (p *Buffer) Unmarshal(pb Message) error { - // If the object can unmarshal itself, let it. - if u, ok := pb.(newUnmarshaler); ok { - err := u.XXX_Unmarshal(p.buf[p.index:]) - p.index = len(p.buf) - return err - } - if u, ok := pb.(Unmarshaler); ok { - // NOTE: The history of proto have unfortunately been inconsistent - // whether Unmarshaler should or should not implicitly clear itself. - // Some implementations do, most do not. - // Thus, calling this here may or may not do what people want. - // - // See https://github.com/golang/protobuf/issues/424 - err := u.Unmarshal(p.buf[p.index:]) - p.index = len(p.buf) - return err - } - - // Slow workaround for messages that aren't Unmarshalers. - // This includes some hand-coded .pb.go files and - // bootstrap protos. - // TODO: fix all of those and then add Unmarshal to - // the Message interface. Then: - // The cast above and code below can be deleted. - // The old unmarshaler can be deleted. - // Clients can call Unmarshal directly (can already do that, actually). - var info InternalMessageInfo - err := info.Unmarshal(pb, p.buf[p.index:]) - p.index = len(p.buf) - return err -} diff --git a/vendor/github.com/golang/protobuf/proto/discard.go b/vendor/github.com/golang/protobuf/proto/discard.go deleted file mode 100644 index dea2617c..00000000 --- a/vendor/github.com/golang/protobuf/proto/discard.go +++ /dev/null @@ -1,350 +0,0 @@ -// Go support for Protocol Buffers - Google's data interchange format -// -// Copyright 2017 The Go Authors. All rights reserved. -// https://github.com/golang/protobuf -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - -package proto - -import ( - "fmt" - "reflect" - "strings" - "sync" - "sync/atomic" -) - -type generatedDiscarder interface { - XXX_DiscardUnknown() -} - -// DiscardUnknown recursively discards all unknown fields from this message -// and all embedded messages. -// -// When unmarshaling a message with unrecognized fields, the tags and values -// of such fields are preserved in the Message. This allows a later call to -// marshal to be able to produce a message that continues to have those -// unrecognized fields. To avoid this, DiscardUnknown is used to -// explicitly clear the unknown fields after unmarshaling. -// -// For proto2 messages, the unknown fields of message extensions are only -// discarded from messages that have been accessed via GetExtension. -func DiscardUnknown(m Message) { - if m, ok := m.(generatedDiscarder); ok { - m.XXX_DiscardUnknown() - return - } - // TODO: Dynamically populate a InternalMessageInfo for legacy messages, - // but the master branch has no implementation for InternalMessageInfo, - // so it would be more work to replicate that approach. - discardLegacy(m) -} - -// DiscardUnknown recursively discards all unknown fields. -func (a *InternalMessageInfo) DiscardUnknown(m Message) { - di := atomicLoadDiscardInfo(&a.discard) - if di == nil { - di = getDiscardInfo(reflect.TypeOf(m).Elem()) - atomicStoreDiscardInfo(&a.discard, di) - } - di.discard(toPointer(&m)) -} - -type discardInfo struct { - typ reflect.Type - - initialized int32 // 0: only typ is valid, 1: everything is valid - lock sync.Mutex - - fields []discardFieldInfo - unrecognized field -} - -type discardFieldInfo struct { - field field // Offset of field, guaranteed to be valid - discard func(src pointer) -} - -var ( - discardInfoMap = map[reflect.Type]*discardInfo{} - discardInfoLock sync.Mutex -) - -func getDiscardInfo(t reflect.Type) *discardInfo { - discardInfoLock.Lock() - defer discardInfoLock.Unlock() - di := discardInfoMap[t] - if di == nil { - di = &discardInfo{typ: t} - discardInfoMap[t] = di - } - return di -} - -func (di *discardInfo) discard(src pointer) { - if src.isNil() { - return // Nothing to do. - } - - if atomic.LoadInt32(&di.initialized) == 0 { - di.computeDiscardInfo() - } - - for _, fi := range di.fields { - sfp := src.offset(fi.field) - fi.discard(sfp) - } - - // For proto2 messages, only discard unknown fields in message extensions - // that have been accessed via GetExtension. - if em, err := extendable(src.asPointerTo(di.typ).Interface()); err == nil { - // Ignore lock since DiscardUnknown is not concurrency safe. - emm, _ := em.extensionsRead() - for _, mx := range emm { - if m, ok := mx.value.(Message); ok { - DiscardUnknown(m) - } - } - } - - if di.unrecognized.IsValid() { - *src.offset(di.unrecognized).toBytes() = nil - } -} - -func (di *discardInfo) computeDiscardInfo() { - di.lock.Lock() - defer di.lock.Unlock() - if di.initialized != 0 { - return - } - t := di.typ - n := t.NumField() - - for i := 0; i < n; i++ { - f := t.Field(i) - if strings.HasPrefix(f.Name, "XXX_") { - continue - } - - dfi := discardFieldInfo{field: toField(&f)} - tf := f.Type - - // Unwrap tf to get its most basic type. - var isPointer, isSlice bool - if tf.Kind() == reflect.Slice && tf.Elem().Kind() != reflect.Uint8 { - isSlice = true - tf = tf.Elem() - } - if tf.Kind() == reflect.Ptr { - isPointer = true - tf = tf.Elem() - } - if isPointer && isSlice && tf.Kind() != reflect.Struct { - panic(fmt.Sprintf("%v.%s cannot be a slice of pointers to primitive types", t, f.Name)) - } - - switch tf.Kind() { - case reflect.Struct: - switch { - case !isPointer: - panic(fmt.Sprintf("%v.%s cannot be a direct struct value", t, f.Name)) - case isSlice: // E.g., []*pb.T - di := getDiscardInfo(tf) - dfi.discard = func(src pointer) { - sps := src.getPointerSlice() - for _, sp := range sps { - if !sp.isNil() { - di.discard(sp) - } - } - } - default: // E.g., *pb.T - di := getDiscardInfo(tf) - dfi.discard = func(src pointer) { - sp := src.getPointer() - if !sp.isNil() { - di.discard(sp) - } - } - } - case reflect.Map: - switch { - case isPointer || isSlice: - panic(fmt.Sprintf("%v.%s cannot be a pointer to a map or a slice of map values", t, f.Name)) - default: // E.g., map[K]V - if tf.Elem().Kind() == reflect.Ptr { // Proto struct (e.g., *T) - dfi.discard = func(src pointer) { - sm := src.asPointerTo(tf).Elem() - if sm.Len() == 0 { - return - } - for _, key := range sm.MapKeys() { - val := sm.MapIndex(key) - DiscardUnknown(val.Interface().(Message)) - } - } - } else { - dfi.discard = func(pointer) {} // Noop - } - } - case reflect.Interface: - // Must be oneof field. - switch { - case isPointer || isSlice: - panic(fmt.Sprintf("%v.%s cannot be a pointer to a interface or a slice of interface values", t, f.Name)) - default: // E.g., interface{} - // TODO: Make this faster? - dfi.discard = func(src pointer) { - su := src.asPointerTo(tf).Elem() - if !su.IsNil() { - sv := su.Elem().Elem().Field(0) - if sv.Kind() == reflect.Ptr && sv.IsNil() { - return - } - switch sv.Type().Kind() { - case reflect.Ptr: // Proto struct (e.g., *T) - DiscardUnknown(sv.Interface().(Message)) - } - } - } - } - default: - continue - } - di.fields = append(di.fields, dfi) - } - - di.unrecognized = invalidField - if f, ok := t.FieldByName("XXX_unrecognized"); ok { - if f.Type != reflect.TypeOf([]byte{}) { - panic("expected XXX_unrecognized to be of type []byte") - } - di.unrecognized = toField(&f) - } - - atomic.StoreInt32(&di.initialized, 1) -} - -func discardLegacy(m Message) { - v := reflect.ValueOf(m) - if v.Kind() != reflect.Ptr || v.IsNil() { - return - } - v = v.Elem() - if v.Kind() != reflect.Struct { - return - } - t := v.Type() - - for i := 0; i < v.NumField(); i++ { - f := t.Field(i) - if strings.HasPrefix(f.Name, "XXX_") { - continue - } - vf := v.Field(i) - tf := f.Type - - // Unwrap tf to get its most basic type. - var isPointer, isSlice bool - if tf.Kind() == reflect.Slice && tf.Elem().Kind() != reflect.Uint8 { - isSlice = true - tf = tf.Elem() - } - if tf.Kind() == reflect.Ptr { - isPointer = true - tf = tf.Elem() - } - if isPointer && isSlice && tf.Kind() != reflect.Struct { - panic(fmt.Sprintf("%T.%s cannot be a slice of pointers to primitive types", m, f.Name)) - } - - switch tf.Kind() { - case reflect.Struct: - switch { - case !isPointer: - panic(fmt.Sprintf("%T.%s cannot be a direct struct value", m, f.Name)) - case isSlice: // E.g., []*pb.T - for j := 0; j < vf.Len(); j++ { - discardLegacy(vf.Index(j).Interface().(Message)) - } - default: // E.g., *pb.T - discardLegacy(vf.Interface().(Message)) - } - case reflect.Map: - switch { - case isPointer || isSlice: - panic(fmt.Sprintf("%T.%s cannot be a pointer to a map or a slice of map values", m, f.Name)) - default: // E.g., map[K]V - tv := vf.Type().Elem() - if tv.Kind() == reflect.Ptr && tv.Implements(protoMessageType) { // Proto struct (e.g., *T) - for _, key := range vf.MapKeys() { - val := vf.MapIndex(key) - discardLegacy(val.Interface().(Message)) - } - } - } - case reflect.Interface: - // Must be oneof field. - switch { - case isPointer || isSlice: - panic(fmt.Sprintf("%T.%s cannot be a pointer to a interface or a slice of interface values", m, f.Name)) - default: // E.g., test_proto.isCommunique_Union interface - if !vf.IsNil() && f.Tag.Get("protobuf_oneof") != "" { - vf = vf.Elem() // E.g., *test_proto.Communique_Msg - if !vf.IsNil() { - vf = vf.Elem() // E.g., test_proto.Communique_Msg - vf = vf.Field(0) // E.g., Proto struct (e.g., *T) or primitive value - if vf.Kind() == reflect.Ptr { - discardLegacy(vf.Interface().(Message)) - } - } - } - } - } - } - - if vf := v.FieldByName("XXX_unrecognized"); vf.IsValid() { - if vf.Type() != reflect.TypeOf([]byte{}) { - panic("expected XXX_unrecognized to be of type []byte") - } - vf.Set(reflect.ValueOf([]byte(nil))) - } - - // For proto2 messages, only discard unknown fields in message extensions - // that have been accessed via GetExtension. - if em, err := extendable(m); err == nil { - // Ignore lock since discardLegacy is not concurrency safe. - emm, _ := em.extensionsRead() - for _, mx := range emm { - if m, ok := mx.value.(Message); ok { - discardLegacy(m) - } - } - } -} diff --git a/vendor/github.com/golang/protobuf/proto/encode.go b/vendor/github.com/golang/protobuf/proto/encode.go deleted file mode 100644 index 3abfed2c..00000000 --- a/vendor/github.com/golang/protobuf/proto/encode.go +++ /dev/null @@ -1,203 +0,0 @@ -// Go support for Protocol Buffers - Google's data interchange format -// -// Copyright 2010 The Go Authors. All rights reserved. -// https://github.com/golang/protobuf -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - -package proto - -/* - * Routines for encoding data into the wire format for protocol buffers. - */ - -import ( - "errors" - "reflect" -) - -var ( - // errRepeatedHasNil is the error returned if Marshal is called with - // a struct with a repeated field containing a nil element. - errRepeatedHasNil = errors.New("proto: repeated field has nil element") - - // errOneofHasNil is the error returned if Marshal is called with - // a struct with a oneof field containing a nil element. - errOneofHasNil = errors.New("proto: oneof field has nil value") - - // ErrNil is the error returned if Marshal is called with nil. - ErrNil = errors.New("proto: Marshal called with nil") - - // ErrTooLarge is the error returned if Marshal is called with a - // message that encodes to >2GB. - ErrTooLarge = errors.New("proto: message encodes to over 2 GB") -) - -// The fundamental encoders that put bytes on the wire. -// Those that take integer types all accept uint64 and are -// therefore of type valueEncoder. - -const maxVarintBytes = 10 // maximum length of a varint - -// EncodeVarint returns the varint encoding of x. -// This is the format for the -// int32, int64, uint32, uint64, bool, and enum -// protocol buffer types. -// Not used by the package itself, but helpful to clients -// wishing to use the same encoding. -func EncodeVarint(x uint64) []byte { - var buf [maxVarintBytes]byte - var n int - for n = 0; x > 127; n++ { - buf[n] = 0x80 | uint8(x&0x7F) - x >>= 7 - } - buf[n] = uint8(x) - n++ - return buf[0:n] -} - -// EncodeVarint writes a varint-encoded integer to the Buffer. -// This is the format for the -// int32, int64, uint32, uint64, bool, and enum -// protocol buffer types. -func (p *Buffer) EncodeVarint(x uint64) error { - for x >= 1<<7 { - p.buf = append(p.buf, uint8(x&0x7f|0x80)) - x >>= 7 - } - p.buf = append(p.buf, uint8(x)) - return nil -} - -// SizeVarint returns the varint encoding size of an integer. -func SizeVarint(x uint64) int { - switch { - case x < 1<<7: - return 1 - case x < 1<<14: - return 2 - case x < 1<<21: - return 3 - case x < 1<<28: - return 4 - case x < 1<<35: - return 5 - case x < 1<<42: - return 6 - case x < 1<<49: - return 7 - case x < 1<<56: - return 8 - case x < 1<<63: - return 9 - } - return 10 -} - -// EncodeFixed64 writes a 64-bit integer to the Buffer. -// This is the format for the -// fixed64, sfixed64, and double protocol buffer types. -func (p *Buffer) EncodeFixed64(x uint64) error { - p.buf = append(p.buf, - uint8(x), - uint8(x>>8), - uint8(x>>16), - uint8(x>>24), - uint8(x>>32), - uint8(x>>40), - uint8(x>>48), - uint8(x>>56)) - return nil -} - -// EncodeFixed32 writes a 32-bit integer to the Buffer. -// This is the format for the -// fixed32, sfixed32, and float protocol buffer types. -func (p *Buffer) EncodeFixed32(x uint64) error { - p.buf = append(p.buf, - uint8(x), - uint8(x>>8), - uint8(x>>16), - uint8(x>>24)) - return nil -} - -// EncodeZigzag64 writes a zigzag-encoded 64-bit integer -// to the Buffer. -// This is the format used for the sint64 protocol buffer type. -func (p *Buffer) EncodeZigzag64(x uint64) error { - // use signed number to get arithmetic right shift. - return p.EncodeVarint(uint64((x << 1) ^ uint64((int64(x) >> 63)))) -} - -// EncodeZigzag32 writes a zigzag-encoded 32-bit integer -// to the Buffer. -// This is the format used for the sint32 protocol buffer type. -func (p *Buffer) EncodeZigzag32(x uint64) error { - // use signed number to get arithmetic right shift. - return p.EncodeVarint(uint64((uint32(x) << 1) ^ uint32((int32(x) >> 31)))) -} - -// EncodeRawBytes writes a count-delimited byte buffer to the Buffer. -// This is the format used for the bytes protocol buffer -// type and for embedded messages. -func (p *Buffer) EncodeRawBytes(b []byte) error { - p.EncodeVarint(uint64(len(b))) - p.buf = append(p.buf, b...) - return nil -} - -// EncodeStringBytes writes an encoded string to the Buffer. -// This is the format used for the proto2 string type. -func (p *Buffer) EncodeStringBytes(s string) error { - p.EncodeVarint(uint64(len(s))) - p.buf = append(p.buf, s...) - return nil -} - -// Marshaler is the interface representing objects that can marshal themselves. -type Marshaler interface { - Marshal() ([]byte, error) -} - -// EncodeMessage writes the protocol buffer to the Buffer, -// prefixed by a varint-encoded length. -func (p *Buffer) EncodeMessage(pb Message) error { - siz := Size(pb) - p.EncodeVarint(uint64(siz)) - return p.Marshal(pb) -} - -// All protocol buffer fields are nillable, but be careful. -func isNil(v reflect.Value) bool { - switch v.Kind() { - case reflect.Interface, reflect.Map, reflect.Ptr, reflect.Slice: - return v.IsNil() - } - return false -} diff --git a/vendor/github.com/golang/protobuf/proto/equal.go b/vendor/github.com/golang/protobuf/proto/equal.go deleted file mode 100644 index d4db5a1c..00000000 --- a/vendor/github.com/golang/protobuf/proto/equal.go +++ /dev/null @@ -1,300 +0,0 @@ -// Go support for Protocol Buffers - Google's data interchange format -// -// Copyright 2011 The Go Authors. All rights reserved. -// https://github.com/golang/protobuf -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - -// Protocol buffer comparison. - -package proto - -import ( - "bytes" - "log" - "reflect" - "strings" -) - -/* -Equal returns true iff protocol buffers a and b are equal. -The arguments must both be pointers to protocol buffer structs. - -Equality is defined in this way: - - Two messages are equal iff they are the same type, - corresponding fields are equal, unknown field sets - are equal, and extensions sets are equal. - - Two set scalar fields are equal iff their values are equal. - If the fields are of a floating-point type, remember that - NaN != x for all x, including NaN. If the message is defined - in a proto3 .proto file, fields are not "set"; specifically, - zero length proto3 "bytes" fields are equal (nil == {}). - - Two repeated fields are equal iff their lengths are the same, - and their corresponding elements are equal. Note a "bytes" field, - although represented by []byte, is not a repeated field and the - rule for the scalar fields described above applies. - - Two unset fields are equal. - - Two unknown field sets are equal if their current - encoded state is equal. - - Two extension sets are equal iff they have corresponding - elements that are pairwise equal. - - Two map fields are equal iff their lengths are the same, - and they contain the same set of elements. Zero-length map - fields are equal. - - Every other combination of things are not equal. - -The return value is undefined if a and b are not protocol buffers. -*/ -func Equal(a, b Message) bool { - if a == nil || b == nil { - return a == b - } - v1, v2 := reflect.ValueOf(a), reflect.ValueOf(b) - if v1.Type() != v2.Type() { - return false - } - if v1.Kind() == reflect.Ptr { - if v1.IsNil() { - return v2.IsNil() - } - if v2.IsNil() { - return false - } - v1, v2 = v1.Elem(), v2.Elem() - } - if v1.Kind() != reflect.Struct { - return false - } - return equalStruct(v1, v2) -} - -// v1 and v2 are known to have the same type. -func equalStruct(v1, v2 reflect.Value) bool { - sprop := GetProperties(v1.Type()) - for i := 0; i < v1.NumField(); i++ { - f := v1.Type().Field(i) - if strings.HasPrefix(f.Name, "XXX_") { - continue - } - f1, f2 := v1.Field(i), v2.Field(i) - if f.Type.Kind() == reflect.Ptr { - if n1, n2 := f1.IsNil(), f2.IsNil(); n1 && n2 { - // both unset - continue - } else if n1 != n2 { - // set/unset mismatch - return false - } - f1, f2 = f1.Elem(), f2.Elem() - } - if !equalAny(f1, f2, sprop.Prop[i]) { - return false - } - } - - if em1 := v1.FieldByName("XXX_InternalExtensions"); em1.IsValid() { - em2 := v2.FieldByName("XXX_InternalExtensions") - if !equalExtensions(v1.Type(), em1.Interface().(XXX_InternalExtensions), em2.Interface().(XXX_InternalExtensions)) { - return false - } - } - - if em1 := v1.FieldByName("XXX_extensions"); em1.IsValid() { - em2 := v2.FieldByName("XXX_extensions") - if !equalExtMap(v1.Type(), em1.Interface().(map[int32]Extension), em2.Interface().(map[int32]Extension)) { - return false - } - } - - uf := v1.FieldByName("XXX_unrecognized") - if !uf.IsValid() { - return true - } - - u1 := uf.Bytes() - u2 := v2.FieldByName("XXX_unrecognized").Bytes() - return bytes.Equal(u1, u2) -} - -// v1 and v2 are known to have the same type. -// prop may be nil. -func equalAny(v1, v2 reflect.Value, prop *Properties) bool { - if v1.Type() == protoMessageType { - m1, _ := v1.Interface().(Message) - m2, _ := v2.Interface().(Message) - return Equal(m1, m2) - } - switch v1.Kind() { - case reflect.Bool: - return v1.Bool() == v2.Bool() - case reflect.Float32, reflect.Float64: - return v1.Float() == v2.Float() - case reflect.Int32, reflect.Int64: - return v1.Int() == v2.Int() - case reflect.Interface: - // Probably a oneof field; compare the inner values. - n1, n2 := v1.IsNil(), v2.IsNil() - if n1 || n2 { - return n1 == n2 - } - e1, e2 := v1.Elem(), v2.Elem() - if e1.Type() != e2.Type() { - return false - } - return equalAny(e1, e2, nil) - case reflect.Map: - if v1.Len() != v2.Len() { - return false - } - for _, key := range v1.MapKeys() { - val2 := v2.MapIndex(key) - if !val2.IsValid() { - // This key was not found in the second map. - return false - } - if !equalAny(v1.MapIndex(key), val2, nil) { - return false - } - } - return true - case reflect.Ptr: - // Maps may have nil values in them, so check for nil. - if v1.IsNil() && v2.IsNil() { - return true - } - if v1.IsNil() != v2.IsNil() { - return false - } - return equalAny(v1.Elem(), v2.Elem(), prop) - case reflect.Slice: - if v1.Type().Elem().Kind() == reflect.Uint8 { - // short circuit: []byte - - // Edge case: if this is in a proto3 message, a zero length - // bytes field is considered the zero value. - if prop != nil && prop.proto3 && v1.Len() == 0 && v2.Len() == 0 { - return true - } - if v1.IsNil() != v2.IsNil() { - return false - } - return bytes.Equal(v1.Interface().([]byte), v2.Interface().([]byte)) - } - - if v1.Len() != v2.Len() { - return false - } - for i := 0; i < v1.Len(); i++ { - if !equalAny(v1.Index(i), v2.Index(i), prop) { - return false - } - } - return true - case reflect.String: - return v1.Interface().(string) == v2.Interface().(string) - case reflect.Struct: - return equalStruct(v1, v2) - case reflect.Uint32, reflect.Uint64: - return v1.Uint() == v2.Uint() - } - - // unknown type, so not a protocol buffer - log.Printf("proto: don't know how to compare %v", v1) - return false -} - -// base is the struct type that the extensions are based on. -// x1 and x2 are InternalExtensions. -func equalExtensions(base reflect.Type, x1, x2 XXX_InternalExtensions) bool { - em1, _ := x1.extensionsRead() - em2, _ := x2.extensionsRead() - return equalExtMap(base, em1, em2) -} - -func equalExtMap(base reflect.Type, em1, em2 map[int32]Extension) bool { - if len(em1) != len(em2) { - return false - } - - for extNum, e1 := range em1 { - e2, ok := em2[extNum] - if !ok { - return false - } - - m1, m2 := e1.value, e2.value - - if m1 == nil && m2 == nil { - // Both have only encoded form. - if bytes.Equal(e1.enc, e2.enc) { - continue - } - // The bytes are different, but the extensions might still be - // equal. We need to decode them to compare. - } - - if m1 != nil && m2 != nil { - // Both are unencoded. - if !equalAny(reflect.ValueOf(m1), reflect.ValueOf(m2), nil) { - return false - } - continue - } - - // At least one is encoded. To do a semantically correct comparison - // we need to unmarshal them first. - var desc *ExtensionDesc - if m := extensionMaps[base]; m != nil { - desc = m[extNum] - } - if desc == nil { - // If both have only encoded form and the bytes are the same, - // it is handled above. We get here when the bytes are different. - // We don't know how to decode it, so just compare them as byte - // slices. - log.Printf("proto: don't know how to compare extension %d of %v", extNum, base) - return false - } - var err error - if m1 == nil { - m1, err = decodeExtension(e1.enc, desc) - } - if m2 == nil && err == nil { - m2, err = decodeExtension(e2.enc, desc) - } - if err != nil { - // The encoded form is invalid. - log.Printf("proto: badly encoded extension %d of %v: %v", extNum, base, err) - return false - } - if !equalAny(reflect.ValueOf(m1), reflect.ValueOf(m2), nil) { - return false - } - } - - return true -} diff --git a/vendor/github.com/golang/protobuf/proto/extensions.go b/vendor/github.com/golang/protobuf/proto/extensions.go deleted file mode 100644 index 816a3b9d..00000000 --- a/vendor/github.com/golang/protobuf/proto/extensions.go +++ /dev/null @@ -1,543 +0,0 @@ -// Go support for Protocol Buffers - Google's data interchange format -// -// Copyright 2010 The Go Authors. All rights reserved. -// https://github.com/golang/protobuf -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - -package proto - -/* - * Types and routines for supporting protocol buffer extensions. - */ - -import ( - "errors" - "fmt" - "io" - "reflect" - "strconv" - "sync" -) - -// ErrMissingExtension is the error returned by GetExtension if the named extension is not in the message. -var ErrMissingExtension = errors.New("proto: missing extension") - -// ExtensionRange represents a range of message extensions for a protocol buffer. -// Used in code generated by the protocol compiler. -type ExtensionRange struct { - Start, End int32 // both inclusive -} - -// extendableProto is an interface implemented by any protocol buffer generated by the current -// proto compiler that may be extended. -type extendableProto interface { - Message - ExtensionRangeArray() []ExtensionRange - extensionsWrite() map[int32]Extension - extensionsRead() (map[int32]Extension, sync.Locker) -} - -// extendableProtoV1 is an interface implemented by a protocol buffer generated by the previous -// version of the proto compiler that may be extended. -type extendableProtoV1 interface { - Message - ExtensionRangeArray() []ExtensionRange - ExtensionMap() map[int32]Extension -} - -// extensionAdapter is a wrapper around extendableProtoV1 that implements extendableProto. -type extensionAdapter struct { - extendableProtoV1 -} - -func (e extensionAdapter) extensionsWrite() map[int32]Extension { - return e.ExtensionMap() -} - -func (e extensionAdapter) extensionsRead() (map[int32]Extension, sync.Locker) { - return e.ExtensionMap(), notLocker{} -} - -// notLocker is a sync.Locker whose Lock and Unlock methods are nops. -type notLocker struct{} - -func (n notLocker) Lock() {} -func (n notLocker) Unlock() {} - -// extendable returns the extendableProto interface for the given generated proto message. -// If the proto message has the old extension format, it returns a wrapper that implements -// the extendableProto interface. -func extendable(p interface{}) (extendableProto, error) { - switch p := p.(type) { - case extendableProto: - if isNilPtr(p) { - return nil, fmt.Errorf("proto: nil %T is not extendable", p) - } - return p, nil - case extendableProtoV1: - if isNilPtr(p) { - return nil, fmt.Errorf("proto: nil %T is not extendable", p) - } - return extensionAdapter{p}, nil - } - // Don't allocate a specific error containing %T: - // this is the hot path for Clone and MarshalText. - return nil, errNotExtendable -} - -var errNotExtendable = errors.New("proto: not an extendable proto.Message") - -func isNilPtr(x interface{}) bool { - v := reflect.ValueOf(x) - return v.Kind() == reflect.Ptr && v.IsNil() -} - -// XXX_InternalExtensions is an internal representation of proto extensions. -// -// Each generated message struct type embeds an anonymous XXX_InternalExtensions field, -// thus gaining the unexported 'extensions' method, which can be called only from the proto package. -// -// The methods of XXX_InternalExtensions are not concurrency safe in general, -// but calls to logically read-only methods such as has and get may be executed concurrently. -type XXX_InternalExtensions struct { - // The struct must be indirect so that if a user inadvertently copies a - // generated message and its embedded XXX_InternalExtensions, they - // avoid the mayhem of a copied mutex. - // - // The mutex serializes all logically read-only operations to p.extensionMap. - // It is up to the client to ensure that write operations to p.extensionMap are - // mutually exclusive with other accesses. - p *struct { - mu sync.Mutex - extensionMap map[int32]Extension - } -} - -// extensionsWrite returns the extension map, creating it on first use. -func (e *XXX_InternalExtensions) extensionsWrite() map[int32]Extension { - if e.p == nil { - e.p = new(struct { - mu sync.Mutex - extensionMap map[int32]Extension - }) - e.p.extensionMap = make(map[int32]Extension) - } - return e.p.extensionMap -} - -// extensionsRead returns the extensions map for read-only use. It may be nil. -// The caller must hold the returned mutex's lock when accessing Elements within the map. -func (e *XXX_InternalExtensions) extensionsRead() (map[int32]Extension, sync.Locker) { - if e.p == nil { - return nil, nil - } - return e.p.extensionMap, &e.p.mu -} - -// ExtensionDesc represents an extension specification. -// Used in generated code from the protocol compiler. -type ExtensionDesc struct { - ExtendedType Message // nil pointer to the type that is being extended - ExtensionType interface{} // nil pointer to the extension type - Field int32 // field number - Name string // fully-qualified name of extension, for text formatting - Tag string // protobuf tag style - Filename string // name of the file in which the extension is defined -} - -func (ed *ExtensionDesc) repeated() bool { - t := reflect.TypeOf(ed.ExtensionType) - return t.Kind() == reflect.Slice && t.Elem().Kind() != reflect.Uint8 -} - -// Extension represents an extension in a message. -type Extension struct { - // When an extension is stored in a message using SetExtension - // only desc and value are set. When the message is marshaled - // enc will be set to the encoded form of the message. - // - // When a message is unmarshaled and contains extensions, each - // extension will have only enc set. When such an extension is - // accessed using GetExtension (or GetExtensions) desc and value - // will be set. - desc *ExtensionDesc - value interface{} - enc []byte -} - -// SetRawExtension is for testing only. -func SetRawExtension(base Message, id int32, b []byte) { - epb, err := extendable(base) - if err != nil { - return - } - extmap := epb.extensionsWrite() - extmap[id] = Extension{enc: b} -} - -// isExtensionField returns true iff the given field number is in an extension range. -func isExtensionField(pb extendableProto, field int32) bool { - for _, er := range pb.ExtensionRangeArray() { - if er.Start <= field && field <= er.End { - return true - } - } - return false -} - -// checkExtensionTypes checks that the given extension is valid for pb. -func checkExtensionTypes(pb extendableProto, extension *ExtensionDesc) error { - var pbi interface{} = pb - // Check the extended type. - if ea, ok := pbi.(extensionAdapter); ok { - pbi = ea.extendableProtoV1 - } - if a, b := reflect.TypeOf(pbi), reflect.TypeOf(extension.ExtendedType); a != b { - return fmt.Errorf("proto: bad extended type; %v does not extend %v", b, a) - } - // Check the range. - if !isExtensionField(pb, extension.Field) { - return errors.New("proto: bad extension number; not in declared ranges") - } - return nil -} - -// extPropKey is sufficient to uniquely identify an extension. -type extPropKey struct { - base reflect.Type - field int32 -} - -var extProp = struct { - sync.RWMutex - m map[extPropKey]*Properties -}{ - m: make(map[extPropKey]*Properties), -} - -func extensionProperties(ed *ExtensionDesc) *Properties { - key := extPropKey{base: reflect.TypeOf(ed.ExtendedType), field: ed.Field} - - extProp.RLock() - if prop, ok := extProp.m[key]; ok { - extProp.RUnlock() - return prop - } - extProp.RUnlock() - - extProp.Lock() - defer extProp.Unlock() - // Check again. - if prop, ok := extProp.m[key]; ok { - return prop - } - - prop := new(Properties) - prop.Init(reflect.TypeOf(ed.ExtensionType), "unknown_name", ed.Tag, nil) - extProp.m[key] = prop - return prop -} - -// HasExtension returns whether the given extension is present in pb. -func HasExtension(pb Message, extension *ExtensionDesc) bool { - // TODO: Check types, field numbers, etc.? - epb, err := extendable(pb) - if err != nil { - return false - } - extmap, mu := epb.extensionsRead() - if extmap == nil { - return false - } - mu.Lock() - _, ok := extmap[extension.Field] - mu.Unlock() - return ok -} - -// ClearExtension removes the given extension from pb. -func ClearExtension(pb Message, extension *ExtensionDesc) { - epb, err := extendable(pb) - if err != nil { - return - } - // TODO: Check types, field numbers, etc.? - extmap := epb.extensionsWrite() - delete(extmap, extension.Field) -} - -// GetExtension retrieves a proto2 extended field from pb. -// -// If the descriptor is type complete (i.e., ExtensionDesc.ExtensionType is non-nil), -// then GetExtension parses the encoded field and returns a Go value of the specified type. -// If the field is not present, then the default value is returned (if one is specified), -// otherwise ErrMissingExtension is reported. -// -// If the descriptor is not type complete (i.e., ExtensionDesc.ExtensionType is nil), -// then GetExtension returns the raw encoded bytes of the field extension. -func GetExtension(pb Message, extension *ExtensionDesc) (interface{}, error) { - epb, err := extendable(pb) - if err != nil { - return nil, err - } - - if extension.ExtendedType != nil { - // can only check type if this is a complete descriptor - if err := checkExtensionTypes(epb, extension); err != nil { - return nil, err - } - } - - emap, mu := epb.extensionsRead() - if emap == nil { - return defaultExtensionValue(extension) - } - mu.Lock() - defer mu.Unlock() - e, ok := emap[extension.Field] - if !ok { - // defaultExtensionValue returns the default value or - // ErrMissingExtension if there is no default. - return defaultExtensionValue(extension) - } - - if e.value != nil { - // Already decoded. Check the descriptor, though. - if e.desc != extension { - // This shouldn't happen. If it does, it means that - // GetExtension was called twice with two different - // descriptors with the same field number. - return nil, errors.New("proto: descriptor conflict") - } - return e.value, nil - } - - if extension.ExtensionType == nil { - // incomplete descriptor - return e.enc, nil - } - - v, err := decodeExtension(e.enc, extension) - if err != nil { - return nil, err - } - - // Remember the decoded version and drop the encoded version. - // That way it is safe to mutate what we return. - e.value = v - e.desc = extension - e.enc = nil - emap[extension.Field] = e - return e.value, nil -} - -// defaultExtensionValue returns the default value for extension. -// If no default for an extension is defined ErrMissingExtension is returned. -func defaultExtensionValue(extension *ExtensionDesc) (interface{}, error) { - if extension.ExtensionType == nil { - // incomplete descriptor, so no default - return nil, ErrMissingExtension - } - - t := reflect.TypeOf(extension.ExtensionType) - props := extensionProperties(extension) - - sf, _, err := fieldDefault(t, props) - if err != nil { - return nil, err - } - - if sf == nil || sf.value == nil { - // There is no default value. - return nil, ErrMissingExtension - } - - if t.Kind() != reflect.Ptr { - // We do not need to return a Ptr, we can directly return sf.value. - return sf.value, nil - } - - // We need to return an interface{} that is a pointer to sf.value. - value := reflect.New(t).Elem() - value.Set(reflect.New(value.Type().Elem())) - if sf.kind == reflect.Int32 { - // We may have an int32 or an enum, but the underlying data is int32. - // Since we can't set an int32 into a non int32 reflect.value directly - // set it as a int32. - value.Elem().SetInt(int64(sf.value.(int32))) - } else { - value.Elem().Set(reflect.ValueOf(sf.value)) - } - return value.Interface(), nil -} - -// decodeExtension decodes an extension encoded in b. -func decodeExtension(b []byte, extension *ExtensionDesc) (interface{}, error) { - t := reflect.TypeOf(extension.ExtensionType) - unmarshal := typeUnmarshaler(t, extension.Tag) - - // t is a pointer to a struct, pointer to basic type or a slice. - // Allocate space to store the pointer/slice. - value := reflect.New(t).Elem() - - var err error - for { - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - wire := int(x) & 7 - - b, err = unmarshal(b, valToPointer(value.Addr()), wire) - if err != nil { - return nil, err - } - - if len(b) == 0 { - break - } - } - return value.Interface(), nil -} - -// GetExtensions returns a slice of the extensions present in pb that are also listed in es. -// The returned slice has the same length as es; missing extensions will appear as nil elements. -func GetExtensions(pb Message, es []*ExtensionDesc) (extensions []interface{}, err error) { - epb, err := extendable(pb) - if err != nil { - return nil, err - } - extensions = make([]interface{}, len(es)) - for i, e := range es { - extensions[i], err = GetExtension(epb, e) - if err == ErrMissingExtension { - err = nil - } - if err != nil { - return - } - } - return -} - -// ExtensionDescs returns a new slice containing pb's extension descriptors, in undefined order. -// For non-registered extensions, ExtensionDescs returns an incomplete descriptor containing -// just the Field field, which defines the extension's field number. -func ExtensionDescs(pb Message) ([]*ExtensionDesc, error) { - epb, err := extendable(pb) - if err != nil { - return nil, err - } - registeredExtensions := RegisteredExtensions(pb) - - emap, mu := epb.extensionsRead() - if emap == nil { - return nil, nil - } - mu.Lock() - defer mu.Unlock() - extensions := make([]*ExtensionDesc, 0, len(emap)) - for extid, e := range emap { - desc := e.desc - if desc == nil { - desc = registeredExtensions[extid] - if desc == nil { - desc = &ExtensionDesc{Field: extid} - } - } - - extensions = append(extensions, desc) - } - return extensions, nil -} - -// SetExtension sets the specified extension of pb to the specified value. -func SetExtension(pb Message, extension *ExtensionDesc, value interface{}) error { - epb, err := extendable(pb) - if err != nil { - return err - } - if err := checkExtensionTypes(epb, extension); err != nil { - return err - } - typ := reflect.TypeOf(extension.ExtensionType) - if typ != reflect.TypeOf(value) { - return errors.New("proto: bad extension value type") - } - // nil extension values need to be caught early, because the - // encoder can't distinguish an ErrNil due to a nil extension - // from an ErrNil due to a missing field. Extensions are - // always optional, so the encoder would just swallow the error - // and drop all the extensions from the encoded message. - if reflect.ValueOf(value).IsNil() { - return fmt.Errorf("proto: SetExtension called with nil value of type %T", value) - } - - extmap := epb.extensionsWrite() - extmap[extension.Field] = Extension{desc: extension, value: value} - return nil -} - -// ClearAllExtensions clears all extensions from pb. -func ClearAllExtensions(pb Message) { - epb, err := extendable(pb) - if err != nil { - return - } - m := epb.extensionsWrite() - for k := range m { - delete(m, k) - } -} - -// A global registry of extensions. -// The generated code will register the generated descriptors by calling RegisterExtension. - -var extensionMaps = make(map[reflect.Type]map[int32]*ExtensionDesc) - -// RegisterExtension is called from the generated code. -func RegisterExtension(desc *ExtensionDesc) { - st := reflect.TypeOf(desc.ExtendedType).Elem() - m := extensionMaps[st] - if m == nil { - m = make(map[int32]*ExtensionDesc) - extensionMaps[st] = m - } - if _, ok := m[desc.Field]; ok { - panic("proto: duplicate extension registered: " + st.String() + " " + strconv.Itoa(int(desc.Field))) - } - m[desc.Field] = desc -} - -// RegisteredExtensions returns a map of the registered extensions of a -// protocol buffer struct, indexed by the extension number. -// The argument pb should be a nil pointer to the struct type. -func RegisteredExtensions(pb Message) map[int32]*ExtensionDesc { - return extensionMaps[reflect.TypeOf(pb).Elem()] -} diff --git a/vendor/github.com/golang/protobuf/proto/lib.go b/vendor/github.com/golang/protobuf/proto/lib.go deleted file mode 100644 index 75565cc6..00000000 --- a/vendor/github.com/golang/protobuf/proto/lib.go +++ /dev/null @@ -1,979 +0,0 @@ -// Go support for Protocol Buffers - Google's data interchange format -// -// Copyright 2010 The Go Authors. All rights reserved. -// https://github.com/golang/protobuf -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - -/* -Package proto converts data structures to and from the wire format of -protocol buffers. It works in concert with the Go source code generated -for .proto files by the protocol compiler. - -A summary of the properties of the protocol buffer interface -for a protocol buffer variable v: - - - Names are turned from camel_case to CamelCase for export. - - There are no methods on v to set fields; just treat - them as structure fields. - - There are getters that return a field's value if set, - and return the field's default value if unset. - The getters work even if the receiver is a nil message. - - The zero value for a struct is its correct initialization state. - All desired fields must be set before marshaling. - - A Reset() method will restore a protobuf struct to its zero state. - - Non-repeated fields are pointers to the values; nil means unset. - That is, optional or required field int32 f becomes F *int32. - - Repeated fields are slices. - - Helper functions are available to aid the setting of fields. - msg.Foo = proto.String("hello") // set field - - Constants are defined to hold the default values of all fields that - have them. They have the form Default_StructName_FieldName. - Because the getter methods handle defaulted values, - direct use of these constants should be rare. - - Enums are given type names and maps from names to values. - Enum values are prefixed by the enclosing message's name, or by the - enum's type name if it is a top-level enum. Enum types have a String - method, and a Enum method to assist in message construction. - - Nested messages, groups and enums have type names prefixed with the name of - the surrounding message type. - - Extensions are given descriptor names that start with E_, - followed by an underscore-delimited list of the nested messages - that contain it (if any) followed by the CamelCased name of the - extension field itself. HasExtension, ClearExtension, GetExtension - and SetExtension are functions for manipulating extensions. - - Oneof field sets are given a single field in their message, - with distinguished wrapper types for each possible field value. - - Marshal and Unmarshal are functions to encode and decode the wire format. - -When the .proto file specifies `syntax="proto3"`, there are some differences: - - - Non-repeated fields of non-message type are values instead of pointers. - - Enum types do not get an Enum method. - -The simplest way to describe this is to see an example. -Given file test.proto, containing - - package example; - - enum FOO { X = 17; } - - message Test { - required string label = 1; - optional int32 type = 2 [default=77]; - repeated int64 reps = 3; - optional group OptionalGroup = 4 { - required string RequiredField = 5; - } - oneof union { - int32 number = 6; - string name = 7; - } - } - -The resulting file, test.pb.go, is: - - package example - - import proto "github.com/golang/protobuf/proto" - import math "math" - - type FOO int32 - const ( - FOO_X FOO = 17 - ) - var FOO_name = map[int32]string{ - 17: "X", - } - var FOO_value = map[string]int32{ - "X": 17, - } - - func (x FOO) Enum() *FOO { - p := new(FOO) - *p = x - return p - } - func (x FOO) String() string { - return proto.EnumName(FOO_name, int32(x)) - } - func (x *FOO) UnmarshalJSON(data []byte) error { - value, err := proto.UnmarshalJSONEnum(FOO_value, data) - if err != nil { - return err - } - *x = FOO(value) - return nil - } - - type Test struct { - Label *string `protobuf:"bytes,1,req,name=label" json:"label,omitempty"` - Type *int32 `protobuf:"varint,2,opt,name=type,def=77" json:"type,omitempty"` - Reps []int64 `protobuf:"varint,3,rep,name=reps" json:"reps,omitempty"` - Optionalgroup *Test_OptionalGroup `protobuf:"group,4,opt,name=OptionalGroup" json:"optionalgroup,omitempty"` - // Types that are valid to be assigned to Union: - // *Test_Number - // *Test_Name - Union isTest_Union `protobuf_oneof:"union"` - XXX_unrecognized []byte `json:"-"` - } - func (m *Test) Reset() { *m = Test{} } - func (m *Test) String() string { return proto.CompactTextString(m) } - func (*Test) ProtoMessage() {} - - type isTest_Union interface { - isTest_Union() - } - - type Test_Number struct { - Number int32 `protobuf:"varint,6,opt,name=number"` - } - type Test_Name struct { - Name string `protobuf:"bytes,7,opt,name=name"` - } - - func (*Test_Number) isTest_Union() {} - func (*Test_Name) isTest_Union() {} - - func (m *Test) GetUnion() isTest_Union { - if m != nil { - return m.Union - } - return nil - } - const Default_Test_Type int32 = 77 - - func (m *Test) GetLabel() string { - if m != nil && m.Label != nil { - return *m.Label - } - return "" - } - - func (m *Test) GetType() int32 { - if m != nil && m.Type != nil { - return *m.Type - } - return Default_Test_Type - } - - func (m *Test) GetOptionalgroup() *Test_OptionalGroup { - if m != nil { - return m.Optionalgroup - } - return nil - } - - type Test_OptionalGroup struct { - RequiredField *string `protobuf:"bytes,5,req" json:"RequiredField,omitempty"` - } - func (m *Test_OptionalGroup) Reset() { *m = Test_OptionalGroup{} } - func (m *Test_OptionalGroup) String() string { return proto.CompactTextString(m) } - - func (m *Test_OptionalGroup) GetRequiredField() string { - if m != nil && m.RequiredField != nil { - return *m.RequiredField - } - return "" - } - - func (m *Test) GetNumber() int32 { - if x, ok := m.GetUnion().(*Test_Number); ok { - return x.Number - } - return 0 - } - - func (m *Test) GetName() string { - if x, ok := m.GetUnion().(*Test_Name); ok { - return x.Name - } - return "" - } - - func init() { - proto.RegisterEnum("example.FOO", FOO_name, FOO_value) - } - -To create and play with a Test object: - - package main - - import ( - "log" - - "github.com/golang/protobuf/proto" - pb "./example.pb" - ) - - func main() { - test := &pb.Test{ - Label: proto.String("hello"), - Type: proto.Int32(17), - Reps: []int64{1, 2, 3}, - Optionalgroup: &pb.Test_OptionalGroup{ - RequiredField: proto.String("good bye"), - }, - Union: &pb.Test_Name{"fred"}, - } - data, err := proto.Marshal(test) - if err != nil { - log.Fatal("marshaling error: ", err) - } - newTest := &pb.Test{} - err = proto.Unmarshal(data, newTest) - if err != nil { - log.Fatal("unmarshaling error: ", err) - } - // Now test and newTest contain the same data. - if test.GetLabel() != newTest.GetLabel() { - log.Fatalf("data mismatch %q != %q", test.GetLabel(), newTest.GetLabel()) - } - // Use a type switch to determine which oneof was set. - switch u := test.Union.(type) { - case *pb.Test_Number: // u.Number contains the number. - case *pb.Test_Name: // u.Name contains the string. - } - // etc. - } -*/ -package proto - -import ( - "encoding/json" - "fmt" - "log" - "reflect" - "sort" - "strconv" - "sync" -) - -// RequiredNotSetError is an error type returned by either Marshal or Unmarshal. -// Marshal reports this when a required field is not initialized. -// Unmarshal reports this when a required field is missing from the wire data. -type RequiredNotSetError struct{ field string } - -func (e *RequiredNotSetError) Error() string { - if e.field == "" { - return fmt.Sprintf("proto: required field not set") - } - return fmt.Sprintf("proto: required field %q not set", e.field) -} -func (e *RequiredNotSetError) RequiredNotSet() bool { - return true -} - -type invalidUTF8Error struct{ field string } - -func (e *invalidUTF8Error) Error() string { - if e.field == "" { - return "proto: invalid UTF-8 detected" - } - return fmt.Sprintf("proto: field %q contains invalid UTF-8", e.field) -} -func (e *invalidUTF8Error) InvalidUTF8() bool { - return true -} - -// errInvalidUTF8 is a sentinel error to identify fields with invalid UTF-8. -// This error should not be exposed to the external API as such errors should -// be recreated with the field information. -var errInvalidUTF8 = &invalidUTF8Error{} - -// isNonFatal reports whether the error is either a RequiredNotSet error -// or a InvalidUTF8 error. -func isNonFatal(err error) bool { - if re, ok := err.(interface{ RequiredNotSet() bool }); ok && re.RequiredNotSet() { - return true - } - if re, ok := err.(interface{ InvalidUTF8() bool }); ok && re.InvalidUTF8() { - return true - } - return false -} - -type nonFatal struct{ E error } - -// Merge merges err into nf and reports whether it was successful. -// Otherwise it returns false for any fatal non-nil errors. -func (nf *nonFatal) Merge(err error) (ok bool) { - if err == nil { - return true // not an error - } - if !isNonFatal(err) { - return false // fatal error - } - if nf.E == nil { - nf.E = err // store first instance of non-fatal error - } - return true -} - -// Message is implemented by generated protocol buffer messages. -type Message interface { - Reset() - String() string - ProtoMessage() -} - -// Stats records allocation details about the protocol buffer encoders -// and decoders. Useful for tuning the library itself. -type Stats struct { - Emalloc uint64 // mallocs in encode - Dmalloc uint64 // mallocs in decode - Encode uint64 // number of encodes - Decode uint64 // number of decodes - Chit uint64 // number of cache hits - Cmiss uint64 // number of cache misses - Size uint64 // number of sizes -} - -// Set to true to enable stats collection. -const collectStats = false - -var stats Stats - -// GetStats returns a copy of the global Stats structure. -func GetStats() Stats { return stats } - -// A Buffer is a buffer manager for marshaling and unmarshaling -// protocol buffers. It may be reused between invocations to -// reduce memory usage. It is not necessary to use a Buffer; -// the global functions Marshal and Unmarshal create a -// temporary Buffer and are fine for most applications. -type Buffer struct { - buf []byte // encode/decode byte stream - index int // read point - - deterministic bool -} - -// NewBuffer allocates a new Buffer and initializes its internal data to -// the contents of the argument slice. -func NewBuffer(e []byte) *Buffer { - return &Buffer{buf: e} -} - -// Reset resets the Buffer, ready for marshaling a new protocol buffer. -func (p *Buffer) Reset() { - p.buf = p.buf[0:0] // for reading/writing - p.index = 0 // for reading -} - -// SetBuf replaces the internal buffer with the slice, -// ready for unmarshaling the contents of the slice. -func (p *Buffer) SetBuf(s []byte) { - p.buf = s - p.index = 0 -} - -// Bytes returns the contents of the Buffer. -func (p *Buffer) Bytes() []byte { return p.buf } - -// SetDeterministic sets whether to use deterministic serialization. -// -// Deterministic serialization guarantees that for a given binary, equal -// messages will always be serialized to the same bytes. This implies: -// -// - Repeated serialization of a message will return the same bytes. -// - Different processes of the same binary (which may be executing on -// different machines) will serialize equal messages to the same bytes. -// -// Note that the deterministic serialization is NOT canonical across -// languages. It is not guaranteed to remain stable over time. It is unstable -// across different builds with schema changes due to unknown fields. -// Users who need canonical serialization (e.g., persistent storage in a -// canonical form, fingerprinting, etc.) should define their own -// canonicalization specification and implement their own serializer rather -// than relying on this API. -// -// If deterministic serialization is requested, map entries will be sorted -// by keys in lexographical order. This is an implementation detail and -// subject to change. -func (p *Buffer) SetDeterministic(deterministic bool) { - p.deterministic = deterministic -} - -/* - * Helper routines for simplifying the creation of optional fields of basic type. - */ - -// Bool is a helper routine that allocates a new bool value -// to store v and returns a pointer to it. -func Bool(v bool) *bool { - return &v -} - -// Int32 is a helper routine that allocates a new int32 value -// to store v and returns a pointer to it. -func Int32(v int32) *int32 { - return &v -} - -// Int is a helper routine that allocates a new int32 value -// to store v and returns a pointer to it, but unlike Int32 -// its argument value is an int. -func Int(v int) *int32 { - p := new(int32) - *p = int32(v) - return p -} - -// Int64 is a helper routine that allocates a new int64 value -// to store v and returns a pointer to it. -func Int64(v int64) *int64 { - return &v -} - -// Float32 is a helper routine that allocates a new float32 value -// to store v and returns a pointer to it. -func Float32(v float32) *float32 { - return &v -} - -// Float64 is a helper routine that allocates a new float64 value -// to store v and returns a pointer to it. -func Float64(v float64) *float64 { - return &v -} - -// Uint32 is a helper routine that allocates a new uint32 value -// to store v and returns a pointer to it. -func Uint32(v uint32) *uint32 { - return &v -} - -// Uint64 is a helper routine that allocates a new uint64 value -// to store v and returns a pointer to it. -func Uint64(v uint64) *uint64 { - return &v -} - -// String is a helper routine that allocates a new string value -// to store v and returns a pointer to it. -func String(v string) *string { - return &v -} - -// EnumName is a helper function to simplify printing protocol buffer enums -// by name. Given an enum map and a value, it returns a useful string. -func EnumName(m map[int32]string, v int32) string { - s, ok := m[v] - if ok { - return s - } - return strconv.Itoa(int(v)) -} - -// UnmarshalJSONEnum is a helper function to simplify recovering enum int values -// from their JSON-encoded representation. Given a map from the enum's symbolic -// names to its int values, and a byte buffer containing the JSON-encoded -// value, it returns an int32 that can be cast to the enum type by the caller. -// -// The function can deal with both JSON representations, numeric and symbolic. -func UnmarshalJSONEnum(m map[string]int32, data []byte, enumName string) (int32, error) { - if data[0] == '"' { - // New style: enums are strings. - var repr string - if err := json.Unmarshal(data, &repr); err != nil { - return -1, err - } - val, ok := m[repr] - if !ok { - return 0, fmt.Errorf("unrecognized enum %s value %q", enumName, repr) - } - return val, nil - } - // Old style: enums are ints. - var val int32 - if err := json.Unmarshal(data, &val); err != nil { - return 0, fmt.Errorf("cannot unmarshal %#q into enum %s", data, enumName) - } - return val, nil -} - -// DebugPrint dumps the encoded data in b in a debugging format with a header -// including the string s. Used in testing but made available for general debugging. -func (p *Buffer) DebugPrint(s string, b []byte) { - var u uint64 - - obuf := p.buf - index := p.index - p.buf = b - p.index = 0 - depth := 0 - - fmt.Printf("\n--- %s ---\n", s) - -out: - for { - for i := 0; i < depth; i++ { - fmt.Print(" ") - } - - index := p.index - if index == len(p.buf) { - break - } - - op, err := p.DecodeVarint() - if err != nil { - fmt.Printf("%3d: fetching op err %v\n", index, err) - break out - } - tag := op >> 3 - wire := op & 7 - - switch wire { - default: - fmt.Printf("%3d: t=%3d unknown wire=%d\n", - index, tag, wire) - break out - - case WireBytes: - var r []byte - - r, err = p.DecodeRawBytes(false) - if err != nil { - break out - } - fmt.Printf("%3d: t=%3d bytes [%d]", index, tag, len(r)) - if len(r) <= 6 { - for i := 0; i < len(r); i++ { - fmt.Printf(" %.2x", r[i]) - } - } else { - for i := 0; i < 3; i++ { - fmt.Printf(" %.2x", r[i]) - } - fmt.Printf(" ..") - for i := len(r) - 3; i < len(r); i++ { - fmt.Printf(" %.2x", r[i]) - } - } - fmt.Printf("\n") - - case WireFixed32: - u, err = p.DecodeFixed32() - if err != nil { - fmt.Printf("%3d: t=%3d fix32 err %v\n", index, tag, err) - break out - } - fmt.Printf("%3d: t=%3d fix32 %d\n", index, tag, u) - - case WireFixed64: - u, err = p.DecodeFixed64() - if err != nil { - fmt.Printf("%3d: t=%3d fix64 err %v\n", index, tag, err) - break out - } - fmt.Printf("%3d: t=%3d fix64 %d\n", index, tag, u) - - case WireVarint: - u, err = p.DecodeVarint() - if err != nil { - fmt.Printf("%3d: t=%3d varint err %v\n", index, tag, err) - break out - } - fmt.Printf("%3d: t=%3d varint %d\n", index, tag, u) - - case WireStartGroup: - fmt.Printf("%3d: t=%3d start\n", index, tag) - depth++ - - case WireEndGroup: - depth-- - fmt.Printf("%3d: t=%3d end\n", index, tag) - } - } - - if depth != 0 { - fmt.Printf("%3d: start-end not balanced %d\n", p.index, depth) - } - fmt.Printf("\n") - - p.buf = obuf - p.index = index -} - -// SetDefaults sets unset protocol buffer fields to their default values. -// It only modifies fields that are both unset and have defined defaults. -// It recursively sets default values in any non-nil sub-messages. -func SetDefaults(pb Message) { - setDefaults(reflect.ValueOf(pb), true, false) -} - -// v is a pointer to a struct. -func setDefaults(v reflect.Value, recur, zeros bool) { - v = v.Elem() - - defaultMu.RLock() - dm, ok := defaults[v.Type()] - defaultMu.RUnlock() - if !ok { - dm = buildDefaultMessage(v.Type()) - defaultMu.Lock() - defaults[v.Type()] = dm - defaultMu.Unlock() - } - - for _, sf := range dm.scalars { - f := v.Field(sf.index) - if !f.IsNil() { - // field already set - continue - } - dv := sf.value - if dv == nil && !zeros { - // no explicit default, and don't want to set zeros - continue - } - fptr := f.Addr().Interface() // **T - // TODO: Consider batching the allocations we do here. - switch sf.kind { - case reflect.Bool: - b := new(bool) - if dv != nil { - *b = dv.(bool) - } - *(fptr.(**bool)) = b - case reflect.Float32: - f := new(float32) - if dv != nil { - *f = dv.(float32) - } - *(fptr.(**float32)) = f - case reflect.Float64: - f := new(float64) - if dv != nil { - *f = dv.(float64) - } - *(fptr.(**float64)) = f - case reflect.Int32: - // might be an enum - if ft := f.Type(); ft != int32PtrType { - // enum - f.Set(reflect.New(ft.Elem())) - if dv != nil { - f.Elem().SetInt(int64(dv.(int32))) - } - } else { - // int32 field - i := new(int32) - if dv != nil { - *i = dv.(int32) - } - *(fptr.(**int32)) = i - } - case reflect.Int64: - i := new(int64) - if dv != nil { - *i = dv.(int64) - } - *(fptr.(**int64)) = i - case reflect.String: - s := new(string) - if dv != nil { - *s = dv.(string) - } - *(fptr.(**string)) = s - case reflect.Uint8: - // exceptional case: []byte - var b []byte - if dv != nil { - db := dv.([]byte) - b = make([]byte, len(db)) - copy(b, db) - } else { - b = []byte{} - } - *(fptr.(*[]byte)) = b - case reflect.Uint32: - u := new(uint32) - if dv != nil { - *u = dv.(uint32) - } - *(fptr.(**uint32)) = u - case reflect.Uint64: - u := new(uint64) - if dv != nil { - *u = dv.(uint64) - } - *(fptr.(**uint64)) = u - default: - log.Printf("proto: can't set default for field %v (sf.kind=%v)", f, sf.kind) - } - } - - for _, ni := range dm.nested { - f := v.Field(ni) - // f is *T or []*T or map[T]*T - switch f.Kind() { - case reflect.Ptr: - if f.IsNil() { - continue - } - setDefaults(f, recur, zeros) - - case reflect.Slice: - for i := 0; i < f.Len(); i++ { - e := f.Index(i) - if e.IsNil() { - continue - } - setDefaults(e, recur, zeros) - } - - case reflect.Map: - for _, k := range f.MapKeys() { - e := f.MapIndex(k) - if e.IsNil() { - continue - } - setDefaults(e, recur, zeros) - } - } - } -} - -var ( - // defaults maps a protocol buffer struct type to a slice of the fields, - // with its scalar fields set to their proto-declared non-zero default values. - defaultMu sync.RWMutex - defaults = make(map[reflect.Type]defaultMessage) - - int32PtrType = reflect.TypeOf((*int32)(nil)) -) - -// defaultMessage represents information about the default values of a message. -type defaultMessage struct { - scalars []scalarField - nested []int // struct field index of nested messages -} - -type scalarField struct { - index int // struct field index - kind reflect.Kind // element type (the T in *T or []T) - value interface{} // the proto-declared default value, or nil -} - -// t is a struct type. -func buildDefaultMessage(t reflect.Type) (dm defaultMessage) { - sprop := GetProperties(t) - for _, prop := range sprop.Prop { - fi, ok := sprop.decoderTags.get(prop.Tag) - if !ok { - // XXX_unrecognized - continue - } - ft := t.Field(fi).Type - - sf, nested, err := fieldDefault(ft, prop) - switch { - case err != nil: - log.Print(err) - case nested: - dm.nested = append(dm.nested, fi) - case sf != nil: - sf.index = fi - dm.scalars = append(dm.scalars, *sf) - } - } - - return dm -} - -// fieldDefault returns the scalarField for field type ft. -// sf will be nil if the field can not have a default. -// nestedMessage will be true if this is a nested message. -// Note that sf.index is not set on return. -func fieldDefault(ft reflect.Type, prop *Properties) (sf *scalarField, nestedMessage bool, err error) { - var canHaveDefault bool - switch ft.Kind() { - case reflect.Ptr: - if ft.Elem().Kind() == reflect.Struct { - nestedMessage = true - } else { - canHaveDefault = true // proto2 scalar field - } - - case reflect.Slice: - switch ft.Elem().Kind() { - case reflect.Ptr: - nestedMessage = true // repeated message - case reflect.Uint8: - canHaveDefault = true // bytes field - } - - case reflect.Map: - if ft.Elem().Kind() == reflect.Ptr { - nestedMessage = true // map with message values - } - } - - if !canHaveDefault { - if nestedMessage { - return nil, true, nil - } - return nil, false, nil - } - - // We now know that ft is a pointer or slice. - sf = &scalarField{kind: ft.Elem().Kind()} - - // scalar fields without defaults - if !prop.HasDefault { - return sf, false, nil - } - - // a scalar field: either *T or []byte - switch ft.Elem().Kind() { - case reflect.Bool: - x, err := strconv.ParseBool(prop.Default) - if err != nil { - return nil, false, fmt.Errorf("proto: bad default bool %q: %v", prop.Default, err) - } - sf.value = x - case reflect.Float32: - x, err := strconv.ParseFloat(prop.Default, 32) - if err != nil { - return nil, false, fmt.Errorf("proto: bad default float32 %q: %v", prop.Default, err) - } - sf.value = float32(x) - case reflect.Float64: - x, err := strconv.ParseFloat(prop.Default, 64) - if err != nil { - return nil, false, fmt.Errorf("proto: bad default float64 %q: %v", prop.Default, err) - } - sf.value = x - case reflect.Int32: - x, err := strconv.ParseInt(prop.Default, 10, 32) - if err != nil { - return nil, false, fmt.Errorf("proto: bad default int32 %q: %v", prop.Default, err) - } - sf.value = int32(x) - case reflect.Int64: - x, err := strconv.ParseInt(prop.Default, 10, 64) - if err != nil { - return nil, false, fmt.Errorf("proto: bad default int64 %q: %v", prop.Default, err) - } - sf.value = x - case reflect.String: - sf.value = prop.Default - case reflect.Uint8: - // []byte (not *uint8) - sf.value = []byte(prop.Default) - case reflect.Uint32: - x, err := strconv.ParseUint(prop.Default, 10, 32) - if err != nil { - return nil, false, fmt.Errorf("proto: bad default uint32 %q: %v", prop.Default, err) - } - sf.value = uint32(x) - case reflect.Uint64: - x, err := strconv.ParseUint(prop.Default, 10, 64) - if err != nil { - return nil, false, fmt.Errorf("proto: bad default uint64 %q: %v", prop.Default, err) - } - sf.value = x - default: - return nil, false, fmt.Errorf("proto: unhandled def kind %v", ft.Elem().Kind()) - } - - return sf, false, nil -} - -// mapKeys returns a sort.Interface to be used for sorting the map keys. -// Map fields may have key types of non-float scalars, strings and enums. -func mapKeys(vs []reflect.Value) sort.Interface { - s := mapKeySorter{vs: vs} - - // Type specialization per https://developers.google.com/protocol-buffers/docs/proto#maps. - if len(vs) == 0 { - return s - } - switch vs[0].Kind() { - case reflect.Int32, reflect.Int64: - s.less = func(a, b reflect.Value) bool { return a.Int() < b.Int() } - case reflect.Uint32, reflect.Uint64: - s.less = func(a, b reflect.Value) bool { return a.Uint() < b.Uint() } - case reflect.Bool: - s.less = func(a, b reflect.Value) bool { return !a.Bool() && b.Bool() } // false < true - case reflect.String: - s.less = func(a, b reflect.Value) bool { return a.String() < b.String() } - default: - panic(fmt.Sprintf("unsupported map key type: %v", vs[0].Kind())) - } - - return s -} - -type mapKeySorter struct { - vs []reflect.Value - less func(a, b reflect.Value) bool -} - -func (s mapKeySorter) Len() int { return len(s.vs) } -func (s mapKeySorter) Swap(i, j int) { s.vs[i], s.vs[j] = s.vs[j], s.vs[i] } -func (s mapKeySorter) Less(i, j int) bool { - return s.less(s.vs[i], s.vs[j]) -} - -// isProto3Zero reports whether v is a zero proto3 value. -func isProto3Zero(v reflect.Value) bool { - switch v.Kind() { - case reflect.Bool: - return !v.Bool() - case reflect.Int32, reflect.Int64: - return v.Int() == 0 - case reflect.Uint32, reflect.Uint64: - return v.Uint() == 0 - case reflect.Float32, reflect.Float64: - return v.Float() == 0 - case reflect.String: - return v.String() == "" - } - return false -} - -// ProtoPackageIsVersion2 is referenced from generated protocol buffer files -// to assert that that code is compatible with this version of the proto package. -const ProtoPackageIsVersion2 = true - -// ProtoPackageIsVersion1 is referenced from generated protocol buffer files -// to assert that that code is compatible with this version of the proto package. -const ProtoPackageIsVersion1 = true - -// InternalMessageInfo is a type used internally by generated .pb.go files. -// This type is not intended to be used by non-generated code. -// This type is not subject to any compatibility guarantee. -type InternalMessageInfo struct { - marshal *marshalInfo - unmarshal *unmarshalInfo - merge *mergeInfo - discard *discardInfo -} diff --git a/vendor/github.com/golang/protobuf/proto/message_set.go b/vendor/github.com/golang/protobuf/proto/message_set.go deleted file mode 100644 index 3b6ca41d..00000000 --- a/vendor/github.com/golang/protobuf/proto/message_set.go +++ /dev/null @@ -1,314 +0,0 @@ -// Go support for Protocol Buffers - Google's data interchange format -// -// Copyright 2010 The Go Authors. All rights reserved. -// https://github.com/golang/protobuf -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - -package proto - -/* - * Support for message sets. - */ - -import ( - "bytes" - "encoding/json" - "errors" - "fmt" - "reflect" - "sort" - "sync" -) - -// errNoMessageTypeID occurs when a protocol buffer does not have a message type ID. -// A message type ID is required for storing a protocol buffer in a message set. -var errNoMessageTypeID = errors.New("proto does not have a message type ID") - -// The first two types (_MessageSet_Item and messageSet) -// model what the protocol compiler produces for the following protocol message: -// message MessageSet { -// repeated group Item = 1 { -// required int32 type_id = 2; -// required string message = 3; -// }; -// } -// That is the MessageSet wire format. We can't use a proto to generate these -// because that would introduce a circular dependency between it and this package. - -type _MessageSet_Item struct { - TypeId *int32 `protobuf:"varint,2,req,name=type_id"` - Message []byte `protobuf:"bytes,3,req,name=message"` -} - -type messageSet struct { - Item []*_MessageSet_Item `protobuf:"group,1,rep"` - XXX_unrecognized []byte - // TODO: caching? -} - -// Make sure messageSet is a Message. -var _ Message = (*messageSet)(nil) - -// messageTypeIder is an interface satisfied by a protocol buffer type -// that may be stored in a MessageSet. -type messageTypeIder interface { - MessageTypeId() int32 -} - -func (ms *messageSet) find(pb Message) *_MessageSet_Item { - mti, ok := pb.(messageTypeIder) - if !ok { - return nil - } - id := mti.MessageTypeId() - for _, item := range ms.Item { - if *item.TypeId == id { - return item - } - } - return nil -} - -func (ms *messageSet) Has(pb Message) bool { - return ms.find(pb) != nil -} - -func (ms *messageSet) Unmarshal(pb Message) error { - if item := ms.find(pb); item != nil { - return Unmarshal(item.Message, pb) - } - if _, ok := pb.(messageTypeIder); !ok { - return errNoMessageTypeID - } - return nil // TODO: return error instead? -} - -func (ms *messageSet) Marshal(pb Message) error { - msg, err := Marshal(pb) - if err != nil { - return err - } - if item := ms.find(pb); item != nil { - // reuse existing item - item.Message = msg - return nil - } - - mti, ok := pb.(messageTypeIder) - if !ok { - return errNoMessageTypeID - } - - mtid := mti.MessageTypeId() - ms.Item = append(ms.Item, &_MessageSet_Item{ - TypeId: &mtid, - Message: msg, - }) - return nil -} - -func (ms *messageSet) Reset() { *ms = messageSet{} } -func (ms *messageSet) String() string { return CompactTextString(ms) } -func (*messageSet) ProtoMessage() {} - -// Support for the message_set_wire_format message option. - -func skipVarint(buf []byte) []byte { - i := 0 - for ; buf[i]&0x80 != 0; i++ { - } - return buf[i+1:] -} - -// MarshalMessageSet encodes the extension map represented by m in the message set wire format. -// It is called by generated Marshal methods on protocol buffer messages with the message_set_wire_format option. -func MarshalMessageSet(exts interface{}) ([]byte, error) { - return marshalMessageSet(exts, false) -} - -// marshaMessageSet implements above function, with the opt to turn on / off deterministic during Marshal. -func marshalMessageSet(exts interface{}, deterministic bool) ([]byte, error) { - switch exts := exts.(type) { - case *XXX_InternalExtensions: - var u marshalInfo - siz := u.sizeMessageSet(exts) - b := make([]byte, 0, siz) - return u.appendMessageSet(b, exts, deterministic) - - case map[int32]Extension: - // This is an old-style extension map. - // Wrap it in a new-style XXX_InternalExtensions. - ie := XXX_InternalExtensions{ - p: &struct { - mu sync.Mutex - extensionMap map[int32]Extension - }{ - extensionMap: exts, - }, - } - - var u marshalInfo - siz := u.sizeMessageSet(&ie) - b := make([]byte, 0, siz) - return u.appendMessageSet(b, &ie, deterministic) - - default: - return nil, errors.New("proto: not an extension map") - } -} - -// UnmarshalMessageSet decodes the extension map encoded in buf in the message set wire format. -// It is called by Unmarshal methods on protocol buffer messages with the message_set_wire_format option. -func UnmarshalMessageSet(buf []byte, exts interface{}) error { - var m map[int32]Extension - switch exts := exts.(type) { - case *XXX_InternalExtensions: - m = exts.extensionsWrite() - case map[int32]Extension: - m = exts - default: - return errors.New("proto: not an extension map") - } - - ms := new(messageSet) - if err := Unmarshal(buf, ms); err != nil { - return err - } - for _, item := range ms.Item { - id := *item.TypeId - msg := item.Message - - // Restore wire type and field number varint, plus length varint. - // Be careful to preserve duplicate items. - b := EncodeVarint(uint64(id)<<3 | WireBytes) - if ext, ok := m[id]; ok { - // Existing data; rip off the tag and length varint - // so we join the new data correctly. - // We can assume that ext.enc is set because we are unmarshaling. - o := ext.enc[len(b):] // skip wire type and field number - _, n := DecodeVarint(o) // calculate length of length varint - o = o[n:] // skip length varint - msg = append(o, msg...) // join old data and new data - } - b = append(b, EncodeVarint(uint64(len(msg)))...) - b = append(b, msg...) - - m[id] = Extension{enc: b} - } - return nil -} - -// MarshalMessageSetJSON encodes the extension map represented by m in JSON format. -// It is called by generated MarshalJSON methods on protocol buffer messages with the message_set_wire_format option. -func MarshalMessageSetJSON(exts interface{}) ([]byte, error) { - var m map[int32]Extension - switch exts := exts.(type) { - case *XXX_InternalExtensions: - var mu sync.Locker - m, mu = exts.extensionsRead() - if m != nil { - // Keep the extensions map locked until we're done marshaling to prevent - // races between marshaling and unmarshaling the lazily-{en,de}coded - // values. - mu.Lock() - defer mu.Unlock() - } - case map[int32]Extension: - m = exts - default: - return nil, errors.New("proto: not an extension map") - } - var b bytes.Buffer - b.WriteByte('{') - - // Process the map in key order for deterministic output. - ids := make([]int32, 0, len(m)) - for id := range m { - ids = append(ids, id) - } - sort.Sort(int32Slice(ids)) // int32Slice defined in text.go - - for i, id := range ids { - ext := m[id] - msd, ok := messageSetMap[id] - if !ok { - // Unknown type; we can't render it, so skip it. - continue - } - - if i > 0 && b.Len() > 1 { - b.WriteByte(',') - } - - fmt.Fprintf(&b, `"[%s]":`, msd.name) - - x := ext.value - if x == nil { - x = reflect.New(msd.t.Elem()).Interface() - if err := Unmarshal(ext.enc, x.(Message)); err != nil { - return nil, err - } - } - d, err := json.Marshal(x) - if err != nil { - return nil, err - } - b.Write(d) - } - b.WriteByte('}') - return b.Bytes(), nil -} - -// UnmarshalMessageSetJSON decodes the extension map encoded in buf in JSON format. -// It is called by generated UnmarshalJSON methods on protocol buffer messages with the message_set_wire_format option. -func UnmarshalMessageSetJSON(buf []byte, exts interface{}) error { - // Common-case fast path. - if len(buf) == 0 || bytes.Equal(buf, []byte("{}")) { - return nil - } - - // This is fairly tricky, and it's not clear that it is needed. - return errors.New("TODO: UnmarshalMessageSetJSON not yet implemented") -} - -// A global registry of types that can be used in a MessageSet. - -var messageSetMap = make(map[int32]messageSetDesc) - -type messageSetDesc struct { - t reflect.Type // pointer to struct - name string -} - -// RegisterMessageSetType is called from the generated code. -func RegisterMessageSetType(m Message, fieldNum int32, name string) { - messageSetMap[fieldNum] = messageSetDesc{ - t: reflect.TypeOf(m), - name: name, - } -} diff --git a/vendor/github.com/golang/protobuf/proto/pointer_reflect.go b/vendor/github.com/golang/protobuf/proto/pointer_reflect.go deleted file mode 100644 index b6cad908..00000000 --- a/vendor/github.com/golang/protobuf/proto/pointer_reflect.go +++ /dev/null @@ -1,357 +0,0 @@ -// Go support for Protocol Buffers - Google's data interchange format -// -// Copyright 2012 The Go Authors. All rights reserved. -// https://github.com/golang/protobuf -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - -// +build purego appengine js - -// This file contains an implementation of proto field accesses using package reflect. -// It is slower than the code in pointer_unsafe.go but it avoids package unsafe and can -// be used on App Engine. - -package proto - -import ( - "reflect" - "sync" -) - -const unsafeAllowed = false - -// A field identifies a field in a struct, accessible from a pointer. -// In this implementation, a field is identified by the sequence of field indices -// passed to reflect's FieldByIndex. -type field []int - -// toField returns a field equivalent to the given reflect field. -func toField(f *reflect.StructField) field { - return f.Index -} - -// invalidField is an invalid field identifier. -var invalidField = field(nil) - -// zeroField is a noop when calling pointer.offset. -var zeroField = field([]int{}) - -// IsValid reports whether the field identifier is valid. -func (f field) IsValid() bool { return f != nil } - -// The pointer type is for the table-driven decoder. -// The implementation here uses a reflect.Value of pointer type to -// create a generic pointer. In pointer_unsafe.go we use unsafe -// instead of reflect to implement the same (but faster) interface. -type pointer struct { - v reflect.Value -} - -// toPointer converts an interface of pointer type to a pointer -// that points to the same target. -func toPointer(i *Message) pointer { - return pointer{v: reflect.ValueOf(*i)} -} - -// toAddrPointer converts an interface to a pointer that points to -// the interface data. -func toAddrPointer(i *interface{}, isptr bool) pointer { - v := reflect.ValueOf(*i) - u := reflect.New(v.Type()) - u.Elem().Set(v) - return pointer{v: u} -} - -// valToPointer converts v to a pointer. v must be of pointer type. -func valToPointer(v reflect.Value) pointer { - return pointer{v: v} -} - -// offset converts from a pointer to a structure to a pointer to -// one of its fields. -func (p pointer) offset(f field) pointer { - return pointer{v: p.v.Elem().FieldByIndex(f).Addr()} -} - -func (p pointer) isNil() bool { - return p.v.IsNil() -} - -// grow updates the slice s in place to make it one element longer. -// s must be addressable. -// Returns the (addressable) new element. -func grow(s reflect.Value) reflect.Value { - n, m := s.Len(), s.Cap() - if n < m { - s.SetLen(n + 1) - } else { - s.Set(reflect.Append(s, reflect.Zero(s.Type().Elem()))) - } - return s.Index(n) -} - -func (p pointer) toInt64() *int64 { - return p.v.Interface().(*int64) -} -func (p pointer) toInt64Ptr() **int64 { - return p.v.Interface().(**int64) -} -func (p pointer) toInt64Slice() *[]int64 { - return p.v.Interface().(*[]int64) -} - -var int32ptr = reflect.TypeOf((*int32)(nil)) - -func (p pointer) toInt32() *int32 { - return p.v.Convert(int32ptr).Interface().(*int32) -} - -// The toInt32Ptr/Slice methods don't work because of enums. -// Instead, we must use set/get methods for the int32ptr/slice case. -/* - func (p pointer) toInt32Ptr() **int32 { - return p.v.Interface().(**int32) -} - func (p pointer) toInt32Slice() *[]int32 { - return p.v.Interface().(*[]int32) -} -*/ -func (p pointer) getInt32Ptr() *int32 { - if p.v.Type().Elem().Elem() == reflect.TypeOf(int32(0)) { - // raw int32 type - return p.v.Elem().Interface().(*int32) - } - // an enum - return p.v.Elem().Convert(int32PtrType).Interface().(*int32) -} -func (p pointer) setInt32Ptr(v int32) { - // Allocate value in a *int32. Possibly convert that to a *enum. - // Then assign it to a **int32 or **enum. - // Note: we can convert *int32 to *enum, but we can't convert - // **int32 to **enum! - p.v.Elem().Set(reflect.ValueOf(&v).Convert(p.v.Type().Elem())) -} - -// getInt32Slice copies []int32 from p as a new slice. -// This behavior differs from the implementation in pointer_unsafe.go. -func (p pointer) getInt32Slice() []int32 { - if p.v.Type().Elem().Elem() == reflect.TypeOf(int32(0)) { - // raw int32 type - return p.v.Elem().Interface().([]int32) - } - // an enum - // Allocate a []int32, then assign []enum's values into it. - // Note: we can't convert []enum to []int32. - slice := p.v.Elem() - s := make([]int32, slice.Len()) - for i := 0; i < slice.Len(); i++ { - s[i] = int32(slice.Index(i).Int()) - } - return s -} - -// setInt32Slice copies []int32 into p as a new slice. -// This behavior differs from the implementation in pointer_unsafe.go. -func (p pointer) setInt32Slice(v []int32) { - if p.v.Type().Elem().Elem() == reflect.TypeOf(int32(0)) { - // raw int32 type - p.v.Elem().Set(reflect.ValueOf(v)) - return - } - // an enum - // Allocate a []enum, then assign []int32's values into it. - // Note: we can't convert []enum to []int32. - slice := reflect.MakeSlice(p.v.Type().Elem(), len(v), cap(v)) - for i, x := range v { - slice.Index(i).SetInt(int64(x)) - } - p.v.Elem().Set(slice) -} -func (p pointer) appendInt32Slice(v int32) { - grow(p.v.Elem()).SetInt(int64(v)) -} - -func (p pointer) toUint64() *uint64 { - return p.v.Interface().(*uint64) -} -func (p pointer) toUint64Ptr() **uint64 { - return p.v.Interface().(**uint64) -} -func (p pointer) toUint64Slice() *[]uint64 { - return p.v.Interface().(*[]uint64) -} -func (p pointer) toUint32() *uint32 { - return p.v.Interface().(*uint32) -} -func (p pointer) toUint32Ptr() **uint32 { - return p.v.Interface().(**uint32) -} -func (p pointer) toUint32Slice() *[]uint32 { - return p.v.Interface().(*[]uint32) -} -func (p pointer) toBool() *bool { - return p.v.Interface().(*bool) -} -func (p pointer) toBoolPtr() **bool { - return p.v.Interface().(**bool) -} -func (p pointer) toBoolSlice() *[]bool { - return p.v.Interface().(*[]bool) -} -func (p pointer) toFloat64() *float64 { - return p.v.Interface().(*float64) -} -func (p pointer) toFloat64Ptr() **float64 { - return p.v.Interface().(**float64) -} -func (p pointer) toFloat64Slice() *[]float64 { - return p.v.Interface().(*[]float64) -} -func (p pointer) toFloat32() *float32 { - return p.v.Interface().(*float32) -} -func (p pointer) toFloat32Ptr() **float32 { - return p.v.Interface().(**float32) -} -func (p pointer) toFloat32Slice() *[]float32 { - return p.v.Interface().(*[]float32) -} -func (p pointer) toString() *string { - return p.v.Interface().(*string) -} -func (p pointer) toStringPtr() **string { - return p.v.Interface().(**string) -} -func (p pointer) toStringSlice() *[]string { - return p.v.Interface().(*[]string) -} -func (p pointer) toBytes() *[]byte { - return p.v.Interface().(*[]byte) -} -func (p pointer) toBytesSlice() *[][]byte { - return p.v.Interface().(*[][]byte) -} -func (p pointer) toExtensions() *XXX_InternalExtensions { - return p.v.Interface().(*XXX_InternalExtensions) -} -func (p pointer) toOldExtensions() *map[int32]Extension { - return p.v.Interface().(*map[int32]Extension) -} -func (p pointer) getPointer() pointer { - return pointer{v: p.v.Elem()} -} -func (p pointer) setPointer(q pointer) { - p.v.Elem().Set(q.v) -} -func (p pointer) appendPointer(q pointer) { - grow(p.v.Elem()).Set(q.v) -} - -// getPointerSlice copies []*T from p as a new []pointer. -// This behavior differs from the implementation in pointer_unsafe.go. -func (p pointer) getPointerSlice() []pointer { - if p.v.IsNil() { - return nil - } - n := p.v.Elem().Len() - s := make([]pointer, n) - for i := 0; i < n; i++ { - s[i] = pointer{v: p.v.Elem().Index(i)} - } - return s -} - -// setPointerSlice copies []pointer into p as a new []*T. -// This behavior differs from the implementation in pointer_unsafe.go. -func (p pointer) setPointerSlice(v []pointer) { - if v == nil { - p.v.Elem().Set(reflect.New(p.v.Elem().Type()).Elem()) - return - } - s := reflect.MakeSlice(p.v.Elem().Type(), 0, len(v)) - for _, p := range v { - s = reflect.Append(s, p.v) - } - p.v.Elem().Set(s) -} - -// getInterfacePointer returns a pointer that points to the -// interface data of the interface pointed by p. -func (p pointer) getInterfacePointer() pointer { - if p.v.Elem().IsNil() { - return pointer{v: p.v.Elem()} - } - return pointer{v: p.v.Elem().Elem().Elem().Field(0).Addr()} // *interface -> interface -> *struct -> struct -} - -func (p pointer) asPointerTo(t reflect.Type) reflect.Value { - // TODO: check that p.v.Type().Elem() == t? - return p.v -} - -func atomicLoadUnmarshalInfo(p **unmarshalInfo) *unmarshalInfo { - atomicLock.Lock() - defer atomicLock.Unlock() - return *p -} -func atomicStoreUnmarshalInfo(p **unmarshalInfo, v *unmarshalInfo) { - atomicLock.Lock() - defer atomicLock.Unlock() - *p = v -} -func atomicLoadMarshalInfo(p **marshalInfo) *marshalInfo { - atomicLock.Lock() - defer atomicLock.Unlock() - return *p -} -func atomicStoreMarshalInfo(p **marshalInfo, v *marshalInfo) { - atomicLock.Lock() - defer atomicLock.Unlock() - *p = v -} -func atomicLoadMergeInfo(p **mergeInfo) *mergeInfo { - atomicLock.Lock() - defer atomicLock.Unlock() - return *p -} -func atomicStoreMergeInfo(p **mergeInfo, v *mergeInfo) { - atomicLock.Lock() - defer atomicLock.Unlock() - *p = v -} -func atomicLoadDiscardInfo(p **discardInfo) *discardInfo { - atomicLock.Lock() - defer atomicLock.Unlock() - return *p -} -func atomicStoreDiscardInfo(p **discardInfo, v *discardInfo) { - atomicLock.Lock() - defer atomicLock.Unlock() - *p = v -} - -var atomicLock sync.Mutex diff --git a/vendor/github.com/golang/protobuf/proto/pointer_unsafe.go b/vendor/github.com/golang/protobuf/proto/pointer_unsafe.go deleted file mode 100644 index d55a335d..00000000 --- a/vendor/github.com/golang/protobuf/proto/pointer_unsafe.go +++ /dev/null @@ -1,308 +0,0 @@ -// Go support for Protocol Buffers - Google's data interchange format -// -// Copyright 2012 The Go Authors. All rights reserved. -// https://github.com/golang/protobuf -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - -// +build !purego,!appengine,!js - -// This file contains the implementation of the proto field accesses using package unsafe. - -package proto - -import ( - "reflect" - "sync/atomic" - "unsafe" -) - -const unsafeAllowed = true - -// A field identifies a field in a struct, accessible from a pointer. -// In this implementation, a field is identified by its byte offset from the start of the struct. -type field uintptr - -// toField returns a field equivalent to the given reflect field. -func toField(f *reflect.StructField) field { - return field(f.Offset) -} - -// invalidField is an invalid field identifier. -const invalidField = ^field(0) - -// zeroField is a noop when calling pointer.offset. -const zeroField = field(0) - -// IsValid reports whether the field identifier is valid. -func (f field) IsValid() bool { - return f != invalidField -} - -// The pointer type below is for the new table-driven encoder/decoder. -// The implementation here uses unsafe.Pointer to create a generic pointer. -// In pointer_reflect.go we use reflect instead of unsafe to implement -// the same (but slower) interface. -type pointer struct { - p unsafe.Pointer -} - -// size of pointer -var ptrSize = unsafe.Sizeof(uintptr(0)) - -// toPointer converts an interface of pointer type to a pointer -// that points to the same target. -func toPointer(i *Message) pointer { - // Super-tricky - read pointer out of data word of interface value. - // Saves ~25ns over the equivalent: - // return valToPointer(reflect.ValueOf(*i)) - return pointer{p: (*[2]unsafe.Pointer)(unsafe.Pointer(i))[1]} -} - -// toAddrPointer converts an interface to a pointer that points to -// the interface data. -func toAddrPointer(i *interface{}, isptr bool) pointer { - // Super-tricky - read or get the address of data word of interface value. - if isptr { - // The interface is of pointer type, thus it is a direct interface. - // The data word is the pointer data itself. We take its address. - return pointer{p: unsafe.Pointer(uintptr(unsafe.Pointer(i)) + ptrSize)} - } - // The interface is not of pointer type. The data word is the pointer - // to the data. - return pointer{p: (*[2]unsafe.Pointer)(unsafe.Pointer(i))[1]} -} - -// valToPointer converts v to a pointer. v must be of pointer type. -func valToPointer(v reflect.Value) pointer { - return pointer{p: unsafe.Pointer(v.Pointer())} -} - -// offset converts from a pointer to a structure to a pointer to -// one of its fields. -func (p pointer) offset(f field) pointer { - // For safety, we should panic if !f.IsValid, however calling panic causes - // this to no longer be inlineable, which is a serious performance cost. - /* - if !f.IsValid() { - panic("invalid field") - } - */ - return pointer{p: unsafe.Pointer(uintptr(p.p) + uintptr(f))} -} - -func (p pointer) isNil() bool { - return p.p == nil -} - -func (p pointer) toInt64() *int64 { - return (*int64)(p.p) -} -func (p pointer) toInt64Ptr() **int64 { - return (**int64)(p.p) -} -func (p pointer) toInt64Slice() *[]int64 { - return (*[]int64)(p.p) -} -func (p pointer) toInt32() *int32 { - return (*int32)(p.p) -} - -// See pointer_reflect.go for why toInt32Ptr/Slice doesn't exist. -/* - func (p pointer) toInt32Ptr() **int32 { - return (**int32)(p.p) - } - func (p pointer) toInt32Slice() *[]int32 { - return (*[]int32)(p.p) - } -*/ -func (p pointer) getInt32Ptr() *int32 { - return *(**int32)(p.p) -} -func (p pointer) setInt32Ptr(v int32) { - *(**int32)(p.p) = &v -} - -// getInt32Slice loads a []int32 from p. -// The value returned is aliased with the original slice. -// This behavior differs from the implementation in pointer_reflect.go. -func (p pointer) getInt32Slice() []int32 { - return *(*[]int32)(p.p) -} - -// setInt32Slice stores a []int32 to p. -// The value set is aliased with the input slice. -// This behavior differs from the implementation in pointer_reflect.go. -func (p pointer) setInt32Slice(v []int32) { - *(*[]int32)(p.p) = v -} - -// TODO: Can we get rid of appendInt32Slice and use setInt32Slice instead? -func (p pointer) appendInt32Slice(v int32) { - s := (*[]int32)(p.p) - *s = append(*s, v) -} - -func (p pointer) toUint64() *uint64 { - return (*uint64)(p.p) -} -func (p pointer) toUint64Ptr() **uint64 { - return (**uint64)(p.p) -} -func (p pointer) toUint64Slice() *[]uint64 { - return (*[]uint64)(p.p) -} -func (p pointer) toUint32() *uint32 { - return (*uint32)(p.p) -} -func (p pointer) toUint32Ptr() **uint32 { - return (**uint32)(p.p) -} -func (p pointer) toUint32Slice() *[]uint32 { - return (*[]uint32)(p.p) -} -func (p pointer) toBool() *bool { - return (*bool)(p.p) -} -func (p pointer) toBoolPtr() **bool { - return (**bool)(p.p) -} -func (p pointer) toBoolSlice() *[]bool { - return (*[]bool)(p.p) -} -func (p pointer) toFloat64() *float64 { - return (*float64)(p.p) -} -func (p pointer) toFloat64Ptr() **float64 { - return (**float64)(p.p) -} -func (p pointer) toFloat64Slice() *[]float64 { - return (*[]float64)(p.p) -} -func (p pointer) toFloat32() *float32 { - return (*float32)(p.p) -} -func (p pointer) toFloat32Ptr() **float32 { - return (**float32)(p.p) -} -func (p pointer) toFloat32Slice() *[]float32 { - return (*[]float32)(p.p) -} -func (p pointer) toString() *string { - return (*string)(p.p) -} -func (p pointer) toStringPtr() **string { - return (**string)(p.p) -} -func (p pointer) toStringSlice() *[]string { - return (*[]string)(p.p) -} -func (p pointer) toBytes() *[]byte { - return (*[]byte)(p.p) -} -func (p pointer) toBytesSlice() *[][]byte { - return (*[][]byte)(p.p) -} -func (p pointer) toExtensions() *XXX_InternalExtensions { - return (*XXX_InternalExtensions)(p.p) -} -func (p pointer) toOldExtensions() *map[int32]Extension { - return (*map[int32]Extension)(p.p) -} - -// getPointerSlice loads []*T from p as a []pointer. -// The value returned is aliased with the original slice. -// This behavior differs from the implementation in pointer_reflect.go. -func (p pointer) getPointerSlice() []pointer { - // Super-tricky - p should point to a []*T where T is a - // message type. We load it as []pointer. - return *(*[]pointer)(p.p) -} - -// setPointerSlice stores []pointer into p as a []*T. -// The value set is aliased with the input slice. -// This behavior differs from the implementation in pointer_reflect.go. -func (p pointer) setPointerSlice(v []pointer) { - // Super-tricky - p should point to a []*T where T is a - // message type. We store it as []pointer. - *(*[]pointer)(p.p) = v -} - -// getPointer loads the pointer at p and returns it. -func (p pointer) getPointer() pointer { - return pointer{p: *(*unsafe.Pointer)(p.p)} -} - -// setPointer stores the pointer q at p. -func (p pointer) setPointer(q pointer) { - *(*unsafe.Pointer)(p.p) = q.p -} - -// append q to the slice pointed to by p. -func (p pointer) appendPointer(q pointer) { - s := (*[]unsafe.Pointer)(p.p) - *s = append(*s, q.p) -} - -// getInterfacePointer returns a pointer that points to the -// interface data of the interface pointed by p. -func (p pointer) getInterfacePointer() pointer { - // Super-tricky - read pointer out of data word of interface value. - return pointer{p: (*(*[2]unsafe.Pointer)(p.p))[1]} -} - -// asPointerTo returns a reflect.Value that is a pointer to an -// object of type t stored at p. -func (p pointer) asPointerTo(t reflect.Type) reflect.Value { - return reflect.NewAt(t, p.p) -} - -func atomicLoadUnmarshalInfo(p **unmarshalInfo) *unmarshalInfo { - return (*unmarshalInfo)(atomic.LoadPointer((*unsafe.Pointer)(unsafe.Pointer(p)))) -} -func atomicStoreUnmarshalInfo(p **unmarshalInfo, v *unmarshalInfo) { - atomic.StorePointer((*unsafe.Pointer)(unsafe.Pointer(p)), unsafe.Pointer(v)) -} -func atomicLoadMarshalInfo(p **marshalInfo) *marshalInfo { - return (*marshalInfo)(atomic.LoadPointer((*unsafe.Pointer)(unsafe.Pointer(p)))) -} -func atomicStoreMarshalInfo(p **marshalInfo, v *marshalInfo) { - atomic.StorePointer((*unsafe.Pointer)(unsafe.Pointer(p)), unsafe.Pointer(v)) -} -func atomicLoadMergeInfo(p **mergeInfo) *mergeInfo { - return (*mergeInfo)(atomic.LoadPointer((*unsafe.Pointer)(unsafe.Pointer(p)))) -} -func atomicStoreMergeInfo(p **mergeInfo, v *mergeInfo) { - atomic.StorePointer((*unsafe.Pointer)(unsafe.Pointer(p)), unsafe.Pointer(v)) -} -func atomicLoadDiscardInfo(p **discardInfo) *discardInfo { - return (*discardInfo)(atomic.LoadPointer((*unsafe.Pointer)(unsafe.Pointer(p)))) -} -func atomicStoreDiscardInfo(p **discardInfo, v *discardInfo) { - atomic.StorePointer((*unsafe.Pointer)(unsafe.Pointer(p)), unsafe.Pointer(v)) -} diff --git a/vendor/github.com/golang/protobuf/proto/properties.go b/vendor/github.com/golang/protobuf/proto/properties.go deleted file mode 100644 index 50b99b83..00000000 --- a/vendor/github.com/golang/protobuf/proto/properties.go +++ /dev/null @@ -1,544 +0,0 @@ -// Go support for Protocol Buffers - Google's data interchange format -// -// Copyright 2010 The Go Authors. All rights reserved. -// https://github.com/golang/protobuf -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - -package proto - -/* - * Routines for encoding data into the wire format for protocol buffers. - */ - -import ( - "fmt" - "log" - "os" - "reflect" - "sort" - "strconv" - "strings" - "sync" -) - -const debug bool = false - -// Constants that identify the encoding of a value on the wire. -const ( - WireVarint = 0 - WireFixed64 = 1 - WireBytes = 2 - WireStartGroup = 3 - WireEndGroup = 4 - WireFixed32 = 5 -) - -// tagMap is an optimization over map[int]int for typical protocol buffer -// use-cases. Encoded protocol buffers are often in tag order with small tag -// numbers. -type tagMap struct { - fastTags []int - slowTags map[int]int -} - -// tagMapFastLimit is the upper bound on the tag number that will be stored in -// the tagMap slice rather than its map. -const tagMapFastLimit = 1024 - -func (p *tagMap) get(t int) (int, bool) { - if t > 0 && t < tagMapFastLimit { - if t >= len(p.fastTags) { - return 0, false - } - fi := p.fastTags[t] - return fi, fi >= 0 - } - fi, ok := p.slowTags[t] - return fi, ok -} - -func (p *tagMap) put(t int, fi int) { - if t > 0 && t < tagMapFastLimit { - for len(p.fastTags) < t+1 { - p.fastTags = append(p.fastTags, -1) - } - p.fastTags[t] = fi - return - } - if p.slowTags == nil { - p.slowTags = make(map[int]int) - } - p.slowTags[t] = fi -} - -// StructProperties represents properties for all the fields of a struct. -// decoderTags and decoderOrigNames should only be used by the decoder. -type StructProperties struct { - Prop []*Properties // properties for each field - reqCount int // required count - decoderTags tagMap // map from proto tag to struct field number - decoderOrigNames map[string]int // map from original name to struct field number - order []int // list of struct field numbers in tag order - - // OneofTypes contains information about the oneof fields in this message. - // It is keyed by the original name of a field. - OneofTypes map[string]*OneofProperties -} - -// OneofProperties represents information about a specific field in a oneof. -type OneofProperties struct { - Type reflect.Type // pointer to generated struct type for this oneof field - Field int // struct field number of the containing oneof in the message - Prop *Properties -} - -// Implement the sorting interface so we can sort the fields in tag order, as recommended by the spec. -// See encode.go, (*Buffer).enc_struct. - -func (sp *StructProperties) Len() int { return len(sp.order) } -func (sp *StructProperties) Less(i, j int) bool { - return sp.Prop[sp.order[i]].Tag < sp.Prop[sp.order[j]].Tag -} -func (sp *StructProperties) Swap(i, j int) { sp.order[i], sp.order[j] = sp.order[j], sp.order[i] } - -// Properties represents the protocol-specific behavior of a single struct field. -type Properties struct { - Name string // name of the field, for error messages - OrigName string // original name before protocol compiler (always set) - JSONName string // name to use for JSON; determined by protoc - Wire string - WireType int - Tag int - Required bool - Optional bool - Repeated bool - Packed bool // relevant for repeated primitives only - Enum string // set for enum types only - proto3 bool // whether this is known to be a proto3 field - oneof bool // whether this is a oneof field - - Default string // default value - HasDefault bool // whether an explicit default was provided - - stype reflect.Type // set for struct types only - sprop *StructProperties // set for struct types only - - mtype reflect.Type // set for map types only - MapKeyProp *Properties // set for map types only - MapValProp *Properties // set for map types only -} - -// String formats the properties in the protobuf struct field tag style. -func (p *Properties) String() string { - s := p.Wire - s += "," - s += strconv.Itoa(p.Tag) - if p.Required { - s += ",req" - } - if p.Optional { - s += ",opt" - } - if p.Repeated { - s += ",rep" - } - if p.Packed { - s += ",packed" - } - s += ",name=" + p.OrigName - if p.JSONName != p.OrigName { - s += ",json=" + p.JSONName - } - if p.proto3 { - s += ",proto3" - } - if p.oneof { - s += ",oneof" - } - if len(p.Enum) > 0 { - s += ",enum=" + p.Enum - } - if p.HasDefault { - s += ",def=" + p.Default - } - return s -} - -// Parse populates p by parsing a string in the protobuf struct field tag style. -func (p *Properties) Parse(s string) { - // "bytes,49,opt,name=foo,def=hello!" - fields := strings.Split(s, ",") // breaks def=, but handled below. - if len(fields) < 2 { - fmt.Fprintf(os.Stderr, "proto: tag has too few fields: %q\n", s) - return - } - - p.Wire = fields[0] - switch p.Wire { - case "varint": - p.WireType = WireVarint - case "fixed32": - p.WireType = WireFixed32 - case "fixed64": - p.WireType = WireFixed64 - case "zigzag32": - p.WireType = WireVarint - case "zigzag64": - p.WireType = WireVarint - case "bytes", "group": - p.WireType = WireBytes - // no numeric converter for non-numeric types - default: - fmt.Fprintf(os.Stderr, "proto: tag has unknown wire type: %q\n", s) - return - } - - var err error - p.Tag, err = strconv.Atoi(fields[1]) - if err != nil { - return - } - -outer: - for i := 2; i < len(fields); i++ { - f := fields[i] - switch { - case f == "req": - p.Required = true - case f == "opt": - p.Optional = true - case f == "rep": - p.Repeated = true - case f == "packed": - p.Packed = true - case strings.HasPrefix(f, "name="): - p.OrigName = f[5:] - case strings.HasPrefix(f, "json="): - p.JSONName = f[5:] - case strings.HasPrefix(f, "enum="): - p.Enum = f[5:] - case f == "proto3": - p.proto3 = true - case f == "oneof": - p.oneof = true - case strings.HasPrefix(f, "def="): - p.HasDefault = true - p.Default = f[4:] // rest of string - if i+1 < len(fields) { - // Commas aren't escaped, and def is always last. - p.Default += "," + strings.Join(fields[i+1:], ",") - break outer - } - } - } -} - -var protoMessageType = reflect.TypeOf((*Message)(nil)).Elem() - -// setFieldProps initializes the field properties for submessages and maps. -func (p *Properties) setFieldProps(typ reflect.Type, f *reflect.StructField, lockGetProp bool) { - switch t1 := typ; t1.Kind() { - case reflect.Ptr: - if t1.Elem().Kind() == reflect.Struct { - p.stype = t1.Elem() - } - - case reflect.Slice: - if t2 := t1.Elem(); t2.Kind() == reflect.Ptr && t2.Elem().Kind() == reflect.Struct { - p.stype = t2.Elem() - } - - case reflect.Map: - p.mtype = t1 - 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.MapValProp.init(vtype, "Value", f.Tag.Get("protobuf_val"), nil, lockGetProp) - } - - if p.stype != nil { - if lockGetProp { - p.sprop = GetProperties(p.stype) - } else { - p.sprop = getPropertiesLocked(p.stype) - } - } -} - -var ( - marshalerType = reflect.TypeOf((*Marshaler)(nil)).Elem() -) - -// 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) -} - -func (p *Properties) init(typ reflect.Type, name, tag string, f *reflect.StructField, lockGetProp bool) { - // "bytes,49,opt,def=hello!" - p.Name = name - p.OrigName = name - if tag == "" { - return - } - p.Parse(tag) - p.setFieldProps(typ, f, lockGetProp) -} - -var ( - propertiesMu sync.RWMutex - propertiesMap = make(map[reflect.Type]*StructProperties) -) - -// GetProperties returns the list of properties for the type represented by t. -// t must represent a generated struct type of a protocol message. -func GetProperties(t reflect.Type) *StructProperties { - if t.Kind() != reflect.Struct { - panic("proto: type must have kind struct") - } - - // Most calls to GetProperties in a long-running program will be - // retrieving details for types we have seen before. - propertiesMu.RLock() - sprop, ok := propertiesMap[t] - propertiesMu.RUnlock() - if ok { - if collectStats { - stats.Chit++ - } - return sprop - } - - propertiesMu.Lock() - sprop = getPropertiesLocked(t) - propertiesMu.Unlock() - return sprop -} - -// getPropertiesLocked requires that propertiesMu is held. -func getPropertiesLocked(t reflect.Type) *StructProperties { - if prop, ok := propertiesMap[t]; ok { - if collectStats { - stats.Chit++ - } - return prop - } - if collectStats { - stats.Cmiss++ - } - - prop := new(StructProperties) - // in case of recursive protos, fill this in now. - propertiesMap[t] = prop - - // build properties - prop.Prop = make([]*Properties, t.NumField()) - prop.order = make([]int, t.NumField()) - - for i := 0; i < t.NumField(); i++ { - f := t.Field(i) - p := new(Properties) - name := f.Name - p.init(f.Type, name, f.Tag.Get("protobuf"), &f, false) - - oneof := f.Tag.Get("protobuf_oneof") // special case - if oneof != "" { - // Oneof fields don't use the traditional protobuf tag. - p.OrigName = oneof - } - prop.Prop[i] = p - prop.order[i] = i - if debug { - print(i, " ", f.Name, " ", t.String(), " ") - if p.Tag > 0 { - print(p.String()) - } - print("\n") - } - } - - // Re-order prop.order. - sort.Sort(prop) - - type oneofMessage interface { - XXX_OneofFuncs() (func(Message, *Buffer) error, func(Message, int, int, *Buffer) (bool, error), func(Message) int, []interface{}) - } - if om, ok := reflect.Zero(reflect.PtrTo(t)).Interface().(oneofMessage); ok { - var oots []interface{} - _, _, _, oots = om.XXX_OneofFuncs() - - // Interpret oneof metadata. - prop.OneofTypes = make(map[string]*OneofProperties) - for _, oot := range oots { - oop := &OneofProperties{ - Type: reflect.ValueOf(oot).Type(), // *T - Prop: new(Properties), - } - sft := oop.Type.Elem().Field(0) - oop.Prop.Name = sft.Name - oop.Prop.Parse(sft.Tag.Get("protobuf")) - // There will be exactly one interface field that - // this new value is assignable to. - for i := 0; i < t.NumField(); i++ { - f := t.Field(i) - if f.Type.Kind() != reflect.Interface { - continue - } - if !oop.Type.AssignableTo(f.Type) { - continue - } - oop.Field = i - break - } - prop.OneofTypes[oop.Prop.OrigName] = oop - } - } - - // build required counts - // build tags - reqCount := 0 - prop.decoderOrigNames = make(map[string]int) - for i, p := range prop.Prop { - if strings.HasPrefix(p.Name, "XXX_") { - // Internal fields should not appear in tags/origNames maps. - // They are handled specially when encoding and decoding. - continue - } - if p.Required { - reqCount++ - } - prop.decoderTags.put(p.Tag, i) - prop.decoderOrigNames[p.OrigName] = i - } - prop.reqCount = reqCount - - return prop -} - -// A global registry of enum types. -// The generated code will register the generated maps by calling RegisterEnum. - -var enumValueMaps = make(map[string]map[string]int32) - -// RegisterEnum is called from the generated code to install the enum descriptor -// maps into the global table to aid parsing text format protocol buffers. -func RegisterEnum(typeName string, unusedNameMap map[int32]string, valueMap map[string]int32) { - if _, ok := enumValueMaps[typeName]; ok { - panic("proto: duplicate enum registered: " + typeName) - } - enumValueMaps[typeName] = valueMap -} - -// EnumValueMap returns the mapping from names to integers of the -// enum type enumType, or a nil if not found. -func EnumValueMap(enumType string) map[string]int32 { - return enumValueMaps[enumType] -} - -// A registry of all linked message types. -// The string is a fully-qualified proto name ("pkg.Message"). -var ( - 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 := protoTypedNils[name]; ok { - // TODO: Some day, make this a panic. - log.Printf("proto: duplicate proto type registered: %s", name) - return - } - t := reflect.TypeOf(x) - 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 { - 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. -// 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] } diff --git a/vendor/github.com/golang/protobuf/proto/table_marshal.go b/vendor/github.com/golang/protobuf/proto/table_marshal.go deleted file mode 100644 index b1679449..00000000 --- a/vendor/github.com/golang/protobuf/proto/table_marshal.go +++ /dev/null @@ -1,2767 +0,0 @@ -// Go support for Protocol Buffers - Google's data interchange format -// -// Copyright 2016 The Go Authors. All rights reserved. -// https://github.com/golang/protobuf -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - -package proto - -import ( - "errors" - "fmt" - "math" - "reflect" - "sort" - "strconv" - "strings" - "sync" - "sync/atomic" - "unicode/utf8" -) - -// a sizer takes a pointer to a field and the size of its tag, computes the size of -// the encoded data. -type sizer func(pointer, int) int - -// a marshaler takes a byte slice, a pointer to a field, and its tag (in wire format), -// marshals the field to the end of the slice, returns the slice and error (if any). -type marshaler func(b []byte, ptr pointer, wiretag uint64, deterministic bool) ([]byte, error) - -// marshalInfo is the information used for marshaling a message. -type marshalInfo struct { - typ reflect.Type - fields []*marshalFieldInfo - unrecognized field // offset of XXX_unrecognized - extensions field // offset of XXX_InternalExtensions - v1extensions field // offset of XXX_extensions - sizecache field // offset of XXX_sizecache - initialized int32 // 0 -- only typ is set, 1 -- fully initialized - messageset bool // uses message set wire format - hasmarshaler bool // has custom marshaler - sync.RWMutex // protect extElems map, also for initialization - extElems map[int32]*marshalElemInfo // info of extension elements -} - -// marshalFieldInfo is the information used for marshaling a field of a message. -type marshalFieldInfo struct { - field field - wiretag uint64 // tag in wire format - tagsize int // size of tag in wire format - sizer sizer - marshaler marshaler - isPointer bool - required bool // field is required - name string // name of the field, for error reporting - oneofElems map[reflect.Type]*marshalElemInfo // info of oneof elements -} - -// marshalElemInfo is the information used for marshaling an extension or oneof element. -type marshalElemInfo struct { - wiretag uint64 // tag in wire format - tagsize int // size of tag in wire format - sizer sizer - marshaler marshaler - isptr bool // elem is pointer typed, thus interface of this type is a direct interface (extension only) -} - -var ( - marshalInfoMap = map[reflect.Type]*marshalInfo{} - marshalInfoLock sync.Mutex -) - -// getMarshalInfo returns the information to marshal a given type of message. -// The info it returns may not necessarily initialized. -// t is the type of the message (NOT the pointer to it). -func getMarshalInfo(t reflect.Type) *marshalInfo { - marshalInfoLock.Lock() - u, ok := marshalInfoMap[t] - if !ok { - u = &marshalInfo{typ: t} - marshalInfoMap[t] = u - } - marshalInfoLock.Unlock() - return u -} - -// Size is the entry point from generated code, -// and should be ONLY called by generated code. -// It computes the size of encoded data of msg. -// a is a pointer to a place to store cached marshal info. -func (a *InternalMessageInfo) Size(msg Message) int { - u := getMessageMarshalInfo(msg, a) - ptr := toPointer(&msg) - if ptr.isNil() { - // We get here if msg is a typed nil ((*SomeMessage)(nil)), - // so it satisfies the interface, and msg == nil wouldn't - // catch it. We don't want crash in this case. - return 0 - } - return u.size(ptr) -} - -// Marshal is the entry point from generated code, -// and should be ONLY called by generated code. -// It marshals msg to the end of b. -// a is a pointer to a place to store cached marshal info. -func (a *InternalMessageInfo) Marshal(b []byte, msg Message, deterministic bool) ([]byte, error) { - u := getMessageMarshalInfo(msg, a) - ptr := toPointer(&msg) - if ptr.isNil() { - // We get here if msg is a typed nil ((*SomeMessage)(nil)), - // so it satisfies the interface, and msg == nil wouldn't - // catch it. We don't want crash in this case. - return b, ErrNil - } - return u.marshal(b, ptr, deterministic) -} - -func getMessageMarshalInfo(msg interface{}, a *InternalMessageInfo) *marshalInfo { - // u := a.marshal, but atomically. - // We use an atomic here to ensure memory consistency. - u := atomicLoadMarshalInfo(&a.marshal) - if u == nil { - // Get marshal information from type of message. - t := reflect.ValueOf(msg).Type() - if t.Kind() != reflect.Ptr { - panic(fmt.Sprintf("cannot handle non-pointer message type %v", t)) - } - u = getMarshalInfo(t.Elem()) - // Store it in the cache for later users. - // a.marshal = u, but atomically. - atomicStoreMarshalInfo(&a.marshal, u) - } - return u -} - -// size is the main function to compute the size of the encoded data of a message. -// ptr is the pointer to the message. -func (u *marshalInfo) size(ptr pointer) int { - if atomic.LoadInt32(&u.initialized) == 0 { - u.computeMarshalInfo() - } - - // If the message can marshal itself, let it do it, for compatibility. - // NOTE: This is not efficient. - if u.hasmarshaler { - m := ptr.asPointerTo(u.typ).Interface().(Marshaler) - b, _ := m.Marshal() - return len(b) - } - - n := 0 - for _, f := range u.fields { - if f.isPointer && ptr.offset(f.field).getPointer().isNil() { - // nil pointer always marshals to nothing - continue - } - n += f.sizer(ptr.offset(f.field), f.tagsize) - } - if u.extensions.IsValid() { - e := ptr.offset(u.extensions).toExtensions() - if u.messageset { - n += u.sizeMessageSet(e) - } else { - n += u.sizeExtensions(e) - } - } - if u.v1extensions.IsValid() { - m := *ptr.offset(u.v1extensions).toOldExtensions() - n += u.sizeV1Extensions(m) - } - if u.unrecognized.IsValid() { - s := *ptr.offset(u.unrecognized).toBytes() - n += len(s) - } - // cache the result for use in marshal - if u.sizecache.IsValid() { - atomic.StoreInt32(ptr.offset(u.sizecache).toInt32(), int32(n)) - } - return n -} - -// cachedsize gets the size from cache. If there is no cache (i.e. message is not generated), -// fall back to compute the size. -func (u *marshalInfo) cachedsize(ptr pointer) int { - if u.sizecache.IsValid() { - return int(atomic.LoadInt32(ptr.offset(u.sizecache).toInt32())) - } - return u.size(ptr) -} - -// marshal is the main function to marshal a message. It takes a byte slice and appends -// the encoded data to the end of the slice, returns the slice and error (if any). -// ptr is the pointer to the message. -// If deterministic is true, map is marshaled in deterministic order. -func (u *marshalInfo) marshal(b []byte, ptr pointer, deterministic bool) ([]byte, error) { - if atomic.LoadInt32(&u.initialized) == 0 { - u.computeMarshalInfo() - } - - // If the message can marshal itself, let it do it, for compatibility. - // NOTE: This is not efficient. - if u.hasmarshaler { - m := ptr.asPointerTo(u.typ).Interface().(Marshaler) - b1, err := m.Marshal() - b = append(b, b1...) - return b, err - } - - var err, errLater error - // The old marshaler encodes extensions at beginning. - if u.extensions.IsValid() { - e := ptr.offset(u.extensions).toExtensions() - if u.messageset { - b, err = u.appendMessageSet(b, e, deterministic) - } else { - b, err = u.appendExtensions(b, e, deterministic) - } - if err != nil { - return b, err - } - } - if u.v1extensions.IsValid() { - m := *ptr.offset(u.v1extensions).toOldExtensions() - b, err = u.appendV1Extensions(b, m, deterministic) - if err != nil { - return b, err - } - } - for _, f := range u.fields { - if f.required { - if ptr.offset(f.field).getPointer().isNil() { - // Required field is not set. - // We record the error but keep going, to give a complete marshaling. - if errLater == nil { - errLater = &RequiredNotSetError{f.name} - } - continue - } - } - if f.isPointer && ptr.offset(f.field).getPointer().isNil() { - // nil pointer always marshals to nothing - continue - } - b, err = f.marshaler(b, ptr.offset(f.field), f.wiretag, deterministic) - if err != nil { - if err1, ok := err.(*RequiredNotSetError); ok { - // Required field in submessage is not set. - // We record the error but keep going, to give a complete marshaling. - if errLater == nil { - errLater = &RequiredNotSetError{f.name + "." + err1.field} - } - continue - } - if err == errRepeatedHasNil { - err = errors.New("proto: repeated field " + f.name + " has nil element") - } - if err == errInvalidUTF8 { - if errLater == nil { - fullName := revProtoTypes[reflect.PtrTo(u.typ)] + "." + f.name - errLater = &invalidUTF8Error{fullName} - } - continue - } - return b, err - } - } - if u.unrecognized.IsValid() { - s := *ptr.offset(u.unrecognized).toBytes() - b = append(b, s...) - } - return b, errLater -} - -// computeMarshalInfo initializes the marshal info. -func (u *marshalInfo) computeMarshalInfo() { - u.Lock() - defer u.Unlock() - if u.initialized != 0 { // non-atomic read is ok as it is protected by the lock - return - } - - t := u.typ - u.unrecognized = invalidField - u.extensions = invalidField - u.v1extensions = invalidField - u.sizecache = invalidField - - // If the message can marshal itself, let it do it, for compatibility. - // NOTE: This is not efficient. - if reflect.PtrTo(t).Implements(marshalerType) { - u.hasmarshaler = true - atomic.StoreInt32(&u.initialized, 1) - return - } - - // get oneof implementers - var oneofImplementers []interface{} - if m, ok := reflect.Zero(reflect.PtrTo(t)).Interface().(oneofMessage); ok { - _, _, _, oneofImplementers = m.XXX_OneofFuncs() - } - - n := t.NumField() - - // deal with XXX fields first - for i := 0; i < t.NumField(); i++ { - f := t.Field(i) - if !strings.HasPrefix(f.Name, "XXX_") { - continue - } - switch f.Name { - case "XXX_sizecache": - u.sizecache = toField(&f) - case "XXX_unrecognized": - u.unrecognized = toField(&f) - case "XXX_InternalExtensions": - u.extensions = toField(&f) - u.messageset = f.Tag.Get("protobuf_messageset") == "1" - case "XXX_extensions": - u.v1extensions = toField(&f) - case "XXX_NoUnkeyedLiteral": - // nothing to do - default: - panic("unknown XXX field: " + f.Name) - } - n-- - } - - // normal fields - fields := make([]marshalFieldInfo, n) // batch allocation - u.fields = make([]*marshalFieldInfo, 0, n) - for i, j := 0, 0; i < t.NumField(); i++ { - f := t.Field(i) - - if strings.HasPrefix(f.Name, "XXX_") { - continue - } - field := &fields[j] - j++ - field.name = f.Name - u.fields = append(u.fields, field) - if f.Tag.Get("protobuf_oneof") != "" { - field.computeOneofFieldInfo(&f, oneofImplementers) - continue - } - if f.Tag.Get("protobuf") == "" { - // field has no tag (not in generated message), ignore it - u.fields = u.fields[:len(u.fields)-1] - j-- - continue - } - field.computeMarshalFieldInfo(&f) - } - - // fields are marshaled in tag order on the wire. - sort.Sort(byTag(u.fields)) - - atomic.StoreInt32(&u.initialized, 1) -} - -// helper for sorting fields by tag -type byTag []*marshalFieldInfo - -func (a byTag) Len() int { return len(a) } -func (a byTag) Swap(i, j int) { a[i], a[j] = a[j], a[i] } -func (a byTag) Less(i, j int) bool { return a[i].wiretag < a[j].wiretag } - -// getExtElemInfo returns the information to marshal an extension element. -// The info it returns is initialized. -func (u *marshalInfo) getExtElemInfo(desc *ExtensionDesc) *marshalElemInfo { - // get from cache first - u.RLock() - e, ok := u.extElems[desc.Field] - u.RUnlock() - if ok { - return e - } - - t := reflect.TypeOf(desc.ExtensionType) // pointer or slice to basic type or struct - tags := strings.Split(desc.Tag, ",") - tag, err := strconv.Atoi(tags[1]) - if err != nil { - panic("tag is not an integer") - } - wt := wiretype(tags[0]) - sizer, marshaler := typeMarshaler(t, tags, false, false) - e = &marshalElemInfo{ - wiretag: uint64(tag)<<3 | wt, - tagsize: SizeVarint(uint64(tag) << 3), - sizer: sizer, - marshaler: marshaler, - isptr: t.Kind() == reflect.Ptr, - } - - // update cache - u.Lock() - if u.extElems == nil { - u.extElems = make(map[int32]*marshalElemInfo) - } - u.extElems[desc.Field] = e - u.Unlock() - return e -} - -// computeMarshalFieldInfo fills up the information to marshal a field. -func (fi *marshalFieldInfo) computeMarshalFieldInfo(f *reflect.StructField) { - // parse protobuf tag of the field. - // tag has format of "bytes,49,opt,name=foo,def=hello!" - tags := strings.Split(f.Tag.Get("protobuf"), ",") - if tags[0] == "" { - return - } - tag, err := strconv.Atoi(tags[1]) - if err != nil { - panic("tag is not an integer") - } - wt := wiretype(tags[0]) - if tags[2] == "req" { - fi.required = true - } - fi.setTag(f, tag, wt) - fi.setMarshaler(f, tags) -} - -func (fi *marshalFieldInfo) computeOneofFieldInfo(f *reflect.StructField, oneofImplementers []interface{}) { - fi.field = toField(f) - fi.wiretag = 1<<31 - 1 // Use a large tag number, make oneofs sorted at the end. This tag will not appear on the wire. - fi.isPointer = true - fi.sizer, fi.marshaler = makeOneOfMarshaler(fi, f) - fi.oneofElems = make(map[reflect.Type]*marshalElemInfo) - - ityp := f.Type // interface type - for _, o := range oneofImplementers { - t := reflect.TypeOf(o) - if !t.Implements(ityp) { - continue - } - sf := t.Elem().Field(0) // oneof implementer is a struct with a single field - tags := strings.Split(sf.Tag.Get("protobuf"), ",") - tag, err := strconv.Atoi(tags[1]) - if err != nil { - panic("tag is not an integer") - } - wt := wiretype(tags[0]) - sizer, marshaler := typeMarshaler(sf.Type, tags, false, true) // oneof should not omit any zero value - fi.oneofElems[t.Elem()] = &marshalElemInfo{ - wiretag: uint64(tag)<<3 | wt, - tagsize: SizeVarint(uint64(tag) << 3), - sizer: sizer, - marshaler: marshaler, - } - } -} - -type oneofMessage interface { - XXX_OneofFuncs() (func(Message, *Buffer) error, func(Message, int, int, *Buffer) (bool, error), func(Message) int, []interface{}) -} - -// wiretype returns the wire encoding of the type. -func wiretype(encoding string) uint64 { - switch encoding { - case "fixed32": - return WireFixed32 - case "fixed64": - return WireFixed64 - case "varint", "zigzag32", "zigzag64": - return WireVarint - case "bytes": - return WireBytes - case "group": - return WireStartGroup - } - panic("unknown wire type " + encoding) -} - -// setTag fills up the tag (in wire format) and its size in the info of a field. -func (fi *marshalFieldInfo) setTag(f *reflect.StructField, tag int, wt uint64) { - fi.field = toField(f) - fi.wiretag = uint64(tag)<<3 | wt - fi.tagsize = SizeVarint(uint64(tag) << 3) -} - -// setMarshaler fills up the sizer and marshaler in the info of a field. -func (fi *marshalFieldInfo) setMarshaler(f *reflect.StructField, tags []string) { - switch f.Type.Kind() { - case reflect.Map: - // map field - fi.isPointer = true - fi.sizer, fi.marshaler = makeMapMarshaler(f) - return - case reflect.Ptr, reflect.Slice: - fi.isPointer = true - } - fi.sizer, fi.marshaler = typeMarshaler(f.Type, tags, true, false) -} - -// typeMarshaler returns the sizer and marshaler of a given field. -// t is the type of the field. -// tags is the generated "protobuf" tag of the field. -// If nozero is true, zero value is not marshaled to the wire. -// If oneof is true, it is a oneof field. -func typeMarshaler(t reflect.Type, tags []string, nozero, oneof bool) (sizer, marshaler) { - encoding := tags[0] - - pointer := false - slice := false - if t.Kind() == reflect.Slice && t.Elem().Kind() != reflect.Uint8 { - slice = true - t = t.Elem() - } - if t.Kind() == reflect.Ptr { - pointer = true - t = t.Elem() - } - - packed := false - proto3 := false - validateUTF8 := true - for i := 2; i < len(tags); i++ { - if tags[i] == "packed" { - packed = true - } - if tags[i] == "proto3" { - proto3 = true - } - } - validateUTF8 = validateUTF8 && proto3 - - switch t.Kind() { - case reflect.Bool: - if pointer { - return sizeBoolPtr, appendBoolPtr - } - if slice { - if packed { - return sizeBoolPackedSlice, appendBoolPackedSlice - } - return sizeBoolSlice, appendBoolSlice - } - if nozero { - return sizeBoolValueNoZero, appendBoolValueNoZero - } - return sizeBoolValue, appendBoolValue - case reflect.Uint32: - switch encoding { - case "fixed32": - if pointer { - return sizeFixed32Ptr, appendFixed32Ptr - } - if slice { - if packed { - return sizeFixed32PackedSlice, appendFixed32PackedSlice - } - return sizeFixed32Slice, appendFixed32Slice - } - if nozero { - return sizeFixed32ValueNoZero, appendFixed32ValueNoZero - } - return sizeFixed32Value, appendFixed32Value - case "varint": - if pointer { - return sizeVarint32Ptr, appendVarint32Ptr - } - if slice { - if packed { - return sizeVarint32PackedSlice, appendVarint32PackedSlice - } - return sizeVarint32Slice, appendVarint32Slice - } - if nozero { - return sizeVarint32ValueNoZero, appendVarint32ValueNoZero - } - return sizeVarint32Value, appendVarint32Value - } - case reflect.Int32: - switch encoding { - case "fixed32": - if pointer { - return sizeFixedS32Ptr, appendFixedS32Ptr - } - if slice { - if packed { - return sizeFixedS32PackedSlice, appendFixedS32PackedSlice - } - return sizeFixedS32Slice, appendFixedS32Slice - } - if nozero { - return sizeFixedS32ValueNoZero, appendFixedS32ValueNoZero - } - return sizeFixedS32Value, appendFixedS32Value - case "varint": - if pointer { - return sizeVarintS32Ptr, appendVarintS32Ptr - } - if slice { - if packed { - return sizeVarintS32PackedSlice, appendVarintS32PackedSlice - } - return sizeVarintS32Slice, appendVarintS32Slice - } - if nozero { - return sizeVarintS32ValueNoZero, appendVarintS32ValueNoZero - } - return sizeVarintS32Value, appendVarintS32Value - case "zigzag32": - if pointer { - return sizeZigzag32Ptr, appendZigzag32Ptr - } - if slice { - if packed { - return sizeZigzag32PackedSlice, appendZigzag32PackedSlice - } - return sizeZigzag32Slice, appendZigzag32Slice - } - if nozero { - return sizeZigzag32ValueNoZero, appendZigzag32ValueNoZero - } - return sizeZigzag32Value, appendZigzag32Value - } - case reflect.Uint64: - switch encoding { - case "fixed64": - if pointer { - return sizeFixed64Ptr, appendFixed64Ptr - } - if slice { - if packed { - return sizeFixed64PackedSlice, appendFixed64PackedSlice - } - return sizeFixed64Slice, appendFixed64Slice - } - if nozero { - return sizeFixed64ValueNoZero, appendFixed64ValueNoZero - } - return sizeFixed64Value, appendFixed64Value - case "varint": - if pointer { - return sizeVarint64Ptr, appendVarint64Ptr - } - if slice { - if packed { - return sizeVarint64PackedSlice, appendVarint64PackedSlice - } - return sizeVarint64Slice, appendVarint64Slice - } - if nozero { - return sizeVarint64ValueNoZero, appendVarint64ValueNoZero - } - return sizeVarint64Value, appendVarint64Value - } - case reflect.Int64: - switch encoding { - case "fixed64": - if pointer { - return sizeFixedS64Ptr, appendFixedS64Ptr - } - if slice { - if packed { - return sizeFixedS64PackedSlice, appendFixedS64PackedSlice - } - return sizeFixedS64Slice, appendFixedS64Slice - } - if nozero { - return sizeFixedS64ValueNoZero, appendFixedS64ValueNoZero - } - return sizeFixedS64Value, appendFixedS64Value - case "varint": - if pointer { - return sizeVarintS64Ptr, appendVarintS64Ptr - } - if slice { - if packed { - return sizeVarintS64PackedSlice, appendVarintS64PackedSlice - } - return sizeVarintS64Slice, appendVarintS64Slice - } - if nozero { - return sizeVarintS64ValueNoZero, appendVarintS64ValueNoZero - } - return sizeVarintS64Value, appendVarintS64Value - case "zigzag64": - if pointer { - return sizeZigzag64Ptr, appendZigzag64Ptr - } - if slice { - if packed { - return sizeZigzag64PackedSlice, appendZigzag64PackedSlice - } - return sizeZigzag64Slice, appendZigzag64Slice - } - if nozero { - return sizeZigzag64ValueNoZero, appendZigzag64ValueNoZero - } - return sizeZigzag64Value, appendZigzag64Value - } - case reflect.Float32: - if pointer { - return sizeFloat32Ptr, appendFloat32Ptr - } - if slice { - if packed { - return sizeFloat32PackedSlice, appendFloat32PackedSlice - } - return sizeFloat32Slice, appendFloat32Slice - } - if nozero { - return sizeFloat32ValueNoZero, appendFloat32ValueNoZero - } - return sizeFloat32Value, appendFloat32Value - case reflect.Float64: - if pointer { - return sizeFloat64Ptr, appendFloat64Ptr - } - if slice { - if packed { - return sizeFloat64PackedSlice, appendFloat64PackedSlice - } - return sizeFloat64Slice, appendFloat64Slice - } - if nozero { - return sizeFloat64ValueNoZero, appendFloat64ValueNoZero - } - return sizeFloat64Value, appendFloat64Value - case reflect.String: - if validateUTF8 { - if pointer { - return sizeStringPtr, appendUTF8StringPtr - } - if slice { - return sizeStringSlice, appendUTF8StringSlice - } - if nozero { - return sizeStringValueNoZero, appendUTF8StringValueNoZero - } - return sizeStringValue, appendUTF8StringValue - } - if pointer { - return sizeStringPtr, appendStringPtr - } - if slice { - return sizeStringSlice, appendStringSlice - } - if nozero { - return sizeStringValueNoZero, appendStringValueNoZero - } - return sizeStringValue, appendStringValue - case reflect.Slice: - if slice { - return sizeBytesSlice, appendBytesSlice - } - if oneof { - // Oneof bytes field may also have "proto3" tag. - // We want to marshal it as a oneof field. Do this - // check before the proto3 check. - return sizeBytesOneof, appendBytesOneof - } - if proto3 { - return sizeBytes3, appendBytes3 - } - return sizeBytes, appendBytes - case reflect.Struct: - switch encoding { - case "group": - if slice { - return makeGroupSliceMarshaler(getMarshalInfo(t)) - } - return makeGroupMarshaler(getMarshalInfo(t)) - case "bytes": - if slice { - return makeMessageSliceMarshaler(getMarshalInfo(t)) - } - return makeMessageMarshaler(getMarshalInfo(t)) - } - } - panic(fmt.Sprintf("unknown or mismatched type: type: %v, wire type: %v", t, encoding)) -} - -// Below are functions to size/marshal a specific type of a field. -// They are stored in the field's info, and called by function pointers. -// They have type sizer or marshaler. - -func sizeFixed32Value(_ pointer, tagsize int) int { - return 4 + tagsize -} -func sizeFixed32ValueNoZero(ptr pointer, tagsize int) int { - v := *ptr.toUint32() - if v == 0 { - return 0 - } - return 4 + tagsize -} -func sizeFixed32Ptr(ptr pointer, tagsize int) int { - p := *ptr.toUint32Ptr() - if p == nil { - return 0 - } - return 4 + tagsize -} -func sizeFixed32Slice(ptr pointer, tagsize int) int { - s := *ptr.toUint32Slice() - return (4 + tagsize) * len(s) -} -func sizeFixed32PackedSlice(ptr pointer, tagsize int) int { - s := *ptr.toUint32Slice() - if len(s) == 0 { - return 0 - } - return 4*len(s) + SizeVarint(uint64(4*len(s))) + tagsize -} -func sizeFixedS32Value(_ pointer, tagsize int) int { - return 4 + tagsize -} -func sizeFixedS32ValueNoZero(ptr pointer, tagsize int) int { - v := *ptr.toInt32() - if v == 0 { - return 0 - } - return 4 + tagsize -} -func sizeFixedS32Ptr(ptr pointer, tagsize int) int { - p := ptr.getInt32Ptr() - if p == nil { - return 0 - } - return 4 + tagsize -} -func sizeFixedS32Slice(ptr pointer, tagsize int) int { - s := ptr.getInt32Slice() - return (4 + tagsize) * len(s) -} -func sizeFixedS32PackedSlice(ptr pointer, tagsize int) int { - s := ptr.getInt32Slice() - if len(s) == 0 { - return 0 - } - return 4*len(s) + SizeVarint(uint64(4*len(s))) + tagsize -} -func sizeFloat32Value(_ pointer, tagsize int) int { - return 4 + tagsize -} -func sizeFloat32ValueNoZero(ptr pointer, tagsize int) int { - v := math.Float32bits(*ptr.toFloat32()) - if v == 0 { - return 0 - } - return 4 + tagsize -} -func sizeFloat32Ptr(ptr pointer, tagsize int) int { - p := *ptr.toFloat32Ptr() - if p == nil { - return 0 - } - return 4 + tagsize -} -func sizeFloat32Slice(ptr pointer, tagsize int) int { - s := *ptr.toFloat32Slice() - return (4 + tagsize) * len(s) -} -func sizeFloat32PackedSlice(ptr pointer, tagsize int) int { - s := *ptr.toFloat32Slice() - if len(s) == 0 { - return 0 - } - return 4*len(s) + SizeVarint(uint64(4*len(s))) + tagsize -} -func sizeFixed64Value(_ pointer, tagsize int) int { - return 8 + tagsize -} -func sizeFixed64ValueNoZero(ptr pointer, tagsize int) int { - v := *ptr.toUint64() - if v == 0 { - return 0 - } - return 8 + tagsize -} -func sizeFixed64Ptr(ptr pointer, tagsize int) int { - p := *ptr.toUint64Ptr() - if p == nil { - return 0 - } - return 8 + tagsize -} -func sizeFixed64Slice(ptr pointer, tagsize int) int { - s := *ptr.toUint64Slice() - return (8 + tagsize) * len(s) -} -func sizeFixed64PackedSlice(ptr pointer, tagsize int) int { - s := *ptr.toUint64Slice() - if len(s) == 0 { - return 0 - } - return 8*len(s) + SizeVarint(uint64(8*len(s))) + tagsize -} -func sizeFixedS64Value(_ pointer, tagsize int) int { - return 8 + tagsize -} -func sizeFixedS64ValueNoZero(ptr pointer, tagsize int) int { - v := *ptr.toInt64() - if v == 0 { - return 0 - } - return 8 + tagsize -} -func sizeFixedS64Ptr(ptr pointer, tagsize int) int { - p := *ptr.toInt64Ptr() - if p == nil { - return 0 - } - return 8 + tagsize -} -func sizeFixedS64Slice(ptr pointer, tagsize int) int { - s := *ptr.toInt64Slice() - return (8 + tagsize) * len(s) -} -func sizeFixedS64PackedSlice(ptr pointer, tagsize int) int { - s := *ptr.toInt64Slice() - if len(s) == 0 { - return 0 - } - return 8*len(s) + SizeVarint(uint64(8*len(s))) + tagsize -} -func sizeFloat64Value(_ pointer, tagsize int) int { - return 8 + tagsize -} -func sizeFloat64ValueNoZero(ptr pointer, tagsize int) int { - v := math.Float64bits(*ptr.toFloat64()) - if v == 0 { - return 0 - } - return 8 + tagsize -} -func sizeFloat64Ptr(ptr pointer, tagsize int) int { - p := *ptr.toFloat64Ptr() - if p == nil { - return 0 - } - return 8 + tagsize -} -func sizeFloat64Slice(ptr pointer, tagsize int) int { - s := *ptr.toFloat64Slice() - return (8 + tagsize) * len(s) -} -func sizeFloat64PackedSlice(ptr pointer, tagsize int) int { - s := *ptr.toFloat64Slice() - if len(s) == 0 { - return 0 - } - return 8*len(s) + SizeVarint(uint64(8*len(s))) + tagsize -} -func sizeVarint32Value(ptr pointer, tagsize int) int { - v := *ptr.toUint32() - return SizeVarint(uint64(v)) + tagsize -} -func sizeVarint32ValueNoZero(ptr pointer, tagsize int) int { - v := *ptr.toUint32() - if v == 0 { - return 0 - } - return SizeVarint(uint64(v)) + tagsize -} -func sizeVarint32Ptr(ptr pointer, tagsize int) int { - p := *ptr.toUint32Ptr() - if p == nil { - return 0 - } - return SizeVarint(uint64(*p)) + tagsize -} -func sizeVarint32Slice(ptr pointer, tagsize int) int { - s := *ptr.toUint32Slice() - n := 0 - for _, v := range s { - n += SizeVarint(uint64(v)) + tagsize - } - return n -} -func sizeVarint32PackedSlice(ptr pointer, tagsize int) int { - s := *ptr.toUint32Slice() - if len(s) == 0 { - return 0 - } - n := 0 - for _, v := range s { - n += SizeVarint(uint64(v)) - } - return n + SizeVarint(uint64(n)) + tagsize -} -func sizeVarintS32Value(ptr pointer, tagsize int) int { - v := *ptr.toInt32() - return SizeVarint(uint64(v)) + tagsize -} -func sizeVarintS32ValueNoZero(ptr pointer, tagsize int) int { - v := *ptr.toInt32() - if v == 0 { - return 0 - } - return SizeVarint(uint64(v)) + tagsize -} -func sizeVarintS32Ptr(ptr pointer, tagsize int) int { - p := ptr.getInt32Ptr() - if p == nil { - return 0 - } - return SizeVarint(uint64(*p)) + tagsize -} -func sizeVarintS32Slice(ptr pointer, tagsize int) int { - s := ptr.getInt32Slice() - n := 0 - for _, v := range s { - n += SizeVarint(uint64(v)) + tagsize - } - return n -} -func sizeVarintS32PackedSlice(ptr pointer, tagsize int) int { - s := ptr.getInt32Slice() - if len(s) == 0 { - return 0 - } - n := 0 - for _, v := range s { - n += SizeVarint(uint64(v)) - } - return n + SizeVarint(uint64(n)) + tagsize -} -func sizeVarint64Value(ptr pointer, tagsize int) int { - v := *ptr.toUint64() - return SizeVarint(v) + tagsize -} -func sizeVarint64ValueNoZero(ptr pointer, tagsize int) int { - v := *ptr.toUint64() - if v == 0 { - return 0 - } - return SizeVarint(v) + tagsize -} -func sizeVarint64Ptr(ptr pointer, tagsize int) int { - p := *ptr.toUint64Ptr() - if p == nil { - return 0 - } - return SizeVarint(*p) + tagsize -} -func sizeVarint64Slice(ptr pointer, tagsize int) int { - s := *ptr.toUint64Slice() - n := 0 - for _, v := range s { - n += SizeVarint(v) + tagsize - } - return n -} -func sizeVarint64PackedSlice(ptr pointer, tagsize int) int { - s := *ptr.toUint64Slice() - if len(s) == 0 { - return 0 - } - n := 0 - for _, v := range s { - n += SizeVarint(v) - } - return n + SizeVarint(uint64(n)) + tagsize -} -func sizeVarintS64Value(ptr pointer, tagsize int) int { - v := *ptr.toInt64() - return SizeVarint(uint64(v)) + tagsize -} -func sizeVarintS64ValueNoZero(ptr pointer, tagsize int) int { - v := *ptr.toInt64() - if v == 0 { - return 0 - } - return SizeVarint(uint64(v)) + tagsize -} -func sizeVarintS64Ptr(ptr pointer, tagsize int) int { - p := *ptr.toInt64Ptr() - if p == nil { - return 0 - } - return SizeVarint(uint64(*p)) + tagsize -} -func sizeVarintS64Slice(ptr pointer, tagsize int) int { - s := *ptr.toInt64Slice() - n := 0 - for _, v := range s { - n += SizeVarint(uint64(v)) + tagsize - } - return n -} -func sizeVarintS64PackedSlice(ptr pointer, tagsize int) int { - s := *ptr.toInt64Slice() - if len(s) == 0 { - return 0 - } - n := 0 - for _, v := range s { - n += SizeVarint(uint64(v)) - } - return n + SizeVarint(uint64(n)) + tagsize -} -func sizeZigzag32Value(ptr pointer, tagsize int) int { - v := *ptr.toInt32() - return SizeVarint(uint64((uint32(v)<<1)^uint32((int32(v)>>31)))) + tagsize -} -func sizeZigzag32ValueNoZero(ptr pointer, tagsize int) int { - v := *ptr.toInt32() - if v == 0 { - return 0 - } - return SizeVarint(uint64((uint32(v)<<1)^uint32((int32(v)>>31)))) + tagsize -} -func sizeZigzag32Ptr(ptr pointer, tagsize int) int { - p := ptr.getInt32Ptr() - if p == nil { - return 0 - } - v := *p - return SizeVarint(uint64((uint32(v)<<1)^uint32((int32(v)>>31)))) + tagsize -} -func sizeZigzag32Slice(ptr pointer, tagsize int) int { - s := ptr.getInt32Slice() - n := 0 - for _, v := range s { - n += SizeVarint(uint64((uint32(v)<<1)^uint32((int32(v)>>31)))) + tagsize - } - return n -} -func sizeZigzag32PackedSlice(ptr pointer, tagsize int) int { - s := ptr.getInt32Slice() - if len(s) == 0 { - return 0 - } - n := 0 - for _, v := range s { - n += SizeVarint(uint64((uint32(v) << 1) ^ uint32((int32(v) >> 31)))) - } - return n + SizeVarint(uint64(n)) + tagsize -} -func sizeZigzag64Value(ptr pointer, tagsize int) int { - v := *ptr.toInt64() - return SizeVarint(uint64(v<<1)^uint64((int64(v)>>63))) + tagsize -} -func sizeZigzag64ValueNoZero(ptr pointer, tagsize int) int { - v := *ptr.toInt64() - if v == 0 { - return 0 - } - return SizeVarint(uint64(v<<1)^uint64((int64(v)>>63))) + tagsize -} -func sizeZigzag64Ptr(ptr pointer, tagsize int) int { - p := *ptr.toInt64Ptr() - if p == nil { - return 0 - } - v := *p - return SizeVarint(uint64(v<<1)^uint64((int64(v)>>63))) + tagsize -} -func sizeZigzag64Slice(ptr pointer, tagsize int) int { - s := *ptr.toInt64Slice() - n := 0 - for _, v := range s { - n += SizeVarint(uint64(v<<1)^uint64((int64(v)>>63))) + tagsize - } - return n -} -func sizeZigzag64PackedSlice(ptr pointer, tagsize int) int { - s := *ptr.toInt64Slice() - if len(s) == 0 { - return 0 - } - n := 0 - for _, v := range s { - n += SizeVarint(uint64(v<<1) ^ uint64((int64(v) >> 63))) - } - return n + SizeVarint(uint64(n)) + tagsize -} -func sizeBoolValue(_ pointer, tagsize int) int { - return 1 + tagsize -} -func sizeBoolValueNoZero(ptr pointer, tagsize int) int { - v := *ptr.toBool() - if !v { - return 0 - } - return 1 + tagsize -} -func sizeBoolPtr(ptr pointer, tagsize int) int { - p := *ptr.toBoolPtr() - if p == nil { - return 0 - } - return 1 + tagsize -} -func sizeBoolSlice(ptr pointer, tagsize int) int { - s := *ptr.toBoolSlice() - return (1 + tagsize) * len(s) -} -func sizeBoolPackedSlice(ptr pointer, tagsize int) int { - s := *ptr.toBoolSlice() - if len(s) == 0 { - return 0 - } - return len(s) + SizeVarint(uint64(len(s))) + tagsize -} -func sizeStringValue(ptr pointer, tagsize int) int { - v := *ptr.toString() - return len(v) + SizeVarint(uint64(len(v))) + tagsize -} -func sizeStringValueNoZero(ptr pointer, tagsize int) int { - v := *ptr.toString() - if v == "" { - return 0 - } - return len(v) + SizeVarint(uint64(len(v))) + tagsize -} -func sizeStringPtr(ptr pointer, tagsize int) int { - p := *ptr.toStringPtr() - if p == nil { - return 0 - } - v := *p - return len(v) + SizeVarint(uint64(len(v))) + tagsize -} -func sizeStringSlice(ptr pointer, tagsize int) int { - s := *ptr.toStringSlice() - n := 0 - for _, v := range s { - n += len(v) + SizeVarint(uint64(len(v))) + tagsize - } - return n -} -func sizeBytes(ptr pointer, tagsize int) int { - v := *ptr.toBytes() - if v == nil { - return 0 - } - return len(v) + SizeVarint(uint64(len(v))) + tagsize -} -func sizeBytes3(ptr pointer, tagsize int) int { - v := *ptr.toBytes() - if len(v) == 0 { - return 0 - } - return len(v) + SizeVarint(uint64(len(v))) + tagsize -} -func sizeBytesOneof(ptr pointer, tagsize int) int { - v := *ptr.toBytes() - return len(v) + SizeVarint(uint64(len(v))) + tagsize -} -func sizeBytesSlice(ptr pointer, tagsize int) int { - s := *ptr.toBytesSlice() - n := 0 - for _, v := range s { - n += len(v) + SizeVarint(uint64(len(v))) + tagsize - } - return n -} - -// appendFixed32 appends an encoded fixed32 to b. -func appendFixed32(b []byte, v uint32) []byte { - b = append(b, - byte(v), - byte(v>>8), - byte(v>>16), - byte(v>>24)) - return b -} - -// appendFixed64 appends an encoded fixed64 to b. -func appendFixed64(b []byte, v uint64) []byte { - b = append(b, - byte(v), - byte(v>>8), - byte(v>>16), - byte(v>>24), - byte(v>>32), - byte(v>>40), - byte(v>>48), - byte(v>>56)) - return b -} - -// appendVarint appends an encoded varint to b. -func appendVarint(b []byte, v uint64) []byte { - // TODO: make 1-byte (maybe 2-byte) case inline-able, once we - // have non-leaf inliner. - switch { - case v < 1<<7: - b = append(b, byte(v)) - case v < 1<<14: - b = append(b, - byte(v&0x7f|0x80), - byte(v>>7)) - case v < 1<<21: - b = append(b, - byte(v&0x7f|0x80), - byte((v>>7)&0x7f|0x80), - byte(v>>14)) - case v < 1<<28: - b = append(b, - byte(v&0x7f|0x80), - byte((v>>7)&0x7f|0x80), - byte((v>>14)&0x7f|0x80), - byte(v>>21)) - case v < 1<<35: - b = append(b, - byte(v&0x7f|0x80), - byte((v>>7)&0x7f|0x80), - byte((v>>14)&0x7f|0x80), - byte((v>>21)&0x7f|0x80), - byte(v>>28)) - case v < 1<<42: - b = append(b, - byte(v&0x7f|0x80), - byte((v>>7)&0x7f|0x80), - byte((v>>14)&0x7f|0x80), - byte((v>>21)&0x7f|0x80), - byte((v>>28)&0x7f|0x80), - byte(v>>35)) - case v < 1<<49: - b = append(b, - byte(v&0x7f|0x80), - byte((v>>7)&0x7f|0x80), - byte((v>>14)&0x7f|0x80), - byte((v>>21)&0x7f|0x80), - byte((v>>28)&0x7f|0x80), - byte((v>>35)&0x7f|0x80), - byte(v>>42)) - case v < 1<<56: - b = append(b, - byte(v&0x7f|0x80), - byte((v>>7)&0x7f|0x80), - byte((v>>14)&0x7f|0x80), - byte((v>>21)&0x7f|0x80), - byte((v>>28)&0x7f|0x80), - byte((v>>35)&0x7f|0x80), - byte((v>>42)&0x7f|0x80), - byte(v>>49)) - case v < 1<<63: - b = append(b, - byte(v&0x7f|0x80), - byte((v>>7)&0x7f|0x80), - byte((v>>14)&0x7f|0x80), - byte((v>>21)&0x7f|0x80), - byte((v>>28)&0x7f|0x80), - byte((v>>35)&0x7f|0x80), - byte((v>>42)&0x7f|0x80), - byte((v>>49)&0x7f|0x80), - byte(v>>56)) - default: - b = append(b, - byte(v&0x7f|0x80), - byte((v>>7)&0x7f|0x80), - byte((v>>14)&0x7f|0x80), - byte((v>>21)&0x7f|0x80), - byte((v>>28)&0x7f|0x80), - byte((v>>35)&0x7f|0x80), - byte((v>>42)&0x7f|0x80), - byte((v>>49)&0x7f|0x80), - byte((v>>56)&0x7f|0x80), - 1) - } - return b -} - -func appendFixed32Value(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toUint32() - b = appendVarint(b, wiretag) - b = appendFixed32(b, v) - return b, nil -} -func appendFixed32ValueNoZero(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toUint32() - if v == 0 { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendFixed32(b, v) - return b, nil -} -func appendFixed32Ptr(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - p := *ptr.toUint32Ptr() - if p == nil { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendFixed32(b, *p) - return b, nil -} -func appendFixed32Slice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toUint32Slice() - for _, v := range s { - b = appendVarint(b, wiretag) - b = appendFixed32(b, v) - } - return b, nil -} -func appendFixed32PackedSlice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toUint32Slice() - if len(s) == 0 { - return b, nil - } - b = appendVarint(b, wiretag&^7|WireBytes) - b = appendVarint(b, uint64(4*len(s))) - for _, v := range s { - b = appendFixed32(b, v) - } - return b, nil -} -func appendFixedS32Value(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toInt32() - b = appendVarint(b, wiretag) - b = appendFixed32(b, uint32(v)) - return b, nil -} -func appendFixedS32ValueNoZero(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toInt32() - if v == 0 { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendFixed32(b, uint32(v)) - return b, nil -} -func appendFixedS32Ptr(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - p := ptr.getInt32Ptr() - if p == nil { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendFixed32(b, uint32(*p)) - return b, nil -} -func appendFixedS32Slice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := ptr.getInt32Slice() - for _, v := range s { - b = appendVarint(b, wiretag) - b = appendFixed32(b, uint32(v)) - } - return b, nil -} -func appendFixedS32PackedSlice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := ptr.getInt32Slice() - if len(s) == 0 { - return b, nil - } - b = appendVarint(b, wiretag&^7|WireBytes) - b = appendVarint(b, uint64(4*len(s))) - for _, v := range s { - b = appendFixed32(b, uint32(v)) - } - return b, nil -} -func appendFloat32Value(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := math.Float32bits(*ptr.toFloat32()) - b = appendVarint(b, wiretag) - b = appendFixed32(b, v) - return b, nil -} -func appendFloat32ValueNoZero(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := math.Float32bits(*ptr.toFloat32()) - if v == 0 { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendFixed32(b, v) - return b, nil -} -func appendFloat32Ptr(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - p := *ptr.toFloat32Ptr() - if p == nil { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendFixed32(b, math.Float32bits(*p)) - return b, nil -} -func appendFloat32Slice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toFloat32Slice() - for _, v := range s { - b = appendVarint(b, wiretag) - b = appendFixed32(b, math.Float32bits(v)) - } - return b, nil -} -func appendFloat32PackedSlice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toFloat32Slice() - if len(s) == 0 { - return b, nil - } - b = appendVarint(b, wiretag&^7|WireBytes) - b = appendVarint(b, uint64(4*len(s))) - for _, v := range s { - b = appendFixed32(b, math.Float32bits(v)) - } - return b, nil -} -func appendFixed64Value(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toUint64() - b = appendVarint(b, wiretag) - b = appendFixed64(b, v) - return b, nil -} -func appendFixed64ValueNoZero(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toUint64() - if v == 0 { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendFixed64(b, v) - return b, nil -} -func appendFixed64Ptr(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - p := *ptr.toUint64Ptr() - if p == nil { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendFixed64(b, *p) - return b, nil -} -func appendFixed64Slice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toUint64Slice() - for _, v := range s { - b = appendVarint(b, wiretag) - b = appendFixed64(b, v) - } - return b, nil -} -func appendFixed64PackedSlice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toUint64Slice() - if len(s) == 0 { - return b, nil - } - b = appendVarint(b, wiretag&^7|WireBytes) - b = appendVarint(b, uint64(8*len(s))) - for _, v := range s { - b = appendFixed64(b, v) - } - return b, nil -} -func appendFixedS64Value(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toInt64() - b = appendVarint(b, wiretag) - b = appendFixed64(b, uint64(v)) - return b, nil -} -func appendFixedS64ValueNoZero(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toInt64() - if v == 0 { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendFixed64(b, uint64(v)) - return b, nil -} -func appendFixedS64Ptr(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - p := *ptr.toInt64Ptr() - if p == nil { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendFixed64(b, uint64(*p)) - return b, nil -} -func appendFixedS64Slice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toInt64Slice() - for _, v := range s { - b = appendVarint(b, wiretag) - b = appendFixed64(b, uint64(v)) - } - return b, nil -} -func appendFixedS64PackedSlice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toInt64Slice() - if len(s) == 0 { - return b, nil - } - b = appendVarint(b, wiretag&^7|WireBytes) - b = appendVarint(b, uint64(8*len(s))) - for _, v := range s { - b = appendFixed64(b, uint64(v)) - } - return b, nil -} -func appendFloat64Value(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := math.Float64bits(*ptr.toFloat64()) - b = appendVarint(b, wiretag) - b = appendFixed64(b, v) - return b, nil -} -func appendFloat64ValueNoZero(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := math.Float64bits(*ptr.toFloat64()) - if v == 0 { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendFixed64(b, v) - return b, nil -} -func appendFloat64Ptr(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - p := *ptr.toFloat64Ptr() - if p == nil { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendFixed64(b, math.Float64bits(*p)) - return b, nil -} -func appendFloat64Slice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toFloat64Slice() - for _, v := range s { - b = appendVarint(b, wiretag) - b = appendFixed64(b, math.Float64bits(v)) - } - return b, nil -} -func appendFloat64PackedSlice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toFloat64Slice() - if len(s) == 0 { - return b, nil - } - b = appendVarint(b, wiretag&^7|WireBytes) - b = appendVarint(b, uint64(8*len(s))) - for _, v := range s { - b = appendFixed64(b, math.Float64bits(v)) - } - return b, nil -} -func appendVarint32Value(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toUint32() - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(v)) - return b, nil -} -func appendVarint32ValueNoZero(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toUint32() - if v == 0 { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(v)) - return b, nil -} -func appendVarint32Ptr(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - p := *ptr.toUint32Ptr() - if p == nil { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(*p)) - return b, nil -} -func appendVarint32Slice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toUint32Slice() - for _, v := range s { - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(v)) - } - return b, nil -} -func appendVarint32PackedSlice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toUint32Slice() - if len(s) == 0 { - return b, nil - } - b = appendVarint(b, wiretag&^7|WireBytes) - // compute size - n := 0 - for _, v := range s { - n += SizeVarint(uint64(v)) - } - b = appendVarint(b, uint64(n)) - for _, v := range s { - b = appendVarint(b, uint64(v)) - } - return b, nil -} -func appendVarintS32Value(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toInt32() - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(v)) - return b, nil -} -func appendVarintS32ValueNoZero(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toInt32() - if v == 0 { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(v)) - return b, nil -} -func appendVarintS32Ptr(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - p := ptr.getInt32Ptr() - if p == nil { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(*p)) - return b, nil -} -func appendVarintS32Slice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := ptr.getInt32Slice() - for _, v := range s { - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(v)) - } - return b, nil -} -func appendVarintS32PackedSlice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := ptr.getInt32Slice() - if len(s) == 0 { - return b, nil - } - b = appendVarint(b, wiretag&^7|WireBytes) - // compute size - n := 0 - for _, v := range s { - n += SizeVarint(uint64(v)) - } - b = appendVarint(b, uint64(n)) - for _, v := range s { - b = appendVarint(b, uint64(v)) - } - return b, nil -} -func appendVarint64Value(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toUint64() - b = appendVarint(b, wiretag) - b = appendVarint(b, v) - return b, nil -} -func appendVarint64ValueNoZero(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toUint64() - if v == 0 { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendVarint(b, v) - return b, nil -} -func appendVarint64Ptr(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - p := *ptr.toUint64Ptr() - if p == nil { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendVarint(b, *p) - return b, nil -} -func appendVarint64Slice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toUint64Slice() - for _, v := range s { - b = appendVarint(b, wiretag) - b = appendVarint(b, v) - } - return b, nil -} -func appendVarint64PackedSlice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toUint64Slice() - if len(s) == 0 { - return b, nil - } - b = appendVarint(b, wiretag&^7|WireBytes) - // compute size - n := 0 - for _, v := range s { - n += SizeVarint(v) - } - b = appendVarint(b, uint64(n)) - for _, v := range s { - b = appendVarint(b, v) - } - return b, nil -} -func appendVarintS64Value(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toInt64() - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(v)) - return b, nil -} -func appendVarintS64ValueNoZero(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toInt64() - if v == 0 { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(v)) - return b, nil -} -func appendVarintS64Ptr(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - p := *ptr.toInt64Ptr() - if p == nil { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(*p)) - return b, nil -} -func appendVarintS64Slice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toInt64Slice() - for _, v := range s { - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(v)) - } - return b, nil -} -func appendVarintS64PackedSlice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toInt64Slice() - if len(s) == 0 { - return b, nil - } - b = appendVarint(b, wiretag&^7|WireBytes) - // compute size - n := 0 - for _, v := range s { - n += SizeVarint(uint64(v)) - } - b = appendVarint(b, uint64(n)) - for _, v := range s { - b = appendVarint(b, uint64(v)) - } - return b, nil -} -func appendZigzag32Value(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toInt32() - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64((uint32(v)<<1)^uint32((int32(v)>>31)))) - return b, nil -} -func appendZigzag32ValueNoZero(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toInt32() - if v == 0 { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64((uint32(v)<<1)^uint32((int32(v)>>31)))) - return b, nil -} -func appendZigzag32Ptr(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - p := ptr.getInt32Ptr() - if p == nil { - return b, nil - } - b = appendVarint(b, wiretag) - v := *p - b = appendVarint(b, uint64((uint32(v)<<1)^uint32((int32(v)>>31)))) - return b, nil -} -func appendZigzag32Slice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := ptr.getInt32Slice() - for _, v := range s { - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64((uint32(v)<<1)^uint32((int32(v)>>31)))) - } - return b, nil -} -func appendZigzag32PackedSlice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := ptr.getInt32Slice() - if len(s) == 0 { - return b, nil - } - b = appendVarint(b, wiretag&^7|WireBytes) - // compute size - n := 0 - for _, v := range s { - n += SizeVarint(uint64((uint32(v) << 1) ^ uint32((int32(v) >> 31)))) - } - b = appendVarint(b, uint64(n)) - for _, v := range s { - b = appendVarint(b, uint64((uint32(v)<<1)^uint32((int32(v)>>31)))) - } - return b, nil -} -func appendZigzag64Value(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toInt64() - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(v<<1)^uint64((int64(v)>>63))) - return b, nil -} -func appendZigzag64ValueNoZero(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toInt64() - if v == 0 { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(v<<1)^uint64((int64(v)>>63))) - return b, nil -} -func appendZigzag64Ptr(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - p := *ptr.toInt64Ptr() - if p == nil { - return b, nil - } - b = appendVarint(b, wiretag) - v := *p - b = appendVarint(b, uint64(v<<1)^uint64((int64(v)>>63))) - return b, nil -} -func appendZigzag64Slice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toInt64Slice() - for _, v := range s { - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(v<<1)^uint64((int64(v)>>63))) - } - return b, nil -} -func appendZigzag64PackedSlice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toInt64Slice() - if len(s) == 0 { - return b, nil - } - b = appendVarint(b, wiretag&^7|WireBytes) - // compute size - n := 0 - for _, v := range s { - n += SizeVarint(uint64(v<<1) ^ uint64((int64(v) >> 63))) - } - b = appendVarint(b, uint64(n)) - for _, v := range s { - b = appendVarint(b, uint64(v<<1)^uint64((int64(v)>>63))) - } - return b, nil -} -func appendBoolValue(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toBool() - b = appendVarint(b, wiretag) - if v { - b = append(b, 1) - } else { - b = append(b, 0) - } - return b, nil -} -func appendBoolValueNoZero(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toBool() - if !v { - return b, nil - } - b = appendVarint(b, wiretag) - b = append(b, 1) - return b, nil -} - -func appendBoolPtr(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - p := *ptr.toBoolPtr() - if p == nil { - return b, nil - } - b = appendVarint(b, wiretag) - if *p { - b = append(b, 1) - } else { - b = append(b, 0) - } - return b, nil -} -func appendBoolSlice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toBoolSlice() - for _, v := range s { - b = appendVarint(b, wiretag) - if v { - b = append(b, 1) - } else { - b = append(b, 0) - } - } - return b, nil -} -func appendBoolPackedSlice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toBoolSlice() - if len(s) == 0 { - return b, nil - } - b = appendVarint(b, wiretag&^7|WireBytes) - b = appendVarint(b, uint64(len(s))) - for _, v := range s { - if v { - b = append(b, 1) - } else { - b = append(b, 0) - } - } - return b, nil -} -func appendStringValue(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toString() - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(len(v))) - b = append(b, v...) - return b, nil -} -func appendStringValueNoZero(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toString() - if v == "" { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(len(v))) - b = append(b, v...) - return b, nil -} -func appendStringPtr(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - p := *ptr.toStringPtr() - if p == nil { - return b, nil - } - v := *p - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(len(v))) - b = append(b, v...) - return b, nil -} -func appendStringSlice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toStringSlice() - for _, v := range s { - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(len(v))) - b = append(b, v...) - } - return b, nil -} -func appendUTF8StringValue(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - var invalidUTF8 bool - v := *ptr.toString() - if !utf8.ValidString(v) { - invalidUTF8 = true - } - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(len(v))) - b = append(b, v...) - if invalidUTF8 { - return b, errInvalidUTF8 - } - return b, nil -} -func appendUTF8StringValueNoZero(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - var invalidUTF8 bool - v := *ptr.toString() - if v == "" { - return b, nil - } - if !utf8.ValidString(v) { - invalidUTF8 = true - } - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(len(v))) - b = append(b, v...) - if invalidUTF8 { - return b, errInvalidUTF8 - } - return b, nil -} -func appendUTF8StringPtr(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - var invalidUTF8 bool - p := *ptr.toStringPtr() - if p == nil { - return b, nil - } - v := *p - if !utf8.ValidString(v) { - invalidUTF8 = true - } - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(len(v))) - b = append(b, v...) - if invalidUTF8 { - return b, errInvalidUTF8 - } - return b, nil -} -func appendUTF8StringSlice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - var invalidUTF8 bool - s := *ptr.toStringSlice() - for _, v := range s { - if !utf8.ValidString(v) { - invalidUTF8 = true - } - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(len(v))) - b = append(b, v...) - } - if invalidUTF8 { - return b, errInvalidUTF8 - } - return b, nil -} -func appendBytes(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toBytes() - if v == nil { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(len(v))) - b = append(b, v...) - return b, nil -} -func appendBytes3(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toBytes() - if len(v) == 0 { - return b, nil - } - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(len(v))) - b = append(b, v...) - return b, nil -} -func appendBytesOneof(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - v := *ptr.toBytes() - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(len(v))) - b = append(b, v...) - return b, nil -} -func appendBytesSlice(b []byte, ptr pointer, wiretag uint64, _ bool) ([]byte, error) { - s := *ptr.toBytesSlice() - for _, v := range s { - b = appendVarint(b, wiretag) - b = appendVarint(b, uint64(len(v))) - b = append(b, v...) - } - return b, nil -} - -// makeGroupMarshaler returns the sizer and marshaler for a group. -// u is the marshal info of the underlying message. -func makeGroupMarshaler(u *marshalInfo) (sizer, marshaler) { - return func(ptr pointer, tagsize int) int { - p := ptr.getPointer() - if p.isNil() { - return 0 - } - return u.size(p) + 2*tagsize - }, - func(b []byte, ptr pointer, wiretag uint64, deterministic bool) ([]byte, error) { - p := ptr.getPointer() - if p.isNil() { - return b, nil - } - var err error - b = appendVarint(b, wiretag) // start group - b, err = u.marshal(b, p, deterministic) - b = appendVarint(b, wiretag+(WireEndGroup-WireStartGroup)) // end group - return b, err - } -} - -// makeGroupSliceMarshaler returns the sizer and marshaler for a group slice. -// u is the marshal info of the underlying message. -func makeGroupSliceMarshaler(u *marshalInfo) (sizer, marshaler) { - return func(ptr pointer, tagsize int) int { - s := ptr.getPointerSlice() - n := 0 - for _, v := range s { - if v.isNil() { - continue - } - n += u.size(v) + 2*tagsize - } - return n - }, - func(b []byte, ptr pointer, wiretag uint64, deterministic bool) ([]byte, error) { - s := ptr.getPointerSlice() - var err error - var nerr nonFatal - for _, v := range s { - if v.isNil() { - return b, errRepeatedHasNil - } - b = appendVarint(b, wiretag) // start group - b, err = u.marshal(b, v, deterministic) - b = appendVarint(b, wiretag+(WireEndGroup-WireStartGroup)) // end group - if !nerr.Merge(err) { - if err == ErrNil { - err = errRepeatedHasNil - } - return b, err - } - } - return b, nerr.E - } -} - -// makeMessageMarshaler returns the sizer and marshaler for a message field. -// u is the marshal info of the message. -func makeMessageMarshaler(u *marshalInfo) (sizer, marshaler) { - return func(ptr pointer, tagsize int) int { - p := ptr.getPointer() - if p.isNil() { - return 0 - } - siz := u.size(p) - return siz + SizeVarint(uint64(siz)) + tagsize - }, - func(b []byte, ptr pointer, wiretag uint64, deterministic bool) ([]byte, error) { - p := ptr.getPointer() - if p.isNil() { - return b, nil - } - b = appendVarint(b, wiretag) - siz := u.cachedsize(p) - b = appendVarint(b, uint64(siz)) - return u.marshal(b, p, deterministic) - } -} - -// makeMessageSliceMarshaler returns the sizer and marshaler for a message slice. -// u is the marshal info of the message. -func makeMessageSliceMarshaler(u *marshalInfo) (sizer, marshaler) { - return func(ptr pointer, tagsize int) int { - s := ptr.getPointerSlice() - n := 0 - for _, v := range s { - if v.isNil() { - continue - } - siz := u.size(v) - n += siz + SizeVarint(uint64(siz)) + tagsize - } - return n - }, - func(b []byte, ptr pointer, wiretag uint64, deterministic bool) ([]byte, error) { - s := ptr.getPointerSlice() - var err error - var nerr nonFatal - for _, v := range s { - if v.isNil() { - return b, errRepeatedHasNil - } - b = appendVarint(b, wiretag) - siz := u.cachedsize(v) - b = appendVarint(b, uint64(siz)) - b, err = u.marshal(b, v, deterministic) - - if !nerr.Merge(err) { - if err == ErrNil { - err = errRepeatedHasNil - } - return b, err - } - } - return b, nerr.E - } -} - -// makeMapMarshaler returns the sizer and marshaler for a map field. -// f is the pointer to the reflect data structure of the field. -func makeMapMarshaler(f *reflect.StructField) (sizer, marshaler) { - // figure out key and value type - t := f.Type - keyType := t.Key() - valType := t.Elem() - keyTags := strings.Split(f.Tag.Get("protobuf_key"), ",") - valTags := strings.Split(f.Tag.Get("protobuf_val"), ",") - keySizer, keyMarshaler := typeMarshaler(keyType, keyTags, false, false) // don't omit zero value in map - valSizer, valMarshaler := typeMarshaler(valType, valTags, false, false) // don't omit zero value in map - keyWireTag := 1<<3 | wiretype(keyTags[0]) - valWireTag := 2<<3 | wiretype(valTags[0]) - - // We create an interface to get the addresses of the map key and value. - // If value is pointer-typed, the interface is a direct interface, the - // idata itself is the value. Otherwise, the idata is the pointer to the - // value. - // Key cannot be pointer-typed. - valIsPtr := valType.Kind() == reflect.Ptr - - // If value is a message with nested maps, calling - // valSizer in marshal may be quadratic. We should use - // cached version in marshal (but not in size). - // If value is not message type, we don't have size cache, - // but it cannot be nested either. Just use valSizer. - valCachedSizer := valSizer - if valIsPtr && valType.Elem().Kind() == reflect.Struct { - u := getMarshalInfo(valType.Elem()) - valCachedSizer = func(ptr pointer, tagsize int) int { - // Same as message sizer, but use cache. - p := ptr.getPointer() - if p.isNil() { - return 0 - } - siz := u.cachedsize(p) - return siz + SizeVarint(uint64(siz)) + tagsize - } - } - return func(ptr pointer, tagsize int) int { - m := ptr.asPointerTo(t).Elem() // the map - n := 0 - for _, k := range m.MapKeys() { - ki := k.Interface() - vi := m.MapIndex(k).Interface() - kaddr := toAddrPointer(&ki, false) // pointer to key - vaddr := toAddrPointer(&vi, valIsPtr) // pointer to value - siz := keySizer(kaddr, 1) + valSizer(vaddr, 1) // tag of key = 1 (size=1), tag of val = 2 (size=1) - n += siz + SizeVarint(uint64(siz)) + tagsize - } - return n - }, - func(b []byte, ptr pointer, tag uint64, deterministic bool) ([]byte, error) { - m := ptr.asPointerTo(t).Elem() // the map - var err error - keys := m.MapKeys() - if len(keys) > 1 && deterministic { - sort.Sort(mapKeys(keys)) - } - - var nerr nonFatal - for _, k := range keys { - ki := k.Interface() - vi := m.MapIndex(k).Interface() - kaddr := toAddrPointer(&ki, false) // pointer to key - vaddr := toAddrPointer(&vi, valIsPtr) // pointer to value - b = appendVarint(b, tag) - siz := keySizer(kaddr, 1) + valCachedSizer(vaddr, 1) // tag of key = 1 (size=1), tag of val = 2 (size=1) - b = appendVarint(b, uint64(siz)) - b, err = keyMarshaler(b, kaddr, keyWireTag, deterministic) - if !nerr.Merge(err) { - return b, err - } - b, err = valMarshaler(b, vaddr, valWireTag, deterministic) - if err != ErrNil && !nerr.Merge(err) { // allow nil value in map - return b, err - } - } - return b, nerr.E - } -} - -// makeOneOfMarshaler returns the sizer and marshaler for a oneof field. -// fi is the marshal info of the field. -// f is the pointer to the reflect data structure of the field. -func makeOneOfMarshaler(fi *marshalFieldInfo, f *reflect.StructField) (sizer, marshaler) { - // Oneof field is an interface. We need to get the actual data type on the fly. - t := f.Type - return func(ptr pointer, _ int) int { - p := ptr.getInterfacePointer() - if p.isNil() { - return 0 - } - v := ptr.asPointerTo(t).Elem().Elem().Elem() // *interface -> interface -> *struct -> struct - telem := v.Type() - e := fi.oneofElems[telem] - return e.sizer(p, e.tagsize) - }, - func(b []byte, ptr pointer, _ uint64, deterministic bool) ([]byte, error) { - p := ptr.getInterfacePointer() - if p.isNil() { - return b, nil - } - v := ptr.asPointerTo(t).Elem().Elem().Elem() // *interface -> interface -> *struct -> struct - telem := v.Type() - if telem.Field(0).Type.Kind() == reflect.Ptr && p.getPointer().isNil() { - return b, errOneofHasNil - } - e := fi.oneofElems[telem] - return e.marshaler(b, p, e.wiretag, deterministic) - } -} - -// sizeExtensions computes the size of encoded data for a XXX_InternalExtensions field. -func (u *marshalInfo) sizeExtensions(ext *XXX_InternalExtensions) int { - m, mu := ext.extensionsRead() - if m == nil { - return 0 - } - mu.Lock() - - n := 0 - for _, e := range m { - if e.value == nil || e.desc == nil { - // Extension is only in its encoded form. - n += len(e.enc) - continue - } - - // We don't skip extensions that have an encoded form set, - // because the extension value may have been mutated after - // the last time this function was called. - ei := u.getExtElemInfo(e.desc) - v := e.value - p := toAddrPointer(&v, ei.isptr) - n += ei.sizer(p, ei.tagsize) - } - mu.Unlock() - return n -} - -// appendExtensions marshals a XXX_InternalExtensions field to the end of byte slice b. -func (u *marshalInfo) appendExtensions(b []byte, ext *XXX_InternalExtensions, deterministic bool) ([]byte, error) { - m, mu := ext.extensionsRead() - if m == nil { - return b, nil - } - mu.Lock() - defer mu.Unlock() - - var err error - var nerr nonFatal - - // Fast-path for common cases: zero or one extensions. - // Don't bother sorting the keys. - if len(m) <= 1 { - for _, e := range m { - if e.value == nil || e.desc == nil { - // Extension is only in its encoded form. - b = append(b, e.enc...) - continue - } - - // We don't skip extensions that have an encoded form set, - // because the extension value may have been mutated after - // the last time this function was called. - - ei := u.getExtElemInfo(e.desc) - v := e.value - p := toAddrPointer(&v, ei.isptr) - b, err = ei.marshaler(b, p, ei.wiretag, deterministic) - if !nerr.Merge(err) { - return b, err - } - } - return b, nerr.E - } - - // Sort the keys to provide a deterministic encoding. - // Not sure this is required, but the old code does it. - keys := make([]int, 0, len(m)) - for k := range m { - keys = append(keys, int(k)) - } - sort.Ints(keys) - - for _, k := range keys { - e := m[int32(k)] - if e.value == nil || e.desc == nil { - // Extension is only in its encoded form. - b = append(b, e.enc...) - continue - } - - // We don't skip extensions that have an encoded form set, - // because the extension value may have been mutated after - // the last time this function was called. - - ei := u.getExtElemInfo(e.desc) - v := e.value - p := toAddrPointer(&v, ei.isptr) - b, err = ei.marshaler(b, p, ei.wiretag, deterministic) - if !nerr.Merge(err) { - return b, err - } - } - return b, nerr.E -} - -// message set format is: -// message MessageSet { -// repeated group Item = 1 { -// required int32 type_id = 2; -// required string message = 3; -// }; -// } - -// sizeMessageSet computes the size of encoded data for a XXX_InternalExtensions field -// in message set format (above). -func (u *marshalInfo) sizeMessageSet(ext *XXX_InternalExtensions) int { - m, mu := ext.extensionsRead() - if m == nil { - return 0 - } - mu.Lock() - - n := 0 - for id, e := range m { - n += 2 // start group, end group. tag = 1 (size=1) - n += SizeVarint(uint64(id)) + 1 // type_id, tag = 2 (size=1) - - if e.value == nil || e.desc == nil { - // Extension is only in its encoded form. - msgWithLen := skipVarint(e.enc) // skip old tag, but leave the length varint - siz := len(msgWithLen) - n += siz + 1 // message, tag = 3 (size=1) - continue - } - - // We don't skip extensions that have an encoded form set, - // because the extension value may have been mutated after - // the last time this function was called. - - ei := u.getExtElemInfo(e.desc) - v := e.value - p := toAddrPointer(&v, ei.isptr) - n += ei.sizer(p, 1) // message, tag = 3 (size=1) - } - mu.Unlock() - return n -} - -// appendMessageSet marshals a XXX_InternalExtensions field in message set format (above) -// to the end of byte slice b. -func (u *marshalInfo) appendMessageSet(b []byte, ext *XXX_InternalExtensions, deterministic bool) ([]byte, error) { - m, mu := ext.extensionsRead() - if m == nil { - return b, nil - } - mu.Lock() - defer mu.Unlock() - - var err error - var nerr nonFatal - - // Fast-path for common cases: zero or one extensions. - // Don't bother sorting the keys. - if len(m) <= 1 { - for id, e := range m { - b = append(b, 1<<3|WireStartGroup) - b = append(b, 2<<3|WireVarint) - b = appendVarint(b, uint64(id)) - - if e.value == nil || e.desc == nil { - // Extension is only in its encoded form. - msgWithLen := skipVarint(e.enc) // skip old tag, but leave the length varint - b = append(b, 3<<3|WireBytes) - b = append(b, msgWithLen...) - b = append(b, 1<<3|WireEndGroup) - continue - } - - // We don't skip extensions that have an encoded form set, - // because the extension value may have been mutated after - // the last time this function was called. - - ei := u.getExtElemInfo(e.desc) - v := e.value - p := toAddrPointer(&v, ei.isptr) - b, err = ei.marshaler(b, p, 3<<3|WireBytes, deterministic) - if !nerr.Merge(err) { - return b, err - } - b = append(b, 1<<3|WireEndGroup) - } - return b, nerr.E - } - - // Sort the keys to provide a deterministic encoding. - keys := make([]int, 0, len(m)) - for k := range m { - keys = append(keys, int(k)) - } - sort.Ints(keys) - - for _, id := range keys { - e := m[int32(id)] - b = append(b, 1<<3|WireStartGroup) - b = append(b, 2<<3|WireVarint) - b = appendVarint(b, uint64(id)) - - if e.value == nil || e.desc == nil { - // Extension is only in its encoded form. - msgWithLen := skipVarint(e.enc) // skip old tag, but leave the length varint - b = append(b, 3<<3|WireBytes) - b = append(b, msgWithLen...) - b = append(b, 1<<3|WireEndGroup) - continue - } - - // We don't skip extensions that have an encoded form set, - // because the extension value may have been mutated after - // the last time this function was called. - - ei := u.getExtElemInfo(e.desc) - v := e.value - p := toAddrPointer(&v, ei.isptr) - b, err = ei.marshaler(b, p, 3<<3|WireBytes, deterministic) - b = append(b, 1<<3|WireEndGroup) - if !nerr.Merge(err) { - return b, err - } - } - return b, nerr.E -} - -// sizeV1Extensions computes the size of encoded data for a V1-API extension field. -func (u *marshalInfo) sizeV1Extensions(m map[int32]Extension) int { - if m == nil { - return 0 - } - - n := 0 - for _, e := range m { - if e.value == nil || e.desc == nil { - // Extension is only in its encoded form. - n += len(e.enc) - continue - } - - // We don't skip extensions that have an encoded form set, - // because the extension value may have been mutated after - // the last time this function was called. - - ei := u.getExtElemInfo(e.desc) - v := e.value - p := toAddrPointer(&v, ei.isptr) - n += ei.sizer(p, ei.tagsize) - } - return n -} - -// appendV1Extensions marshals a V1-API extension field to the end of byte slice b. -func (u *marshalInfo) appendV1Extensions(b []byte, m map[int32]Extension, deterministic bool) ([]byte, error) { - if m == nil { - return b, nil - } - - // Sort the keys to provide a deterministic encoding. - keys := make([]int, 0, len(m)) - for k := range m { - keys = append(keys, int(k)) - } - sort.Ints(keys) - - var err error - var nerr nonFatal - for _, k := range keys { - e := m[int32(k)] - if e.value == nil || e.desc == nil { - // Extension is only in its encoded form. - b = append(b, e.enc...) - continue - } - - // We don't skip extensions that have an encoded form set, - // because the extension value may have been mutated after - // the last time this function was called. - - ei := u.getExtElemInfo(e.desc) - v := e.value - p := toAddrPointer(&v, ei.isptr) - b, err = ei.marshaler(b, p, ei.wiretag, deterministic) - if !nerr.Merge(err) { - return b, err - } - } - return b, nerr.E -} - -// newMarshaler is the interface representing objects that can marshal themselves. -// -// This exists to support protoc-gen-go generated messages. -// The proto package will stop type-asserting to this interface in the future. -// -// DO NOT DEPEND ON THIS. -type newMarshaler interface { - XXX_Size() int - XXX_Marshal(b []byte, deterministic bool) ([]byte, error) -} - -// Size returns the encoded size of a protocol buffer message. -// This is the main entry point. -func Size(pb Message) int { - if m, ok := pb.(newMarshaler); ok { - return m.XXX_Size() - } - if m, ok := pb.(Marshaler); ok { - // If the message can marshal itself, let it do it, for compatibility. - // NOTE: This is not efficient. - b, _ := m.Marshal() - return len(b) - } - // in case somehow we didn't generate the wrapper - if pb == nil { - return 0 - } - var info InternalMessageInfo - return info.Size(pb) -} - -// Marshal takes a protocol buffer message -// and encodes it into the wire format, returning the data. -// This is the main entry point. -func Marshal(pb Message) ([]byte, error) { - if m, ok := pb.(newMarshaler); ok { - siz := m.XXX_Size() - b := make([]byte, 0, siz) - return m.XXX_Marshal(b, false) - } - if m, ok := pb.(Marshaler); ok { - // If the message can marshal itself, let it do it, for compatibility. - // NOTE: This is not efficient. - return m.Marshal() - } - // in case somehow we didn't generate the wrapper - if pb == nil { - return nil, ErrNil - } - var info InternalMessageInfo - siz := info.Size(pb) - b := make([]byte, 0, siz) - return info.Marshal(b, pb, false) -} - -// Marshal takes a protocol buffer message -// and encodes it into the wire format, writing the result to the -// Buffer. -// This is an alternative entry point. It is not necessary to use -// a Buffer for most applications. -func (p *Buffer) Marshal(pb Message) error { - var err error - if m, ok := pb.(newMarshaler); ok { - siz := m.XXX_Size() - p.grow(siz) // make sure buf has enough capacity - p.buf, err = m.XXX_Marshal(p.buf, p.deterministic) - return err - } - if m, ok := pb.(Marshaler); ok { - // If the message can marshal itself, let it do it, for compatibility. - // NOTE: This is not efficient. - b, err := m.Marshal() - p.buf = append(p.buf, b...) - return err - } - // in case somehow we didn't generate the wrapper - if pb == nil { - return ErrNil - } - var info InternalMessageInfo - siz := info.Size(pb) - p.grow(siz) // make sure buf has enough capacity - p.buf, err = info.Marshal(p.buf, pb, p.deterministic) - return err -} - -// grow grows the buffer's capacity, if necessary, to guarantee space for -// another n bytes. After grow(n), at least n bytes can be written to the -// buffer without another allocation. -func (p *Buffer) grow(n int) { - need := len(p.buf) + n - if need <= cap(p.buf) { - return - } - newCap := len(p.buf) * 2 - if newCap < need { - newCap = need - } - p.buf = append(make([]byte, 0, newCap), p.buf...) -} diff --git a/vendor/github.com/golang/protobuf/proto/table_merge.go b/vendor/github.com/golang/protobuf/proto/table_merge.go deleted file mode 100644 index 5525def6..00000000 --- a/vendor/github.com/golang/protobuf/proto/table_merge.go +++ /dev/null @@ -1,654 +0,0 @@ -// Go support for Protocol Buffers - Google's data interchange format -// -// Copyright 2016 The Go Authors. All rights reserved. -// https://github.com/golang/protobuf -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - -package proto - -import ( - "fmt" - "reflect" - "strings" - "sync" - "sync/atomic" -) - -// Merge merges the src message into dst. -// This assumes that dst and src of the same type and are non-nil. -func (a *InternalMessageInfo) Merge(dst, src Message) { - mi := atomicLoadMergeInfo(&a.merge) - if mi == nil { - mi = getMergeInfo(reflect.TypeOf(dst).Elem()) - atomicStoreMergeInfo(&a.merge, mi) - } - mi.merge(toPointer(&dst), toPointer(&src)) -} - -type mergeInfo struct { - typ reflect.Type - - initialized int32 // 0: only typ is valid, 1: everything is valid - lock sync.Mutex - - fields []mergeFieldInfo - unrecognized field // Offset of XXX_unrecognized -} - -type mergeFieldInfo struct { - field field // Offset of field, guaranteed to be valid - - // isPointer reports whether the value in the field is a pointer. - // This is true for the following situations: - // * Pointer to struct - // * Pointer to basic type (proto2 only) - // * Slice (first value in slice header is a pointer) - // * String (first value in string header is a pointer) - isPointer bool - - // basicWidth reports the width of the field assuming that it is directly - // embedded in the struct (as is the case for basic types in proto3). - // The possible values are: - // 0: invalid - // 1: bool - // 4: int32, uint32, float32 - // 8: int64, uint64, float64 - basicWidth int - - // Where dst and src are pointers to the types being merged. - merge func(dst, src pointer) -} - -var ( - mergeInfoMap = map[reflect.Type]*mergeInfo{} - mergeInfoLock sync.Mutex -) - -func getMergeInfo(t reflect.Type) *mergeInfo { - mergeInfoLock.Lock() - defer mergeInfoLock.Unlock() - mi := mergeInfoMap[t] - if mi == nil { - mi = &mergeInfo{typ: t} - mergeInfoMap[t] = mi - } - return mi -} - -// merge merges src into dst assuming they are both of type *mi.typ. -func (mi *mergeInfo) merge(dst, src pointer) { - if dst.isNil() { - panic("proto: nil destination") - } - if src.isNil() { - return // Nothing to do. - } - - if atomic.LoadInt32(&mi.initialized) == 0 { - mi.computeMergeInfo() - } - - for _, fi := range mi.fields { - sfp := src.offset(fi.field) - - // As an optimization, we can avoid the merge function call cost - // if we know for sure that the source will have no effect - // by checking if it is the zero value. - if unsafeAllowed { - if fi.isPointer && sfp.getPointer().isNil() { // Could be slice or string - continue - } - if fi.basicWidth > 0 { - switch { - case fi.basicWidth == 1 && !*sfp.toBool(): - continue - case fi.basicWidth == 4 && *sfp.toUint32() == 0: - continue - case fi.basicWidth == 8 && *sfp.toUint64() == 0: - continue - } - } - } - - dfp := dst.offset(fi.field) - fi.merge(dfp, sfp) - } - - // TODO: Make this faster? - out := dst.asPointerTo(mi.typ).Elem() - in := src.asPointerTo(mi.typ).Elem() - if emIn, err := extendable(in.Addr().Interface()); err == nil { - emOut, _ := extendable(out.Addr().Interface()) - mIn, muIn := emIn.extensionsRead() - if mIn != nil { - mOut := emOut.extensionsWrite() - muIn.Lock() - mergeExtension(mOut, mIn) - muIn.Unlock() - } - } - - if mi.unrecognized.IsValid() { - if b := *src.offset(mi.unrecognized).toBytes(); len(b) > 0 { - *dst.offset(mi.unrecognized).toBytes() = append([]byte(nil), b...) - } - } -} - -func (mi *mergeInfo) computeMergeInfo() { - mi.lock.Lock() - defer mi.lock.Unlock() - if mi.initialized != 0 { - return - } - t := mi.typ - n := t.NumField() - - props := GetProperties(t) - for i := 0; i < n; i++ { - f := t.Field(i) - if strings.HasPrefix(f.Name, "XXX_") { - continue - } - - mfi := mergeFieldInfo{field: toField(&f)} - tf := f.Type - - // As an optimization, we can avoid the merge function call cost - // if we know for sure that the source will have no effect - // by checking if it is the zero value. - if unsafeAllowed { - switch tf.Kind() { - case reflect.Ptr, reflect.Slice, reflect.String: - // As a special case, we assume slices and strings are pointers - // since we know that the first field in the SliceSlice or - // StringHeader is a data pointer. - mfi.isPointer = true - case reflect.Bool: - mfi.basicWidth = 1 - case reflect.Int32, reflect.Uint32, reflect.Float32: - mfi.basicWidth = 4 - case reflect.Int64, reflect.Uint64, reflect.Float64: - mfi.basicWidth = 8 - } - } - - // Unwrap tf to get at its most basic type. - var isPointer, isSlice bool - if tf.Kind() == reflect.Slice && tf.Elem().Kind() != reflect.Uint8 { - isSlice = true - tf = tf.Elem() - } - if tf.Kind() == reflect.Ptr { - isPointer = true - tf = tf.Elem() - } - if isPointer && isSlice && tf.Kind() != reflect.Struct { - panic("both pointer and slice for basic type in " + tf.Name()) - } - - switch tf.Kind() { - case reflect.Int32: - switch { - case isSlice: // E.g., []int32 - mfi.merge = func(dst, src pointer) { - // NOTE: toInt32Slice is not defined (see pointer_reflect.go). - /* - sfsp := src.toInt32Slice() - if *sfsp != nil { - dfsp := dst.toInt32Slice() - *dfsp = append(*dfsp, *sfsp...) - if *dfsp == nil { - *dfsp = []int64{} - } - } - */ - sfs := src.getInt32Slice() - if sfs != nil { - dfs := dst.getInt32Slice() - dfs = append(dfs, sfs...) - if dfs == nil { - dfs = []int32{} - } - dst.setInt32Slice(dfs) - } - } - case isPointer: // E.g., *int32 - mfi.merge = func(dst, src pointer) { - // NOTE: toInt32Ptr is not defined (see pointer_reflect.go). - /* - sfpp := src.toInt32Ptr() - if *sfpp != nil { - dfpp := dst.toInt32Ptr() - if *dfpp == nil { - *dfpp = Int32(**sfpp) - } else { - **dfpp = **sfpp - } - } - */ - sfp := src.getInt32Ptr() - if sfp != nil { - dfp := dst.getInt32Ptr() - if dfp == nil { - dst.setInt32Ptr(*sfp) - } else { - *dfp = *sfp - } - } - } - default: // E.g., int32 - mfi.merge = func(dst, src pointer) { - if v := *src.toInt32(); v != 0 { - *dst.toInt32() = v - } - } - } - case reflect.Int64: - switch { - case isSlice: // E.g., []int64 - mfi.merge = func(dst, src pointer) { - sfsp := src.toInt64Slice() - if *sfsp != nil { - dfsp := dst.toInt64Slice() - *dfsp = append(*dfsp, *sfsp...) - if *dfsp == nil { - *dfsp = []int64{} - } - } - } - case isPointer: // E.g., *int64 - mfi.merge = func(dst, src pointer) { - sfpp := src.toInt64Ptr() - if *sfpp != nil { - dfpp := dst.toInt64Ptr() - if *dfpp == nil { - *dfpp = Int64(**sfpp) - } else { - **dfpp = **sfpp - } - } - } - default: // E.g., int64 - mfi.merge = func(dst, src pointer) { - if v := *src.toInt64(); v != 0 { - *dst.toInt64() = v - } - } - } - case reflect.Uint32: - switch { - case isSlice: // E.g., []uint32 - mfi.merge = func(dst, src pointer) { - sfsp := src.toUint32Slice() - if *sfsp != nil { - dfsp := dst.toUint32Slice() - *dfsp = append(*dfsp, *sfsp...) - if *dfsp == nil { - *dfsp = []uint32{} - } - } - } - case isPointer: // E.g., *uint32 - mfi.merge = func(dst, src pointer) { - sfpp := src.toUint32Ptr() - if *sfpp != nil { - dfpp := dst.toUint32Ptr() - if *dfpp == nil { - *dfpp = Uint32(**sfpp) - } else { - **dfpp = **sfpp - } - } - } - default: // E.g., uint32 - mfi.merge = func(dst, src pointer) { - if v := *src.toUint32(); v != 0 { - *dst.toUint32() = v - } - } - } - case reflect.Uint64: - switch { - case isSlice: // E.g., []uint64 - mfi.merge = func(dst, src pointer) { - sfsp := src.toUint64Slice() - if *sfsp != nil { - dfsp := dst.toUint64Slice() - *dfsp = append(*dfsp, *sfsp...) - if *dfsp == nil { - *dfsp = []uint64{} - } - } - } - case isPointer: // E.g., *uint64 - mfi.merge = func(dst, src pointer) { - sfpp := src.toUint64Ptr() - if *sfpp != nil { - dfpp := dst.toUint64Ptr() - if *dfpp == nil { - *dfpp = Uint64(**sfpp) - } else { - **dfpp = **sfpp - } - } - } - default: // E.g., uint64 - mfi.merge = func(dst, src pointer) { - if v := *src.toUint64(); v != 0 { - *dst.toUint64() = v - } - } - } - case reflect.Float32: - switch { - case isSlice: // E.g., []float32 - mfi.merge = func(dst, src pointer) { - sfsp := src.toFloat32Slice() - if *sfsp != nil { - dfsp := dst.toFloat32Slice() - *dfsp = append(*dfsp, *sfsp...) - if *dfsp == nil { - *dfsp = []float32{} - } - } - } - case isPointer: // E.g., *float32 - mfi.merge = func(dst, src pointer) { - sfpp := src.toFloat32Ptr() - if *sfpp != nil { - dfpp := dst.toFloat32Ptr() - if *dfpp == nil { - *dfpp = Float32(**sfpp) - } else { - **dfpp = **sfpp - } - } - } - default: // E.g., float32 - mfi.merge = func(dst, src pointer) { - if v := *src.toFloat32(); v != 0 { - *dst.toFloat32() = v - } - } - } - case reflect.Float64: - switch { - case isSlice: // E.g., []float64 - mfi.merge = func(dst, src pointer) { - sfsp := src.toFloat64Slice() - if *sfsp != nil { - dfsp := dst.toFloat64Slice() - *dfsp = append(*dfsp, *sfsp...) - if *dfsp == nil { - *dfsp = []float64{} - } - } - } - case isPointer: // E.g., *float64 - mfi.merge = func(dst, src pointer) { - sfpp := src.toFloat64Ptr() - if *sfpp != nil { - dfpp := dst.toFloat64Ptr() - if *dfpp == nil { - *dfpp = Float64(**sfpp) - } else { - **dfpp = **sfpp - } - } - } - default: // E.g., float64 - mfi.merge = func(dst, src pointer) { - if v := *src.toFloat64(); v != 0 { - *dst.toFloat64() = v - } - } - } - case reflect.Bool: - switch { - case isSlice: // E.g., []bool - mfi.merge = func(dst, src pointer) { - sfsp := src.toBoolSlice() - if *sfsp != nil { - dfsp := dst.toBoolSlice() - *dfsp = append(*dfsp, *sfsp...) - if *dfsp == nil { - *dfsp = []bool{} - } - } - } - case isPointer: // E.g., *bool - mfi.merge = func(dst, src pointer) { - sfpp := src.toBoolPtr() - if *sfpp != nil { - dfpp := dst.toBoolPtr() - if *dfpp == nil { - *dfpp = Bool(**sfpp) - } else { - **dfpp = **sfpp - } - } - } - default: // E.g., bool - mfi.merge = func(dst, src pointer) { - if v := *src.toBool(); v { - *dst.toBool() = v - } - } - } - case reflect.String: - switch { - case isSlice: // E.g., []string - mfi.merge = func(dst, src pointer) { - sfsp := src.toStringSlice() - if *sfsp != nil { - dfsp := dst.toStringSlice() - *dfsp = append(*dfsp, *sfsp...) - if *dfsp == nil { - *dfsp = []string{} - } - } - } - case isPointer: // E.g., *string - mfi.merge = func(dst, src pointer) { - sfpp := src.toStringPtr() - if *sfpp != nil { - dfpp := dst.toStringPtr() - if *dfpp == nil { - *dfpp = String(**sfpp) - } else { - **dfpp = **sfpp - } - } - } - default: // E.g., string - mfi.merge = func(dst, src pointer) { - if v := *src.toString(); v != "" { - *dst.toString() = v - } - } - } - case reflect.Slice: - isProto3 := props.Prop[i].proto3 - switch { - case isPointer: - panic("bad pointer in byte slice case in " + tf.Name()) - case tf.Elem().Kind() != reflect.Uint8: - panic("bad element kind in byte slice case in " + tf.Name()) - case isSlice: // E.g., [][]byte - mfi.merge = func(dst, src pointer) { - sbsp := src.toBytesSlice() - if *sbsp != nil { - dbsp := dst.toBytesSlice() - for _, sb := range *sbsp { - if sb == nil { - *dbsp = append(*dbsp, nil) - } else { - *dbsp = append(*dbsp, append([]byte{}, sb...)) - } - } - if *dbsp == nil { - *dbsp = [][]byte{} - } - } - } - default: // E.g., []byte - mfi.merge = func(dst, src pointer) { - sbp := src.toBytes() - if *sbp != nil { - dbp := dst.toBytes() - if !isProto3 || len(*sbp) > 0 { - *dbp = append([]byte{}, *sbp...) - } - } - } - } - case reflect.Struct: - switch { - case !isPointer: - panic(fmt.Sprintf("message field %s without pointer", tf)) - case isSlice: // E.g., []*pb.T - mi := getMergeInfo(tf) - mfi.merge = func(dst, src pointer) { - sps := src.getPointerSlice() - if sps != nil { - dps := dst.getPointerSlice() - for _, sp := range sps { - var dp pointer - if !sp.isNil() { - dp = valToPointer(reflect.New(tf)) - mi.merge(dp, sp) - } - dps = append(dps, dp) - } - if dps == nil { - dps = []pointer{} - } - dst.setPointerSlice(dps) - } - } - default: // E.g., *pb.T - mi := getMergeInfo(tf) - mfi.merge = func(dst, src pointer) { - sp := src.getPointer() - if !sp.isNil() { - dp := dst.getPointer() - if dp.isNil() { - dp = valToPointer(reflect.New(tf)) - dst.setPointer(dp) - } - mi.merge(dp, sp) - } - } - } - case reflect.Map: - switch { - case isPointer || isSlice: - panic("bad pointer or slice in map case in " + tf.Name()) - default: // E.g., map[K]V - mfi.merge = func(dst, src pointer) { - sm := src.asPointerTo(tf).Elem() - if sm.Len() == 0 { - return - } - dm := dst.asPointerTo(tf).Elem() - if dm.IsNil() { - dm.Set(reflect.MakeMap(tf)) - } - - switch tf.Elem().Kind() { - case reflect.Ptr: // Proto struct (e.g., *T) - for _, key := range sm.MapKeys() { - val := sm.MapIndex(key) - val = reflect.ValueOf(Clone(val.Interface().(Message))) - dm.SetMapIndex(key, val) - } - case reflect.Slice: // E.g. Bytes type (e.g., []byte) - for _, key := range sm.MapKeys() { - val := sm.MapIndex(key) - val = reflect.ValueOf(append([]byte{}, val.Bytes()...)) - dm.SetMapIndex(key, val) - } - default: // Basic type (e.g., string) - for _, key := range sm.MapKeys() { - val := sm.MapIndex(key) - dm.SetMapIndex(key, val) - } - } - } - } - case reflect.Interface: - // Must be oneof field. - switch { - case isPointer || isSlice: - panic("bad pointer or slice in interface case in " + tf.Name()) - default: // E.g., interface{} - // TODO: Make this faster? - mfi.merge = func(dst, src pointer) { - su := src.asPointerTo(tf).Elem() - if !su.IsNil() { - du := dst.asPointerTo(tf).Elem() - typ := su.Elem().Type() - if du.IsNil() || du.Elem().Type() != typ { - du.Set(reflect.New(typ.Elem())) // Initialize interface if empty - } - sv := su.Elem().Elem().Field(0) - if sv.Kind() == reflect.Ptr && sv.IsNil() { - return - } - dv := du.Elem().Elem().Field(0) - if dv.Kind() == reflect.Ptr && dv.IsNil() { - dv.Set(reflect.New(sv.Type().Elem())) // Initialize proto message if empty - } - switch sv.Type().Kind() { - case reflect.Ptr: // Proto struct (e.g., *T) - Merge(dv.Interface().(Message), sv.Interface().(Message)) - case reflect.Slice: // E.g. Bytes type (e.g., []byte) - dv.Set(reflect.ValueOf(append([]byte{}, sv.Bytes()...))) - default: // Basic type (e.g., string) - dv.Set(sv) - } - } - } - } - default: - panic(fmt.Sprintf("merger not found for type:%s", tf)) - } - mi.fields = append(mi.fields, mfi) - } - - mi.unrecognized = invalidField - if f, ok := t.FieldByName("XXX_unrecognized"); ok { - if f.Type != reflect.TypeOf([]byte{}) { - panic("expected XXX_unrecognized to be of type []byte") - } - mi.unrecognized = toField(&f) - } - - atomic.StoreInt32(&mi.initialized, 1) -} diff --git a/vendor/github.com/golang/protobuf/proto/table_unmarshal.go b/vendor/github.com/golang/protobuf/proto/table_unmarshal.go deleted file mode 100644 index ebf1caa5..00000000 --- a/vendor/github.com/golang/protobuf/proto/table_unmarshal.go +++ /dev/null @@ -1,2051 +0,0 @@ -// Go support for Protocol Buffers - Google's data interchange format -// -// Copyright 2016 The Go Authors. All rights reserved. -// https://github.com/golang/protobuf -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - -package proto - -import ( - "errors" - "fmt" - "io" - "math" - "reflect" - "strconv" - "strings" - "sync" - "sync/atomic" - "unicode/utf8" -) - -// Unmarshal is the entry point from the generated .pb.go files. -// This function is not intended to be used by non-generated code. -// This function is not subject to any compatibility guarantee. -// msg contains a pointer to a protocol buffer struct. -// b is the data to be unmarshaled into the protocol buffer. -// a is a pointer to a place to store cached unmarshal information. -func (a *InternalMessageInfo) Unmarshal(msg Message, b []byte) error { - // Load the unmarshal information for this message type. - // The atomic load ensures memory consistency. - u := atomicLoadUnmarshalInfo(&a.unmarshal) - if u == nil { - // Slow path: find unmarshal info for msg, update a with it. - u = getUnmarshalInfo(reflect.TypeOf(msg).Elem()) - atomicStoreUnmarshalInfo(&a.unmarshal, u) - } - // Then do the unmarshaling. - err := u.unmarshal(toPointer(&msg), b) - return err -} - -type unmarshalInfo struct { - typ reflect.Type // type of the protobuf struct - - // 0 = only typ field is initialized - // 1 = completely initialized - initialized int32 - lock sync.Mutex // prevents double initialization - dense []unmarshalFieldInfo // fields indexed by tag # - sparse map[uint64]unmarshalFieldInfo // fields indexed by tag # - reqFields []string // names of required fields - reqMask uint64 // 1< 0 { - // Read tag and wire type. - // Special case 1 and 2 byte varints. - var x uint64 - if b[0] < 128 { - x = uint64(b[0]) - b = b[1:] - } else if len(b) >= 2 && b[1] < 128 { - x = uint64(b[0]&0x7f) + uint64(b[1])<<7 - b = b[2:] - } else { - var n int - x, n = decodeVarint(b) - if n == 0 { - return io.ErrUnexpectedEOF - } - b = b[n:] - } - tag := x >> 3 - wire := int(x) & 7 - - // Dispatch on the tag to one of the unmarshal* functions below. - var f unmarshalFieldInfo - if tag < uint64(len(u.dense)) { - f = u.dense[tag] - } else { - f = u.sparse[tag] - } - if fn := f.unmarshal; fn != nil { - var err error - b, err = fn(b, m.offset(f.field), wire) - if err == nil { - reqMask |= f.reqMask - continue - } - if r, ok := err.(*RequiredNotSetError); ok { - // Remember this error, but keep parsing. We need to produce - // a full parse even if a required field is missing. - if errLater == nil { - errLater = r - } - reqMask |= f.reqMask - continue - } - if err != errInternalBadWireType { - if err == errInvalidUTF8 { - if errLater == nil { - fullName := revProtoTypes[reflect.PtrTo(u.typ)] + "." + f.name - errLater = &invalidUTF8Error{fullName} - } - continue - } - return err - } - // Fragments with bad wire type are treated as unknown fields. - } - - // Unknown tag. - if !u.unrecognized.IsValid() { - // Don't keep unrecognized data; just skip it. - var err error - b, err = skipField(b, wire) - if err != nil { - return err - } - continue - } - // Keep unrecognized data around. - // maybe in extensions, maybe in the unrecognized field. - z := m.offset(u.unrecognized).toBytes() - var emap map[int32]Extension - var e Extension - for _, r := range u.extensionRanges { - if uint64(r.Start) <= tag && tag <= uint64(r.End) { - if u.extensions.IsValid() { - mp := m.offset(u.extensions).toExtensions() - emap = mp.extensionsWrite() - e = emap[int32(tag)] - z = &e.enc - break - } - if u.oldExtensions.IsValid() { - p := m.offset(u.oldExtensions).toOldExtensions() - emap = *p - if emap == nil { - emap = map[int32]Extension{} - *p = emap - } - e = emap[int32(tag)] - z = &e.enc - break - } - panic("no extensions field available") - } - } - - // Use wire type to skip data. - var err error - b0 := b - b, err = skipField(b, wire) - if err != nil { - return err - } - *z = encodeVarint(*z, tag<<3|uint64(wire)) - *z = append(*z, b0[:len(b0)-len(b)]...) - - if emap != nil { - emap[int32(tag)] = e - } - } - if reqMask != u.reqMask && errLater == nil { - // A required field of this message is missing. - for _, n := range u.reqFields { - if reqMask&1 == 0 { - errLater = &RequiredNotSetError{n} - } - reqMask >>= 1 - } - } - return errLater -} - -// computeUnmarshalInfo fills in u with information for use -// in unmarshaling protocol buffers of type u.typ. -func (u *unmarshalInfo) computeUnmarshalInfo() { - u.lock.Lock() - defer u.lock.Unlock() - if u.initialized != 0 { - return - } - t := u.typ - n := t.NumField() - - // Set up the "not found" value for the unrecognized byte buffer. - // This is the default for proto3. - u.unrecognized = invalidField - u.extensions = invalidField - u.oldExtensions = invalidField - - // List of the generated type and offset for each oneof field. - type oneofField struct { - ityp reflect.Type // interface type of oneof field - field field // offset in containing message - } - var oneofFields []oneofField - - for i := 0; i < n; i++ { - f := t.Field(i) - if f.Name == "XXX_unrecognized" { - // The byte slice used to hold unrecognized input is special. - if f.Type != reflect.TypeOf(([]byte)(nil)) { - panic("bad type for XXX_unrecognized field: " + f.Type.Name()) - } - u.unrecognized = toField(&f) - continue - } - if f.Name == "XXX_InternalExtensions" { - // Ditto here. - if f.Type != reflect.TypeOf(XXX_InternalExtensions{}) { - panic("bad type for XXX_InternalExtensions field: " + f.Type.Name()) - } - u.extensions = toField(&f) - if f.Tag.Get("protobuf_messageset") == "1" { - u.isMessageSet = true - } - continue - } - if f.Name == "XXX_extensions" { - // An older form of the extensions field. - if f.Type != reflect.TypeOf((map[int32]Extension)(nil)) { - panic("bad type for XXX_extensions field: " + f.Type.Name()) - } - u.oldExtensions = toField(&f) - continue - } - if f.Name == "XXX_NoUnkeyedLiteral" || f.Name == "XXX_sizecache" { - continue - } - - oneof := f.Tag.Get("protobuf_oneof") - if oneof != "" { - oneofFields = append(oneofFields, oneofField{f.Type, toField(&f)}) - // The rest of oneof processing happens below. - continue - } - - tags := f.Tag.Get("protobuf") - tagArray := strings.Split(tags, ",") - if len(tagArray) < 2 { - panic("protobuf tag not enough fields in " + t.Name() + "." + f.Name + ": " + tags) - } - tag, err := strconv.Atoi(tagArray[1]) - if err != nil { - panic("protobuf tag field not an integer: " + tagArray[1]) - } - - name := "" - for _, tag := range tagArray[3:] { - if strings.HasPrefix(tag, "name=") { - name = tag[5:] - } - } - - // Extract unmarshaling function from the field (its type and tags). - unmarshal := fieldUnmarshaler(&f) - - // Required field? - var reqMask uint64 - if tagArray[2] == "req" { - bit := len(u.reqFields) - u.reqFields = append(u.reqFields, name) - reqMask = uint64(1) << uint(bit) - // TODO: if we have more than 64 required fields, we end up - // not verifying that all required fields are present. - // Fix this, perhaps using a count of required fields? - } - - // Store the info in the correct slot in the message. - u.setTag(tag, toField(&f), unmarshal, reqMask, name) - } - - // Find any types associated with oneof fields. - // TODO: XXX_OneofFuncs returns more info than we need. Get rid of some of it? - fn := reflect.Zero(reflect.PtrTo(t)).MethodByName("XXX_OneofFuncs") - if fn.IsValid() { - res := fn.Call(nil)[3] // last return value from XXX_OneofFuncs: []interface{} - for i := res.Len() - 1; i >= 0; i-- { - v := res.Index(i) // interface{} - tptr := reflect.ValueOf(v.Interface()).Type() // *Msg_X - typ := tptr.Elem() // Msg_X - - f := typ.Field(0) // oneof implementers have one field - baseUnmarshal := fieldUnmarshaler(&f) - tags := strings.Split(f.Tag.Get("protobuf"), ",") - fieldNum, err := strconv.Atoi(tags[1]) - if err != nil { - panic("protobuf tag field not an integer: " + tags[1]) - } - var name string - for _, tag := range tags { - if strings.HasPrefix(tag, "name=") { - name = strings.TrimPrefix(tag, "name=") - break - } - } - - // Find the oneof field that this struct implements. - // Might take O(n^2) to process all of the oneofs, but who cares. - for _, of := range oneofFields { - if tptr.Implements(of.ityp) { - // We have found the corresponding interface for this struct. - // That lets us know where this struct should be stored - // when we encounter it during unmarshaling. - unmarshal := makeUnmarshalOneof(typ, of.ityp, baseUnmarshal) - u.setTag(fieldNum, of.field, unmarshal, 0, name) - } - } - } - } - - // Get extension ranges, if any. - fn = reflect.Zero(reflect.PtrTo(t)).MethodByName("ExtensionRangeArray") - if fn.IsValid() { - if !u.extensions.IsValid() && !u.oldExtensions.IsValid() { - panic("a message with extensions, but no extensions field in " + t.Name()) - } - u.extensionRanges = fn.Call(nil)[0].Interface().([]ExtensionRange) - } - - // Explicitly disallow tag 0. This will ensure we flag an error - // when decoding a buffer of all zeros. Without this code, we - // would decode and skip an all-zero buffer of even length. - // [0 0] is [tag=0/wiretype=varint varint-encoded-0]. - u.setTag(0, zeroField, func(b []byte, f pointer, w int) ([]byte, error) { - return nil, fmt.Errorf("proto: %s: illegal tag 0 (wire type %d)", t, w) - }, 0, "") - - // Set mask for required field check. - u.reqMask = uint64(1)<= 0 && (tag < 16 || tag < 2*n) { // TODO: what are the right numbers here? - for len(u.dense) <= tag { - u.dense = append(u.dense, unmarshalFieldInfo{}) - } - u.dense[tag] = i - return - } - if u.sparse == nil { - u.sparse = map[uint64]unmarshalFieldInfo{} - } - u.sparse[uint64(tag)] = i -} - -// fieldUnmarshaler returns an unmarshaler for the given field. -func fieldUnmarshaler(f *reflect.StructField) unmarshaler { - if f.Type.Kind() == reflect.Map { - return makeUnmarshalMap(f) - } - return typeUnmarshaler(f.Type, f.Tag.Get("protobuf")) -} - -// typeUnmarshaler returns an unmarshaler for the given field type / field tag pair. -func typeUnmarshaler(t reflect.Type, tags string) unmarshaler { - tagArray := strings.Split(tags, ",") - encoding := tagArray[0] - name := "unknown" - proto3 := false - validateUTF8 := true - for _, tag := range tagArray[3:] { - if strings.HasPrefix(tag, "name=") { - name = tag[5:] - } - if tag == "proto3" { - proto3 = true - } - } - validateUTF8 = validateUTF8 && proto3 - - // Figure out packaging (pointer, slice, or both) - slice := false - pointer := false - if t.Kind() == reflect.Slice && t.Elem().Kind() != reflect.Uint8 { - slice = true - t = t.Elem() - } - if t.Kind() == reflect.Ptr { - pointer = true - t = t.Elem() - } - - // We'll never have both pointer and slice for basic types. - if pointer && slice && t.Kind() != reflect.Struct { - panic("both pointer and slice for basic type in " + t.Name()) - } - - switch t.Kind() { - case reflect.Bool: - if pointer { - return unmarshalBoolPtr - } - if slice { - return unmarshalBoolSlice - } - return unmarshalBoolValue - case reflect.Int32: - switch encoding { - case "fixed32": - if pointer { - return unmarshalFixedS32Ptr - } - if slice { - return unmarshalFixedS32Slice - } - return unmarshalFixedS32Value - case "varint": - // this could be int32 or enum - if pointer { - return unmarshalInt32Ptr - } - if slice { - return unmarshalInt32Slice - } - return unmarshalInt32Value - case "zigzag32": - if pointer { - return unmarshalSint32Ptr - } - if slice { - return unmarshalSint32Slice - } - return unmarshalSint32Value - } - case reflect.Int64: - switch encoding { - case "fixed64": - if pointer { - return unmarshalFixedS64Ptr - } - if slice { - return unmarshalFixedS64Slice - } - return unmarshalFixedS64Value - case "varint": - if pointer { - return unmarshalInt64Ptr - } - if slice { - return unmarshalInt64Slice - } - return unmarshalInt64Value - case "zigzag64": - if pointer { - return unmarshalSint64Ptr - } - if slice { - return unmarshalSint64Slice - } - return unmarshalSint64Value - } - case reflect.Uint32: - switch encoding { - case "fixed32": - if pointer { - return unmarshalFixed32Ptr - } - if slice { - return unmarshalFixed32Slice - } - return unmarshalFixed32Value - case "varint": - if pointer { - return unmarshalUint32Ptr - } - if slice { - return unmarshalUint32Slice - } - return unmarshalUint32Value - } - case reflect.Uint64: - switch encoding { - case "fixed64": - if pointer { - return unmarshalFixed64Ptr - } - if slice { - return unmarshalFixed64Slice - } - return unmarshalFixed64Value - case "varint": - if pointer { - return unmarshalUint64Ptr - } - if slice { - return unmarshalUint64Slice - } - return unmarshalUint64Value - } - case reflect.Float32: - if pointer { - return unmarshalFloat32Ptr - } - if slice { - return unmarshalFloat32Slice - } - return unmarshalFloat32Value - case reflect.Float64: - if pointer { - return unmarshalFloat64Ptr - } - if slice { - return unmarshalFloat64Slice - } - return unmarshalFloat64Value - case reflect.Map: - panic("map type in typeUnmarshaler in " + t.Name()) - case reflect.Slice: - if pointer { - panic("bad pointer in slice case in " + t.Name()) - } - if slice { - return unmarshalBytesSlice - } - return unmarshalBytesValue - case reflect.String: - if validateUTF8 { - if pointer { - return unmarshalUTF8StringPtr - } - if slice { - return unmarshalUTF8StringSlice - } - return unmarshalUTF8StringValue - } - if pointer { - return unmarshalStringPtr - } - if slice { - return unmarshalStringSlice - } - return unmarshalStringValue - case reflect.Struct: - // message or group field - if !pointer { - panic(fmt.Sprintf("message/group field %s:%s without pointer", t, encoding)) - } - switch encoding { - case "bytes": - if slice { - return makeUnmarshalMessageSlicePtr(getUnmarshalInfo(t), name) - } - return makeUnmarshalMessagePtr(getUnmarshalInfo(t), name) - case "group": - if slice { - return makeUnmarshalGroupSlicePtr(getUnmarshalInfo(t), name) - } - return makeUnmarshalGroupPtr(getUnmarshalInfo(t), name) - } - } - panic(fmt.Sprintf("unmarshaler not found type:%s encoding:%s", t, encoding)) -} - -// Below are all the unmarshalers for individual fields of various types. - -func unmarshalInt64Value(b []byte, f pointer, w int) ([]byte, error) { - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := int64(x) - *f.toInt64() = v - return b, nil -} - -func unmarshalInt64Ptr(b []byte, f pointer, w int) ([]byte, error) { - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := int64(x) - *f.toInt64Ptr() = &v - return b, nil -} - -func unmarshalInt64Slice(b []byte, f pointer, w int) ([]byte, error) { - if w == WireBytes { // packed - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - res := b[x:] - b = b[:x] - for len(b) > 0 { - x, n = decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := int64(x) - s := f.toInt64Slice() - *s = append(*s, v) - } - return res, nil - } - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := int64(x) - s := f.toInt64Slice() - *s = append(*s, v) - return b, nil -} - -func unmarshalSint64Value(b []byte, f pointer, w int) ([]byte, error) { - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := int64(x>>1) ^ int64(x)<<63>>63 - *f.toInt64() = v - return b, nil -} - -func unmarshalSint64Ptr(b []byte, f pointer, w int) ([]byte, error) { - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := int64(x>>1) ^ int64(x)<<63>>63 - *f.toInt64Ptr() = &v - return b, nil -} - -func unmarshalSint64Slice(b []byte, f pointer, w int) ([]byte, error) { - if w == WireBytes { // packed - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - res := b[x:] - b = b[:x] - for len(b) > 0 { - x, n = decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := int64(x>>1) ^ int64(x)<<63>>63 - s := f.toInt64Slice() - *s = append(*s, v) - } - return res, nil - } - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := int64(x>>1) ^ int64(x)<<63>>63 - s := f.toInt64Slice() - *s = append(*s, v) - return b, nil -} - -func unmarshalUint64Value(b []byte, f pointer, w int) ([]byte, error) { - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := uint64(x) - *f.toUint64() = v - return b, nil -} - -func unmarshalUint64Ptr(b []byte, f pointer, w int) ([]byte, error) { - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := uint64(x) - *f.toUint64Ptr() = &v - return b, nil -} - -func unmarshalUint64Slice(b []byte, f pointer, w int) ([]byte, error) { - if w == WireBytes { // packed - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - res := b[x:] - b = b[:x] - for len(b) > 0 { - x, n = decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := uint64(x) - s := f.toUint64Slice() - *s = append(*s, v) - } - return res, nil - } - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := uint64(x) - s := f.toUint64Slice() - *s = append(*s, v) - return b, nil -} - -func unmarshalInt32Value(b []byte, f pointer, w int) ([]byte, error) { - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := int32(x) - *f.toInt32() = v - return b, nil -} - -func unmarshalInt32Ptr(b []byte, f pointer, w int) ([]byte, error) { - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := int32(x) - f.setInt32Ptr(v) - return b, nil -} - -func unmarshalInt32Slice(b []byte, f pointer, w int) ([]byte, error) { - if w == WireBytes { // packed - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - res := b[x:] - b = b[:x] - for len(b) > 0 { - x, n = decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := int32(x) - f.appendInt32Slice(v) - } - return res, nil - } - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := int32(x) - f.appendInt32Slice(v) - return b, nil -} - -func unmarshalSint32Value(b []byte, f pointer, w int) ([]byte, error) { - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := int32(x>>1) ^ int32(x)<<31>>31 - *f.toInt32() = v - return b, nil -} - -func unmarshalSint32Ptr(b []byte, f pointer, w int) ([]byte, error) { - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := int32(x>>1) ^ int32(x)<<31>>31 - f.setInt32Ptr(v) - return b, nil -} - -func unmarshalSint32Slice(b []byte, f pointer, w int) ([]byte, error) { - if w == WireBytes { // packed - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - res := b[x:] - b = b[:x] - for len(b) > 0 { - x, n = decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := int32(x>>1) ^ int32(x)<<31>>31 - f.appendInt32Slice(v) - } - return res, nil - } - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := int32(x>>1) ^ int32(x)<<31>>31 - f.appendInt32Slice(v) - return b, nil -} - -func unmarshalUint32Value(b []byte, f pointer, w int) ([]byte, error) { - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := uint32(x) - *f.toUint32() = v - return b, nil -} - -func unmarshalUint32Ptr(b []byte, f pointer, w int) ([]byte, error) { - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := uint32(x) - *f.toUint32Ptr() = &v - return b, nil -} - -func unmarshalUint32Slice(b []byte, f pointer, w int) ([]byte, error) { - if w == WireBytes { // packed - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - res := b[x:] - b = b[:x] - for len(b) > 0 { - x, n = decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := uint32(x) - s := f.toUint32Slice() - *s = append(*s, v) - } - return res, nil - } - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - v := uint32(x) - s := f.toUint32Slice() - *s = append(*s, v) - return b, nil -} - -func unmarshalFixed64Value(b []byte, f pointer, w int) ([]byte, error) { - if w != WireFixed64 { - return b, errInternalBadWireType - } - if len(b) < 8 { - return nil, io.ErrUnexpectedEOF - } - v := uint64(b[0]) | uint64(b[1])<<8 | uint64(b[2])<<16 | uint64(b[3])<<24 | uint64(b[4])<<32 | uint64(b[5])<<40 | uint64(b[6])<<48 | uint64(b[7])<<56 - *f.toUint64() = v - return b[8:], nil -} - -func unmarshalFixed64Ptr(b []byte, f pointer, w int) ([]byte, error) { - if w != WireFixed64 { - return b, errInternalBadWireType - } - if len(b) < 8 { - return nil, io.ErrUnexpectedEOF - } - v := uint64(b[0]) | uint64(b[1])<<8 | uint64(b[2])<<16 | uint64(b[3])<<24 | uint64(b[4])<<32 | uint64(b[5])<<40 | uint64(b[6])<<48 | uint64(b[7])<<56 - *f.toUint64Ptr() = &v - return b[8:], nil -} - -func unmarshalFixed64Slice(b []byte, f pointer, w int) ([]byte, error) { - if w == WireBytes { // packed - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - res := b[x:] - b = b[:x] - for len(b) > 0 { - if len(b) < 8 { - return nil, io.ErrUnexpectedEOF - } - v := uint64(b[0]) | uint64(b[1])<<8 | uint64(b[2])<<16 | uint64(b[3])<<24 | uint64(b[4])<<32 | uint64(b[5])<<40 | uint64(b[6])<<48 | uint64(b[7])<<56 - s := f.toUint64Slice() - *s = append(*s, v) - b = b[8:] - } - return res, nil - } - if w != WireFixed64 { - return b, errInternalBadWireType - } - if len(b) < 8 { - return nil, io.ErrUnexpectedEOF - } - v := uint64(b[0]) | uint64(b[1])<<8 | uint64(b[2])<<16 | uint64(b[3])<<24 | uint64(b[4])<<32 | uint64(b[5])<<40 | uint64(b[6])<<48 | uint64(b[7])<<56 - s := f.toUint64Slice() - *s = append(*s, v) - return b[8:], nil -} - -func unmarshalFixedS64Value(b []byte, f pointer, w int) ([]byte, error) { - if w != WireFixed64 { - return b, errInternalBadWireType - } - if len(b) < 8 { - return nil, io.ErrUnexpectedEOF - } - v := int64(b[0]) | int64(b[1])<<8 | int64(b[2])<<16 | int64(b[3])<<24 | int64(b[4])<<32 | int64(b[5])<<40 | int64(b[6])<<48 | int64(b[7])<<56 - *f.toInt64() = v - return b[8:], nil -} - -func unmarshalFixedS64Ptr(b []byte, f pointer, w int) ([]byte, error) { - if w != WireFixed64 { - return b, errInternalBadWireType - } - if len(b) < 8 { - return nil, io.ErrUnexpectedEOF - } - v := int64(b[0]) | int64(b[1])<<8 | int64(b[2])<<16 | int64(b[3])<<24 | int64(b[4])<<32 | int64(b[5])<<40 | int64(b[6])<<48 | int64(b[7])<<56 - *f.toInt64Ptr() = &v - return b[8:], nil -} - -func unmarshalFixedS64Slice(b []byte, f pointer, w int) ([]byte, error) { - if w == WireBytes { // packed - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - res := b[x:] - b = b[:x] - for len(b) > 0 { - if len(b) < 8 { - return nil, io.ErrUnexpectedEOF - } - v := int64(b[0]) | int64(b[1])<<8 | int64(b[2])<<16 | int64(b[3])<<24 | int64(b[4])<<32 | int64(b[5])<<40 | int64(b[6])<<48 | int64(b[7])<<56 - s := f.toInt64Slice() - *s = append(*s, v) - b = b[8:] - } - return res, nil - } - if w != WireFixed64 { - return b, errInternalBadWireType - } - if len(b) < 8 { - return nil, io.ErrUnexpectedEOF - } - v := int64(b[0]) | int64(b[1])<<8 | int64(b[2])<<16 | int64(b[3])<<24 | int64(b[4])<<32 | int64(b[5])<<40 | int64(b[6])<<48 | int64(b[7])<<56 - s := f.toInt64Slice() - *s = append(*s, v) - return b[8:], nil -} - -func unmarshalFixed32Value(b []byte, f pointer, w int) ([]byte, error) { - if w != WireFixed32 { - return b, errInternalBadWireType - } - if len(b) < 4 { - return nil, io.ErrUnexpectedEOF - } - v := uint32(b[0]) | uint32(b[1])<<8 | uint32(b[2])<<16 | uint32(b[3])<<24 - *f.toUint32() = v - return b[4:], nil -} - -func unmarshalFixed32Ptr(b []byte, f pointer, w int) ([]byte, error) { - if w != WireFixed32 { - return b, errInternalBadWireType - } - if len(b) < 4 { - return nil, io.ErrUnexpectedEOF - } - v := uint32(b[0]) | uint32(b[1])<<8 | uint32(b[2])<<16 | uint32(b[3])<<24 - *f.toUint32Ptr() = &v - return b[4:], nil -} - -func unmarshalFixed32Slice(b []byte, f pointer, w int) ([]byte, error) { - if w == WireBytes { // packed - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - res := b[x:] - b = b[:x] - for len(b) > 0 { - if len(b) < 4 { - return nil, io.ErrUnexpectedEOF - } - v := uint32(b[0]) | uint32(b[1])<<8 | uint32(b[2])<<16 | uint32(b[3])<<24 - s := f.toUint32Slice() - *s = append(*s, v) - b = b[4:] - } - return res, nil - } - if w != WireFixed32 { - return b, errInternalBadWireType - } - if len(b) < 4 { - return nil, io.ErrUnexpectedEOF - } - v := uint32(b[0]) | uint32(b[1])<<8 | uint32(b[2])<<16 | uint32(b[3])<<24 - s := f.toUint32Slice() - *s = append(*s, v) - return b[4:], nil -} - -func unmarshalFixedS32Value(b []byte, f pointer, w int) ([]byte, error) { - if w != WireFixed32 { - return b, errInternalBadWireType - } - if len(b) < 4 { - return nil, io.ErrUnexpectedEOF - } - v := int32(b[0]) | int32(b[1])<<8 | int32(b[2])<<16 | int32(b[3])<<24 - *f.toInt32() = v - return b[4:], nil -} - -func unmarshalFixedS32Ptr(b []byte, f pointer, w int) ([]byte, error) { - if w != WireFixed32 { - return b, errInternalBadWireType - } - if len(b) < 4 { - return nil, io.ErrUnexpectedEOF - } - v := int32(b[0]) | int32(b[1])<<8 | int32(b[2])<<16 | int32(b[3])<<24 - f.setInt32Ptr(v) - return b[4:], nil -} - -func unmarshalFixedS32Slice(b []byte, f pointer, w int) ([]byte, error) { - if w == WireBytes { // packed - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - res := b[x:] - b = b[:x] - for len(b) > 0 { - if len(b) < 4 { - return nil, io.ErrUnexpectedEOF - } - v := int32(b[0]) | int32(b[1])<<8 | int32(b[2])<<16 | int32(b[3])<<24 - f.appendInt32Slice(v) - b = b[4:] - } - return res, nil - } - if w != WireFixed32 { - return b, errInternalBadWireType - } - if len(b) < 4 { - return nil, io.ErrUnexpectedEOF - } - v := int32(b[0]) | int32(b[1])<<8 | int32(b[2])<<16 | int32(b[3])<<24 - f.appendInt32Slice(v) - return b[4:], nil -} - -func unmarshalBoolValue(b []byte, f pointer, w int) ([]byte, error) { - if w != WireVarint { - return b, errInternalBadWireType - } - // Note: any length varint is allowed, even though any sane - // encoder will use one byte. - // See https://github.com/golang/protobuf/issues/76 - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - // TODO: check if x>1? Tests seem to indicate no. - v := x != 0 - *f.toBool() = v - return b[n:], nil -} - -func unmarshalBoolPtr(b []byte, f pointer, w int) ([]byte, error) { - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - v := x != 0 - *f.toBoolPtr() = &v - return b[n:], nil -} - -func unmarshalBoolSlice(b []byte, f pointer, w int) ([]byte, error) { - if w == WireBytes { // packed - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - res := b[x:] - b = b[:x] - for len(b) > 0 { - x, n = decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - v := x != 0 - s := f.toBoolSlice() - *s = append(*s, v) - b = b[n:] - } - return res, nil - } - if w != WireVarint { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - v := x != 0 - s := f.toBoolSlice() - *s = append(*s, v) - return b[n:], nil -} - -func unmarshalFloat64Value(b []byte, f pointer, w int) ([]byte, error) { - if w != WireFixed64 { - return b, errInternalBadWireType - } - if len(b) < 8 { - return nil, io.ErrUnexpectedEOF - } - v := math.Float64frombits(uint64(b[0]) | uint64(b[1])<<8 | uint64(b[2])<<16 | uint64(b[3])<<24 | uint64(b[4])<<32 | uint64(b[5])<<40 | uint64(b[6])<<48 | uint64(b[7])<<56) - *f.toFloat64() = v - return b[8:], nil -} - -func unmarshalFloat64Ptr(b []byte, f pointer, w int) ([]byte, error) { - if w != WireFixed64 { - return b, errInternalBadWireType - } - if len(b) < 8 { - return nil, io.ErrUnexpectedEOF - } - v := math.Float64frombits(uint64(b[0]) | uint64(b[1])<<8 | uint64(b[2])<<16 | uint64(b[3])<<24 | uint64(b[4])<<32 | uint64(b[5])<<40 | uint64(b[6])<<48 | uint64(b[7])<<56) - *f.toFloat64Ptr() = &v - return b[8:], nil -} - -func unmarshalFloat64Slice(b []byte, f pointer, w int) ([]byte, error) { - if w == WireBytes { // packed - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - res := b[x:] - b = b[:x] - for len(b) > 0 { - if len(b) < 8 { - return nil, io.ErrUnexpectedEOF - } - v := math.Float64frombits(uint64(b[0]) | uint64(b[1])<<8 | uint64(b[2])<<16 | uint64(b[3])<<24 | uint64(b[4])<<32 | uint64(b[5])<<40 | uint64(b[6])<<48 | uint64(b[7])<<56) - s := f.toFloat64Slice() - *s = append(*s, v) - b = b[8:] - } - return res, nil - } - if w != WireFixed64 { - return b, errInternalBadWireType - } - if len(b) < 8 { - return nil, io.ErrUnexpectedEOF - } - v := math.Float64frombits(uint64(b[0]) | uint64(b[1])<<8 | uint64(b[2])<<16 | uint64(b[3])<<24 | uint64(b[4])<<32 | uint64(b[5])<<40 | uint64(b[6])<<48 | uint64(b[7])<<56) - s := f.toFloat64Slice() - *s = append(*s, v) - return b[8:], nil -} - -func unmarshalFloat32Value(b []byte, f pointer, w int) ([]byte, error) { - if w != WireFixed32 { - return b, errInternalBadWireType - } - if len(b) < 4 { - return nil, io.ErrUnexpectedEOF - } - v := math.Float32frombits(uint32(b[0]) | uint32(b[1])<<8 | uint32(b[2])<<16 | uint32(b[3])<<24) - *f.toFloat32() = v - return b[4:], nil -} - -func unmarshalFloat32Ptr(b []byte, f pointer, w int) ([]byte, error) { - if w != WireFixed32 { - return b, errInternalBadWireType - } - if len(b) < 4 { - return nil, io.ErrUnexpectedEOF - } - v := math.Float32frombits(uint32(b[0]) | uint32(b[1])<<8 | uint32(b[2])<<16 | uint32(b[3])<<24) - *f.toFloat32Ptr() = &v - return b[4:], nil -} - -func unmarshalFloat32Slice(b []byte, f pointer, w int) ([]byte, error) { - if w == WireBytes { // packed - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - res := b[x:] - b = b[:x] - for len(b) > 0 { - if len(b) < 4 { - return nil, io.ErrUnexpectedEOF - } - v := math.Float32frombits(uint32(b[0]) | uint32(b[1])<<8 | uint32(b[2])<<16 | uint32(b[3])<<24) - s := f.toFloat32Slice() - *s = append(*s, v) - b = b[4:] - } - return res, nil - } - if w != WireFixed32 { - return b, errInternalBadWireType - } - if len(b) < 4 { - return nil, io.ErrUnexpectedEOF - } - v := math.Float32frombits(uint32(b[0]) | uint32(b[1])<<8 | uint32(b[2])<<16 | uint32(b[3])<<24) - s := f.toFloat32Slice() - *s = append(*s, v) - return b[4:], nil -} - -func unmarshalStringValue(b []byte, f pointer, w int) ([]byte, error) { - if w != WireBytes { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - v := string(b[:x]) - *f.toString() = v - return b[x:], nil -} - -func unmarshalStringPtr(b []byte, f pointer, w int) ([]byte, error) { - if w != WireBytes { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - v := string(b[:x]) - *f.toStringPtr() = &v - return b[x:], nil -} - -func unmarshalStringSlice(b []byte, f pointer, w int) ([]byte, error) { - if w != WireBytes { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - v := string(b[:x]) - s := f.toStringSlice() - *s = append(*s, v) - return b[x:], nil -} - -func unmarshalUTF8StringValue(b []byte, f pointer, w int) ([]byte, error) { - if w != WireBytes { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - v := string(b[:x]) - *f.toString() = v - if !utf8.ValidString(v) { - return b[x:], errInvalidUTF8 - } - return b[x:], nil -} - -func unmarshalUTF8StringPtr(b []byte, f pointer, w int) ([]byte, error) { - if w != WireBytes { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - v := string(b[:x]) - *f.toStringPtr() = &v - if !utf8.ValidString(v) { - return b[x:], errInvalidUTF8 - } - return b[x:], nil -} - -func unmarshalUTF8StringSlice(b []byte, f pointer, w int) ([]byte, error) { - if w != WireBytes { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - v := string(b[:x]) - s := f.toStringSlice() - *s = append(*s, v) - if !utf8.ValidString(v) { - return b[x:], errInvalidUTF8 - } - return b[x:], nil -} - -var emptyBuf [0]byte - -func unmarshalBytesValue(b []byte, f pointer, w int) ([]byte, error) { - if w != WireBytes { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - // The use of append here is a trick which avoids the zeroing - // that would be required if we used a make/copy pair. - // We append to emptyBuf instead of nil because we want - // a non-nil result even when the length is 0. - v := append(emptyBuf[:], b[:x]...) - *f.toBytes() = v - return b[x:], nil -} - -func unmarshalBytesSlice(b []byte, f pointer, w int) ([]byte, error) { - if w != WireBytes { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - v := append(emptyBuf[:], b[:x]...) - s := f.toBytesSlice() - *s = append(*s, v) - return b[x:], nil -} - -func makeUnmarshalMessagePtr(sub *unmarshalInfo, name string) unmarshaler { - return func(b []byte, f pointer, w int) ([]byte, error) { - if w != WireBytes { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - // First read the message field to see if something is there. - // The semantics of multiple submessages are weird. Instead of - // the last one winning (as it is for all other fields), multiple - // submessages are merged. - v := f.getPointer() - if v.isNil() { - v = valToPointer(reflect.New(sub.typ)) - f.setPointer(v) - } - err := sub.unmarshal(v, b[:x]) - if err != nil { - if r, ok := err.(*RequiredNotSetError); ok { - r.field = name + "." + r.field - } else { - return nil, err - } - } - return b[x:], err - } -} - -func makeUnmarshalMessageSlicePtr(sub *unmarshalInfo, name string) unmarshaler { - return func(b []byte, f pointer, w int) ([]byte, error) { - if w != WireBytes { - return b, errInternalBadWireType - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - v := valToPointer(reflect.New(sub.typ)) - err := sub.unmarshal(v, b[:x]) - if err != nil { - if r, ok := err.(*RequiredNotSetError); ok { - r.field = name + "." + r.field - } else { - return nil, err - } - } - f.appendPointer(v) - return b[x:], err - } -} - -func makeUnmarshalGroupPtr(sub *unmarshalInfo, name string) unmarshaler { - return func(b []byte, f pointer, w int) ([]byte, error) { - if w != WireStartGroup { - return b, errInternalBadWireType - } - x, y := findEndGroup(b) - if x < 0 { - return nil, io.ErrUnexpectedEOF - } - v := f.getPointer() - if v.isNil() { - v = valToPointer(reflect.New(sub.typ)) - f.setPointer(v) - } - err := sub.unmarshal(v, b[:x]) - if err != nil { - if r, ok := err.(*RequiredNotSetError); ok { - r.field = name + "." + r.field - } else { - return nil, err - } - } - return b[y:], err - } -} - -func makeUnmarshalGroupSlicePtr(sub *unmarshalInfo, name string) unmarshaler { - return func(b []byte, f pointer, w int) ([]byte, error) { - if w != WireStartGroup { - return b, errInternalBadWireType - } - x, y := findEndGroup(b) - if x < 0 { - return nil, io.ErrUnexpectedEOF - } - v := valToPointer(reflect.New(sub.typ)) - err := sub.unmarshal(v, b[:x]) - if err != nil { - if r, ok := err.(*RequiredNotSetError); ok { - r.field = name + "." + r.field - } else { - return nil, err - } - } - f.appendPointer(v) - return b[y:], err - } -} - -func makeUnmarshalMap(f *reflect.StructField) unmarshaler { - t := f.Type - kt := t.Key() - vt := t.Elem() - unmarshalKey := typeUnmarshaler(kt, f.Tag.Get("protobuf_key")) - unmarshalVal := typeUnmarshaler(vt, f.Tag.Get("protobuf_val")) - return func(b []byte, f pointer, w int) ([]byte, error) { - // The map entry is a submessage. Figure out how big it is. - if w != WireBytes { - return nil, fmt.Errorf("proto: bad wiretype for map field: got %d want %d", w, WireBytes) - } - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - b = b[n:] - if x > uint64(len(b)) { - return nil, io.ErrUnexpectedEOF - } - r := b[x:] // unused data to return - b = b[:x] // data for map entry - - // Note: we could use #keys * #values ~= 200 functions - // to do map decoding without reflection. Probably not worth it. - // Maps will be somewhat slow. Oh well. - - // Read key and value from data. - var nerr nonFatal - k := reflect.New(kt) - v := reflect.New(vt) - for len(b) > 0 { - x, n := decodeVarint(b) - if n == 0 { - return nil, io.ErrUnexpectedEOF - } - wire := int(x) & 7 - b = b[n:] - - var err error - switch x >> 3 { - case 1: - b, err = unmarshalKey(b, valToPointer(k), wire) - case 2: - b, err = unmarshalVal(b, valToPointer(v), wire) - default: - err = errInternalBadWireType // skip unknown tag - } - - if nerr.Merge(err) { - continue - } - if err != errInternalBadWireType { - return nil, err - } - - // Skip past unknown fields. - b, err = skipField(b, wire) - if err != nil { - return nil, err - } - } - - // Get map, allocate if needed. - m := f.asPointerTo(t).Elem() // an addressable map[K]T - if m.IsNil() { - m.Set(reflect.MakeMap(t)) - } - - // Insert into map. - m.SetMapIndex(k.Elem(), v.Elem()) - - return r, nerr.E - } -} - -// makeUnmarshalOneof makes an unmarshaler for oneof fields. -// for: -// message Msg { -// oneof F { -// int64 X = 1; -// float64 Y = 2; -// } -// } -// typ is the type of the concrete entry for a oneof case (e.g. Msg_X). -// ityp is the interface type of the oneof field (e.g. isMsg_F). -// unmarshal is the unmarshaler for the base type of the oneof case (e.g. int64). -// Note that this function will be called once for each case in the oneof. -func makeUnmarshalOneof(typ, ityp reflect.Type, unmarshal unmarshaler) unmarshaler { - sf := typ.Field(0) - field0 := toField(&sf) - return func(b []byte, f pointer, w int) ([]byte, error) { - // Allocate holder for value. - v := reflect.New(typ) - - // Unmarshal data into holder. - // We unmarshal into the first field of the holder object. - var err error - var nerr nonFatal - b, err = unmarshal(b, valToPointer(v).offset(field0), w) - if !nerr.Merge(err) { - return nil, err - } - - // Write pointer to holder into target field. - f.asPointerTo(ityp).Elem().Set(v) - - return b, nerr.E - } -} - -// Error used by decode internally. -var errInternalBadWireType = errors.New("proto: internal error: bad wiretype") - -// skipField skips past a field of type wire and returns the remaining bytes. -func skipField(b []byte, wire int) ([]byte, error) { - switch wire { - case WireVarint: - _, k := decodeVarint(b) - if k == 0 { - return b, io.ErrUnexpectedEOF - } - b = b[k:] - case WireFixed32: - if len(b) < 4 { - return b, io.ErrUnexpectedEOF - } - b = b[4:] - case WireFixed64: - if len(b) < 8 { - return b, io.ErrUnexpectedEOF - } - b = b[8:] - case WireBytes: - m, k := decodeVarint(b) - if k == 0 || uint64(len(b)-k) < m { - return b, io.ErrUnexpectedEOF - } - b = b[uint64(k)+m:] - case WireStartGroup: - _, i := findEndGroup(b) - if i == -1 { - return b, io.ErrUnexpectedEOF - } - b = b[i:] - default: - return b, fmt.Errorf("proto: can't skip unknown wire type %d", wire) - } - return b, nil -} - -// findEndGroup finds the index of the next EndGroup tag. -// Groups may be nested, so the "next" EndGroup tag is the first -// unpaired EndGroup. -// findEndGroup returns the indexes of the start and end of the EndGroup tag. -// Returns (-1,-1) if it can't find one. -func findEndGroup(b []byte) (int, int) { - depth := 1 - i := 0 - for { - x, n := decodeVarint(b[i:]) - if n == 0 { - return -1, -1 - } - j := i - i += n - switch x & 7 { - case WireVarint: - _, k := decodeVarint(b[i:]) - if k == 0 { - return -1, -1 - } - i += k - case WireFixed32: - if len(b)-4 < i { - return -1, -1 - } - i += 4 - case WireFixed64: - if len(b)-8 < i { - return -1, -1 - } - i += 8 - case WireBytes: - m, k := decodeVarint(b[i:]) - if k == 0 { - return -1, -1 - } - i += k - if uint64(len(b)-i) < m { - return -1, -1 - } - i += int(m) - case WireStartGroup: - depth++ - case WireEndGroup: - depth-- - if depth == 0 { - return j, i - } - default: - return -1, -1 - } - } -} - -// encodeVarint appends a varint-encoded integer to b and returns the result. -func encodeVarint(b []byte, x uint64) []byte { - for x >= 1<<7 { - b = append(b, byte(x&0x7f|0x80)) - x >>= 7 - } - return append(b, byte(x)) -} - -// decodeVarint reads a varint-encoded integer from b. -// Returns the decoded integer and the number of bytes read. -// If there is an error, it returns 0,0. -func decodeVarint(b []byte) (uint64, int) { - var x, y uint64 - if len(b) <= 0 { - goto bad - } - x = uint64(b[0]) - if x < 0x80 { - return x, 1 - } - x -= 0x80 - - if len(b) <= 1 { - goto bad - } - y = uint64(b[1]) - x += y << 7 - if y < 0x80 { - return x, 2 - } - x -= 0x80 << 7 - - if len(b) <= 2 { - goto bad - } - y = uint64(b[2]) - x += y << 14 - if y < 0x80 { - return x, 3 - } - x -= 0x80 << 14 - - if len(b) <= 3 { - goto bad - } - y = uint64(b[3]) - x += y << 21 - if y < 0x80 { - return x, 4 - } - x -= 0x80 << 21 - - if len(b) <= 4 { - goto bad - } - y = uint64(b[4]) - x += y << 28 - if y < 0x80 { - return x, 5 - } - x -= 0x80 << 28 - - if len(b) <= 5 { - goto bad - } - y = uint64(b[5]) - x += y << 35 - if y < 0x80 { - return x, 6 - } - x -= 0x80 << 35 - - if len(b) <= 6 { - goto bad - } - y = uint64(b[6]) - x += y << 42 - if y < 0x80 { - return x, 7 - } - x -= 0x80 << 42 - - if len(b) <= 7 { - goto bad - } - y = uint64(b[7]) - x += y << 49 - if y < 0x80 { - return x, 8 - } - x -= 0x80 << 49 - - if len(b) <= 8 { - goto bad - } - y = uint64(b[8]) - x += y << 56 - if y < 0x80 { - return x, 9 - } - x -= 0x80 << 56 - - if len(b) <= 9 { - goto bad - } - y = uint64(b[9]) - x += y << 63 - if y < 2 { - return x, 10 - } - -bad: - return 0, 0 -} diff --git a/vendor/github.com/golang/protobuf/proto/text.go b/vendor/github.com/golang/protobuf/proto/text.go deleted file mode 100644 index 1aaee725..00000000 --- a/vendor/github.com/golang/protobuf/proto/text.go +++ /dev/null @@ -1,843 +0,0 @@ -// Go support for Protocol Buffers - Google's data interchange format -// -// Copyright 2010 The Go Authors. All rights reserved. -// https://github.com/golang/protobuf -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - -package proto - -// Functions for writing the text protocol buffer format. - -import ( - "bufio" - "bytes" - "encoding" - "errors" - "fmt" - "io" - "log" - "math" - "reflect" - "sort" - "strings" -) - -var ( - newline = []byte("\n") - spaces = []byte(" ") - endBraceNewline = []byte("}\n") - backslashN = []byte{'\\', 'n'} - backslashR = []byte{'\\', 'r'} - backslashT = []byte{'\\', 't'} - backslashDQ = []byte{'\\', '"'} - backslashBS = []byte{'\\', '\\'} - posInf = []byte("inf") - negInf = []byte("-inf") - nan = []byte("nan") -) - -type writer interface { - io.Writer - WriteByte(byte) error -} - -// textWriter is an io.Writer that tracks its indentation level. -type textWriter struct { - ind int - complete bool // if the current position is a complete line - compact bool // whether to write out as a one-liner - w writer -} - -func (w *textWriter) WriteString(s string) (n int, err error) { - if !strings.Contains(s, "\n") { - if !w.compact && w.complete { - w.writeIndent() - } - w.complete = false - return io.WriteString(w.w, s) - } - // WriteString is typically called without newlines, so this - // codepath and its copy are rare. We copy to avoid - // duplicating all of Write's logic here. - return w.Write([]byte(s)) -} - -func (w *textWriter) Write(p []byte) (n int, err error) { - newlines := bytes.Count(p, newline) - if newlines == 0 { - if !w.compact && w.complete { - w.writeIndent() - } - n, err = w.w.Write(p) - w.complete = false - return n, err - } - - frags := bytes.SplitN(p, newline, newlines+1) - if w.compact { - for i, frag := range frags { - if i > 0 { - if err := w.w.WriteByte(' '); err != nil { - return n, err - } - n++ - } - nn, err := w.w.Write(frag) - n += nn - if err != nil { - return n, err - } - } - return n, nil - } - - for i, frag := range frags { - if w.complete { - w.writeIndent() - } - nn, err := w.w.Write(frag) - n += nn - if err != nil { - return n, err - } - if i+1 < len(frags) { - if err := w.w.WriteByte('\n'); err != nil { - return n, err - } - n++ - } - } - w.complete = len(frags[len(frags)-1]) == 0 - return n, nil -} - -func (w *textWriter) WriteByte(c byte) error { - if w.compact && c == '\n' { - c = ' ' - } - if !w.compact && w.complete { - w.writeIndent() - } - err := w.w.WriteByte(c) - w.complete = c == '\n' - return err -} - -func (w *textWriter) indent() { w.ind++ } - -func (w *textWriter) unindent() { - if w.ind == 0 { - log.Print("proto: textWriter unindented too far") - return - } - w.ind-- -} - -func writeName(w *textWriter, props *Properties) error { - if _, err := w.WriteString(props.OrigName); err != nil { - return err - } - if props.Wire != "group" { - return w.WriteByte(':') - } - return nil -} - -func requiresQuotes(u string) bool { - // When type URL contains any characters except [0-9A-Za-z./\-]*, it must be quoted. - for _, ch := range u { - switch { - case ch == '.' || ch == '/' || ch == '_': - continue - case '0' <= ch && ch <= '9': - continue - case 'A' <= ch && ch <= 'Z': - continue - case 'a' <= ch && ch <= 'z': - continue - default: - return true - } - } - return false -} - -// isAny reports whether sv is a google.protobuf.Any message -func isAny(sv reflect.Value) bool { - type wkt interface { - XXX_WellKnownType() string - } - t, ok := sv.Addr().Interface().(wkt) - return ok && t.XXX_WellKnownType() == "Any" -} - -// writeProto3Any writes an expanded google.protobuf.Any message. -// -// It returns (false, nil) if sv value can't be unmarshaled (e.g. because -// required messages are not linked in). -// -// It returns (true, error) when sv was written in expanded format or an error -// was encountered. -func (tm *TextMarshaler) writeProto3Any(w *textWriter, sv reflect.Value) (bool, error) { - turl := sv.FieldByName("TypeUrl") - val := sv.FieldByName("Value") - if !turl.IsValid() || !val.IsValid() { - return true, errors.New("proto: invalid google.protobuf.Any message") - } - - b, ok := val.Interface().([]byte) - if !ok { - return true, errors.New("proto: invalid google.protobuf.Any message") - } - - parts := strings.Split(turl.String(), "/") - mt := MessageType(parts[len(parts)-1]) - if mt == nil { - return false, nil - } - m := reflect.New(mt.Elem()) - if err := Unmarshal(b, m.Interface().(Message)); err != nil { - return false, nil - } - w.Write([]byte("[")) - u := turl.String() - if requiresQuotes(u) { - writeString(w, u) - } else { - w.Write([]byte(u)) - } - if w.compact { - w.Write([]byte("]:<")) - } else { - w.Write([]byte("]: <\n")) - w.ind++ - } - if err := tm.writeStruct(w, m.Elem()); err != nil { - return true, err - } - if w.compact { - w.Write([]byte("> ")) - } else { - w.ind-- - w.Write([]byte(">\n")) - } - return true, nil -} - -func (tm *TextMarshaler) writeStruct(w *textWriter, sv reflect.Value) error { - if tm.ExpandAny && isAny(sv) { - if canExpand, err := tm.writeProto3Any(w, sv); canExpand { - return err - } - } - st := sv.Type() - sprops := GetProperties(st) - for i := 0; i < sv.NumField(); i++ { - fv := sv.Field(i) - props := sprops.Prop[i] - name := st.Field(i).Name - - if name == "XXX_NoUnkeyedLiteral" { - continue - } - - if strings.HasPrefix(name, "XXX_") { - // There are two XXX_ fields: - // XXX_unrecognized []byte - // XXX_extensions map[int32]proto.Extension - // The first is handled here; - // the second is handled at the bottom of this function. - if name == "XXX_unrecognized" && !fv.IsNil() { - if err := writeUnknownStruct(w, fv.Interface().([]byte)); err != nil { - return err - } - } - continue - } - if fv.Kind() == reflect.Ptr && fv.IsNil() { - // Field not filled in. This could be an optional field or - // a required field that wasn't filled in. Either way, there - // isn't anything we can show for it. - continue - } - if fv.Kind() == reflect.Slice && fv.IsNil() { - // Repeated field that is empty, or a bytes field that is unused. - continue - } - - if props.Repeated && fv.Kind() == reflect.Slice { - // Repeated field. - for j := 0; j < fv.Len(); j++ { - if err := writeName(w, props); err != nil { - return err - } - if !w.compact { - if err := w.WriteByte(' '); err != nil { - return err - } - } - v := fv.Index(j) - if v.Kind() == reflect.Ptr && v.IsNil() { - // A nil message in a repeated field is not valid, - // but we can handle that more gracefully than panicking. - if _, err := w.Write([]byte("\n")); err != nil { - return err - } - continue - } - if err := tm.writeAny(w, v, props); err != nil { - return err - } - if err := w.WriteByte('\n'); err != nil { - return err - } - } - continue - } - if fv.Kind() == reflect.Map { - // Map fields are rendered as a repeated struct with key/value fields. - keys := fv.MapKeys() - sort.Sort(mapKeys(keys)) - for _, key := range keys { - val := fv.MapIndex(key) - if err := writeName(w, props); err != nil { - return err - } - if !w.compact { - if err := w.WriteByte(' '); err != nil { - return err - } - } - // open struct - if err := w.WriteByte('<'); err != nil { - return err - } - if !w.compact { - if err := w.WriteByte('\n'); err != nil { - return err - } - } - w.indent() - // key - if _, err := w.WriteString("key:"); err != nil { - return err - } - if !w.compact { - if err := w.WriteByte(' '); err != nil { - return err - } - } - if err := tm.writeAny(w, key, props.MapKeyProp); err != nil { - return err - } - if err := w.WriteByte('\n'); err != nil { - return err - } - // nil values aren't legal, but we can avoid panicking because of them. - if val.Kind() != reflect.Ptr || !val.IsNil() { - // value - if _, err := w.WriteString("value:"); err != nil { - return err - } - if !w.compact { - if err := w.WriteByte(' '); err != nil { - return err - } - } - if err := tm.writeAny(w, val, props.MapValProp); err != nil { - return err - } - if err := w.WriteByte('\n'); err != nil { - return err - } - } - // close struct - w.unindent() - if err := w.WriteByte('>'); err != nil { - return err - } - if err := w.WriteByte('\n'); err != nil { - return err - } - } - continue - } - if props.proto3 && fv.Kind() == reflect.Slice && fv.Len() == 0 { - // empty bytes field - continue - } - if fv.Kind() != reflect.Ptr && fv.Kind() != reflect.Slice { - // proto3 non-repeated scalar field; skip if zero value - if isProto3Zero(fv) { - continue - } - } - - if fv.Kind() == reflect.Interface { - // Check if it is a oneof. - if st.Field(i).Tag.Get("protobuf_oneof") != "" { - // fv is nil, or holds a pointer to generated struct. - // That generated struct has exactly one field, - // which has a protobuf struct tag. - if fv.IsNil() { - continue - } - inner := fv.Elem().Elem() // interface -> *T -> T - tag := inner.Type().Field(0).Tag.Get("protobuf") - props = new(Properties) // Overwrite the outer props var, but not its pointee. - props.Parse(tag) - // Write the value in the oneof, not the oneof itself. - fv = inner.Field(0) - - // Special case to cope with malformed messages gracefully: - // If the value in the oneof is a nil pointer, don't panic - // in writeAny. - if fv.Kind() == reflect.Ptr && fv.IsNil() { - // Use errors.New so writeAny won't render quotes. - msg := errors.New("/* nil */") - fv = reflect.ValueOf(&msg).Elem() - } - } - } - - if err := writeName(w, props); err != nil { - return err - } - if !w.compact { - if err := w.WriteByte(' '); err != nil { - return err - } - } - - // Enums have a String method, so writeAny will work fine. - if err := tm.writeAny(w, fv, props); err != nil { - return err - } - - if err := w.WriteByte('\n'); err != nil { - return err - } - } - - // Extensions (the XXX_extensions field). - pv := sv.Addr() - if _, err := extendable(pv.Interface()); err == nil { - if err := tm.writeExtensions(w, pv); err != nil { - return err - } - } - - return nil -} - -// writeAny writes an arbitrary field. -func (tm *TextMarshaler) writeAny(w *textWriter, v reflect.Value, props *Properties) error { - v = reflect.Indirect(v) - - // Floats have special cases. - if v.Kind() == reflect.Float32 || v.Kind() == reflect.Float64 { - x := v.Float() - var b []byte - switch { - case math.IsInf(x, 1): - b = posInf - case math.IsInf(x, -1): - b = negInf - case math.IsNaN(x): - b = nan - } - if b != nil { - _, err := w.Write(b) - return err - } - // Other values are handled below. - } - - // We don't attempt to serialise every possible value type; only those - // that can occur in protocol buffers. - switch v.Kind() { - case reflect.Slice: - // Should only be a []byte; repeated fields are handled in writeStruct. - if err := writeString(w, string(v.Bytes())); err != nil { - return err - } - case reflect.String: - if err := writeString(w, v.String()); err != nil { - return err - } - case reflect.Struct: - // Required/optional group/message. - var bra, ket byte = '<', '>' - if props != nil && props.Wire == "group" { - bra, ket = '{', '}' - } - if err := w.WriteByte(bra); err != nil { - return err - } - if !w.compact { - if err := w.WriteByte('\n'); err != nil { - return err - } - } - w.indent() - if v.CanAddr() { - // Calling v.Interface on a struct causes the reflect package to - // copy the entire struct. This is racy with the new Marshaler - // since we atomically update the XXX_sizecache. - // - // Thus, we retrieve a pointer to the struct if possible to avoid - // a race since v.Interface on the pointer doesn't copy the struct. - // - // If v is not addressable, then we are not worried about a race - // since it implies that the binary Marshaler cannot possibly be - // mutating this value. - v = v.Addr() - } - if etm, ok := v.Interface().(encoding.TextMarshaler); ok { - text, err := etm.MarshalText() - if err != nil { - return err - } - if _, err = w.Write(text); err != nil { - return err - } - } else { - if v.Kind() == reflect.Ptr { - v = v.Elem() - } - if err := tm.writeStruct(w, v); err != nil { - return err - } - } - w.unindent() - if err := w.WriteByte(ket); err != nil { - return err - } - default: - _, err := fmt.Fprint(w, v.Interface()) - return err - } - return nil -} - -// equivalent to C's isprint. -func isprint(c byte) bool { - return c >= 0x20 && c < 0x7f -} - -// writeString writes a string in the protocol buffer text format. -// It is similar to strconv.Quote except we don't use Go escape sequences, -// we treat the string as a byte sequence, and we use octal escapes. -// These differences are to maintain interoperability with the other -// languages' implementations of the text format. -func writeString(w *textWriter, s string) error { - // use WriteByte here to get any needed indent - if err := w.WriteByte('"'); err != nil { - return err - } - // Loop over the bytes, not the runes. - for i := 0; i < len(s); i++ { - var err error - // Divergence from C++: we don't escape apostrophes. - // There's no need to escape them, and the C++ parser - // copes with a naked apostrophe. - switch c := s[i]; c { - case '\n': - _, err = w.w.Write(backslashN) - case '\r': - _, err = w.w.Write(backslashR) - case '\t': - _, err = w.w.Write(backslashT) - case '"': - _, err = w.w.Write(backslashDQ) - case '\\': - _, err = w.w.Write(backslashBS) - default: - if isprint(c) { - err = w.w.WriteByte(c) - } else { - _, err = fmt.Fprintf(w.w, "\\%03o", c) - } - } - if err != nil { - return err - } - } - return w.WriteByte('"') -} - -func writeUnknownStruct(w *textWriter, data []byte) (err error) { - if !w.compact { - if _, err := fmt.Fprintf(w, "/* %d unknown bytes */\n", len(data)); err != nil { - return err - } - } - b := NewBuffer(data) - for b.index < len(b.buf) { - x, err := b.DecodeVarint() - if err != nil { - _, err := fmt.Fprintf(w, "/* %v */\n", err) - return err - } - wire, tag := x&7, x>>3 - if wire == WireEndGroup { - w.unindent() - if _, err := w.Write(endBraceNewline); err != nil { - return err - } - continue - } - if _, err := fmt.Fprint(w, tag); err != nil { - return err - } - if wire != WireStartGroup { - if err := w.WriteByte(':'); err != nil { - return err - } - } - if !w.compact || wire == WireStartGroup { - if err := w.WriteByte(' '); err != nil { - return err - } - } - switch wire { - case WireBytes: - buf, e := b.DecodeRawBytes(false) - if e == nil { - _, err = fmt.Fprintf(w, "%q", buf) - } else { - _, err = fmt.Fprintf(w, "/* %v */", e) - } - case WireFixed32: - x, err = b.DecodeFixed32() - err = writeUnknownInt(w, x, err) - case WireFixed64: - x, err = b.DecodeFixed64() - err = writeUnknownInt(w, x, err) - case WireStartGroup: - err = w.WriteByte('{') - w.indent() - case WireVarint: - x, err = b.DecodeVarint() - err = writeUnknownInt(w, x, err) - default: - _, err = fmt.Fprintf(w, "/* unknown wire type %d */", wire) - } - if err != nil { - return err - } - if err = w.WriteByte('\n'); err != nil { - return err - } - } - return nil -} - -func writeUnknownInt(w *textWriter, x uint64, err error) error { - if err == nil { - _, err = fmt.Fprint(w, x) - } else { - _, err = fmt.Fprintf(w, "/* %v */", err) - } - return err -} - -type int32Slice []int32 - -func (s int32Slice) Len() int { return len(s) } -func (s int32Slice) Less(i, j int) bool { return s[i] < s[j] } -func (s int32Slice) Swap(i, j int) { s[i], s[j] = s[j], s[i] } - -// writeExtensions writes all the extensions in pv. -// pv is assumed to be a pointer to a protocol message struct that is extendable. -func (tm *TextMarshaler) writeExtensions(w *textWriter, pv reflect.Value) error { - emap := extensionMaps[pv.Type().Elem()] - ep, _ := extendable(pv.Interface()) - - // Order the extensions by ID. - // This isn't strictly necessary, but it will give us - // canonical output, which will also make testing easier. - m, mu := ep.extensionsRead() - if m == nil { - return nil - } - mu.Lock() - ids := make([]int32, 0, len(m)) - for id := range m { - ids = append(ids, id) - } - sort.Sort(int32Slice(ids)) - mu.Unlock() - - for _, extNum := range ids { - ext := m[extNum] - var desc *ExtensionDesc - if emap != nil { - desc = emap[extNum] - } - if desc == nil { - // Unknown extension. - if err := writeUnknownStruct(w, ext.enc); err != nil { - return err - } - continue - } - - pb, err := GetExtension(ep, desc) - if err != nil { - return fmt.Errorf("failed getting extension: %v", err) - } - - // Repeated extensions will appear as a slice. - if !desc.repeated() { - if err := tm.writeExtension(w, desc.Name, pb); err != nil { - return err - } - } else { - v := reflect.ValueOf(pb) - for i := 0; i < v.Len(); i++ { - if err := tm.writeExtension(w, desc.Name, v.Index(i).Interface()); err != nil { - return err - } - } - } - } - return nil -} - -func (tm *TextMarshaler) writeExtension(w *textWriter, name string, pb interface{}) error { - if _, err := fmt.Fprintf(w, "[%s]:", name); err != nil { - return err - } - if !w.compact { - if err := w.WriteByte(' '); err != nil { - return err - } - } - if err := tm.writeAny(w, reflect.ValueOf(pb), nil); err != nil { - return err - } - if err := w.WriteByte('\n'); err != nil { - return err - } - return nil -} - -func (w *textWriter) writeIndent() { - if !w.complete { - return - } - remain := w.ind * 2 - for remain > 0 { - n := remain - if n > len(spaces) { - n = len(spaces) - } - w.w.Write(spaces[:n]) - remain -= n - } - w.complete = false -} - -// TextMarshaler is a configurable text format marshaler. -type TextMarshaler struct { - Compact bool // use compact text format (one line). - ExpandAny bool // expand google.protobuf.Any messages of known types -} - -// Marshal writes a given protocol buffer in text format. -// The only errors returned are from w. -func (tm *TextMarshaler) Marshal(w io.Writer, pb Message) error { - val := reflect.ValueOf(pb) - if pb == nil || val.IsNil() { - w.Write([]byte("")) - return nil - } - var bw *bufio.Writer - ww, ok := w.(writer) - if !ok { - bw = bufio.NewWriter(w) - ww = bw - } - aw := &textWriter{ - w: ww, - complete: true, - compact: tm.Compact, - } - - if etm, ok := pb.(encoding.TextMarshaler); ok { - text, err := etm.MarshalText() - if err != nil { - return err - } - if _, err = aw.Write(text); err != nil { - return err - } - if bw != nil { - return bw.Flush() - } - return nil - } - // Dereference the received pointer so we don't have outer < and >. - v := reflect.Indirect(val) - if err := tm.writeStruct(aw, v); err != nil { - return err - } - if bw != nil { - return bw.Flush() - } - return nil -} - -// Text is the same as Marshal, but returns the string directly. -func (tm *TextMarshaler) Text(pb Message) string { - var buf bytes.Buffer - tm.Marshal(&buf, pb) - return buf.String() -} - -var ( - defaultTextMarshaler = TextMarshaler{} - compactTextMarshaler = TextMarshaler{Compact: true} -) - -// TODO: consider removing some of the Marshal functions below. - -// MarshalText writes a given protocol buffer in text format. -// The only errors returned are from w. -func MarshalText(w io.Writer, pb Message) error { return defaultTextMarshaler.Marshal(w, pb) } - -// MarshalTextString is the same as MarshalText, but returns the string directly. -func MarshalTextString(pb Message) string { return defaultTextMarshaler.Text(pb) } - -// CompactText writes a given protocol buffer in compact text format (one line). -func CompactText(w io.Writer, pb Message) error { return compactTextMarshaler.Marshal(w, pb) } - -// CompactTextString is the same as CompactText, but returns the string directly. -func CompactTextString(pb Message) string { return compactTextMarshaler.Text(pb) } diff --git a/vendor/github.com/golang/protobuf/proto/text_parser.go b/vendor/github.com/golang/protobuf/proto/text_parser.go deleted file mode 100644 index bb55a3af..00000000 --- a/vendor/github.com/golang/protobuf/proto/text_parser.go +++ /dev/null @@ -1,880 +0,0 @@ -// Go support for Protocol Buffers - Google's data interchange format -// -// Copyright 2010 The Go Authors. All rights reserved. -// https://github.com/golang/protobuf -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - -package proto - -// Functions for parsing the Text protocol buffer format. -// TODO: message sets. - -import ( - "encoding" - "errors" - "fmt" - "reflect" - "strconv" - "strings" - "unicode/utf8" -) - -// Error string emitted when deserializing Any and fields are already set -const anyRepeatedlyUnpacked = "Any message unpacked multiple times, or %q already set" - -type ParseError struct { - Message string - Line int // 1-based line number - Offset int // 0-based byte offset from start of input -} - -func (p *ParseError) Error() string { - if p.Line == 1 { - // show offset only for first line - return fmt.Sprintf("line 1.%d: %v", p.Offset, p.Message) - } - return fmt.Sprintf("line %d: %v", p.Line, p.Message) -} - -type token struct { - value string - err *ParseError - line int // line number - offset int // byte number from start of input, not start of line - unquoted string // the unquoted version of value, if it was a quoted string -} - -func (t *token) String() string { - if t.err == nil { - return fmt.Sprintf("%q (line=%d, offset=%d)", t.value, t.line, t.offset) - } - return fmt.Sprintf("parse error: %v", t.err) -} - -type textParser struct { - s string // remaining input - done bool // whether the parsing is finished (success or error) - backed bool // whether back() was called - offset, line int - cur token -} - -func newTextParser(s string) *textParser { - p := new(textParser) - p.s = s - p.line = 1 - p.cur.line = 1 - return p -} - -func (p *textParser) errorf(format string, a ...interface{}) *ParseError { - pe := &ParseError{fmt.Sprintf(format, a...), p.cur.line, p.cur.offset} - p.cur.err = pe - p.done = true - return pe -} - -// Numbers and identifiers are matched by [-+._A-Za-z0-9] -func isIdentOrNumberChar(c byte) bool { - switch { - case 'A' <= c && c <= 'Z', 'a' <= c && c <= 'z': - return true - case '0' <= c && c <= '9': - return true - } - switch c { - case '-', '+', '.', '_': - return true - } - return false -} - -func isWhitespace(c byte) bool { - switch c { - case ' ', '\t', '\n', '\r': - return true - } - return false -} - -func isQuote(c byte) bool { - switch c { - case '"', '\'': - return true - } - return false -} - -func (p *textParser) skipWhitespace() { - i := 0 - for i < len(p.s) && (isWhitespace(p.s[i]) || p.s[i] == '#') { - if p.s[i] == '#' { - // comment; skip to end of line or input - for i < len(p.s) && p.s[i] != '\n' { - i++ - } - if i == len(p.s) { - break - } - } - if p.s[i] == '\n' { - p.line++ - } - i++ - } - p.offset += i - p.s = p.s[i:len(p.s)] - if len(p.s) == 0 { - p.done = true - } -} - -func (p *textParser) advance() { - // Skip whitespace - p.skipWhitespace() - if p.done { - return - } - - // Start of non-whitespace - p.cur.err = nil - p.cur.offset, p.cur.line = p.offset, p.line - p.cur.unquoted = "" - switch p.s[0] { - case '<', '>', '{', '}', ':', '[', ']', ';', ',', '/': - // Single symbol - p.cur.value, p.s = p.s[0:1], p.s[1:len(p.s)] - case '"', '\'': - // Quoted string - i := 1 - for i < len(p.s) && p.s[i] != p.s[0] && p.s[i] != '\n' { - if p.s[i] == '\\' && i+1 < len(p.s) { - // skip escaped char - i++ - } - i++ - } - if i >= len(p.s) || p.s[i] != p.s[0] { - p.errorf("unmatched quote") - return - } - unq, err := unquoteC(p.s[1:i], rune(p.s[0])) - if err != nil { - p.errorf("invalid quoted string %s: %v", p.s[0:i+1], err) - return - } - p.cur.value, p.s = p.s[0:i+1], p.s[i+1:len(p.s)] - p.cur.unquoted = unq - default: - i := 0 - for i < len(p.s) && isIdentOrNumberChar(p.s[i]) { - i++ - } - if i == 0 { - p.errorf("unexpected byte %#x", p.s[0]) - return - } - p.cur.value, p.s = p.s[0:i], p.s[i:len(p.s)] - } - p.offset += len(p.cur.value) -} - -var ( - errBadUTF8 = errors.New("proto: bad UTF-8") -) - -func unquoteC(s string, quote rune) (string, error) { - // This is based on C++'s tokenizer.cc. - // Despite its name, this is *not* parsing C syntax. - // For instance, "\0" is an invalid quoted string. - - // Avoid allocation in trivial cases. - simple := true - for _, r := range s { - if r == '\\' || r == quote { - simple = false - break - } - } - if simple { - return s, nil - } - - buf := make([]byte, 0, 3*len(s)/2) - for len(s) > 0 { - r, n := utf8.DecodeRuneInString(s) - if r == utf8.RuneError && n == 1 { - return "", errBadUTF8 - } - s = s[n:] - if r != '\\' { - if r < utf8.RuneSelf { - buf = append(buf, byte(r)) - } else { - buf = append(buf, string(r)...) - } - continue - } - - ch, tail, err := unescape(s) - if err != nil { - return "", err - } - buf = append(buf, ch...) - s = tail - } - return string(buf), nil -} - -func unescape(s string) (ch string, tail string, err error) { - r, n := utf8.DecodeRuneInString(s) - if r == utf8.RuneError && n == 1 { - return "", "", errBadUTF8 - } - s = s[n:] - switch r { - case 'a': - return "\a", s, nil - case 'b': - return "\b", s, nil - case 'f': - return "\f", s, nil - case 'n': - return "\n", s, nil - case 'r': - return "\r", s, nil - case 't': - return "\t", s, nil - case 'v': - return "\v", s, nil - case '?': - return "?", s, nil // trigraph workaround - case '\'', '"', '\\': - return string(r), s, nil - case '0', '1', '2', '3', '4', '5', '6', '7': - if len(s) < 2 { - return "", "", fmt.Errorf(`\%c requires 2 following digits`, r) - } - ss := string(r) + s[:2] - s = s[2:] - i, err := strconv.ParseUint(ss, 8, 8) - if err != nil { - return "", "", fmt.Errorf(`\%s contains non-octal digits`, ss) - } - return string([]byte{byte(i)}), s, nil - case 'x', 'X', 'u', 'U': - var n int - switch r { - case 'x', 'X': - n = 2 - case 'u': - n = 4 - case 'U': - n = 8 - } - if len(s) < n { - return "", "", fmt.Errorf(`\%c requires %d following digits`, r, n) - } - ss := s[:n] - s = s[n:] - i, err := strconv.ParseUint(ss, 16, 64) - if err != nil { - return "", "", fmt.Errorf(`\%c%s contains non-hexadecimal digits`, r, ss) - } - if r == 'x' || r == 'X' { - return string([]byte{byte(i)}), s, nil - } - if i > utf8.MaxRune { - return "", "", fmt.Errorf(`\%c%s is not a valid Unicode code point`, r, ss) - } - return string(i), s, nil - } - return "", "", fmt.Errorf(`unknown escape \%c`, r) -} - -// Back off the parser by one token. Can only be done between calls to next(). -// It makes the next advance() a no-op. -func (p *textParser) back() { p.backed = true } - -// Advances the parser and returns the new current token. -func (p *textParser) next() *token { - if p.backed || p.done { - p.backed = false - return &p.cur - } - p.advance() - if p.done { - p.cur.value = "" - } else if len(p.cur.value) > 0 && isQuote(p.cur.value[0]) { - // Look for multiple quoted strings separated by whitespace, - // and concatenate them. - cat := p.cur - for { - p.skipWhitespace() - if p.done || !isQuote(p.s[0]) { - break - } - p.advance() - if p.cur.err != nil { - return &p.cur - } - cat.value += " " + p.cur.value - cat.unquoted += p.cur.unquoted - } - p.done = false // parser may have seen EOF, but we want to return cat - p.cur = cat - } - return &p.cur -} - -func (p *textParser) consumeToken(s string) error { - tok := p.next() - if tok.err != nil { - return tok.err - } - if tok.value != s { - p.back() - return p.errorf("expected %q, found %q", s, tok.value) - } - return nil -} - -// Return a RequiredNotSetError indicating which required field was not set. -func (p *textParser) missingRequiredFieldError(sv reflect.Value) *RequiredNotSetError { - st := sv.Type() - sprops := GetProperties(st) - for i := 0; i < st.NumField(); i++ { - if !isNil(sv.Field(i)) { - continue - } - - props := sprops.Prop[i] - if props.Required { - return &RequiredNotSetError{fmt.Sprintf("%v.%v", st, props.OrigName)} - } - } - return &RequiredNotSetError{fmt.Sprintf("%v.", st)} // should not happen -} - -// Returns the index in the struct for the named field, as well as the parsed tag properties. -func structFieldByName(sprops *StructProperties, name string) (int, *Properties, bool) { - i, ok := sprops.decoderOrigNames[name] - if ok { - return i, sprops.Prop[i], true - } - return -1, nil, false -} - -// Consume a ':' from the input stream (if the next token is a colon), -// returning an error if a colon is needed but not present. -func (p *textParser) checkForColon(props *Properties, typ reflect.Type) *ParseError { - tok := p.next() - if tok.err != nil { - return tok.err - } - if tok.value != ":" { - // Colon is optional when the field is a group or message. - needColon := true - switch props.Wire { - case "group": - needColon = false - case "bytes": - // A "bytes" field is either a message, a string, or a repeated field; - // those three become *T, *string and []T respectively, so we can check for - // this field being a pointer to a non-string. - if typ.Kind() == reflect.Ptr { - // *T or *string - if typ.Elem().Kind() == reflect.String { - break - } - } else if typ.Kind() == reflect.Slice { - // []T or []*T - if typ.Elem().Kind() != reflect.Ptr { - break - } - } else if typ.Kind() == reflect.String { - // The proto3 exception is for a string field, - // which requires a colon. - break - } - needColon = false - } - if needColon { - return p.errorf("expected ':', found %q", tok.value) - } - p.back() - } - return nil -} - -func (p *textParser) readStruct(sv reflect.Value, terminator string) error { - st := sv.Type() - sprops := GetProperties(st) - reqCount := sprops.reqCount - var reqFieldErr error - fieldSet := make(map[string]bool) - // A struct is a sequence of "name: value", terminated by one of - // '>' or '}', or the end of the input. A name may also be - // "[extension]" or "[type/url]". - // - // The whole struct can also be an expanded Any message, like: - // [type/url] < ... struct contents ... > - for { - tok := p.next() - if tok.err != nil { - return tok.err - } - if tok.value == terminator { - break - } - if tok.value == "[" { - // Looks like an extension or an Any. - // - // TODO: Check whether we need to handle - // namespace rooted names (e.g. ".something.Foo"). - extName, err := p.consumeExtName() - if err != nil { - return err - } - - if s := strings.LastIndex(extName, "/"); s >= 0 { - // If it contains a slash, it's an Any type URL. - messageName := extName[s+1:] - mt := MessageType(messageName) - if mt == nil { - return p.errorf("unrecognized message %q in google.protobuf.Any", messageName) - } - tok = p.next() - if tok.err != nil { - return tok.err - } - // consume an optional colon - if tok.value == ":" { - tok = p.next() - if tok.err != nil { - return tok.err - } - } - var terminator string - switch tok.value { - case "<": - terminator = ">" - case "{": - terminator = "}" - default: - return p.errorf("expected '{' or '<', found %q", tok.value) - } - v := reflect.New(mt.Elem()) - if pe := p.readStruct(v.Elem(), terminator); pe != nil { - return pe - } - b, err := Marshal(v.Interface().(Message)) - if err != nil { - return p.errorf("failed to marshal message of type %q: %v", messageName, err) - } - if fieldSet["type_url"] { - return p.errorf(anyRepeatedlyUnpacked, "type_url") - } - if fieldSet["value"] { - return p.errorf(anyRepeatedlyUnpacked, "value") - } - sv.FieldByName("TypeUrl").SetString(extName) - sv.FieldByName("Value").SetBytes(b) - fieldSet["type_url"] = true - fieldSet["value"] = true - continue - } - - var desc *ExtensionDesc - // This could be faster, but it's functional. - // TODO: Do something smarter than a linear scan. - for _, d := range RegisteredExtensions(reflect.New(st).Interface().(Message)) { - if d.Name == extName { - desc = d - break - } - } - if desc == nil { - return p.errorf("unrecognized extension %q", extName) - } - - props := &Properties{} - props.Parse(desc.Tag) - - typ := reflect.TypeOf(desc.ExtensionType) - if err := p.checkForColon(props, typ); err != nil { - return err - } - - rep := desc.repeated() - - // Read the extension structure, and set it in - // the value we're constructing. - var ext reflect.Value - if !rep { - ext = reflect.New(typ).Elem() - } else { - ext = reflect.New(typ.Elem()).Elem() - } - if err := p.readAny(ext, props); err != nil { - if _, ok := err.(*RequiredNotSetError); !ok { - return err - } - reqFieldErr = err - } - ep := sv.Addr().Interface().(Message) - if !rep { - SetExtension(ep, desc, ext.Interface()) - } else { - old, err := GetExtension(ep, desc) - var sl reflect.Value - if err == nil { - sl = reflect.ValueOf(old) // existing slice - } else { - sl = reflect.MakeSlice(typ, 0, 1) - } - sl = reflect.Append(sl, ext) - SetExtension(ep, desc, sl.Interface()) - } - if err := p.consumeOptionalSeparator(); err != nil { - return err - } - continue - } - - // This is a normal, non-extension field. - name := tok.value - var dst reflect.Value - fi, props, ok := structFieldByName(sprops, name) - if ok { - dst = sv.Field(fi) - } else if oop, ok := sprops.OneofTypes[name]; ok { - // It is a oneof. - props = oop.Prop - nv := reflect.New(oop.Type.Elem()) - dst = nv.Elem().Field(0) - field := sv.Field(oop.Field) - if !field.IsNil() { - return p.errorf("field '%s' would overwrite already parsed oneof '%s'", name, sv.Type().Field(oop.Field).Name) - } - field.Set(nv) - } - if !dst.IsValid() { - return p.errorf("unknown field name %q in %v", name, st) - } - - if dst.Kind() == reflect.Map { - // Consume any colon. - if err := p.checkForColon(props, dst.Type()); err != nil { - return err - } - - // Construct the map if it doesn't already exist. - if dst.IsNil() { - dst.Set(reflect.MakeMap(dst.Type())) - } - key := reflect.New(dst.Type().Key()).Elem() - val := reflect.New(dst.Type().Elem()).Elem() - - // The map entry should be this sequence of tokens: - // < key : KEY value : VALUE > - // However, implementations may omit key or value, and technically - // we should support them in any order. See b/28924776 for a time - // this went wrong. - - tok := p.next() - var terminator string - switch tok.value { - case "<": - terminator = ">" - case "{": - terminator = "}" - default: - return p.errorf("expected '{' or '<', found %q", tok.value) - } - for { - tok := p.next() - if tok.err != nil { - return tok.err - } - if tok.value == terminator { - break - } - switch tok.value { - case "key": - if err := p.consumeToken(":"); err != nil { - return err - } - if err := p.readAny(key, props.MapKeyProp); err != nil { - return err - } - if err := p.consumeOptionalSeparator(); err != nil { - return err - } - case "value": - if err := p.checkForColon(props.MapValProp, dst.Type().Elem()); err != nil { - return err - } - if err := p.readAny(val, props.MapValProp); err != nil { - return err - } - if err := p.consumeOptionalSeparator(); err != nil { - return err - } - default: - p.back() - return p.errorf(`expected "key", "value", or %q, found %q`, terminator, tok.value) - } - } - - dst.SetMapIndex(key, val) - continue - } - - // Check that it's not already set if it's not a repeated field. - if !props.Repeated && fieldSet[name] { - return p.errorf("non-repeated field %q was repeated", name) - } - - if err := p.checkForColon(props, dst.Type()); err != nil { - return err - } - - // Parse into the field. - fieldSet[name] = true - if err := p.readAny(dst, props); err != nil { - if _, ok := err.(*RequiredNotSetError); !ok { - return err - } - reqFieldErr = err - } - if props.Required { - reqCount-- - } - - if err := p.consumeOptionalSeparator(); err != nil { - return err - } - - } - - if reqCount > 0 { - return p.missingRequiredFieldError(sv) - } - return reqFieldErr -} - -// consumeExtName consumes extension name or expanded Any type URL and the -// following ']'. It returns the name or URL consumed. -func (p *textParser) consumeExtName() (string, error) { - tok := p.next() - if tok.err != nil { - return "", tok.err - } - - // If extension name or type url is quoted, it's a single token. - if len(tok.value) > 2 && isQuote(tok.value[0]) && tok.value[len(tok.value)-1] == tok.value[0] { - name, err := unquoteC(tok.value[1:len(tok.value)-1], rune(tok.value[0])) - if err != nil { - return "", err - } - return name, p.consumeToken("]") - } - - // Consume everything up to "]" - var parts []string - for tok.value != "]" { - parts = append(parts, tok.value) - tok = p.next() - if tok.err != nil { - return "", p.errorf("unrecognized type_url or extension name: %s", tok.err) - } - if p.done && tok.value != "]" { - return "", p.errorf("unclosed type_url or extension name") - } - } - return strings.Join(parts, ""), nil -} - -// consumeOptionalSeparator consumes an optional semicolon or comma. -// It is used in readStruct to provide backward compatibility. -func (p *textParser) consumeOptionalSeparator() error { - tok := p.next() - if tok.err != nil { - return tok.err - } - if tok.value != ";" && tok.value != "," { - p.back() - } - return nil -} - -func (p *textParser) readAny(v reflect.Value, props *Properties) error { - tok := p.next() - if tok.err != nil { - return tok.err - } - if tok.value == "" { - return p.errorf("unexpected EOF") - } - - switch fv := v; fv.Kind() { - case reflect.Slice: - at := v.Type() - if at.Elem().Kind() == reflect.Uint8 { - // Special case for []byte - if tok.value[0] != '"' && tok.value[0] != '\'' { - // Deliberately written out here, as the error after - // this switch statement would write "invalid []byte: ...", - // which is not as user-friendly. - return p.errorf("invalid string: %v", tok.value) - } - bytes := []byte(tok.unquoted) - fv.Set(reflect.ValueOf(bytes)) - return nil - } - // Repeated field. - if tok.value == "[" { - // Repeated field with list notation, like [1,2,3]. - for { - fv.Set(reflect.Append(fv, reflect.New(at.Elem()).Elem())) - err := p.readAny(fv.Index(fv.Len()-1), props) - if err != nil { - return err - } - tok := p.next() - if tok.err != nil { - return tok.err - } - if tok.value == "]" { - break - } - if tok.value != "," { - return p.errorf("Expected ']' or ',' found %q", tok.value) - } - } - return nil - } - // One value of the repeated field. - p.back() - fv.Set(reflect.Append(fv, reflect.New(at.Elem()).Elem())) - return p.readAny(fv.Index(fv.Len()-1), props) - case reflect.Bool: - // true/1/t/True or false/f/0/False. - switch tok.value { - case "true", "1", "t", "True": - fv.SetBool(true) - return nil - case "false", "0", "f", "False": - fv.SetBool(false) - return nil - } - case reflect.Float32, reflect.Float64: - v := tok.value - // Ignore 'f' for compatibility with output generated by C++, but don't - // remove 'f' when the value is "-inf" or "inf". - if strings.HasSuffix(v, "f") && tok.value != "-inf" && tok.value != "inf" { - v = v[:len(v)-1] - } - if f, err := strconv.ParseFloat(v, fv.Type().Bits()); err == nil { - fv.SetFloat(f) - return nil - } - case reflect.Int32: - if x, err := strconv.ParseInt(tok.value, 0, 32); err == nil { - fv.SetInt(x) - return nil - } - - if len(props.Enum) == 0 { - break - } - m, ok := enumValueMaps[props.Enum] - if !ok { - break - } - x, ok := m[tok.value] - if !ok { - break - } - fv.SetInt(int64(x)) - return nil - case reflect.Int64: - if x, err := strconv.ParseInt(tok.value, 0, 64); err == nil { - fv.SetInt(x) - return nil - } - - case reflect.Ptr: - // A basic field (indirected through pointer), or a repeated message/group - p.back() - fv.Set(reflect.New(fv.Type().Elem())) - return p.readAny(fv.Elem(), props) - case reflect.String: - if tok.value[0] == '"' || tok.value[0] == '\'' { - fv.SetString(tok.unquoted) - return nil - } - case reflect.Struct: - var terminator string - switch tok.value { - case "{": - terminator = "}" - case "<": - terminator = ">" - default: - return p.errorf("expected '{' or '<', found %q", tok.value) - } - // TODO: Handle nested messages which implement encoding.TextUnmarshaler. - return p.readStruct(fv, terminator) - case reflect.Uint32: - if x, err := strconv.ParseUint(tok.value, 0, 32); err == nil { - fv.SetUint(uint64(x)) - return nil - } - case reflect.Uint64: - if x, err := strconv.ParseUint(tok.value, 0, 64); err == nil { - fv.SetUint(x) - return nil - } - } - return p.errorf("invalid %v: %v", v.Type(), tok.value) -} - -// UnmarshalText reads a protocol buffer in Text format. UnmarshalText resets pb -// before starting to unmarshal, so any existing data in pb is always removed. -// If a required field is not set and no other error occurs, -// UnmarshalText returns *RequiredNotSetError. -func UnmarshalText(s string, pb Message) error { - if um, ok := pb.(encoding.TextUnmarshaler); ok { - return um.UnmarshalText([]byte(s)) - } - pb.Reset() - v := reflect.ValueOf(pb) - return newTextParser(s).readStruct(v.Elem(), "") -} diff --git a/vendor/github.com/golang/protobuf/ptypes/struct/struct.pb.go b/vendor/github.com/golang/protobuf/ptypes/struct/struct.pb.go deleted file mode 100644 index ee6382e1..00000000 --- a/vendor/github.com/golang/protobuf/ptypes/struct/struct.pb.go +++ /dev/null @@ -1,450 +0,0 @@ -// Code generated by protoc-gen-go. DO NOT EDIT. -// source: google/protobuf/struct.proto - -package structpb // import "github.com/golang/protobuf/ptypes/struct" - -import proto "github.com/golang/protobuf/proto" -import fmt "fmt" -import math "math" - -// Reference imports to suppress errors if they are not otherwise used. -var _ = proto.Marshal -var _ = fmt.Errorf -var _ = math.Inf - -// This is a compile-time assertion to ensure that this generated file -// is compatible with the proto package it is being compiled against. -// A compilation error at this line likely means your copy of the -// proto package needs to be updated. -const _ = proto.ProtoPackageIsVersion2 // please upgrade the proto package - -// `NullValue` is a singleton enumeration to represent the null value for the -// `Value` type union. -// -// The JSON representation for `NullValue` is JSON `null`. -type NullValue int32 - -const ( - // Null value. - NullValue_NULL_VALUE NullValue = 0 -) - -var NullValue_name = map[int32]string{ - 0: "NULL_VALUE", -} -var NullValue_value = map[string]int32{ - "NULL_VALUE": 0, -} - -func (x NullValue) String() string { - return proto.EnumName(NullValue_name, int32(x)) -} -func (NullValue) EnumDescriptor() ([]byte, []int) { - return fileDescriptor_struct_3a5a94e0c7801b27, []int{0} -} -func (NullValue) XXX_WellKnownType() string { return "NullValue" } - -// `Struct` represents a structured data value, consisting of fields -// which map to dynamically typed values. In some languages, `Struct` -// might be supported by a native representation. For example, in -// scripting languages like JS a struct is represented as an -// object. The details of that representation are described together -// with the proto support for the language. -// -// The JSON representation for `Struct` is JSON object. -type Struct struct { - // Unordered map of dynamically typed values. - Fields map[string]*Value `protobuf:"bytes,1,rep,name=fields,proto3" json:"fields,omitempty" protobuf_key:"bytes,1,opt,name=key,proto3" protobuf_val:"bytes,2,opt,name=value,proto3"` - XXX_NoUnkeyedLiteral struct{} `json:"-"` - XXX_unrecognized []byte `json:"-"` - XXX_sizecache int32 `json:"-"` -} - -func (m *Struct) Reset() { *m = Struct{} } -func (m *Struct) String() string { return proto.CompactTextString(m) } -func (*Struct) ProtoMessage() {} -func (*Struct) Descriptor() ([]byte, []int) { - return fileDescriptor_struct_3a5a94e0c7801b27, []int{0} -} -func (*Struct) XXX_WellKnownType() string { return "Struct" } -func (m *Struct) XXX_Unmarshal(b []byte) error { - return xxx_messageInfo_Struct.Unmarshal(m, b) -} -func (m *Struct) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { - return xxx_messageInfo_Struct.Marshal(b, m, deterministic) -} -func (dst *Struct) XXX_Merge(src proto.Message) { - xxx_messageInfo_Struct.Merge(dst, src) -} -func (m *Struct) XXX_Size() int { - return xxx_messageInfo_Struct.Size(m) -} -func (m *Struct) XXX_DiscardUnknown() { - xxx_messageInfo_Struct.DiscardUnknown(m) -} - -var xxx_messageInfo_Struct proto.InternalMessageInfo - -func (m *Struct) GetFields() map[string]*Value { - if m != nil { - return m.Fields - } - return nil -} - -// `Value` represents a dynamically typed value which can be either -// null, a number, a string, a boolean, a recursive struct value, or a -// list of values. A producer of value is expected to set one of that -// variants, absence of any variant indicates an error. -// -// The JSON representation for `Value` is JSON value. -type Value struct { - // The kind of value. - // - // Types that are valid to be assigned to Kind: - // *Value_NullValue - // *Value_NumberValue - // *Value_StringValue - // *Value_BoolValue - // *Value_StructValue - // *Value_ListValue - Kind isValue_Kind `protobuf_oneof:"kind"` - XXX_NoUnkeyedLiteral struct{} `json:"-"` - XXX_unrecognized []byte `json:"-"` - XXX_sizecache int32 `json:"-"` -} - -func (m *Value) Reset() { *m = Value{} } -func (m *Value) String() string { return proto.CompactTextString(m) } -func (*Value) ProtoMessage() {} -func (*Value) Descriptor() ([]byte, []int) { - return fileDescriptor_struct_3a5a94e0c7801b27, []int{1} -} -func (*Value) XXX_WellKnownType() string { return "Value" } -func (m *Value) XXX_Unmarshal(b []byte) error { - return xxx_messageInfo_Value.Unmarshal(m, b) -} -func (m *Value) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { - return xxx_messageInfo_Value.Marshal(b, m, deterministic) -} -func (dst *Value) XXX_Merge(src proto.Message) { - xxx_messageInfo_Value.Merge(dst, src) -} -func (m *Value) XXX_Size() int { - return xxx_messageInfo_Value.Size(m) -} -func (m *Value) XXX_DiscardUnknown() { - xxx_messageInfo_Value.DiscardUnknown(m) -} - -var xxx_messageInfo_Value proto.InternalMessageInfo - -type isValue_Kind interface { - isValue_Kind() -} - -type Value_NullValue struct { - NullValue NullValue `protobuf:"varint,1,opt,name=null_value,json=nullValue,proto3,enum=google.protobuf.NullValue,oneof"` -} - -type Value_NumberValue struct { - NumberValue float64 `protobuf:"fixed64,2,opt,name=number_value,json=numberValue,proto3,oneof"` -} - -type Value_StringValue struct { - StringValue string `protobuf:"bytes,3,opt,name=string_value,json=stringValue,proto3,oneof"` -} - -type Value_BoolValue struct { - BoolValue bool `protobuf:"varint,4,opt,name=bool_value,json=boolValue,proto3,oneof"` -} - -type Value_StructValue struct { - StructValue *Struct `protobuf:"bytes,5,opt,name=struct_value,json=structValue,proto3,oneof"` -} - -type Value_ListValue struct { - ListValue *ListValue `protobuf:"bytes,6,opt,name=list_value,json=listValue,proto3,oneof"` -} - -func (*Value_NullValue) isValue_Kind() {} - -func (*Value_NumberValue) isValue_Kind() {} - -func (*Value_StringValue) isValue_Kind() {} - -func (*Value_BoolValue) isValue_Kind() {} - -func (*Value_StructValue) isValue_Kind() {} - -func (*Value_ListValue) isValue_Kind() {} - -func (m *Value) GetKind() isValue_Kind { - if m != nil { - return m.Kind - } - return nil -} - -func (m *Value) GetNullValue() NullValue { - if x, ok := m.GetKind().(*Value_NullValue); ok { - return x.NullValue - } - return NullValue_NULL_VALUE -} - -func (m *Value) GetNumberValue() float64 { - if x, ok := m.GetKind().(*Value_NumberValue); ok { - return x.NumberValue - } - return 0 -} - -func (m *Value) GetStringValue() string { - if x, ok := m.GetKind().(*Value_StringValue); ok { - return x.StringValue - } - return "" -} - -func (m *Value) GetBoolValue() bool { - if x, ok := m.GetKind().(*Value_BoolValue); ok { - return x.BoolValue - } - return false -} - -func (m *Value) GetStructValue() *Struct { - if x, ok := m.GetKind().(*Value_StructValue); ok { - return x.StructValue - } - return nil -} - -func (m *Value) GetListValue() *ListValue { - if x, ok := m.GetKind().(*Value_ListValue); ok { - return x.ListValue - } - return nil -} - -// XXX_OneofFuncs is for the internal use of the proto package. -func (*Value) XXX_OneofFuncs() (func(msg proto.Message, b *proto.Buffer) error, func(msg proto.Message, tag, wire int, b *proto.Buffer) (bool, error), func(msg proto.Message) (n int), []interface{}) { - return _Value_OneofMarshaler, _Value_OneofUnmarshaler, _Value_OneofSizer, []interface{}{ - (*Value_NullValue)(nil), - (*Value_NumberValue)(nil), - (*Value_StringValue)(nil), - (*Value_BoolValue)(nil), - (*Value_StructValue)(nil), - (*Value_ListValue)(nil), - } -} - -func _Value_OneofMarshaler(msg proto.Message, b *proto.Buffer) error { - m := msg.(*Value) - // kind - switch x := m.Kind.(type) { - case *Value_NullValue: - b.EncodeVarint(1<<3 | proto.WireVarint) - b.EncodeVarint(uint64(x.NullValue)) - case *Value_NumberValue: - b.EncodeVarint(2<<3 | proto.WireFixed64) - b.EncodeFixed64(math.Float64bits(x.NumberValue)) - case *Value_StringValue: - b.EncodeVarint(3<<3 | proto.WireBytes) - b.EncodeStringBytes(x.StringValue) - case *Value_BoolValue: - t := uint64(0) - if x.BoolValue { - t = 1 - } - b.EncodeVarint(4<<3 | proto.WireVarint) - b.EncodeVarint(t) - case *Value_StructValue: - b.EncodeVarint(5<<3 | proto.WireBytes) - if err := b.EncodeMessage(x.StructValue); err != nil { - return err - } - case *Value_ListValue: - b.EncodeVarint(6<<3 | proto.WireBytes) - if err := b.EncodeMessage(x.ListValue); err != nil { - return err - } - case nil: - default: - return fmt.Errorf("Value.Kind has unexpected type %T", x) - } - return nil -} - -func _Value_OneofUnmarshaler(msg proto.Message, tag, wire int, b *proto.Buffer) (bool, error) { - m := msg.(*Value) - switch tag { - case 1: // kind.null_value - if wire != proto.WireVarint { - return true, proto.ErrInternalBadWireType - } - x, err := b.DecodeVarint() - m.Kind = &Value_NullValue{NullValue(x)} - return true, err - case 2: // kind.number_value - if wire != proto.WireFixed64 { - return true, proto.ErrInternalBadWireType - } - x, err := b.DecodeFixed64() - m.Kind = &Value_NumberValue{math.Float64frombits(x)} - return true, err - case 3: // kind.string_value - if wire != proto.WireBytes { - return true, proto.ErrInternalBadWireType - } - x, err := b.DecodeStringBytes() - m.Kind = &Value_StringValue{x} - return true, err - case 4: // kind.bool_value - if wire != proto.WireVarint { - return true, proto.ErrInternalBadWireType - } - x, err := b.DecodeVarint() - m.Kind = &Value_BoolValue{x != 0} - return true, err - case 5: // kind.struct_value - if wire != proto.WireBytes { - return true, proto.ErrInternalBadWireType - } - msg := new(Struct) - err := b.DecodeMessage(msg) - m.Kind = &Value_StructValue{msg} - return true, err - case 6: // kind.list_value - if wire != proto.WireBytes { - return true, proto.ErrInternalBadWireType - } - msg := new(ListValue) - err := b.DecodeMessage(msg) - m.Kind = &Value_ListValue{msg} - return true, err - default: - return false, nil - } -} - -func _Value_OneofSizer(msg proto.Message) (n int) { - m := msg.(*Value) - // kind - switch x := m.Kind.(type) { - case *Value_NullValue: - n += 1 // tag and wire - n += proto.SizeVarint(uint64(x.NullValue)) - case *Value_NumberValue: - n += 1 // tag and wire - n += 8 - case *Value_StringValue: - n += 1 // tag and wire - n += proto.SizeVarint(uint64(len(x.StringValue))) - n += len(x.StringValue) - case *Value_BoolValue: - n += 1 // tag and wire - n += 1 - case *Value_StructValue: - s := proto.Size(x.StructValue) - n += 1 // tag and wire - n += proto.SizeVarint(uint64(s)) - n += s - case *Value_ListValue: - s := proto.Size(x.ListValue) - n += 1 // tag and wire - n += proto.SizeVarint(uint64(s)) - n += s - case nil: - default: - panic(fmt.Sprintf("proto: unexpected type %T in oneof", x)) - } - return n -} - -// `ListValue` is a wrapper around a repeated field of values. -// -// The JSON representation for `ListValue` is JSON array. -type ListValue struct { - // Repeated field of dynamically typed values. - Values []*Value `protobuf:"bytes,1,rep,name=values,proto3" json:"values,omitempty"` - XXX_NoUnkeyedLiteral struct{} `json:"-"` - XXX_unrecognized []byte `json:"-"` - XXX_sizecache int32 `json:"-"` -} - -func (m *ListValue) Reset() { *m = ListValue{} } -func (m *ListValue) String() string { return proto.CompactTextString(m) } -func (*ListValue) ProtoMessage() {} -func (*ListValue) Descriptor() ([]byte, []int) { - return fileDescriptor_struct_3a5a94e0c7801b27, []int{2} -} -func (*ListValue) XXX_WellKnownType() string { return "ListValue" } -func (m *ListValue) XXX_Unmarshal(b []byte) error { - return xxx_messageInfo_ListValue.Unmarshal(m, b) -} -func (m *ListValue) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { - return xxx_messageInfo_ListValue.Marshal(b, m, deterministic) -} -func (dst *ListValue) XXX_Merge(src proto.Message) { - xxx_messageInfo_ListValue.Merge(dst, src) -} -func (m *ListValue) XXX_Size() int { - return xxx_messageInfo_ListValue.Size(m) -} -func (m *ListValue) XXX_DiscardUnknown() { - xxx_messageInfo_ListValue.DiscardUnknown(m) -} - -var xxx_messageInfo_ListValue proto.InternalMessageInfo - -func (m *ListValue) GetValues() []*Value { - if m != nil { - return m.Values - } - return nil -} - -func init() { - proto.RegisterType((*Struct)(nil), "google.protobuf.Struct") - proto.RegisterMapType((map[string]*Value)(nil), "google.protobuf.Struct.FieldsEntry") - proto.RegisterType((*Value)(nil), "google.protobuf.Value") - proto.RegisterType((*ListValue)(nil), "google.protobuf.ListValue") - proto.RegisterEnum("google.protobuf.NullValue", NullValue_name, NullValue_value) -} - -func init() { - proto.RegisterFile("google/protobuf/struct.proto", fileDescriptor_struct_3a5a94e0c7801b27) -} - 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0xd9, 0x97, 0x08, 0x1d, 0xed, 0x26, 0x96, 0x71, 0x8c, 0xbe, 0xbc, 0x28, 0x4a, 0xfe, 0x55, 0xa4, - 0x7e, 0xc6, 0x36, 0x93, 0x82, 0x91, 0x05, 0x2d, 0x76, 0x4f, 0xb1, 0xe2, 0xdb, 0x2a, 0x6f, 0xda, - 0x17, 0x19, 0xe8, 0x4f, 0x95, 0xfe, 0x45, 0xe8, 0x97, 0x61, 0x5e, 0xc5, 0xe1, 0x6f, 0xe3, 0xc9, - 0x95, 0x16, 0x8f, 0xbb, 0xf9, 0x3e, 0xe7, 0x84, 0xbc, 0xa7, 0xec, 0x3b, 0xfd, 0x24, 0x3b, 0x53, - 0x4b, 0x49, 0xbd, 0xfc, 0x17, 0x00, 0x00, 0xff, 0xff, 0xe8, 0x1b, 0x59, 0xf8, 0xe5, 0x02, 0x00, - 0x00, -} diff --git a/vendor/github.com/golang/protobuf/ptypes/struct/struct.proto b/vendor/github.com/golang/protobuf/ptypes/struct/struct.proto deleted file mode 100644 index 7d7808e7..00000000 --- a/vendor/github.com/golang/protobuf/ptypes/struct/struct.proto +++ /dev/null @@ -1,96 +0,0 @@ -// Protocol Buffers - Google's data interchange format -// Copyright 2008 Google Inc. All rights reserved. -// https://developers.google.com/protocol-buffers/ -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - -syntax = "proto3"; - -package google.protobuf; - -option csharp_namespace = "Google.Protobuf.WellKnownTypes"; -option cc_enable_arenas = true; -option go_package = "github.com/golang/protobuf/ptypes/struct;structpb"; -option java_package = "com.google.protobuf"; -option java_outer_classname = "StructProto"; -option java_multiple_files = true; -option objc_class_prefix = "GPB"; - - -// `Struct` represents a structured data value, consisting of fields -// which map to dynamically typed values. In some languages, `Struct` -// might be supported by a native representation. For example, in -// scripting languages like JS a struct is represented as an -// object. The details of that representation are described together -// with the proto support for the language. -// -// The JSON representation for `Struct` is JSON object. -message Struct { - // Unordered map of dynamically typed values. - map fields = 1; -} - -// `Value` represents a dynamically typed value which can be either -// null, a number, a string, a boolean, a recursive struct value, or a -// list of values. A producer of value is expected to set one of that -// variants, absence of any variant indicates an error. -// -// The JSON representation for `Value` is JSON value. -message Value { - // The kind of value. - oneof kind { - // Represents a null value. - NullValue null_value = 1; - // Represents a double value. - double number_value = 2; - // Represents a string value. - string string_value = 3; - // Represents a boolean value. - bool bool_value = 4; - // Represents a structured value. - Struct struct_value = 5; - // Represents a repeated `Value`. - ListValue list_value = 6; - } -} - -// `NullValue` is a singleton enumeration to represent the null value for the -// `Value` type union. -// -// The JSON representation for `NullValue` is JSON `null`. -enum NullValue { - // Null value. - NULL_VALUE = 0; -} - -// `ListValue` is a wrapper around a repeated field of values. -// -// The JSON representation for `ListValue` is JSON array. -message ListValue { - // Repeated field of dynamically typed values. - repeated Value values = 1; -} diff --git a/vendor/github.com/pkg/errors/.gitignore b/vendor/github.com/pkg/errors/.gitignore deleted file mode 100644 index daf913b1..00000000 --- a/vendor/github.com/pkg/errors/.gitignore +++ /dev/null @@ -1,24 +0,0 @@ -# Compiled Object files, Static and Dynamic libs (Shared Objects) -*.o -*.a -*.so - -# Folders -_obj -_test - -# Architecture specific extensions/prefixes -*.[568vq] -[568vq].out - -*.cgo1.go -*.cgo2.c -_cgo_defun.c -_cgo_gotypes.go -_cgo_export.* - -_testmain.go - -*.exe -*.test -*.prof diff --git a/vendor/github.com/pkg/errors/.travis.yml b/vendor/github.com/pkg/errors/.travis.yml deleted file mode 100644 index 588ceca1..00000000 --- a/vendor/github.com/pkg/errors/.travis.yml +++ /dev/null @@ -1,11 +0,0 @@ -language: go -go_import_path: github.com/pkg/errors -go: - - 1.4.3 - - 1.5.4 - - 1.6.2 - - 1.7.1 - - tip - -script: - - go test -v ./... diff --git a/vendor/github.com/pkg/errors/LICENSE b/vendor/github.com/pkg/errors/LICENSE deleted file mode 100644 index 835ba3e7..00000000 --- a/vendor/github.com/pkg/errors/LICENSE +++ /dev/null @@ -1,23 +0,0 @@ -Copyright (c) 2015, Dave Cheney -All rights reserved. - -Redistribution and use in source and binary forms, with or without -modification, are permitted provided that the following conditions are met: - -* Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - -* Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - -THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE -IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE -DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE -FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL -DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR -SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER -CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, -OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. diff --git a/vendor/github.com/pkg/errors/README.md b/vendor/github.com/pkg/errors/README.md deleted file mode 100644 index 273db3c9..00000000 --- a/vendor/github.com/pkg/errors/README.md +++ /dev/null @@ -1,52 +0,0 @@ -# errors [![Travis-CI](https://travis-ci.org/pkg/errors.svg)](https://travis-ci.org/pkg/errors) [![AppVeyor](https://ci.appveyor.com/api/projects/status/b98mptawhudj53ep/branch/master?svg=true)](https://ci.appveyor.com/project/davecheney/errors/branch/master) [![GoDoc](https://godoc.org/github.com/pkg/errors?status.svg)](http://godoc.org/github.com/pkg/errors) [![Report card](https://goreportcard.com/badge/github.com/pkg/errors)](https://goreportcard.com/report/github.com/pkg/errors) - -Package errors provides simple error handling primitives. - -`go get github.com/pkg/errors` - -The traditional error handling idiom in Go is roughly akin to -```go -if err != nil { - return err -} -``` -which applied recursively up the call stack results in error reports without context or debugging information. The errors package allows programmers to add context to the failure path in their code in a way that does not destroy the original value of the error. - -## Adding context to an error - -The errors.Wrap function returns a new error that adds context to the original error. For example -```go -_, err := ioutil.ReadAll(r) -if err != nil { - return errors.Wrap(err, "read failed") -} -``` -## Retrieving the cause of an error - -Using `errors.Wrap` constructs a stack of errors, adding context to the preceding error. Depending on the nature of the error it may be necessary to reverse the operation of errors.Wrap to retrieve the original error for inspection. Any error value which implements this interface can be inspected by `errors.Cause`. -```go -type causer interface { - Cause() error -} -``` -`errors.Cause` will recursively retrieve the topmost error which does not implement `causer`, which is assumed to be the original cause. For example: -```go -switch err := errors.Cause(err).(type) { -case *MyError: - // handle specifically -default: - // unknown error -} -``` - -[Read the package documentation for more information](https://godoc.org/github.com/pkg/errors). - -## Contributing - -We welcome pull requests, bug fixes and issue reports. With that said, the bar for adding new symbols to this package is intentionally set high. - -Before proposing a change, please discuss your change by raising an issue. - -## Licence - -BSD-2-Clause diff --git a/vendor/github.com/pkg/errors/appveyor.yml b/vendor/github.com/pkg/errors/appveyor.yml deleted file mode 100644 index a932eade..00000000 --- a/vendor/github.com/pkg/errors/appveyor.yml +++ /dev/null @@ -1,32 +0,0 @@ -version: build-{build}.{branch} - -clone_folder: C:\gopath\src\github.com\pkg\errors -shallow_clone: true # for startup speed - -environment: - GOPATH: C:\gopath - -platform: - - x64 - -# http://www.appveyor.com/docs/installed-software -install: - # some helpful output for debugging builds - - go version - - go env - # pre-installed MinGW at C:\MinGW is 32bit only - # but MSYS2 at C:\msys64 has mingw64 - - set PATH=C:\msys64\mingw64\bin;%PATH% - - gcc --version - - g++ --version - -build_script: - - go install -v ./... - -test_script: - - set PATH=C:\gopath\bin;%PATH% - - go test -v ./... - -#artifacts: -# - path: '%GOPATH%\bin\*.exe' -deploy: off diff --git a/vendor/github.com/pkg/errors/errors.go b/vendor/github.com/pkg/errors/errors.go deleted file mode 100644 index 842ee804..00000000 --- a/vendor/github.com/pkg/errors/errors.go +++ /dev/null @@ -1,269 +0,0 @@ -// Package errors provides simple error handling primitives. -// -// The traditional error handling idiom in Go is roughly akin to -// -// if err != nil { -// return err -// } -// -// which applied recursively up the call stack results in error reports -// without context or debugging information. The errors package allows -// programmers to add context to the failure path in their code in a way -// that does not destroy the original value of the error. -// -// Adding context to an error -// -// The errors.Wrap function returns a new error that adds context to the -// original error by recording a stack trace at the point Wrap is called, -// and the supplied message. For example -// -// _, err := ioutil.ReadAll(r) -// if err != nil { -// return errors.Wrap(err, "read failed") -// } -// -// If additional control is required the errors.WithStack and errors.WithMessage -// functions destructure errors.Wrap into its component operations of annotating -// an error with a stack trace and an a message, respectively. -// -// Retrieving the cause of an error -// -// Using errors.Wrap constructs a stack of errors, adding context to the -// preceding error. Depending on the nature of the error it may be necessary -// to reverse the operation of errors.Wrap to retrieve the original error -// for inspection. Any error value which implements this interface -// -// type causer interface { -// Cause() error -// } -// -// can be inspected by errors.Cause. errors.Cause will recursively retrieve -// the topmost error which does not implement causer, which is assumed to be -// the original cause. For example: -// -// switch err := errors.Cause(err).(type) { -// case *MyError: -// // handle specifically -// default: -// // unknown error -// } -// -// causer interface is not exported by this package, but is considered a part -// of stable public API. -// -// Formatted printing of errors -// -// All error values returned from this package implement fmt.Formatter and can -// be formatted by the fmt package. The following verbs are supported -// -// %s print the error. If the error has a Cause it will be -// printed recursively -// %v see %s -// %+v extended format. Each Frame of the error's StackTrace will -// be printed in detail. -// -// Retrieving the stack trace of an error or wrapper -// -// New, Errorf, Wrap, and Wrapf record a stack trace at the point they are -// invoked. This information can be retrieved with the following interface. -// -// type stackTracer interface { -// StackTrace() errors.StackTrace -// } -// -// Where errors.StackTrace is defined as -// -// type StackTrace []Frame -// -// The Frame type represents a call site in the stack trace. Frame supports -// the fmt.Formatter interface that can be used for printing information about -// the stack trace of this error. For example: -// -// if err, ok := err.(stackTracer); ok { -// for _, f := range err.StackTrace() { -// fmt.Printf("%+s:%d", f) -// } -// } -// -// stackTracer interface is not exported by this package, but is considered a part -// of stable public API. -// -// See the documentation for Frame.Format for more details. -package errors - -import ( - "fmt" - "io" -) - -// New returns an error with the supplied message. -// New also records the stack trace at the point it was called. -func New(message string) error { - return &fundamental{ - msg: message, - stack: callers(), - } -} - -// Errorf formats according to a format specifier and returns the string -// as a value that satisfies error. -// Errorf also records the stack trace at the point it was called. -func Errorf(format string, args ...interface{}) error { - return &fundamental{ - msg: fmt.Sprintf(format, args...), - stack: callers(), - } -} - -// fundamental is an error that has a message and a stack, but no caller. -type fundamental struct { - msg string - *stack -} - -func (f *fundamental) Error() string { return f.msg } - -func (f *fundamental) Format(s fmt.State, verb rune) { - switch verb { - case 'v': - if s.Flag('+') { - io.WriteString(s, f.msg) - f.stack.Format(s, verb) - return - } - fallthrough - case 's': - io.WriteString(s, f.msg) - case 'q': - fmt.Fprintf(s, "%q", f.msg) - } -} - -// WithStack annotates err with a stack trace at the point WithStack was called. -// If err is nil, WithStack returns nil. -func WithStack(err error) error { - if err == nil { - return nil - } - return &withStack{ - err, - callers(), - } -} - -type withStack struct { - error - *stack -} - -func (w *withStack) Cause() error { return w.error } - -func (w *withStack) Format(s fmt.State, verb rune) { - switch verb { - case 'v': - if s.Flag('+') { - fmt.Fprintf(s, "%+v", w.Cause()) - w.stack.Format(s, verb) - return - } - fallthrough - case 's': - io.WriteString(s, w.Error()) - case 'q': - fmt.Fprintf(s, "%q", w.Error()) - } -} - -// Wrap returns an error annotating err with a stack trace -// at the point Wrap is called, and the supplied message. -// If err is nil, Wrap returns nil. -func Wrap(err error, message string) error { - if err == nil { - return nil - } - err = &withMessage{ - cause: err, - msg: message, - } - return &withStack{ - err, - callers(), - } -} - -// Wrapf returns an error annotating err with a stack trace -// at the point Wrapf is call, and the format specifier. -// If err is nil, Wrapf returns nil. -func Wrapf(err error, format string, args ...interface{}) error { - if err == nil { - return nil - } - err = &withMessage{ - cause: err, - msg: fmt.Sprintf(format, args...), - } - return &withStack{ - err, - callers(), - } -} - -// WithMessage annotates err with a new message. -// If err is nil, WithMessage returns nil. -func WithMessage(err error, message string) error { - if err == nil { - return nil - } - return &withMessage{ - cause: err, - msg: message, - } -} - -type withMessage struct { - cause error - msg string -} - -func (w *withMessage) Error() string { return w.msg + ": " + w.cause.Error() } -func (w *withMessage) Cause() error { return w.cause } - -func (w *withMessage) Format(s fmt.State, verb rune) { - switch verb { - case 'v': - if s.Flag('+') { - fmt.Fprintf(s, "%+v\n", w.Cause()) - io.WriteString(s, w.msg) - return - } - fallthrough - case 's', 'q': - io.WriteString(s, w.Error()) - } -} - -// Cause returns the underlying cause of the error, if possible. -// An error value has a cause if it implements the following -// interface: -// -// type causer interface { -// Cause() error -// } -// -// If the error does not implement Cause, the original error will -// be returned. If the error is nil, nil will be returned without further -// investigation. -func Cause(err error) error { - type causer interface { - Cause() error - } - - for err != nil { - cause, ok := err.(causer) - if !ok { - break - } - err = cause.Cause() - } - return err -} diff --git a/vendor/github.com/pkg/errors/stack.go b/vendor/github.com/pkg/errors/stack.go deleted file mode 100644 index 6b1f2891..00000000 --- a/vendor/github.com/pkg/errors/stack.go +++ /dev/null @@ -1,178 +0,0 @@ -package errors - -import ( - "fmt" - "io" - "path" - "runtime" - "strings" -) - -// Frame represents a program counter inside a stack frame. -type Frame uintptr - -// pc returns the program counter for this frame; -// multiple frames may have the same PC value. -func (f Frame) pc() uintptr { return uintptr(f) - 1 } - -// file returns the full path to the file that contains the -// function for this Frame's pc. -func (f Frame) file() string { - fn := runtime.FuncForPC(f.pc()) - if fn == nil { - return "unknown" - } - file, _ := fn.FileLine(f.pc()) - return file -} - -// line returns the line number of source code of the -// function for this Frame's pc. -func (f Frame) line() int { - fn := runtime.FuncForPC(f.pc()) - if fn == nil { - return 0 - } - _, line := fn.FileLine(f.pc()) - return line -} - -// Format formats the frame according to the fmt.Formatter interface. -// -// %s source file -// %d source line -// %n function name -// %v equivalent to %s:%d -// -// Format accepts flags that alter the printing of some verbs, as follows: -// -// %+s path of source file relative to the compile time GOPATH -// %+v equivalent to %+s:%d -func (f Frame) Format(s fmt.State, verb rune) { - switch verb { - case 's': - switch { - case s.Flag('+'): - pc := f.pc() - fn := runtime.FuncForPC(pc) - if fn == nil { - io.WriteString(s, "unknown") - } else { - file, _ := fn.FileLine(pc) - fmt.Fprintf(s, "%s\n\t%s", fn.Name(), file) - } - default: - io.WriteString(s, path.Base(f.file())) - } - case 'd': - fmt.Fprintf(s, "%d", f.line()) - case 'n': - name := runtime.FuncForPC(f.pc()).Name() - io.WriteString(s, funcname(name)) - case 'v': - f.Format(s, 's') - io.WriteString(s, ":") - f.Format(s, 'd') - } -} - -// StackTrace is stack of Frames from innermost (newest) to outermost (oldest). -type StackTrace []Frame - -func (st StackTrace) Format(s fmt.State, verb rune) { - switch verb { - case 'v': - switch { - case s.Flag('+'): - for _, f := range st { - fmt.Fprintf(s, "\n%+v", f) - } - case s.Flag('#'): - fmt.Fprintf(s, "%#v", []Frame(st)) - default: - fmt.Fprintf(s, "%v", []Frame(st)) - } - case 's': - fmt.Fprintf(s, "%s", []Frame(st)) - } -} - -// stack represents a stack of program counters. -type stack []uintptr - -func (s *stack) Format(st fmt.State, verb rune) { - switch verb { - case 'v': - switch { - case st.Flag('+'): - for _, pc := range *s { - f := Frame(pc) - fmt.Fprintf(st, "\n%+v", f) - } - } - } -} - -func (s *stack) StackTrace() StackTrace { - f := make([]Frame, len(*s)) - for i := 0; i < len(f); i++ { - f[i] = Frame((*s)[i]) - } - return f -} - -func callers() *stack { - const depth = 32 - var pcs [depth]uintptr - n := runtime.Callers(3, pcs[:]) - var st stack = pcs[0:n] - return &st -} - -// funcname removes the path prefix component of a function's name reported by func.Name(). -func funcname(name string) string { - i := strings.LastIndex(name, "/") - name = name[i+1:] - i = strings.Index(name, ".") - return name[i+1:] -} - -func trimGOPATH(name, file string) string { - // Here we want to get the source file path relative to the compile time - // GOPATH. As of Go 1.6.x there is no direct way to know the compiled - // GOPATH at runtime, but we can infer the number of path segments in the - // GOPATH. We note that fn.Name() returns the function name qualified by - // the import path, which does not include the GOPATH. Thus we can trim - // segments from the beginning of the file path until the number of path - // separators remaining is one more than the number of path separators in - // the function name. For example, given: - // - // GOPATH /home/user - // file /home/user/src/pkg/sub/file.go - // fn.Name() pkg/sub.Type.Method - // - // We want to produce: - // - // pkg/sub/file.go - // - // From this we can easily see that fn.Name() has one less path separator - // than our desired output. We count separators from the end of the file - // path until it finds two more than in the function name and then move - // one character forward to preserve the initial path segment without a - // leading separator. - const sep = "/" - goal := strings.Count(name, sep) + 2 - i := len(file) - for n := 0; n < goal; n++ { - i = strings.LastIndex(file[:i], sep) - if i == -1 { - // not enough separators found, set i so that the slice expression - // below leaves file unmodified - i = -len(sep) - break - } - } - // get back to 0 or trim the leading separator - file = file[i+len(sep):] - return file -} diff --git a/vendor/github.com/urfave/cli/.flake8 b/vendor/github.com/urfave/cli/.flake8 deleted file mode 100644 index 6deafc26..00000000 --- a/vendor/github.com/urfave/cli/.flake8 +++ /dev/null @@ -1,2 +0,0 @@ -[flake8] -max-line-length = 120 diff --git a/vendor/github.com/urfave/cli/.gitignore b/vendor/github.com/urfave/cli/.gitignore deleted file mode 100644 index faf70c4c..00000000 --- a/vendor/github.com/urfave/cli/.gitignore +++ /dev/null @@ -1,2 +0,0 @@ -*.coverprofile -node_modules/ diff --git a/vendor/github.com/urfave/cli/.travis.yml b/vendor/github.com/urfave/cli/.travis.yml deleted file mode 100644 index cf8d0980..00000000 --- a/vendor/github.com/urfave/cli/.travis.yml +++ /dev/null @@ -1,27 +0,0 @@ -language: go -sudo: false -dist: trusty -osx_image: xcode8.3 -go: 1.8.x - -os: -- linux -- osx - -cache: - directories: - - node_modules - -before_script: -- go get github.com/urfave/gfmrun/... || true -- go get golang.org/x/tools/cmd/goimports -- if [ ! -f node_modules/.bin/markdown-toc ] ; then - npm install markdown-toc ; - fi - -script: -- ./runtests gen -- ./runtests vet -- ./runtests test -- ./runtests gfmrun -- ./runtests toc diff --git a/vendor/github.com/urfave/cli/CHANGELOG.md b/vendor/github.com/urfave/cli/CHANGELOG.md deleted file mode 100644 index 401eae5a..00000000 --- a/vendor/github.com/urfave/cli/CHANGELOG.md +++ /dev/null @@ -1,435 +0,0 @@ -# Change Log - -**ATTN**: This project uses [semantic versioning](http://semver.org/). - -## [Unreleased] - -## 1.20.0 - 2017-08-10 - -### Fixed - -* `HandleExitCoder` is now correctly iterates over all errors in - a `MultiError`. The exit code is the exit code of the last error or `1` if - there are no `ExitCoder`s in the `MultiError`. -* Fixed YAML file loading on Windows (previously would fail validate the file path) -* Subcommand `Usage`, `Description`, `ArgsUsage`, `OnUsageError` correctly - propogated -* `ErrWriter` is now passed downwards through command structure to avoid the - need to redefine it -* Pass `Command` context into `OnUsageError` rather than parent context so that - all fields are avaiable -* Errors occuring in `Before` funcs are no longer double printed -* Use `UsageText` in the help templates for commands and subcommands if - defined; otherwise build the usage as before (was previously ignoring this - field) -* `IsSet` and `GlobalIsSet` now correctly return whether a flag is set if - a program calls `Set` or `GlobalSet` directly after flag parsing (would - previously only return `true` if the flag was set during parsing) - -### Changed - -* No longer exit the program on command/subcommand error if the error raised is - not an `OsExiter`. This exiting behavior was introduced in 1.19.0, but was - determined to be a regression in functionality. See [the - PR](https://github.com/urfave/cli/pull/595) for discussion. - -### Added - -* `CommandsByName` type was added to make it easy to sort `Command`s by name, - alphabetically -* `altsrc` now handles loading of string and int arrays from TOML -* Support for definition of custom help templates for `App` via - `CustomAppHelpTemplate` -* Support for arbitrary key/value fields on `App` to be used with - `CustomAppHelpTemplate` via `ExtraInfo` -* `HelpFlag`, `VersionFlag`, and `BashCompletionFlag` changed to explictly be - `cli.Flag`s allowing for the use of custom flags satisfying the `cli.Flag` - interface to be used. - - -## [1.19.1] - 2016-11-21 - -### Fixed - -- Fixes regression introduced in 1.19.0 where using an `ActionFunc` as - the `Action` for a command would cause it to error rather than calling the - function. Should not have a affected declarative cases using `func(c - *cli.Context) err)`. -- Shell completion now handles the case where the user specifies - `--generate-bash-completion` immediately after a flag that takes an argument. - Previously it call the application with `--generate-bash-completion` as the - flag value. - -## [1.19.0] - 2016-11-19 -### Added -- `FlagsByName` was added to make it easy to sort flags (e.g. `sort.Sort(cli.FlagsByName(app.Flags))`) -- A `Description` field was added to `App` for a more detailed description of - the application (similar to the existing `Description` field on `Command`) -- Flag type code generation via `go generate` -- Write to stderr and exit 1 if action returns non-nil error -- Added support for TOML to the `altsrc` loader -- `SkipArgReorder` was added to allow users to skip the argument reordering. - This is useful if you want to consider all "flags" after an argument as - arguments rather than flags (the default behavior of the stdlib `flag` - library). This is backported functionality from the [removal of the flag - reordering](https://github.com/urfave/cli/pull/398) in the unreleased version - 2 -- For formatted errors (those implementing `ErrorFormatter`), the errors will - be formatted during output. Compatible with `pkg/errors`. - -### Changed -- Raise minimum tested/supported Go version to 1.2+ - -### Fixed -- Consider empty environment variables as set (previously environment variables - with the equivalent of `""` would be skipped rather than their value used). -- Return an error if the value in a given environment variable cannot be parsed - as the flag type. Previously these errors were silently swallowed. -- Print full error when an invalid flag is specified (which includes the invalid flag) -- `App.Writer` defaults to `stdout` when `nil` -- If no action is specified on a command or app, the help is now printed instead of `panic`ing -- `App.Metadata` is initialized automatically now (previously was `nil` unless initialized) -- Correctly show help message if `-h` is provided to a subcommand -- `context.(Global)IsSet` now respects environment variables. Previously it - would return `false` if a flag was specified in the environment rather than - as an argument -- Removed deprecation warnings to STDERR to avoid them leaking to the end-user -- `altsrc`s import paths were updated to use `gopkg.in/urfave/cli.v1`. This - fixes issues that occurred when `gopkg.in/urfave/cli.v1` was imported as well - as `altsrc` where Go would complain that the types didn't match - -## [1.18.1] - 2016-08-28 -### Fixed -- Removed deprecation warnings to STDERR to avoid them leaking to the end-user (backported) - -## [1.18.0] - 2016-06-27 -### Added -- `./runtests` test runner with coverage tracking by default -- testing on OS X -- testing on Windows -- `UintFlag`, `Uint64Flag`, and `Int64Flag` types and supporting code - -### Changed -- Use spaces for alignment in help/usage output instead of tabs, making the - output alignment consistent regardless of tab width - -### Fixed -- Printing of command aliases in help text -- Printing of visible flags for both struct and struct pointer flags -- Display the `help` subcommand when using `CommandCategories` -- No longer swallows `panic`s that occur within the `Action`s themselves when - detecting the signature of the `Action` field - -## [1.17.1] - 2016-08-28 -### Fixed -- Removed deprecation warnings to STDERR to avoid them leaking to the end-user - -## [1.17.0] - 2016-05-09 -### Added -- Pluggable flag-level help text rendering via `cli.DefaultFlagStringFunc` -- `context.GlobalBoolT` was added as an analogue to `context.GlobalBool` -- Support for hiding commands by setting `Hidden: true` -- this will hide the - commands in help output - -### Changed -- `Float64Flag`, `IntFlag`, and `DurationFlag` default values are no longer - quoted in help text output. -- All flag types now include `(default: {value})` strings following usage when a - default value can be (reasonably) detected. -- `IntSliceFlag` and `StringSliceFlag` usage strings are now more consistent - with non-slice flag types -- Apps now exit with a code of 3 if an unknown subcommand is specified - (previously they printed "No help topic for...", but still exited 0. This - makes it easier to script around apps built using `cli` since they can trust - that a 0 exit code indicated a successful execution. -- cleanups based on [Go Report Card - feedback](https://goreportcard.com/report/github.com/urfave/cli) - -## [1.16.1] - 2016-08-28 -### Fixed -- Removed deprecation warnings to STDERR to avoid them leaking to the end-user - -## [1.16.0] - 2016-05-02 -### Added -- `Hidden` field on all flag struct types to omit from generated help text - -### Changed -- `BashCompletionFlag` (`--enable-bash-completion`) is now omitted from -generated help text via the `Hidden` field - -### Fixed -- handling of error values in `HandleAction` and `HandleExitCoder` - -## [1.15.0] - 2016-04-30 -### Added -- This file! -- Support for placeholders in flag usage strings -- `App.Metadata` map for arbitrary data/state management -- `Set` and `GlobalSet` methods on `*cli.Context` for altering values after -parsing. -- Support for nested lookup of dot-delimited keys in structures loaded from -YAML. - -### Changed -- The `App.Action` and `Command.Action` now prefer a return signature of -`func(*cli.Context) error`, as defined by `cli.ActionFunc`. If a non-nil -`error` is returned, there may be two outcomes: - - If the error fulfills `cli.ExitCoder`, then `os.Exit` will be called - automatically - - Else the error is bubbled up and returned from `App.Run` -- Specifying an `Action` with the legacy return signature of -`func(*cli.Context)` will produce a deprecation message to stderr -- Specifying an `Action` that is not a `func` type will produce a non-zero exit -from `App.Run` -- Specifying an `Action` func that has an invalid (input) signature will -produce a non-zero exit from `App.Run` - -### Deprecated -- -`cli.App.RunAndExitOnError`, which should now be done by returning an error -that fulfills `cli.ExitCoder` to `cli.App.Run`. -- the legacy signature for -`cli.App.Action` of `func(*cli.Context)`, which should now have a return -signature of `func(*cli.Context) error`, as defined by `cli.ActionFunc`. - -### Fixed -- Added missing `*cli.Context.GlobalFloat64` method - -## [1.14.0] - 2016-04-03 (backfilled 2016-04-25) -### Added -- Codebeat badge -- Support for categorization via `CategorizedHelp` and `Categories` on app. - -### Changed -- Use `filepath.Base` instead of `path.Base` in `Name` and `HelpName`. - -### Fixed -- Ensure version is not shown in help text when `HideVersion` set. - -## [1.13.0] - 2016-03-06 (backfilled 2016-04-25) -### Added -- YAML file input support. -- `NArg` method on context. - -## [1.12.0] - 2016-02-17 (backfilled 2016-04-25) -### Added -- Custom usage error handling. -- Custom text support in `USAGE` section of help output. -- Improved help messages for empty strings. -- AppVeyor CI configuration. - -### Changed -- Removed `panic` from default help printer func. -- De-duping and optimizations. - -### Fixed -- Correctly handle `Before`/`After` at command level when no subcommands. -- Case of literal `-` argument causing flag reordering. -- Environment variable hints on Windows. -- Docs updates. - -## [1.11.1] - 2015-12-21 (backfilled 2016-04-25) -### Changed -- Use `path.Base` in `Name` and `HelpName` -- Export `GetName` on flag types. - -### Fixed -- Flag parsing when skipping is enabled. -- Test output cleanup. -- Move completion check to account for empty input case. - -## [1.11.0] - 2015-11-15 (backfilled 2016-04-25) -### Added -- Destination scan support for flags. -- Testing against `tip` in Travis CI config. - -### Changed -- Go version in Travis CI config. - -### Fixed -- Removed redundant tests. -- Use correct example naming in tests. - -## [1.10.2] - 2015-10-29 (backfilled 2016-04-25) -### Fixed -- Remove unused var in bash completion. - -## [1.10.1] - 2015-10-21 (backfilled 2016-04-25) -### Added -- Coverage and reference logos in README. - -### Fixed -- Use specified values in help and version parsing. -- Only display app version and help message once. - -## [1.10.0] - 2015-10-06 (backfilled 2016-04-25) -### Added -- More tests for existing functionality. -- `ArgsUsage` at app and command level for help text flexibility. - -### Fixed -- Honor `HideHelp` and `HideVersion` in `App.Run`. -- Remove juvenile word from README. - -## [1.9.0] - 2015-09-08 (backfilled 2016-04-25) -### Added -- `FullName` on command with accompanying help output update. -- Set default `$PROG` in bash completion. - -### Changed -- Docs formatting. - -### Fixed -- Removed self-referential imports in tests. - -## [1.8.0] - 2015-06-30 (backfilled 2016-04-25) -### Added -- Support for `Copyright` at app level. -- `Parent` func at context level to walk up context lineage. - -### Fixed -- Global flag processing at top level. - -## [1.7.1] - 2015-06-11 (backfilled 2016-04-25) -### Added -- Aggregate errors from `Before`/`After` funcs. -- Doc comments on flag structs. -- Include non-global flags when checking version and help. -- Travis CI config updates. - -### Fixed -- Ensure slice type flags have non-nil values. -- Collect global flags from the full command hierarchy. -- Docs prose. - -## [1.7.0] - 2015-05-03 (backfilled 2016-04-25) -### Changed -- `HelpPrinter` signature includes output writer. - -### Fixed -- Specify go 1.1+ in docs. -- Set `Writer` when running command as app. - -## [1.6.0] - 2015-03-23 (backfilled 2016-04-25) -### Added -- Multiple author support. -- `NumFlags` at context level. -- `Aliases` at command level. - -### Deprecated -- `ShortName` at command level. - -### Fixed -- Subcommand help output. -- Backward compatible support for deprecated `Author` and `Email` fields. -- Docs regarding `Names`/`Aliases`. - -## [1.5.0] - 2015-02-20 (backfilled 2016-04-25) -### Added -- `After` hook func support at app and command level. - -### Fixed -- Use parsed context when running command as subcommand. -- Docs prose. - -## [1.4.1] - 2015-01-09 (backfilled 2016-04-25) -### Added -- Support for hiding `-h / --help` flags, but not `help` subcommand. -- Stop flag parsing after `--`. - -### Fixed -- Help text for generic flags to specify single value. -- Use double quotes in output for defaults. -- Use `ParseInt` instead of `ParseUint` for int environment var values. -- Use `0` as base when parsing int environment var values. - -## [1.4.0] - 2014-12-12 (backfilled 2016-04-25) -### Added -- Support for environment variable lookup "cascade". -- Support for `Stdout` on app for output redirection. - -### Fixed -- Print command help instead of app help in `ShowCommandHelp`. - -## [1.3.1] - 2014-11-13 (backfilled 2016-04-25) -### Added -- Docs and example code updates. - -### Changed -- Default `-v / --version` flag made optional. - -## [1.3.0] - 2014-08-10 (backfilled 2016-04-25) -### Added -- `FlagNames` at context level. -- Exposed `VersionPrinter` var for more control over version output. -- Zsh completion hook. -- `AUTHOR` section in default app help template. -- Contribution guidelines. -- `DurationFlag` type. - -## [1.2.0] - 2014-08-02 -### Added -- Support for environment variable defaults on flags plus tests. - -## [1.1.0] - 2014-07-15 -### Added -- Bash completion. -- Optional hiding of built-in help command. -- Optional skipping of flag parsing at command level. -- `Author`, `Email`, and `Compiled` metadata on app. -- `Before` hook func support at app and command level. -- `CommandNotFound` func support at app level. -- Command reference available on context. -- `GenericFlag` type. -- `Float64Flag` type. -- `BoolTFlag` type. -- `IsSet` flag helper on context. -- More flag lookup funcs at context level. -- More tests & docs. - -### Changed -- Help template updates to account for presence/absence of flags. -- Separated subcommand help template. -- Exposed `HelpPrinter` var for more control over help output. - -## [1.0.0] - 2013-11-01 -### Added -- `help` flag in default app flag set and each command flag set. -- Custom handling of argument parsing errors. -- Command lookup by name at app level. -- `StringSliceFlag` type and supporting `StringSlice` type. -- `IntSliceFlag` type and supporting `IntSlice` type. -- Slice type flag lookups by name at context level. -- Export of app and command help functions. -- More tests & docs. - -## 0.1.0 - 2013-07-22 -### Added -- Initial implementation. - -[Unreleased]: https://github.com/urfave/cli/compare/v1.18.0...HEAD -[1.18.0]: https://github.com/urfave/cli/compare/v1.17.0...v1.18.0 -[1.17.0]: https://github.com/urfave/cli/compare/v1.16.0...v1.17.0 -[1.16.0]: https://github.com/urfave/cli/compare/v1.15.0...v1.16.0 -[1.15.0]: https://github.com/urfave/cli/compare/v1.14.0...v1.15.0 -[1.14.0]: https://github.com/urfave/cli/compare/v1.13.0...v1.14.0 -[1.13.0]: https://github.com/urfave/cli/compare/v1.12.0...v1.13.0 -[1.12.0]: https://github.com/urfave/cli/compare/v1.11.1...v1.12.0 -[1.11.1]: https://github.com/urfave/cli/compare/v1.11.0...v1.11.1 -[1.11.0]: https://github.com/urfave/cli/compare/v1.10.2...v1.11.0 -[1.10.2]: https://github.com/urfave/cli/compare/v1.10.1...v1.10.2 -[1.10.1]: https://github.com/urfave/cli/compare/v1.10.0...v1.10.1 -[1.10.0]: https://github.com/urfave/cli/compare/v1.9.0...v1.10.0 -[1.9.0]: https://github.com/urfave/cli/compare/v1.8.0...v1.9.0 -[1.8.0]: https://github.com/urfave/cli/compare/v1.7.1...v1.8.0 -[1.7.1]: https://github.com/urfave/cli/compare/v1.7.0...v1.7.1 -[1.7.0]: https://github.com/urfave/cli/compare/v1.6.0...v1.7.0 -[1.6.0]: https://github.com/urfave/cli/compare/v1.5.0...v1.6.0 -[1.5.0]: https://github.com/urfave/cli/compare/v1.4.1...v1.5.0 -[1.4.1]: https://github.com/urfave/cli/compare/v1.4.0...v1.4.1 -[1.4.0]: https://github.com/urfave/cli/compare/v1.3.1...v1.4.0 -[1.3.1]: https://github.com/urfave/cli/compare/v1.3.0...v1.3.1 -[1.3.0]: https://github.com/urfave/cli/compare/v1.2.0...v1.3.0 -[1.2.0]: https://github.com/urfave/cli/compare/v1.1.0...v1.2.0 -[1.1.0]: https://github.com/urfave/cli/compare/v1.0.0...v1.1.0 -[1.0.0]: https://github.com/urfave/cli/compare/v0.1.0...v1.0.0 diff --git a/vendor/github.com/urfave/cli/LICENSE b/vendor/github.com/urfave/cli/LICENSE deleted file mode 100644 index 42a597e2..00000000 --- a/vendor/github.com/urfave/cli/LICENSE +++ /dev/null @@ -1,21 +0,0 @@ -MIT License - -Copyright (c) 2016 Jeremy Saenz & Contributors - -Permission is hereby granted, free of charge, to any person obtaining a copy -of this software and associated documentation files (the "Software"), to deal -in the Software without restriction, including without limitation the rights -to use, copy, modify, merge, publish, distribute, sublicense, and/or sell -copies of the Software, and to permit persons to whom the Software is -furnished to do so, subject to the following conditions: - -The above copyright notice and this permission notice shall be included in all -copies or substantial portions of the Software. - -THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR -IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, -FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE -AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER -LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, -OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE -SOFTWARE. diff --git a/vendor/github.com/urfave/cli/README.md b/vendor/github.com/urfave/cli/README.md deleted file mode 100644 index 2bbbd8ea..00000000 --- a/vendor/github.com/urfave/cli/README.md +++ /dev/null @@ -1,1381 +0,0 @@ -cli -=== - -[![Build Status](https://travis-ci.org/urfave/cli.svg?branch=master)](https://travis-ci.org/urfave/cli) -[![Windows Build Status](https://ci.appveyor.com/api/projects/status/rtgk5xufi932pb2v?svg=true)](https://ci.appveyor.com/project/urfave/cli) -[![GoDoc](https://godoc.org/github.com/urfave/cli?status.svg)](https://godoc.org/github.com/urfave/cli) -[![codebeat](https://codebeat.co/badges/0a8f30aa-f975-404b-b878-5fab3ae1cc5f)](https://codebeat.co/projects/github-com-urfave-cli) -[![Go Report Card](https://goreportcard.com/badge/urfave/cli)](https://goreportcard.com/report/urfave/cli) -[![top level coverage](https://gocover.io/_badge/github.com/urfave/cli?0 "top level coverage")](http://gocover.io/github.com/urfave/cli) / -[![altsrc coverage](https://gocover.io/_badge/github.com/urfave/cli/altsrc?0 "altsrc coverage")](http://gocover.io/github.com/urfave/cli/altsrc) - -**Notice:** This is the library formerly known as -`github.com/codegangsta/cli` -- Github will automatically redirect requests -to this repository, but we recommend updating your references for clarity. - -cli is a simple, fast, and fun package for building command line apps in Go. The -goal is to enable developers to write fast and distributable command line -applications in an expressive way. - - - -- [Overview](#overview) -- [Installation](#installation) - * [Supported platforms](#supported-platforms) - * [Using the `v2` branch](#using-the-v2-branch) - * [Pinning to the `v1` releases](#pinning-to-the-v1-releases) -- [Getting Started](#getting-started) -- [Examples](#examples) - * [Arguments](#arguments) - * [Flags](#flags) - + [Placeholder Values](#placeholder-values) - + [Alternate Names](#alternate-names) - + [Ordering](#ordering) - + [Values from the Environment](#values-from-the-environment) - + [Values from alternate input sources (YAML, TOML, and others)](#values-from-alternate-input-sources-yaml-toml-and-others) - * [Subcommands](#subcommands) - * [Subcommands categories](#subcommands-categories) - * [Exit code](#exit-code) - * [Bash Completion](#bash-completion) - + [Enabling](#enabling) - + [Distribution](#distribution) - + [Customization](#customization) - * [Generated Help Text](#generated-help-text) - + [Customization](#customization-1) - * [Version Flag](#version-flag) - + [Customization](#customization-2) - + [Full API Example](#full-api-example) -- [Contribution Guidelines](#contribution-guidelines) - - - -## Overview - -Command line apps are usually so tiny that there is absolutely no reason why -your code should *not* be self-documenting. Things like generating help text and -parsing command flags/options should not hinder productivity when writing a -command line app. - -**This is where cli comes into play.** cli makes command line programming fun, -organized, and expressive! - -## Installation - -Make sure you have a working Go environment. Go version 1.2+ is supported. [See -the install instructions for Go](http://golang.org/doc/install.html). - -To install cli, simply run: -``` -$ go get github.com/urfave/cli -``` - -Make sure your `PATH` includes the `$GOPATH/bin` directory so your commands can -be easily used: -``` -export PATH=$PATH:$GOPATH/bin -``` - -### Supported platforms - -cli is tested against multiple versions of Go on Linux, and against the latest -released version of Go on OS X and Windows. For full details, see -[`./.travis.yml`](./.travis.yml) and [`./appveyor.yml`](./appveyor.yml). - -### Using the `v2` branch - -**Warning**: The `v2` branch is currently unreleased and considered unstable. - -There is currently a long-lived branch named `v2` that is intended to land as -the new `master` branch once development there has settled down. The current -`master` branch (mirrored as `v1`) is being manually merged into `v2` on -an irregular human-based schedule, but generally if one wants to "upgrade" to -`v2` *now* and accept the volatility (read: "awesomeness") that comes along with -that, please use whatever version pinning of your preference, such as via -`gopkg.in`: - -``` -$ go get gopkg.in/urfave/cli.v2 -``` - -``` go -... -import ( - "gopkg.in/urfave/cli.v2" // imports as package "cli" -) -... -``` - -### Pinning to the `v1` releases - -Similarly to the section above describing use of the `v2` branch, if one wants -to avoid any unexpected compatibility pains once `v2` becomes `master`, then -pinning to `v1` is an acceptable option, e.g.: - -``` -$ go get gopkg.in/urfave/cli.v1 -``` - -``` go -... -import ( - "gopkg.in/urfave/cli.v1" // imports as package "cli" -) -... -``` - -This will pull the latest tagged `v1` release (e.g. `v1.18.1` at the time of writing). - -## Getting Started - -One of the philosophies behind cli is that an API should be playful and full of -discovery. So a cli app can be as little as one line of code in `main()`. - - -``` go -package main - -import ( - "os" - - "github.com/urfave/cli" -) - -func main() { - cli.NewApp().Run(os.Args) -} -``` - -This app will run and show help text, but is not very useful. Let's give an -action to execute and some help documentation: - - -``` go -package main - -import ( - "fmt" - "os" - - "github.com/urfave/cli" -) - -func main() { - app := cli.NewApp() - app.Name = "boom" - app.Usage = "make an explosive entrance" - app.Action = func(c *cli.Context) error { - fmt.Println("boom! I say!") - return nil - } - - app.Run(os.Args) -} -``` - -Running this already gives you a ton of functionality, plus support for things -like subcommands and flags, which are covered below. - -## Examples - -Being a programmer can be a lonely job. Thankfully by the power of automation -that is not the case! Let's create a greeter app to fend off our demons of -loneliness! - -Start by creating a directory named `greet`, and within it, add a file, -`greet.go` with the following code in it: - - -``` go -package main - -import ( - "fmt" - "os" - - "github.com/urfave/cli" -) - -func main() { - app := cli.NewApp() - app.Name = "greet" - app.Usage = "fight the loneliness!" - app.Action = func(c *cli.Context) error { - fmt.Println("Hello friend!") - return nil - } - - app.Run(os.Args) -} -``` - -Install our command to the `$GOPATH/bin` directory: - -``` -$ go install -``` - -Finally run our new command: - -``` -$ greet -Hello friend! -``` - -cli also generates neat help text: - -``` -$ greet help -NAME: - greet - fight the loneliness! - -USAGE: - greet [global options] command [command options] [arguments...] - -VERSION: - 0.0.0 - -COMMANDS: - help, h Shows a list of commands or help for one command - -GLOBAL OPTIONS - --version Shows version information -``` - -### Arguments - -You can lookup arguments by calling the `Args` function on `cli.Context`, e.g.: - - -``` go -package main - -import ( - "fmt" - "os" - - "github.com/urfave/cli" -) - -func main() { - app := cli.NewApp() - - app.Action = func(c *cli.Context) error { - fmt.Printf("Hello %q", c.Args().Get(0)) - return nil - } - - app.Run(os.Args) -} -``` - -### Flags - -Setting and querying flags is simple. - - -``` go -package main - -import ( - "fmt" - "os" - - "github.com/urfave/cli" -) - -func main() { - app := cli.NewApp() - - app.Flags = []cli.Flag { - cli.StringFlag{ - Name: "lang", - Value: "english", - Usage: "language for the greeting", - }, - } - - app.Action = func(c *cli.Context) error { - name := "Nefertiti" - if c.NArg() > 0 { - name = c.Args().Get(0) - } - if c.String("lang") == "spanish" { - fmt.Println("Hola", name) - } else { - fmt.Println("Hello", name) - } - return nil - } - - app.Run(os.Args) -} -``` - -You can also set a destination variable for a flag, to which the content will be -scanned. - - -``` go -package main - -import ( - "os" - "fmt" - - "github.com/urfave/cli" -) - -func main() { - var language string - - app := cli.NewApp() - - app.Flags = []cli.Flag { - cli.StringFlag{ - Name: "lang", - Value: "english", - Usage: "language for the greeting", - Destination: &language, - }, - } - - app.Action = func(c *cli.Context) error { - name := "someone" - if c.NArg() > 0 { - name = c.Args()[0] - } - if language == "spanish" { - fmt.Println("Hola", name) - } else { - fmt.Println("Hello", name) - } - return nil - } - - app.Run(os.Args) -} -``` - -See full list of flags at http://godoc.org/github.com/urfave/cli - -#### Placeholder Values - -Sometimes it's useful to specify a flag's value within the usage string itself. -Such placeholders are indicated with back quotes. - -For example this: - - -```go -package main - -import ( - "os" - - "github.com/urfave/cli" -) - -func main() { - app := cli.NewApp() - - app.Flags = []cli.Flag{ - cli.StringFlag{ - Name: "config, c", - Usage: "Load configuration from `FILE`", - }, - } - - app.Run(os.Args) -} -``` - -Will result in help output like: - -``` ---config FILE, -c FILE Load configuration from FILE -``` - -Note that only the first placeholder is used. Subsequent back-quoted words will -be left as-is. - -#### Alternate Names - -You can set alternate (or short) names for flags by providing a comma-delimited -list for the `Name`. e.g. - - -``` go -package main - -import ( - "os" - - "github.com/urfave/cli" -) - -func main() { - app := cli.NewApp() - - app.Flags = []cli.Flag { - cli.StringFlag{ - Name: "lang, l", - Value: "english", - Usage: "language for the greeting", - }, - } - - app.Run(os.Args) -} -``` - -That flag can then be set with `--lang spanish` or `-l spanish`. Note that -giving two different forms of the same flag in the same command invocation is an -error. - -#### Ordering - -Flags for the application and commands are shown in the order they are defined. -However, it's possible to sort them from outside this library by using `FlagsByName` -or `CommandsByName` with `sort`. - -For example this: - - -``` go -package main - -import ( - "os" - "sort" - - "github.com/urfave/cli" -) - -func main() { - app := cli.NewApp() - - app.Flags = []cli.Flag { - cli.StringFlag{ - Name: "lang, l", - Value: "english", - Usage: "Language for the greeting", - }, - cli.StringFlag{ - Name: "config, c", - Usage: "Load configuration from `FILE`", - }, - } - - app.Commands = []cli.Command{ - { - Name: "complete", - Aliases: []string{"c"}, - Usage: "complete a task on the list", - Action: func(c *cli.Context) error { - return nil - }, - }, - { - Name: "add", - Aliases: []string{"a"}, - Usage: "add a task to the list", - Action: func(c *cli.Context) error { - return nil - }, - }, - } - - sort.Sort(cli.FlagsByName(app.Flags)) - sort.Sort(cli.CommandsByName(app.Commands)) - - app.Run(os.Args) -} -``` - -Will result in help output like: - -``` ---config FILE, -c FILE Load configuration from FILE ---lang value, -l value Language for the greeting (default: "english") -``` - -#### Values from the Environment - -You can also have the default value set from the environment via `EnvVar`. e.g. - - -``` go -package main - -import ( - "os" - - "github.com/urfave/cli" -) - -func main() { - app := cli.NewApp() - - app.Flags = []cli.Flag { - cli.StringFlag{ - Name: "lang, l", - Value: "english", - Usage: "language for the greeting", - EnvVar: "APP_LANG", - }, - } - - app.Run(os.Args) -} -``` - -The `EnvVar` may also be given as a comma-delimited "cascade", where the first -environment variable that resolves is used as the default. - - -``` go -package main - -import ( - "os" - - "github.com/urfave/cli" -) - -func main() { - app := cli.NewApp() - - app.Flags = []cli.Flag { - cli.StringFlag{ - Name: "lang, l", - Value: "english", - Usage: "language for the greeting", - EnvVar: "LEGACY_COMPAT_LANG,APP_LANG,LANG", - }, - } - - app.Run(os.Args) -} -``` - -#### Values from alternate input sources (YAML, TOML, and others) - -There is a separate package altsrc that adds support for getting flag values -from other file input sources. - -Currently supported input source formats: -* YAML -* TOML - -In order to get values for a flag from an alternate input source the following -code would be added to wrap an existing cli.Flag like below: - -``` go - altsrc.NewIntFlag(cli.IntFlag{Name: "test"}) -``` - -Initialization must also occur for these flags. Below is an example initializing -getting data from a yaml file below. - -``` go - command.Before = altsrc.InitInputSourceWithContext(command.Flags, NewYamlSourceFromFlagFunc("load")) -``` - -The code above will use the "load" string as a flag name to get the file name of -a yaml file from the cli.Context. It will then use that file name to initialize -the yaml input source for any flags that are defined on that command. As a note -the "load" flag used would also have to be defined on the command flags in order -for this code snipped to work. - -Currently only the aboved specified formats are supported but developers can -add support for other input sources by implementing the -altsrc.InputSourceContext for their given sources. - -Here is a more complete sample of a command using YAML support: - - -``` go -package notmain - -import ( - "fmt" - "os" - - "github.com/urfave/cli" - "github.com/urfave/cli/altsrc" -) - -func main() { - app := cli.NewApp() - - flags := []cli.Flag{ - altsrc.NewIntFlag(cli.IntFlag{Name: "test"}), - cli.StringFlag{Name: "load"}, - } - - app.Action = func(c *cli.Context) error { - fmt.Println("yaml ist rad") - return nil - } - - app.Before = altsrc.InitInputSourceWithContext(flags, altsrc.NewYamlSourceFromFlagFunc("load")) - app.Flags = flags - - app.Run(os.Args) -} -``` - -### Subcommands - -Subcommands can be defined for a more git-like command line app. - - -```go -package main - -import ( - "fmt" - "os" - - "github.com/urfave/cli" -) - -func main() { - app := cli.NewApp() - - app.Commands = []cli.Command{ - { - Name: "add", - Aliases: []string{"a"}, - Usage: "add a task to the list", - Action: func(c *cli.Context) error { - fmt.Println("added task: ", c.Args().First()) - return nil - }, - }, - { - Name: "complete", - Aliases: []string{"c"}, - Usage: "complete a task on the list", - Action: func(c *cli.Context) error { - fmt.Println("completed task: ", c.Args().First()) - return nil - }, - }, - { - Name: "template", - Aliases: []string{"t"}, - Usage: "options for task templates", - Subcommands: []cli.Command{ - { - Name: "add", - Usage: "add a new template", - Action: func(c *cli.Context) error { - fmt.Println("new task template: ", c.Args().First()) - return nil - }, - }, - { - Name: "remove", - Usage: "remove an existing template", - Action: func(c *cli.Context) error { - fmt.Println("removed task template: ", c.Args().First()) - return nil - }, - }, - }, - }, - } - - app.Run(os.Args) -} -``` - -### Subcommands categories - -For additional organization in apps that have many subcommands, you can -associate a category for each command to group them together in the help -output. - -E.g. - -```go -package main - -import ( - "os" - - "github.com/urfave/cli" -) - -func main() { - app := cli.NewApp() - - app.Commands = []cli.Command{ - { - Name: "noop", - }, - { - Name: "add", - Category: "template", - }, - { - Name: "remove", - Category: "template", - }, - } - - app.Run(os.Args) -} -``` - -Will include: - -``` -COMMANDS: - noop - - Template actions: - add - remove -``` - -### Exit code - -Calling `App.Run` will not automatically call `os.Exit`, which means that by -default the exit code will "fall through" to being `0`. An explicit exit code -may be set by returning a non-nil error that fulfills `cli.ExitCoder`, *or* a -`cli.MultiError` that includes an error that fulfills `cli.ExitCoder`, e.g.: - -``` go -package main - -import ( - "os" - - "github.com/urfave/cli" -) - -func main() { - app := cli.NewApp() - app.Flags = []cli.Flag{ - cli.BoolTFlag{ - Name: "ginger-crouton", - Usage: "is it in the soup?", - }, - } - app.Action = func(ctx *cli.Context) error { - if !ctx.Bool("ginger-crouton") { - return cli.NewExitError("it is not in the soup", 86) - } - return nil - } - - app.Run(os.Args) -} -``` - -### Bash Completion - -You can enable completion commands by setting the `EnableBashCompletion` -flag on the `App` object. By default, this setting will only auto-complete to -show an app's subcommands, but you can write your own completion methods for -the App or its subcommands. - - -``` go -package main - -import ( - "fmt" - "os" - - "github.com/urfave/cli" -) - -func main() { - tasks := []string{"cook", "clean", "laundry", "eat", "sleep", "code"} - - app := cli.NewApp() - app.EnableBashCompletion = true - app.Commands = []cli.Command{ - { - Name: "complete", - Aliases: []string{"c"}, - Usage: "complete a task on the list", - Action: func(c *cli.Context) error { - fmt.Println("completed task: ", c.Args().First()) - return nil - }, - BashComplete: func(c *cli.Context) { - // This will complete if no args are passed - if c.NArg() > 0 { - return - } - for _, t := range tasks { - fmt.Println(t) - } - }, - }, - } - - app.Run(os.Args) -} -``` - -#### Enabling - -Source the `autocomplete/bash_autocomplete` file in your `.bashrc` file while -setting the `PROG` variable to the name of your program: - -`PROG=myprogram source /.../cli/autocomplete/bash_autocomplete` - -#### Distribution - -Copy `autocomplete/bash_autocomplete` into `/etc/bash_completion.d/` and rename -it to the name of the program you wish to add autocomplete support for (or -automatically install it there if you are distributing a package). Don't forget -to source the file to make it active in the current shell. - -``` -sudo cp src/bash_autocomplete /etc/bash_completion.d/ -source /etc/bash_completion.d/ -``` - -Alternatively, you can just document that users should source the generic -`autocomplete/bash_autocomplete` in their bash configuration with `$PROG` set -to the name of their program (as above). - -#### Customization - -The default bash completion flag (`--generate-bash-completion`) is defined as -`cli.BashCompletionFlag`, and may be redefined if desired, e.g.: - - -``` go -package main - -import ( - "os" - - "github.com/urfave/cli" -) - -func main() { - cli.BashCompletionFlag = cli.BoolFlag{ - Name: "compgen", - Hidden: true, - } - - app := cli.NewApp() - app.EnableBashCompletion = true - app.Commands = []cli.Command{ - { - Name: "wat", - }, - } - app.Run(os.Args) -} -``` - -### Generated Help Text - -The default help flag (`-h/--help`) is defined as `cli.HelpFlag` and is checked -by the cli internals in order to print generated help text for the app, command, -or subcommand, and break execution. - -#### Customization - -All of the help text generation may be customized, and at multiple levels. The -templates are exposed as variables `AppHelpTemplate`, `CommandHelpTemplate`, and -`SubcommandHelpTemplate` which may be reassigned or augmented, and full override -is possible by assigning a compatible func to the `cli.HelpPrinter` variable, -e.g.: - - -``` go -package main - -import ( - "fmt" - "io" - "os" - - "github.com/urfave/cli" -) - -func main() { - // EXAMPLE: Append to an existing template - cli.AppHelpTemplate = fmt.Sprintf(`%s - -WEBSITE: http://awesometown.example.com - -SUPPORT: support@awesometown.example.com - -`, cli.AppHelpTemplate) - - // EXAMPLE: Override a template - cli.AppHelpTemplate = `NAME: - {{.Name}} - {{.Usage}} -USAGE: - {{.HelpName}} {{if .VisibleFlags}}[global options]{{end}}{{if .Commands}} command [command options]{{end}} {{if .ArgsUsage}}{{.ArgsUsage}}{{else}}[arguments...]{{end}} - {{if len .Authors}} -AUTHOR: - {{range .Authors}}{{ . }}{{end}} - {{end}}{{if .Commands}} -COMMANDS: -{{range .Commands}}{{if not .HideHelp}} {{join .Names ", "}}{{ "\t"}}{{.Usage}}{{ "\n" }}{{end}}{{end}}{{end}}{{if .VisibleFlags}} -GLOBAL OPTIONS: - {{range .VisibleFlags}}{{.}} - {{end}}{{end}}{{if .Copyright }} -COPYRIGHT: - {{.Copyright}} - {{end}}{{if .Version}} -VERSION: - {{.Version}} - {{end}} -` - - // EXAMPLE: Replace the `HelpPrinter` func - cli.HelpPrinter = func(w io.Writer, templ string, data interface{}) { - fmt.Println("Ha HA. I pwnd the help!!1") - } - - cli.NewApp().Run(os.Args) -} -``` - -The default flag may be customized to something other than `-h/--help` by -setting `cli.HelpFlag`, e.g.: - - -``` go -package main - -import ( - "os" - - "github.com/urfave/cli" -) - -func main() { - cli.HelpFlag = cli.BoolFlag{ - Name: "halp, haaaaalp", - Usage: "HALP", - EnvVar: "SHOW_HALP,HALPPLZ", - } - - cli.NewApp().Run(os.Args) -} -``` - -### Version Flag - -The default version flag (`-v/--version`) is defined as `cli.VersionFlag`, which -is checked by the cli internals in order to print the `App.Version` via -`cli.VersionPrinter` and break execution. - -#### Customization - -The default flag may be customized to something other than `-v/--version` by -setting `cli.VersionFlag`, e.g.: - - -``` go -package main - -import ( - "os" - - "github.com/urfave/cli" -) - -func main() { - cli.VersionFlag = cli.BoolFlag{ - Name: "print-version, V", - Usage: "print only the version", - } - - app := cli.NewApp() - app.Name = "partay" - app.Version = "19.99.0" - app.Run(os.Args) -} -``` - -Alternatively, the version printer at `cli.VersionPrinter` may be overridden, e.g.: - - -``` go -package main - -import ( - "fmt" - "os" - - "github.com/urfave/cli" -) - -var ( - Revision = "fafafaf" -) - -func main() { - cli.VersionPrinter = func(c *cli.Context) { - fmt.Printf("version=%s revision=%s\n", c.App.Version, Revision) - } - - app := cli.NewApp() - app.Name = "partay" - app.Version = "19.99.0" - app.Run(os.Args) -} -``` - -#### Full API Example - -**Notice**: This is a contrived (functioning) example meant strictly for API -demonstration purposes. Use of one's imagination is encouraged. - - -``` go -package main - -import ( - "errors" - "flag" - "fmt" - "io" - "io/ioutil" - "os" - "time" - - "github.com/urfave/cli" -) - -func init() { - cli.AppHelpTemplate += "\nCUSTOMIZED: you bet ur muffins\n" - cli.CommandHelpTemplate += "\nYMMV\n" - cli.SubcommandHelpTemplate += "\nor something\n" - - cli.HelpFlag = cli.BoolFlag{Name: "halp"} - cli.BashCompletionFlag = cli.BoolFlag{Name: "compgen", Hidden: true} - cli.VersionFlag = cli.BoolFlag{Name: "print-version, V"} - - cli.HelpPrinter = func(w io.Writer, templ string, data interface{}) { - fmt.Fprintf(w, "best of luck to you\n") - } - cli.VersionPrinter = func(c *cli.Context) { - fmt.Fprintf(c.App.Writer, "version=%s\n", c.App.Version) - } - cli.OsExiter = func(c int) { - fmt.Fprintf(cli.ErrWriter, "refusing to exit %d\n", c) - } - cli.ErrWriter = ioutil.Discard - cli.FlagStringer = func(fl cli.Flag) string { - return fmt.Sprintf("\t\t%s", fl.GetName()) - } -} - -type hexWriter struct{} - -func (w *hexWriter) Write(p []byte) (int, error) { - for _, b := range p { - fmt.Printf("%x", b) - } - fmt.Printf("\n") - - return len(p), nil -} - -type genericType struct{ - s string -} - -func (g *genericType) Set(value string) error { - g.s = value - return nil -} - -func (g *genericType) String() string { - return g.s -} - -func main() { - app := cli.NewApp() - app.Name = "kənˈtrīv" - app.Version = "19.99.0" - app.Compiled = time.Now() - app.Authors = []cli.Author{ - cli.Author{ - Name: "Example Human", - Email: "human@example.com", - }, - } - app.Copyright = "(c) 1999 Serious Enterprise" - app.HelpName = "contrive" - app.Usage = "demonstrate available API" - app.UsageText = "contrive - demonstrating the available API" - app.ArgsUsage = "[args and such]" - app.Commands = []cli.Command{ - cli.Command{ - Name: "doo", - Aliases: []string{"do"}, - Category: "motion", - Usage: "do the doo", - UsageText: "doo - does the dooing", - Description: "no really, there is a lot of dooing to be done", - ArgsUsage: "[arrgh]", - Flags: []cli.Flag{ - cli.BoolFlag{Name: "forever, forevvarr"}, - }, - Subcommands: cli.Commands{ - cli.Command{ - Name: "wop", - Action: wopAction, - }, - }, - SkipFlagParsing: false, - HideHelp: false, - Hidden: false, - HelpName: "doo!", - BashComplete: func(c *cli.Context) { - fmt.Fprintf(c.App.Writer, "--better\n") - }, - Before: func(c *cli.Context) error { - fmt.Fprintf(c.App.Writer, "brace for impact\n") - return nil - }, - After: func(c *cli.Context) error { - fmt.Fprintf(c.App.Writer, "did we lose anyone?\n") - return nil - }, - Action: func(c *cli.Context) error { - c.Command.FullName() - c.Command.HasName("wop") - c.Command.Names() - c.Command.VisibleFlags() - fmt.Fprintf(c.App.Writer, "dodododododoodododddooooododododooo\n") - if c.Bool("forever") { - c.Command.Run(c) - } - return nil - }, - OnUsageError: func(c *cli.Context, err error, isSubcommand bool) error { - fmt.Fprintf(c.App.Writer, "for shame\n") - return err - }, - }, - } - app.Flags = []cli.Flag{ - cli.BoolFlag{Name: "fancy"}, - cli.BoolTFlag{Name: "fancier"}, - cli.DurationFlag{Name: "howlong, H", Value: time.Second * 3}, - cli.Float64Flag{Name: "howmuch"}, - cli.GenericFlag{Name: "wat", Value: &genericType{}}, - cli.Int64Flag{Name: "longdistance"}, - cli.Int64SliceFlag{Name: "intervals"}, - cli.IntFlag{Name: "distance"}, - cli.IntSliceFlag{Name: "times"}, - cli.StringFlag{Name: "dance-move, d"}, - cli.StringSliceFlag{Name: "names, N"}, - cli.UintFlag{Name: "age"}, - cli.Uint64Flag{Name: "bigage"}, - } - app.EnableBashCompletion = true - app.HideHelp = false - app.HideVersion = false - app.BashComplete = func(c *cli.Context) { - fmt.Fprintf(c.App.Writer, "lipstick\nkiss\nme\nlipstick\nringo\n") - } - app.Before = func(c *cli.Context) error { - fmt.Fprintf(c.App.Writer, "HEEEERE GOES\n") - return nil - } - app.After = func(c *cli.Context) error { - fmt.Fprintf(c.App.Writer, "Phew!\n") - return nil - } - app.CommandNotFound = func(c *cli.Context, command string) { - fmt.Fprintf(c.App.Writer, "Thar be no %q here.\n", command) - } - app.OnUsageError = func(c *cli.Context, err error, isSubcommand bool) error { - if isSubcommand { - return err - } - - fmt.Fprintf(c.App.Writer, "WRONG: %#v\n", err) - return nil - } - app.Action = func(c *cli.Context) error { - cli.DefaultAppComplete(c) - cli.HandleExitCoder(errors.New("not an exit coder, though")) - cli.ShowAppHelp(c) - cli.ShowCommandCompletions(c, "nope") - cli.ShowCommandHelp(c, "also-nope") - cli.ShowCompletions(c) - cli.ShowSubcommandHelp(c) - cli.ShowVersion(c) - - categories := c.App.Categories() - categories.AddCommand("sounds", cli.Command{ - Name: "bloop", - }) - - for _, category := range c.App.Categories() { - fmt.Fprintf(c.App.Writer, "%s\n", category.Name) - fmt.Fprintf(c.App.Writer, "%#v\n", category.Commands) - fmt.Fprintf(c.App.Writer, "%#v\n", category.VisibleCommands()) - } - - fmt.Printf("%#v\n", c.App.Command("doo")) - if c.Bool("infinite") { - c.App.Run([]string{"app", "doo", "wop"}) - } - - if c.Bool("forevar") { - c.App.RunAsSubcommand(c) - } - c.App.Setup() - fmt.Printf("%#v\n", c.App.VisibleCategories()) - fmt.Printf("%#v\n", c.App.VisibleCommands()) - fmt.Printf("%#v\n", c.App.VisibleFlags()) - - fmt.Printf("%#v\n", c.Args().First()) - if len(c.Args()) > 0 { - fmt.Printf("%#v\n", c.Args()[1]) - } - fmt.Printf("%#v\n", c.Args().Present()) - fmt.Printf("%#v\n", c.Args().Tail()) - - set := flag.NewFlagSet("contrive", 0) - nc := cli.NewContext(c.App, set, c) - - fmt.Printf("%#v\n", nc.Args()) - fmt.Printf("%#v\n", nc.Bool("nope")) - fmt.Printf("%#v\n", nc.BoolT("nerp")) - fmt.Printf("%#v\n", nc.Duration("howlong")) - fmt.Printf("%#v\n", nc.Float64("hay")) - fmt.Printf("%#v\n", nc.Generic("bloop")) - fmt.Printf("%#v\n", nc.Int64("bonk")) - fmt.Printf("%#v\n", nc.Int64Slice("burnks")) - fmt.Printf("%#v\n", nc.Int("bips")) - fmt.Printf("%#v\n", nc.IntSlice("blups")) - fmt.Printf("%#v\n", nc.String("snurt")) - fmt.Printf("%#v\n", nc.StringSlice("snurkles")) - fmt.Printf("%#v\n", nc.Uint("flub")) - fmt.Printf("%#v\n", nc.Uint64("florb")) - fmt.Printf("%#v\n", nc.GlobalBool("global-nope")) - fmt.Printf("%#v\n", nc.GlobalBoolT("global-nerp")) - fmt.Printf("%#v\n", nc.GlobalDuration("global-howlong")) - fmt.Printf("%#v\n", nc.GlobalFloat64("global-hay")) - fmt.Printf("%#v\n", nc.GlobalGeneric("global-bloop")) - fmt.Printf("%#v\n", nc.GlobalInt("global-bips")) - fmt.Printf("%#v\n", nc.GlobalIntSlice("global-blups")) - fmt.Printf("%#v\n", nc.GlobalString("global-snurt")) - fmt.Printf("%#v\n", nc.GlobalStringSlice("global-snurkles")) - - fmt.Printf("%#v\n", nc.FlagNames()) - fmt.Printf("%#v\n", nc.GlobalFlagNames()) - fmt.Printf("%#v\n", nc.GlobalIsSet("wat")) - fmt.Printf("%#v\n", nc.GlobalSet("wat", "nope")) - fmt.Printf("%#v\n", nc.NArg()) - fmt.Printf("%#v\n", nc.NumFlags()) - fmt.Printf("%#v\n", nc.Parent()) - - nc.Set("wat", "also-nope") - - ec := cli.NewExitError("ohwell", 86) - fmt.Fprintf(c.App.Writer, "%d", ec.ExitCode()) - fmt.Printf("made it!\n") - return ec - } - - if os.Getenv("HEXY") != "" { - app.Writer = &hexWriter{} - app.ErrWriter = &hexWriter{} - } - - app.Metadata = map[string]interface{}{ - "layers": "many", - "explicable": false, - "whatever-values": 19.99, - } - - app.Run(os.Args) -} - -func wopAction(c *cli.Context) error { - fmt.Fprintf(c.App.Writer, ":wave: over here, eh\n") - return nil -} -``` - -## Contribution Guidelines - -Feel free to put up a pull request to fix a bug or maybe add a feature. I will -give it a code review and make sure that it does not break backwards -compatibility. If I or any other collaborators agree that it is in line with -the vision of the project, we will work with you to get the code into -a mergeable state and merge it into the master branch. - -If you have contributed something significant to the project, we will most -likely add you as a collaborator. As a collaborator you are given the ability -to merge others pull requests. It is very important that new code does not -break existing code, so be careful about what code you do choose to merge. - -If you feel like you have contributed to the project but have not yet been -added as a collaborator, we probably forgot to add you, please open an issue. diff --git a/vendor/github.com/urfave/cli/app.go b/vendor/github.com/urfave/cli/app.go deleted file mode 100644 index 51fc45d8..00000000 --- a/vendor/github.com/urfave/cli/app.go +++ /dev/null @@ -1,497 +0,0 @@ -package cli - -import ( - "fmt" - "io" - "io/ioutil" - "os" - "path/filepath" - "sort" - "time" -) - -var ( - changeLogURL = "https://github.com/urfave/cli/blob/master/CHANGELOG.md" - appActionDeprecationURL = fmt.Sprintf("%s#deprecated-cli-app-action-signature", changeLogURL) - runAndExitOnErrorDeprecationURL = fmt.Sprintf("%s#deprecated-cli-app-runandexitonerror", changeLogURL) - - contactSysadmin = "This is an error in the application. Please contact the distributor of this application if this is not you." - - errInvalidActionType = NewExitError("ERROR invalid Action type. "+ - fmt.Sprintf("Must be `func(*Context`)` or `func(*Context) error). %s", contactSysadmin)+ - fmt.Sprintf("See %s", appActionDeprecationURL), 2) -) - -// App is the main structure of a cli application. It is recommended that -// an app be created with the cli.NewApp() function -type App struct { - // The name of the program. Defaults to path.Base(os.Args[0]) - Name string - // Full name of command for help, defaults to Name - HelpName string - // Description of the program. - Usage string - // Text to override the USAGE section of help - UsageText string - // Description of the program argument format. - ArgsUsage string - // Version of the program - Version string - // Description of the program - Description string - // List of commands to execute - Commands []Command - // List of flags to parse - Flags []Flag - // Boolean to enable bash completion commands - EnableBashCompletion bool - // Boolean to hide built-in help command - HideHelp bool - // Boolean to hide built-in version flag and the VERSION section of help - HideVersion bool - // Populate on app startup, only gettable through method Categories() - categories CommandCategories - // An action to execute when the bash-completion flag is set - BashComplete BashCompleteFunc - // An action to execute before any subcommands are run, but after the context is ready - // If a non-nil error is returned, no subcommands are run - Before BeforeFunc - // An action to execute after any subcommands are run, but after the subcommand has finished - // It is run even if Action() panics - After AfterFunc - - // The action to execute when no subcommands are specified - // Expects a `cli.ActionFunc` but will accept the *deprecated* signature of `func(*cli.Context) {}` - // *Note*: support for the deprecated `Action` signature will be removed in a future version - Action interface{} - - // Execute this function if the proper command cannot be found - CommandNotFound CommandNotFoundFunc - // Execute this function if an usage error occurs - OnUsageError OnUsageErrorFunc - // Compilation date - Compiled time.Time - // List of all authors who contributed - Authors []Author - // Copyright of the binary if any - Copyright string - // Name of Author (Note: Use App.Authors, this is deprecated) - Author string - // Email of Author (Note: Use App.Authors, this is deprecated) - Email string - // Writer writer to write output to - Writer io.Writer - // ErrWriter writes error output - ErrWriter io.Writer - // Other custom info - Metadata map[string]interface{} - // Carries a function which returns app specific info. - ExtraInfo func() map[string]string - // CustomAppHelpTemplate the text template for app help topic. - // cli.go uses text/template to render templates. You can - // render custom help text by setting this variable. - CustomAppHelpTemplate string - - didSetup bool -} - -// Tries to find out when this binary was compiled. -// Returns the current time if it fails to find it. -func compileTime() time.Time { - info, err := os.Stat(os.Args[0]) - if err != nil { - return time.Now() - } - return info.ModTime() -} - -// NewApp creates a new cli Application with some reasonable defaults for Name, -// Usage, Version and Action. -func NewApp() *App { - return &App{ - Name: filepath.Base(os.Args[0]), - HelpName: filepath.Base(os.Args[0]), - Usage: "A new cli application", - UsageText: "", - Version: "0.0.0", - BashComplete: DefaultAppComplete, - Action: helpCommand.Action, - Compiled: compileTime(), - Writer: os.Stdout, - } -} - -// Setup runs initialization code to ensure all data structures are ready for -// `Run` or inspection prior to `Run`. It is internally called by `Run`, but -// will return early if setup has already happened. -func (a *App) Setup() { - if a.didSetup { - return - } - - a.didSetup = true - - if a.Author != "" || a.Email != "" { - a.Authors = append(a.Authors, Author{Name: a.Author, Email: a.Email}) - } - - newCmds := []Command{} - for _, c := range a.Commands { - if c.HelpName == "" { - c.HelpName = fmt.Sprintf("%s %s", a.HelpName, c.Name) - } - newCmds = append(newCmds, c) - } - a.Commands = newCmds - - if a.Command(helpCommand.Name) == nil && !a.HideHelp { - a.Commands = append(a.Commands, helpCommand) - if (HelpFlag != BoolFlag{}) { - a.appendFlag(HelpFlag) - } - } - - if !a.HideVersion { - a.appendFlag(VersionFlag) - } - - a.categories = CommandCategories{} - for _, command := range a.Commands { - a.categories = a.categories.AddCommand(command.Category, command) - } - sort.Sort(a.categories) - - if a.Metadata == nil { - a.Metadata = make(map[string]interface{}) - } - - if a.Writer == nil { - a.Writer = os.Stdout - } -} - -// Run is the entry point to the cli app. Parses the arguments slice and routes -// to the proper flag/args combination -func (a *App) Run(arguments []string) (err error) { - a.Setup() - - // handle the completion flag separately from the flagset since - // completion could be attempted after a flag, but before its value was put - // on the command line. this causes the flagset to interpret the completion - // flag name as the value of the flag before it which is undesirable - // note that we can only do this because the shell autocomplete function - // always appends the completion flag at the end of the command - shellComplete, arguments := checkShellCompleteFlag(a, arguments) - - // parse flags - set, err := flagSet(a.Name, a.Flags) - if err != nil { - return err - } - - set.SetOutput(ioutil.Discard) - err = set.Parse(arguments[1:]) - nerr := normalizeFlags(a.Flags, set) - context := NewContext(a, set, nil) - if nerr != nil { - fmt.Fprintln(a.Writer, nerr) - ShowAppHelp(context) - return nerr - } - context.shellComplete = shellComplete - - if checkCompletions(context) { - return nil - } - - if err != nil { - if a.OnUsageError != nil { - err := a.OnUsageError(context, err, false) - HandleExitCoder(err) - return err - } - fmt.Fprintf(a.Writer, "%s %s\n\n", "Incorrect Usage.", err.Error()) - ShowAppHelp(context) - return err - } - - if !a.HideHelp && checkHelp(context) { - ShowAppHelp(context) - return nil - } - - if !a.HideVersion && checkVersion(context) { - ShowVersion(context) - return nil - } - - if a.After != nil { - defer func() { - if afterErr := a.After(context); afterErr != nil { - if err != nil { - err = NewMultiError(err, afterErr) - } else { - err = afterErr - } - } - }() - } - - if a.Before != nil { - beforeErr := a.Before(context) - if beforeErr != nil { - ShowAppHelp(context) - HandleExitCoder(beforeErr) - err = beforeErr - return err - } - } - - args := context.Args() - if args.Present() { - name := args.First() - c := a.Command(name) - if c != nil { - return c.Run(context) - } - } - - if a.Action == nil { - a.Action = helpCommand.Action - } - - // Run default Action - err = HandleAction(a.Action, context) - - HandleExitCoder(err) - return err -} - -// RunAndExitOnError calls .Run() and exits non-zero if an error was returned -// -// Deprecated: instead you should return an error that fulfills cli.ExitCoder -// to cli.App.Run. This will cause the application to exit with the given eror -// code in the cli.ExitCoder -func (a *App) RunAndExitOnError() { - if err := a.Run(os.Args); err != nil { - fmt.Fprintln(a.errWriter(), err) - OsExiter(1) - } -} - -// RunAsSubcommand invokes the subcommand given the context, parses ctx.Args() to -// generate command-specific flags -func (a *App) RunAsSubcommand(ctx *Context) (err error) { - // append help to commands - if len(a.Commands) > 0 { - if a.Command(helpCommand.Name) == nil && !a.HideHelp { - a.Commands = append(a.Commands, helpCommand) - if (HelpFlag != BoolFlag{}) { - a.appendFlag(HelpFlag) - } - } - } - - newCmds := []Command{} - for _, c := range a.Commands { - if c.HelpName == "" { - c.HelpName = fmt.Sprintf("%s %s", a.HelpName, c.Name) - } - newCmds = append(newCmds, c) - } - a.Commands = newCmds - - // parse flags - set, err := flagSet(a.Name, a.Flags) - if err != nil { - return err - } - - set.SetOutput(ioutil.Discard) - err = set.Parse(ctx.Args().Tail()) - nerr := normalizeFlags(a.Flags, set) - context := NewContext(a, set, ctx) - - if nerr != nil { - fmt.Fprintln(a.Writer, nerr) - fmt.Fprintln(a.Writer) - if len(a.Commands) > 0 { - ShowSubcommandHelp(context) - } else { - ShowCommandHelp(ctx, context.Args().First()) - } - return nerr - } - - if checkCompletions(context) { - return nil - } - - if err != nil { - if a.OnUsageError != nil { - err = a.OnUsageError(context, err, true) - HandleExitCoder(err) - return err - } - fmt.Fprintf(a.Writer, "%s %s\n\n", "Incorrect Usage.", err.Error()) - ShowSubcommandHelp(context) - return err - } - - if len(a.Commands) > 0 { - if checkSubcommandHelp(context) { - return nil - } - } else { - if checkCommandHelp(ctx, context.Args().First()) { - return nil - } - } - - if a.After != nil { - defer func() { - afterErr := a.After(context) - if afterErr != nil { - HandleExitCoder(err) - if err != nil { - err = NewMultiError(err, afterErr) - } else { - err = afterErr - } - } - }() - } - - if a.Before != nil { - beforeErr := a.Before(context) - if beforeErr != nil { - HandleExitCoder(beforeErr) - err = beforeErr - return err - } - } - - args := context.Args() - if args.Present() { - name := args.First() - c := a.Command(name) - if c != nil { - return c.Run(context) - } - } - - // Run default Action - err = HandleAction(a.Action, context) - - HandleExitCoder(err) - return err -} - -// Command returns the named command on App. Returns nil if the command does not exist -func (a *App) Command(name string) *Command { - for _, c := range a.Commands { - if c.HasName(name) { - return &c - } - } - - return nil -} - -// Categories returns a slice containing all the categories with the commands they contain -func (a *App) Categories() CommandCategories { - return a.categories -} - -// VisibleCategories returns a slice of categories and commands that are -// Hidden=false -func (a *App) VisibleCategories() []*CommandCategory { - ret := []*CommandCategory{} - for _, category := range a.categories { - if visible := func() *CommandCategory { - for _, command := range category.Commands { - if !command.Hidden { - return category - } - } - return nil - }(); visible != nil { - ret = append(ret, visible) - } - } - return ret -} - -// VisibleCommands returns a slice of the Commands with Hidden=false -func (a *App) VisibleCommands() []Command { - ret := []Command{} - for _, command := range a.Commands { - if !command.Hidden { - ret = append(ret, command) - } - } - return ret -} - -// VisibleFlags returns a slice of the Flags with Hidden=false -func (a *App) VisibleFlags() []Flag { - return visibleFlags(a.Flags) -} - -func (a *App) hasFlag(flag Flag) bool { - for _, f := range a.Flags { - if flag == f { - return true - } - } - - return false -} - -func (a *App) errWriter() io.Writer { - - // When the app ErrWriter is nil use the package level one. - if a.ErrWriter == nil { - return ErrWriter - } - - return a.ErrWriter -} - -func (a *App) appendFlag(flag Flag) { - if !a.hasFlag(flag) { - a.Flags = append(a.Flags, flag) - } -} - -// Author represents someone who has contributed to a cli project. -type Author struct { - Name string // The Authors name - Email string // The Authors email -} - -// String makes Author comply to the Stringer interface, to allow an easy print in the templating process -func (a Author) String() string { - e := "" - if a.Email != "" { - e = " <" + a.Email + ">" - } - - return fmt.Sprintf("%v%v", a.Name, e) -} - -// HandleAction attempts to figure out which Action signature was used. If -// it's an ActionFunc or a func with the legacy signature for Action, the func -// is run! -func HandleAction(action interface{}, context *Context) (err error) { - if a, ok := action.(ActionFunc); ok { - return a(context) - } else if a, ok := action.(func(*Context) error); ok { - return a(context) - } else if a, ok := action.(func(*Context)); ok { // deprecated function signature - a(context) - return nil - } else { - return errInvalidActionType - } -} diff --git a/vendor/github.com/urfave/cli/appveyor.yml b/vendor/github.com/urfave/cli/appveyor.yml deleted file mode 100644 index 1e1489c3..00000000 --- a/vendor/github.com/urfave/cli/appveyor.yml +++ /dev/null @@ -1,26 +0,0 @@ -version: "{build}" - -os: Windows Server 2016 - -image: Visual Studio 2017 - -clone_folder: c:\gopath\src\github.com\urfave\cli - -environment: - GOPATH: C:\gopath - GOVERSION: 1.8.x - PYTHON: C:\Python36-x64 - PYTHON_VERSION: 3.6.x - PYTHON_ARCH: 64 - -install: -- set PATH=%GOPATH%\bin;C:\go\bin;%PATH% -- go version -- go env -- go get github.com/urfave/gfmrun/... -- go get -v -t ./... - -build_script: -- python runtests vet -- python runtests test -- python runtests gfmrun diff --git a/vendor/github.com/urfave/cli/category.go b/vendor/github.com/urfave/cli/category.go deleted file mode 100644 index 1a605502..00000000 --- a/vendor/github.com/urfave/cli/category.go +++ /dev/null @@ -1,44 +0,0 @@ -package cli - -// CommandCategories is a slice of *CommandCategory. -type CommandCategories []*CommandCategory - -// CommandCategory is a category containing commands. -type CommandCategory struct { - Name string - Commands Commands -} - -func (c CommandCategories) Less(i, j int) bool { - return c[i].Name < c[j].Name -} - -func (c CommandCategories) Len() int { - return len(c) -} - -func (c CommandCategories) Swap(i, j int) { - c[i], c[j] = c[j], c[i] -} - -// AddCommand adds a command to a category. -func (c CommandCategories) AddCommand(category string, command Command) CommandCategories { - for _, commandCategory := range c { - if commandCategory.Name == category { - commandCategory.Commands = append(commandCategory.Commands, command) - return c - } - } - return append(c, &CommandCategory{Name: category, Commands: []Command{command}}) -} - -// VisibleCommands returns a slice of the Commands with Hidden=false -func (c *CommandCategory) VisibleCommands() []Command { - ret := []Command{} - for _, command := range c.Commands { - if !command.Hidden { - ret = append(ret, command) - } - } - return ret -} diff --git a/vendor/github.com/urfave/cli/cli.go b/vendor/github.com/urfave/cli/cli.go deleted file mode 100644 index 90c07eb8..00000000 --- a/vendor/github.com/urfave/cli/cli.go +++ /dev/null @@ -1,22 +0,0 @@ -// Package cli provides a minimal framework for creating and organizing command line -// Go applications. cli is designed to be easy to understand and write, the most simple -// cli application can be written as follows: -// func main() { -// cli.NewApp().Run(os.Args) -// } -// -// Of course this application does not do much, so let's make this an actual application: -// func main() { -// app := cli.NewApp() -// app.Name = "greet" -// app.Usage = "say a greeting" -// app.Action = func(c *cli.Context) error { -// println("Greetings") -// return nil -// } -// -// app.Run(os.Args) -// } -package cli - -//go:generate python ./generate-flag-types cli -i flag-types.json -o flag_generated.go diff --git a/vendor/github.com/urfave/cli/command.go b/vendor/github.com/urfave/cli/command.go deleted file mode 100644 index 23de2944..00000000 --- a/vendor/github.com/urfave/cli/command.go +++ /dev/null @@ -1,304 +0,0 @@ -package cli - -import ( - "fmt" - "io/ioutil" - "sort" - "strings" -) - -// Command is a subcommand for a cli.App. -type Command struct { - // The name of the command - Name string - // short name of the command. Typically one character (deprecated, use `Aliases`) - ShortName string - // A list of aliases for the command - Aliases []string - // A short description of the usage of this command - Usage string - // Custom text to show on USAGE section of help - UsageText string - // A longer explanation of how the command works - Description string - // A short description of the arguments of this command - ArgsUsage string - // The category the command is part of - Category string - // The function to call when checking for bash command completions - BashComplete BashCompleteFunc - // An action to execute before any sub-subcommands are run, but after the context is ready - // If a non-nil error is returned, no sub-subcommands are run - Before BeforeFunc - // An action to execute after any subcommands are run, but after the subcommand has finished - // It is run even if Action() panics - After AfterFunc - // The function to call when this command is invoked - Action interface{} - // TODO: replace `Action: interface{}` with `Action: ActionFunc` once some kind - // of deprecation period has passed, maybe? - - // Execute this function if a usage error occurs. - OnUsageError OnUsageErrorFunc - // List of child commands - Subcommands Commands - // List of flags to parse - Flags []Flag - // Treat all flags as normal arguments if true - SkipFlagParsing bool - // Skip argument reordering which attempts to move flags before arguments, - // but only works if all flags appear after all arguments. This behavior was - // removed n version 2 since it only works under specific conditions so we - // backport here by exposing it as an option for compatibility. - SkipArgReorder bool - // Boolean to hide built-in help command - HideHelp bool - // Boolean to hide this command from help or completion - Hidden bool - - // Full name of command for help, defaults to full command name, including parent commands. - HelpName string - commandNamePath []string - - // CustomHelpTemplate the text template for the command help topic. - // cli.go uses text/template to render templates. You can - // render custom help text by setting this variable. - CustomHelpTemplate string -} - -type CommandsByName []Command - -func (c CommandsByName) Len() int { - return len(c) -} - -func (c CommandsByName) Less(i, j int) bool { - return c[i].Name < c[j].Name -} - -func (c CommandsByName) Swap(i, j int) { - c[i], c[j] = c[j], c[i] -} - -// FullName returns the full name of the command. -// For subcommands this ensures that parent commands are part of the command path -func (c Command) FullName() string { - if c.commandNamePath == nil { - return c.Name - } - return strings.Join(c.commandNamePath, " ") -} - -// Commands is a slice of Command -type Commands []Command - -// Run invokes the command given the context, parses ctx.Args() to generate command-specific flags -func (c Command) Run(ctx *Context) (err error) { - if len(c.Subcommands) > 0 { - return c.startApp(ctx) - } - - if !c.HideHelp && (HelpFlag != BoolFlag{}) { - // append help to flags - c.Flags = append( - c.Flags, - HelpFlag, - ) - } - - set, err := flagSet(c.Name, c.Flags) - if err != nil { - return err - } - set.SetOutput(ioutil.Discard) - - if c.SkipFlagParsing { - err = set.Parse(append([]string{"--"}, ctx.Args().Tail()...)) - } else if !c.SkipArgReorder { - firstFlagIndex := -1 - terminatorIndex := -1 - for index, arg := range ctx.Args() { - if arg == "--" { - terminatorIndex = index - break - } else if arg == "-" { - // Do nothing. A dash alone is not really a flag. - continue - } else if strings.HasPrefix(arg, "-") && firstFlagIndex == -1 { - firstFlagIndex = index - } - } - - if firstFlagIndex > -1 { - args := ctx.Args() - regularArgs := make([]string, len(args[1:firstFlagIndex])) - copy(regularArgs, args[1:firstFlagIndex]) - - var flagArgs []string - if terminatorIndex > -1 { - flagArgs = args[firstFlagIndex:terminatorIndex] - regularArgs = append(regularArgs, args[terminatorIndex:]...) - } else { - flagArgs = args[firstFlagIndex:] - } - - err = set.Parse(append(flagArgs, regularArgs...)) - } else { - err = set.Parse(ctx.Args().Tail()) - } - } else { - err = set.Parse(ctx.Args().Tail()) - } - - nerr := normalizeFlags(c.Flags, set) - if nerr != nil { - fmt.Fprintln(ctx.App.Writer, nerr) - fmt.Fprintln(ctx.App.Writer) - ShowCommandHelp(ctx, c.Name) - return nerr - } - - context := NewContext(ctx.App, set, ctx) - context.Command = c - if checkCommandCompletions(context, c.Name) { - return nil - } - - if err != nil { - if c.OnUsageError != nil { - err := c.OnUsageError(context, err, false) - HandleExitCoder(err) - return err - } - fmt.Fprintln(context.App.Writer, "Incorrect Usage:", err.Error()) - fmt.Fprintln(context.App.Writer) - ShowCommandHelp(context, c.Name) - return err - } - - if checkCommandHelp(context, c.Name) { - return nil - } - - if c.After != nil { - defer func() { - afterErr := c.After(context) - if afterErr != nil { - HandleExitCoder(err) - if err != nil { - err = NewMultiError(err, afterErr) - } else { - err = afterErr - } - } - }() - } - - if c.Before != nil { - err = c.Before(context) - if err != nil { - ShowCommandHelp(context, c.Name) - HandleExitCoder(err) - return err - } - } - - if c.Action == nil { - c.Action = helpSubcommand.Action - } - - err = HandleAction(c.Action, context) - - if err != nil { - HandleExitCoder(err) - } - return err -} - -// Names returns the names including short names and aliases. -func (c Command) Names() []string { - names := []string{c.Name} - - if c.ShortName != "" { - names = append(names, c.ShortName) - } - - return append(names, c.Aliases...) -} - -// HasName returns true if Command.Name or Command.ShortName matches given name -func (c Command) HasName(name string) bool { - for _, n := range c.Names() { - if n == name { - return true - } - } - return false -} - -func (c Command) startApp(ctx *Context) error { - app := NewApp() - app.Metadata = ctx.App.Metadata - // set the name and usage - app.Name = fmt.Sprintf("%s %s", ctx.App.Name, c.Name) - if c.HelpName == "" { - app.HelpName = c.HelpName - } else { - app.HelpName = app.Name - } - - app.Usage = c.Usage - app.Description = c.Description - app.ArgsUsage = c.ArgsUsage - - // set CommandNotFound - app.CommandNotFound = ctx.App.CommandNotFound - app.CustomAppHelpTemplate = c.CustomHelpTemplate - - // set the flags and commands - app.Commands = c.Subcommands - app.Flags = c.Flags - app.HideHelp = c.HideHelp - - app.Version = ctx.App.Version - app.HideVersion = ctx.App.HideVersion - app.Compiled = ctx.App.Compiled - app.Author = ctx.App.Author - app.Email = ctx.App.Email - app.Writer = ctx.App.Writer - app.ErrWriter = ctx.App.ErrWriter - - app.categories = CommandCategories{} - for _, command := range c.Subcommands { - app.categories = app.categories.AddCommand(command.Category, command) - } - - sort.Sort(app.categories) - - // bash completion - app.EnableBashCompletion = ctx.App.EnableBashCompletion - if c.BashComplete != nil { - app.BashComplete = c.BashComplete - } - - // set the actions - app.Before = c.Before - app.After = c.After - if c.Action != nil { - app.Action = c.Action - } else { - app.Action = helpSubcommand.Action - } - app.OnUsageError = c.OnUsageError - - for index, cc := range app.Commands { - app.Commands[index].commandNamePath = []string{c.Name, cc.Name} - } - - return app.RunAsSubcommand(ctx) -} - -// VisibleFlags returns a slice of the Flags with Hidden=false -func (c Command) VisibleFlags() []Flag { - return visibleFlags(c.Flags) -} diff --git a/vendor/github.com/urfave/cli/context.go b/vendor/github.com/urfave/cli/context.go deleted file mode 100644 index db94191e..00000000 --- a/vendor/github.com/urfave/cli/context.go +++ /dev/null @@ -1,278 +0,0 @@ -package cli - -import ( - "errors" - "flag" - "reflect" - "strings" - "syscall" -) - -// Context is a type that is passed through to -// each Handler action in a cli application. Context -// can be used to retrieve context-specific Args and -// parsed command-line options. -type Context struct { - App *App - Command Command - shellComplete bool - flagSet *flag.FlagSet - setFlags map[string]bool - parentContext *Context -} - -// NewContext creates a new context. For use in when invoking an App or Command action. -func NewContext(app *App, set *flag.FlagSet, parentCtx *Context) *Context { - c := &Context{App: app, flagSet: set, parentContext: parentCtx} - - if parentCtx != nil { - c.shellComplete = parentCtx.shellComplete - } - - return c -} - -// NumFlags returns the number of flags set -func (c *Context) NumFlags() int { - return c.flagSet.NFlag() -} - -// Set sets a context flag to a value. -func (c *Context) Set(name, value string) error { - c.setFlags = nil - return c.flagSet.Set(name, value) -} - -// GlobalSet sets a context flag to a value on the global flagset -func (c *Context) GlobalSet(name, value string) error { - globalContext(c).setFlags = nil - return globalContext(c).flagSet.Set(name, value) -} - -// IsSet determines if the flag was actually set -func (c *Context) IsSet(name string) bool { - if c.setFlags == nil { - c.setFlags = make(map[string]bool) - - c.flagSet.Visit(func(f *flag.Flag) { - c.setFlags[f.Name] = true - }) - - c.flagSet.VisitAll(func(f *flag.Flag) { - if _, ok := c.setFlags[f.Name]; ok { - return - } - c.setFlags[f.Name] = false - }) - - // XXX hack to support IsSet for flags with EnvVar - // - // There isn't an easy way to do this with the current implementation since - // whether a flag was set via an environment variable is very difficult to - // determine here. Instead, we intend to introduce a backwards incompatible - // change in version 2 to add `IsSet` to the Flag interface to push the - // responsibility closer to where the information required to determine - // whether a flag is set by non-standard means such as environment - // variables is avaliable. - // - // See https://github.com/urfave/cli/issues/294 for additional discussion - flags := c.Command.Flags - if c.Command.Name == "" { // cannot == Command{} since it contains slice types - if c.App != nil { - flags = c.App.Flags - } - } - for _, f := range flags { - eachName(f.GetName(), func(name string) { - if isSet, ok := c.setFlags[name]; isSet || !ok { - return - } - - val := reflect.ValueOf(f) - if val.Kind() == reflect.Ptr { - val = val.Elem() - } - - envVarValue := val.FieldByName("EnvVar") - if !envVarValue.IsValid() { - return - } - - eachName(envVarValue.String(), func(envVar string) { - envVar = strings.TrimSpace(envVar) - if _, ok := syscall.Getenv(envVar); ok { - c.setFlags[name] = true - return - } - }) - }) - } - } - - return c.setFlags[name] -} - -// GlobalIsSet determines if the global flag was actually set -func (c *Context) GlobalIsSet(name string) bool { - ctx := c - if ctx.parentContext != nil { - ctx = ctx.parentContext - } - - for ; ctx != nil; ctx = ctx.parentContext { - if ctx.IsSet(name) { - return true - } - } - return false -} - -// FlagNames returns a slice of flag names used in this context. -func (c *Context) FlagNames() (names []string) { - for _, flag := range c.Command.Flags { - name := strings.Split(flag.GetName(), ",")[0] - if name == "help" { - continue - } - names = append(names, name) - } - return -} - -// GlobalFlagNames returns a slice of global flag names used by the app. -func (c *Context) GlobalFlagNames() (names []string) { - for _, flag := range c.App.Flags { - name := strings.Split(flag.GetName(), ",")[0] - if name == "help" || name == "version" { - continue - } - names = append(names, name) - } - return -} - -// Parent returns the parent context, if any -func (c *Context) Parent() *Context { - return c.parentContext -} - -// value returns the value of the flag coressponding to `name` -func (c *Context) value(name string) interface{} { - return c.flagSet.Lookup(name).Value.(flag.Getter).Get() -} - -// Args contains apps console arguments -type Args []string - -// Args returns the command line arguments associated with the context. -func (c *Context) Args() Args { - args := Args(c.flagSet.Args()) - return args -} - -// NArg returns the number of the command line arguments. -func (c *Context) NArg() int { - return len(c.Args()) -} - -// Get returns the nth argument, or else a blank string -func (a Args) Get(n int) string { - if len(a) > n { - return a[n] - } - return "" -} - -// First returns the first argument, or else a blank string -func (a Args) First() string { - return a.Get(0) -} - -// Tail returns the rest of the arguments (not the first one) -// or else an empty string slice -func (a Args) Tail() []string { - if len(a) >= 2 { - return []string(a)[1:] - } - return []string{} -} - -// Present checks if there are any arguments present -func (a Args) Present() bool { - return len(a) != 0 -} - -// Swap swaps arguments at the given indexes -func (a Args) Swap(from, to int) error { - if from >= len(a) || to >= len(a) { - return errors.New("index out of range") - } - a[from], a[to] = a[to], a[from] - return nil -} - -func globalContext(ctx *Context) *Context { - if ctx == nil { - return nil - } - - for { - if ctx.parentContext == nil { - return ctx - } - ctx = ctx.parentContext - } -} - -func lookupGlobalFlagSet(name string, ctx *Context) *flag.FlagSet { - if ctx.parentContext != nil { - ctx = ctx.parentContext - } - for ; ctx != nil; ctx = ctx.parentContext { - if f := ctx.flagSet.Lookup(name); f != nil { - return ctx.flagSet - } - } - return nil -} - -func copyFlag(name string, ff *flag.Flag, set *flag.FlagSet) { - switch ff.Value.(type) { - case *StringSlice: - default: - set.Set(name, ff.Value.String()) - } -} - -func normalizeFlags(flags []Flag, set *flag.FlagSet) error { - visited := make(map[string]bool) - set.Visit(func(f *flag.Flag) { - visited[f.Name] = true - }) - for _, f := range flags { - parts := strings.Split(f.GetName(), ",") - if len(parts) == 1 { - continue - } - var ff *flag.Flag - for _, name := range parts { - name = strings.Trim(name, " ") - if visited[name] { - if ff != nil { - return errors.New("Cannot use two forms of the same flag: " + name + " " + ff.Name) - } - ff = set.Lookup(name) - } - } - if ff == nil { - continue - } - for _, name := range parts { - name = strings.Trim(name, " ") - if !visited[name] { - copyFlag(name, ff, set) - } - } - } - return nil -} diff --git a/vendor/github.com/urfave/cli/errors.go b/vendor/github.com/urfave/cli/errors.go deleted file mode 100644 index 562b2953..00000000 --- a/vendor/github.com/urfave/cli/errors.go +++ /dev/null @@ -1,115 +0,0 @@ -package cli - -import ( - "fmt" - "io" - "os" - "strings" -) - -// OsExiter is the function used when the app exits. If not set defaults to os.Exit. -var OsExiter = os.Exit - -// ErrWriter is used to write errors to the user. This can be anything -// implementing the io.Writer interface and defaults to os.Stderr. -var ErrWriter io.Writer = os.Stderr - -// MultiError is an error that wraps multiple errors. -type MultiError struct { - Errors []error -} - -// NewMultiError creates a new MultiError. Pass in one or more errors. -func NewMultiError(err ...error) MultiError { - return MultiError{Errors: err} -} - -// Error implements the error interface. -func (m MultiError) Error() string { - errs := make([]string, len(m.Errors)) - for i, err := range m.Errors { - errs[i] = err.Error() - } - - return strings.Join(errs, "\n") -} - -type ErrorFormatter interface { - Format(s fmt.State, verb rune) -} - -// ExitCoder is the interface checked by `App` and `Command` for a custom exit -// code -type ExitCoder interface { - error - ExitCode() int -} - -// ExitError fulfills both the builtin `error` interface and `ExitCoder` -type ExitError struct { - exitCode int - message interface{} -} - -// NewExitError makes a new *ExitError -func NewExitError(message interface{}, exitCode int) *ExitError { - return &ExitError{ - exitCode: exitCode, - message: message, - } -} - -// Error returns the string message, fulfilling the interface required by -// `error` -func (ee *ExitError) Error() string { - return fmt.Sprintf("%v", ee.message) -} - -// ExitCode returns the exit code, fulfilling the interface required by -// `ExitCoder` -func (ee *ExitError) ExitCode() int { - return ee.exitCode -} - -// HandleExitCoder checks if the error fulfills the ExitCoder interface, and if -// so prints the error to stderr (if it is non-empty) and calls OsExiter with the -// given exit code. If the given error is a MultiError, then this func is -// called on all members of the Errors slice and calls OsExiter with the last exit code. -func HandleExitCoder(err error) { - if err == nil { - return - } - - if exitErr, ok := err.(ExitCoder); ok { - if err.Error() != "" { - if _, ok := exitErr.(ErrorFormatter); ok { - fmt.Fprintf(ErrWriter, "%+v\n", err) - } else { - fmt.Fprintln(ErrWriter, err) - } - } - OsExiter(exitErr.ExitCode()) - return - } - - if multiErr, ok := err.(MultiError); ok { - code := handleMultiError(multiErr) - OsExiter(code) - return - } -} - -func handleMultiError(multiErr MultiError) int { - code := 1 - for _, merr := range multiErr.Errors { - if multiErr2, ok := merr.(MultiError); ok { - code = handleMultiError(multiErr2) - } else { - fmt.Fprintln(ErrWriter, merr) - if exitErr, ok := merr.(ExitCoder); ok { - code = exitErr.ExitCode() - } - } - } - return code -} diff --git a/vendor/github.com/urfave/cli/flag-types.json b/vendor/github.com/urfave/cli/flag-types.json deleted file mode 100644 index 12231078..00000000 --- a/vendor/github.com/urfave/cli/flag-types.json +++ /dev/null @@ -1,93 +0,0 @@ -[ - { - "name": "Bool", - "type": "bool", - "value": false, - "context_default": "false", - "parser": "strconv.ParseBool(f.Value.String())" - }, - { - "name": "BoolT", - "type": "bool", - "value": false, - "doctail": " that is true by default", - "context_default": "false", - "parser": "strconv.ParseBool(f.Value.String())" - }, - { - "name": "Duration", - "type": "time.Duration", - "doctail": " (see https://golang.org/pkg/time/#ParseDuration)", - "context_default": "0", - "parser": "time.ParseDuration(f.Value.String())" - }, - { - "name": "Float64", - "type": "float64", - "context_default": "0", - "parser": "strconv.ParseFloat(f.Value.String(), 64)" - }, - { - "name": "Generic", - "type": "Generic", - "dest": false, - "context_default": "nil", - "context_type": "interface{}" - }, - { - "name": "Int64", - "type": "int64", - "context_default": "0", - "parser": "strconv.ParseInt(f.Value.String(), 0, 64)" - }, - { - "name": "Int", - "type": "int", - "context_default": "0", - "parser": "strconv.ParseInt(f.Value.String(), 0, 64)", - "parser_cast": "int(parsed)" - }, - { - "name": "IntSlice", - "type": "*IntSlice", - "dest": false, - "context_default": "nil", - "context_type": "[]int", - "parser": "(f.Value.(*IntSlice)).Value(), error(nil)" - }, - { - "name": "Int64Slice", - "type": "*Int64Slice", - "dest": false, - "context_default": "nil", - "context_type": "[]int64", - "parser": "(f.Value.(*Int64Slice)).Value(), error(nil)" - }, - { - "name": "String", - "type": "string", - "context_default": "\"\"", - "parser": "f.Value.String(), error(nil)" - }, - { - "name": "StringSlice", - "type": "*StringSlice", - "dest": false, - "context_default": "nil", - "context_type": "[]string", - "parser": "(f.Value.(*StringSlice)).Value(), error(nil)" - }, - { - "name": "Uint64", - "type": "uint64", - "context_default": "0", - "parser": "strconv.ParseUint(f.Value.String(), 0, 64)" - }, - { - "name": "Uint", - "type": "uint", - "context_default": "0", - "parser": "strconv.ParseUint(f.Value.String(), 0, 64)", - "parser_cast": "uint(parsed)" - } -] diff --git a/vendor/github.com/urfave/cli/flag.go b/vendor/github.com/urfave/cli/flag.go deleted file mode 100644 index 877ff352..00000000 --- a/vendor/github.com/urfave/cli/flag.go +++ /dev/null @@ -1,799 +0,0 @@ -package cli - -import ( - "flag" - "fmt" - "reflect" - "runtime" - "strconv" - "strings" - "syscall" - "time" -) - -const defaultPlaceholder = "value" - -// BashCompletionFlag enables bash-completion for all commands and subcommands -var BashCompletionFlag Flag = BoolFlag{ - Name: "generate-bash-completion", - Hidden: true, -} - -// VersionFlag prints the version for the application -var VersionFlag Flag = BoolFlag{ - Name: "version, v", - Usage: "print the version", -} - -// HelpFlag prints the help for all commands and subcommands -// Set to the zero value (BoolFlag{}) to disable flag -- keeps subcommand -// unless HideHelp is set to true) -var HelpFlag Flag = BoolFlag{ - Name: "help, h", - Usage: "show help", -} - -// FlagStringer converts a flag definition to a string. This is used by help -// to display a flag. -var FlagStringer FlagStringFunc = stringifyFlag - -// FlagsByName is a slice of Flag. -type FlagsByName []Flag - -func (f FlagsByName) Len() int { - return len(f) -} - -func (f FlagsByName) Less(i, j int) bool { - return f[i].GetName() < f[j].GetName() -} - -func (f FlagsByName) Swap(i, j int) { - f[i], f[j] = f[j], f[i] -} - -// Flag is a common interface related to parsing flags in cli. -// For more advanced flag parsing techniques, it is recommended that -// this interface be implemented. -type Flag interface { - fmt.Stringer - // Apply Flag settings to the given flag set - Apply(*flag.FlagSet) - GetName() string -} - -// errorableFlag is an interface that allows us to return errors during apply -// it allows flags defined in this library to return errors in a fashion backwards compatible -// TODO remove in v2 and modify the existing Flag interface to return errors -type errorableFlag interface { - Flag - - ApplyWithError(*flag.FlagSet) error -} - -func flagSet(name string, flags []Flag) (*flag.FlagSet, error) { - set := flag.NewFlagSet(name, flag.ContinueOnError) - - for _, f := range flags { - //TODO remove in v2 when errorableFlag is removed - if ef, ok := f.(errorableFlag); ok { - if err := ef.ApplyWithError(set); err != nil { - return nil, err - } - } else { - f.Apply(set) - } - } - return set, nil -} - -func eachName(longName string, fn func(string)) { - parts := strings.Split(longName, ",") - for _, name := range parts { - name = strings.Trim(name, " ") - fn(name) - } -} - -// Generic is a generic parseable type identified by a specific flag -type Generic interface { - Set(value string) error - String() string -} - -// Apply takes the flagset and calls Set on the generic flag with the value -// provided by the user for parsing by the flag -// Ignores parsing errors -func (f GenericFlag) Apply(set *flag.FlagSet) { - f.ApplyWithError(set) -} - -// ApplyWithError takes the flagset and calls Set on the generic flag with the value -// provided by the user for parsing by the flag -func (f GenericFlag) ApplyWithError(set *flag.FlagSet) error { - val := f.Value - if f.EnvVar != "" { - for _, envVar := range strings.Split(f.EnvVar, ",") { - envVar = strings.TrimSpace(envVar) - if envVal, ok := syscall.Getenv(envVar); ok { - if err := val.Set(envVal); err != nil { - return fmt.Errorf("could not parse %s as value for flag %s: %s", envVal, f.Name, err) - } - break - } - } - } - - eachName(f.Name, func(name string) { - set.Var(f.Value, name, f.Usage) - }) - - return nil -} - -// StringSlice is an opaque type for []string to satisfy flag.Value and flag.Getter -type StringSlice []string - -// Set appends the string value to the list of values -func (f *StringSlice) Set(value string) error { - *f = append(*f, value) - return nil -} - -// String returns a readable representation of this value (for usage defaults) -func (f *StringSlice) String() string { - return fmt.Sprintf("%s", *f) -} - -// Value returns the slice of strings set by this flag -func (f *StringSlice) Value() []string { - return *f -} - -// Get returns the slice of strings set by this flag -func (f *StringSlice) Get() interface{} { - return *f -} - -// Apply populates the flag given the flag set and environment -// Ignores errors -func (f StringSliceFlag) Apply(set *flag.FlagSet) { - f.ApplyWithError(set) -} - -// ApplyWithError populates the flag given the flag set and environment -func (f StringSliceFlag) ApplyWithError(set *flag.FlagSet) error { - if f.EnvVar != "" { - for _, envVar := range strings.Split(f.EnvVar, ",") { - envVar = strings.TrimSpace(envVar) - if envVal, ok := syscall.Getenv(envVar); ok { - newVal := &StringSlice{} - for _, s := range strings.Split(envVal, ",") { - s = strings.TrimSpace(s) - if err := newVal.Set(s); err != nil { - return fmt.Errorf("could not parse %s as string value for flag %s: %s", envVal, f.Name, err) - } - } - f.Value = newVal - break - } - } - } - - eachName(f.Name, func(name string) { - if f.Value == nil { - f.Value = &StringSlice{} - } - set.Var(f.Value, name, f.Usage) - }) - - return nil -} - -// IntSlice is an opaque type for []int to satisfy flag.Value and flag.Getter -type IntSlice []int - -// Set parses the value into an integer and appends it to the list of values -func (f *IntSlice) Set(value string) error { - tmp, err := strconv.Atoi(value) - if err != nil { - return err - } - *f = append(*f, tmp) - return nil -} - -// String returns a readable representation of this value (for usage defaults) -func (f *IntSlice) String() string { - return fmt.Sprintf("%#v", *f) -} - -// Value returns the slice of ints set by this flag -func (f *IntSlice) Value() []int { - return *f -} - -// Get returns the slice of ints set by this flag -func (f *IntSlice) Get() interface{} { - return *f -} - -// Apply populates the flag given the flag set and environment -// Ignores errors -func (f IntSliceFlag) Apply(set *flag.FlagSet) { - f.ApplyWithError(set) -} - -// ApplyWithError populates the flag given the flag set and environment -func (f IntSliceFlag) ApplyWithError(set *flag.FlagSet) error { - if f.EnvVar != "" { - for _, envVar := range strings.Split(f.EnvVar, ",") { - envVar = strings.TrimSpace(envVar) - if envVal, ok := syscall.Getenv(envVar); ok { - newVal := &IntSlice{} - for _, s := range strings.Split(envVal, ",") { - s = strings.TrimSpace(s) - if err := newVal.Set(s); err != nil { - return fmt.Errorf("could not parse %s as int slice value for flag %s: %s", envVal, f.Name, err) - } - } - f.Value = newVal - break - } - } - } - - eachName(f.Name, func(name string) { - if f.Value == nil { - f.Value = &IntSlice{} - } - set.Var(f.Value, name, f.Usage) - }) - - return nil -} - -// Int64Slice is an opaque type for []int to satisfy flag.Value and flag.Getter -type Int64Slice []int64 - -// Set parses the value into an integer and appends it to the list of values -func (f *Int64Slice) Set(value string) error { - tmp, err := strconv.ParseInt(value, 10, 64) - if err != nil { - return err - } - *f = append(*f, tmp) - return nil -} - -// String returns a readable representation of this value (for usage defaults) -func (f *Int64Slice) String() string { - return fmt.Sprintf("%#v", *f) -} - -// Value returns the slice of ints set by this flag -func (f *Int64Slice) Value() []int64 { - return *f -} - -// Get returns the slice of ints set by this flag -func (f *Int64Slice) Get() interface{} { - return *f -} - -// Apply populates the flag given the flag set and environment -// Ignores errors -func (f Int64SliceFlag) Apply(set *flag.FlagSet) { - f.ApplyWithError(set) -} - -// ApplyWithError populates the flag given the flag set and environment -func (f Int64SliceFlag) ApplyWithError(set *flag.FlagSet) error { - if f.EnvVar != "" { - for _, envVar := range strings.Split(f.EnvVar, ",") { - envVar = strings.TrimSpace(envVar) - if envVal, ok := syscall.Getenv(envVar); ok { - newVal := &Int64Slice{} - for _, s := range strings.Split(envVal, ",") { - s = strings.TrimSpace(s) - if err := newVal.Set(s); err != nil { - return fmt.Errorf("could not parse %s as int64 slice value for flag %s: %s", envVal, f.Name, err) - } - } - f.Value = newVal - break - } - } - } - - eachName(f.Name, func(name string) { - if f.Value == nil { - f.Value = &Int64Slice{} - } - set.Var(f.Value, name, f.Usage) - }) - return nil -} - -// Apply populates the flag given the flag set and environment -// Ignores errors -func (f BoolFlag) Apply(set *flag.FlagSet) { - f.ApplyWithError(set) -} - -// ApplyWithError populates the flag given the flag set and environment -func (f BoolFlag) ApplyWithError(set *flag.FlagSet) error { - val := false - if f.EnvVar != "" { - for _, envVar := range strings.Split(f.EnvVar, ",") { - envVar = strings.TrimSpace(envVar) - if envVal, ok := syscall.Getenv(envVar); ok { - if envVal == "" { - val = false - break - } - - envValBool, err := strconv.ParseBool(envVal) - if err != nil { - return fmt.Errorf("could not parse %s as bool value for flag %s: %s", envVal, f.Name, err) - } - - val = envValBool - break - } - } - } - - eachName(f.Name, func(name string) { - if f.Destination != nil { - set.BoolVar(f.Destination, name, val, f.Usage) - return - } - set.Bool(name, val, f.Usage) - }) - - return nil -} - -// Apply populates the flag given the flag set and environment -// Ignores errors -func (f BoolTFlag) Apply(set *flag.FlagSet) { - f.ApplyWithError(set) -} - -// ApplyWithError populates the flag given the flag set and environment -func (f BoolTFlag) ApplyWithError(set *flag.FlagSet) error { - val := true - if f.EnvVar != "" { - for _, envVar := range strings.Split(f.EnvVar, ",") { - envVar = strings.TrimSpace(envVar) - if envVal, ok := syscall.Getenv(envVar); ok { - if envVal == "" { - val = false - break - } - - envValBool, err := strconv.ParseBool(envVal) - if err != nil { - return fmt.Errorf("could not parse %s as bool value for flag %s: %s", envVal, f.Name, err) - } - - val = envValBool - break - } - } - } - - eachName(f.Name, func(name string) { - if f.Destination != nil { - set.BoolVar(f.Destination, name, val, f.Usage) - return - } - set.Bool(name, val, f.Usage) - }) - - return nil -} - -// Apply populates the flag given the flag set and environment -// Ignores errors -func (f StringFlag) Apply(set *flag.FlagSet) { - f.ApplyWithError(set) -} - -// ApplyWithError populates the flag given the flag set and environment -func (f StringFlag) ApplyWithError(set *flag.FlagSet) error { - if f.EnvVar != "" { - for _, envVar := range strings.Split(f.EnvVar, ",") { - envVar = strings.TrimSpace(envVar) - if envVal, ok := syscall.Getenv(envVar); ok { - f.Value = envVal - break - } - } - } - - eachName(f.Name, func(name string) { - if f.Destination != nil { - set.StringVar(f.Destination, name, f.Value, f.Usage) - return - } - set.String(name, f.Value, f.Usage) - }) - - return nil -} - -// Apply populates the flag given the flag set and environment -// Ignores errors -func (f IntFlag) Apply(set *flag.FlagSet) { - f.ApplyWithError(set) -} - -// ApplyWithError populates the flag given the flag set and environment -func (f IntFlag) ApplyWithError(set *flag.FlagSet) error { - if f.EnvVar != "" { - for _, envVar := range strings.Split(f.EnvVar, ",") { - envVar = strings.TrimSpace(envVar) - if envVal, ok := syscall.Getenv(envVar); ok { - envValInt, err := strconv.ParseInt(envVal, 0, 64) - if err != nil { - return fmt.Errorf("could not parse %s as int value for flag %s: %s", envVal, f.Name, err) - } - f.Value = int(envValInt) - break - } - } - } - - eachName(f.Name, func(name string) { - if f.Destination != nil { - set.IntVar(f.Destination, name, f.Value, f.Usage) - return - } - set.Int(name, f.Value, f.Usage) - }) - - return nil -} - -// Apply populates the flag given the flag set and environment -// Ignores errors -func (f Int64Flag) Apply(set *flag.FlagSet) { - f.ApplyWithError(set) -} - -// ApplyWithError populates the flag given the flag set and environment -func (f Int64Flag) ApplyWithError(set *flag.FlagSet) error { - if f.EnvVar != "" { - for _, envVar := range strings.Split(f.EnvVar, ",") { - envVar = strings.TrimSpace(envVar) - if envVal, ok := syscall.Getenv(envVar); ok { - envValInt, err := strconv.ParseInt(envVal, 0, 64) - if err != nil { - return fmt.Errorf("could not parse %s as int value for flag %s: %s", envVal, f.Name, err) - } - - f.Value = envValInt - break - } - } - } - - eachName(f.Name, func(name string) { - if f.Destination != nil { - set.Int64Var(f.Destination, name, f.Value, f.Usage) - return - } - set.Int64(name, f.Value, f.Usage) - }) - - return nil -} - -// Apply populates the flag given the flag set and environment -// Ignores errors -func (f UintFlag) Apply(set *flag.FlagSet) { - f.ApplyWithError(set) -} - -// ApplyWithError populates the flag given the flag set and environment -func (f UintFlag) ApplyWithError(set *flag.FlagSet) error { - if f.EnvVar != "" { - for _, envVar := range strings.Split(f.EnvVar, ",") { - envVar = strings.TrimSpace(envVar) - if envVal, ok := syscall.Getenv(envVar); ok { - envValInt, err := strconv.ParseUint(envVal, 0, 64) - if err != nil { - return fmt.Errorf("could not parse %s as uint value for flag %s: %s", envVal, f.Name, err) - } - - f.Value = uint(envValInt) - break - } - } - } - - eachName(f.Name, func(name string) { - if f.Destination != nil { - set.UintVar(f.Destination, name, f.Value, f.Usage) - return - } - set.Uint(name, f.Value, f.Usage) - }) - - return nil -} - -// Apply populates the flag given the flag set and environment -// Ignores errors -func (f Uint64Flag) Apply(set *flag.FlagSet) { - f.ApplyWithError(set) -} - -// ApplyWithError populates the flag given the flag set and environment -func (f Uint64Flag) ApplyWithError(set *flag.FlagSet) error { - if f.EnvVar != "" { - for _, envVar := range strings.Split(f.EnvVar, ",") { - envVar = strings.TrimSpace(envVar) - if envVal, ok := syscall.Getenv(envVar); ok { - envValInt, err := strconv.ParseUint(envVal, 0, 64) - if err != nil { - return fmt.Errorf("could not parse %s as uint64 value for flag %s: %s", envVal, f.Name, err) - } - - f.Value = uint64(envValInt) - break - } - } - } - - eachName(f.Name, func(name string) { - if f.Destination != nil { - set.Uint64Var(f.Destination, name, f.Value, f.Usage) - return - } - set.Uint64(name, f.Value, f.Usage) - }) - - return nil -} - -// Apply populates the flag given the flag set and environment -// Ignores errors -func (f DurationFlag) Apply(set *flag.FlagSet) { - f.ApplyWithError(set) -} - -// ApplyWithError populates the flag given the flag set and environment -func (f DurationFlag) ApplyWithError(set *flag.FlagSet) error { - if f.EnvVar != "" { - for _, envVar := range strings.Split(f.EnvVar, ",") { - envVar = strings.TrimSpace(envVar) - if envVal, ok := syscall.Getenv(envVar); ok { - envValDuration, err := time.ParseDuration(envVal) - if err != nil { - return fmt.Errorf("could not parse %s as duration for flag %s: %s", envVal, f.Name, err) - } - - f.Value = envValDuration - break - } - } - } - - eachName(f.Name, func(name string) { - if f.Destination != nil { - set.DurationVar(f.Destination, name, f.Value, f.Usage) - return - } - set.Duration(name, f.Value, f.Usage) - }) - - return nil -} - -// Apply populates the flag given the flag set and environment -// Ignores errors -func (f Float64Flag) Apply(set *flag.FlagSet) { - f.ApplyWithError(set) -} - -// ApplyWithError populates the flag given the flag set and environment -func (f Float64Flag) ApplyWithError(set *flag.FlagSet) error { - if f.EnvVar != "" { - for _, envVar := range strings.Split(f.EnvVar, ",") { - envVar = strings.TrimSpace(envVar) - if envVal, ok := syscall.Getenv(envVar); ok { - envValFloat, err := strconv.ParseFloat(envVal, 10) - if err != nil { - return fmt.Errorf("could not parse %s as float64 value for flag %s: %s", envVal, f.Name, err) - } - - f.Value = float64(envValFloat) - break - } - } - } - - eachName(f.Name, func(name string) { - if f.Destination != nil { - set.Float64Var(f.Destination, name, f.Value, f.Usage) - return - } - set.Float64(name, f.Value, f.Usage) - }) - - return nil -} - -func visibleFlags(fl []Flag) []Flag { - visible := []Flag{} - for _, flag := range fl { - field := flagValue(flag).FieldByName("Hidden") - if !field.IsValid() || !field.Bool() { - visible = append(visible, flag) - } - } - return visible -} - -func prefixFor(name string) (prefix string) { - if len(name) == 1 { - prefix = "-" - } else { - prefix = "--" - } - - return -} - -// Returns the placeholder, if any, and the unquoted usage string. -func unquoteUsage(usage string) (string, string) { - for i := 0; i < len(usage); i++ { - if usage[i] == '`' { - for j := i + 1; j < len(usage); j++ { - if usage[j] == '`' { - name := usage[i+1 : j] - usage = usage[:i] + name + usage[j+1:] - return name, usage - } - } - break - } - } - return "", usage -} - -func prefixedNames(fullName, placeholder string) string { - var prefixed string - parts := strings.Split(fullName, ",") - for i, name := range parts { - name = strings.Trim(name, " ") - prefixed += prefixFor(name) + name - if placeholder != "" { - prefixed += " " + placeholder - } - if i < len(parts)-1 { - prefixed += ", " - } - } - return prefixed -} - -func withEnvHint(envVar, str string) string { - envText := "" - if envVar != "" { - prefix := "$" - suffix := "" - sep := ", $" - if runtime.GOOS == "windows" { - prefix = "%" - suffix = "%" - sep = "%, %" - } - envText = fmt.Sprintf(" [%s%s%s]", prefix, strings.Join(strings.Split(envVar, ","), sep), suffix) - } - return str + envText -} - -func flagValue(f Flag) reflect.Value { - fv := reflect.ValueOf(f) - for fv.Kind() == reflect.Ptr { - fv = reflect.Indirect(fv) - } - return fv -} - -func stringifyFlag(f Flag) string { - fv := flagValue(f) - - switch f.(type) { - case IntSliceFlag: - return withEnvHint(fv.FieldByName("EnvVar").String(), - stringifyIntSliceFlag(f.(IntSliceFlag))) - case Int64SliceFlag: - return withEnvHint(fv.FieldByName("EnvVar").String(), - stringifyInt64SliceFlag(f.(Int64SliceFlag))) - case StringSliceFlag: - return withEnvHint(fv.FieldByName("EnvVar").String(), - stringifyStringSliceFlag(f.(StringSliceFlag))) - } - - placeholder, usage := unquoteUsage(fv.FieldByName("Usage").String()) - - needsPlaceholder := false - defaultValueString := "" - - if val := fv.FieldByName("Value"); val.IsValid() { - needsPlaceholder = true - defaultValueString = fmt.Sprintf(" (default: %v)", val.Interface()) - - if val.Kind() == reflect.String && val.String() != "" { - defaultValueString = fmt.Sprintf(" (default: %q)", val.String()) - } - } - - if defaultValueString == " (default: )" { - defaultValueString = "" - } - - if needsPlaceholder && placeholder == "" { - placeholder = defaultPlaceholder - } - - usageWithDefault := strings.TrimSpace(fmt.Sprintf("%s%s", usage, defaultValueString)) - - return withEnvHint(fv.FieldByName("EnvVar").String(), - fmt.Sprintf("%s\t%s", prefixedNames(fv.FieldByName("Name").String(), placeholder), usageWithDefault)) -} - -func stringifyIntSliceFlag(f IntSliceFlag) string { - defaultVals := []string{} - if f.Value != nil && len(f.Value.Value()) > 0 { - for _, i := range f.Value.Value() { - defaultVals = append(defaultVals, fmt.Sprintf("%d", i)) - } - } - - return stringifySliceFlag(f.Usage, f.Name, defaultVals) -} - -func stringifyInt64SliceFlag(f Int64SliceFlag) string { - defaultVals := []string{} - if f.Value != nil && len(f.Value.Value()) > 0 { - for _, i := range f.Value.Value() { - defaultVals = append(defaultVals, fmt.Sprintf("%d", i)) - } - } - - return stringifySliceFlag(f.Usage, f.Name, defaultVals) -} - -func stringifyStringSliceFlag(f StringSliceFlag) string { - defaultVals := []string{} - if f.Value != nil && len(f.Value.Value()) > 0 { - for _, s := range f.Value.Value() { - if len(s) > 0 { - defaultVals = append(defaultVals, fmt.Sprintf("%q", s)) - } - } - } - - return stringifySliceFlag(f.Usage, f.Name, defaultVals) -} - -func stringifySliceFlag(usage, name string, defaultVals []string) string { - placeholder, usage := unquoteUsage(usage) - if placeholder == "" { - placeholder = defaultPlaceholder - } - - defaultVal := "" - if len(defaultVals) > 0 { - defaultVal = fmt.Sprintf(" (default: %s)", strings.Join(defaultVals, ", ")) - } - - usageWithDefault := strings.TrimSpace(fmt.Sprintf("%s%s", usage, defaultVal)) - return fmt.Sprintf("%s\t%s", prefixedNames(name, placeholder), usageWithDefault) -} diff --git a/vendor/github.com/urfave/cli/flag_generated.go b/vendor/github.com/urfave/cli/flag_generated.go deleted file mode 100644 index 491b6195..00000000 --- a/vendor/github.com/urfave/cli/flag_generated.go +++ /dev/null @@ -1,627 +0,0 @@ -package cli - -import ( - "flag" - "strconv" - "time" -) - -// WARNING: This file is generated! - -// BoolFlag is a flag with type bool -type BoolFlag struct { - Name string - Usage string - EnvVar string - Hidden bool - Destination *bool -} - -// String returns a readable representation of this value -// (for usage defaults) -func (f BoolFlag) String() string { - return FlagStringer(f) -} - -// GetName returns the name of the flag -func (f BoolFlag) GetName() string { - return f.Name -} - -// Bool looks up the value of a local BoolFlag, returns -// false if not found -func (c *Context) Bool(name string) bool { - return lookupBool(name, c.flagSet) -} - -// GlobalBool looks up the value of a global BoolFlag, returns -// false if not found -func (c *Context) GlobalBool(name string) bool { - if fs := lookupGlobalFlagSet(name, c); fs != nil { - return lookupBool(name, fs) - } - return false -} - -func lookupBool(name string, set *flag.FlagSet) bool { - f := set.Lookup(name) - if f != nil { - parsed, err := strconv.ParseBool(f.Value.String()) - if err != nil { - return false - } - return parsed - } - return false -} - -// BoolTFlag is a flag with type bool that is true by default -type BoolTFlag struct { - Name string - Usage string - EnvVar string - Hidden bool - Destination *bool -} - -// String returns a readable representation of this value -// (for usage defaults) -func (f BoolTFlag) String() string { - return FlagStringer(f) -} - -// GetName returns the name of the flag -func (f BoolTFlag) GetName() string { - return f.Name -} - -// BoolT looks up the value of a local BoolTFlag, returns -// false if not found -func (c *Context) BoolT(name string) bool { - return lookupBoolT(name, c.flagSet) -} - -// GlobalBoolT looks up the value of a global BoolTFlag, returns -// false if not found -func (c *Context) GlobalBoolT(name string) bool { - if fs := lookupGlobalFlagSet(name, c); fs != nil { - return lookupBoolT(name, fs) - } - return false -} - -func lookupBoolT(name string, set *flag.FlagSet) bool { - f := set.Lookup(name) - if f != nil { - parsed, err := strconv.ParseBool(f.Value.String()) - if err != nil { - return false - } - return parsed - } - return false -} - -// DurationFlag is a flag with type time.Duration (see https://golang.org/pkg/time/#ParseDuration) -type DurationFlag struct { - Name string - Usage string - EnvVar string - Hidden bool - Value time.Duration - Destination *time.Duration -} - -// String returns a readable representation of this value -// (for usage defaults) -func (f DurationFlag) String() string { - return FlagStringer(f) -} - -// GetName returns the name of the flag -func (f DurationFlag) GetName() string { - return f.Name -} - -// Duration looks up the value of a local DurationFlag, returns -// 0 if not found -func (c *Context) Duration(name string) time.Duration { - return lookupDuration(name, c.flagSet) -} - -// GlobalDuration looks up the value of a global DurationFlag, returns -// 0 if not found -func (c *Context) GlobalDuration(name string) time.Duration { - if fs := lookupGlobalFlagSet(name, c); fs != nil { - return lookupDuration(name, fs) - } - return 0 -} - -func lookupDuration(name string, set *flag.FlagSet) time.Duration { - f := set.Lookup(name) - if f != nil { - parsed, err := time.ParseDuration(f.Value.String()) - if err != nil { - return 0 - } - return parsed - } - return 0 -} - -// Float64Flag is a flag with type float64 -type Float64Flag struct { - Name string - Usage string - EnvVar string - Hidden bool - Value float64 - Destination *float64 -} - -// String returns a readable representation of this value -// (for usage defaults) -func (f Float64Flag) String() string { - return FlagStringer(f) -} - -// GetName returns the name of the flag -func (f Float64Flag) GetName() string { - return f.Name -} - -// Float64 looks up the value of a local Float64Flag, returns -// 0 if not found -func (c *Context) Float64(name string) float64 { - return lookupFloat64(name, c.flagSet) -} - -// GlobalFloat64 looks up the value of a global Float64Flag, returns -// 0 if not found -func (c *Context) GlobalFloat64(name string) float64 { - if fs := lookupGlobalFlagSet(name, c); fs != nil { - return lookupFloat64(name, fs) - } - return 0 -} - -func lookupFloat64(name string, set *flag.FlagSet) float64 { - f := set.Lookup(name) - if f != nil { - parsed, err := strconv.ParseFloat(f.Value.String(), 64) - if err != nil { - return 0 - } - return parsed - } - return 0 -} - -// GenericFlag is a flag with type Generic -type GenericFlag struct { - Name string - Usage string - EnvVar string - Hidden bool - Value Generic -} - -// String returns a readable representation of this value -// (for usage defaults) -func (f GenericFlag) String() string { - return FlagStringer(f) -} - -// GetName returns the name of the flag -func (f GenericFlag) GetName() string { - return f.Name -} - -// Generic looks up the value of a local GenericFlag, returns -// nil if not found -func (c *Context) Generic(name string) interface{} { - return lookupGeneric(name, c.flagSet) -} - -// GlobalGeneric looks up the value of a global GenericFlag, returns -// nil if not found -func (c *Context) GlobalGeneric(name string) interface{} { - if fs := lookupGlobalFlagSet(name, c); fs != nil { - return lookupGeneric(name, fs) - } - return nil -} - -func lookupGeneric(name string, set *flag.FlagSet) interface{} { - f := set.Lookup(name) - if f != nil { - parsed, err := f.Value, error(nil) - if err != nil { - return nil - } - return parsed - } - return nil -} - -// Int64Flag is a flag with type int64 -type Int64Flag struct { - Name string - Usage string - EnvVar string - Hidden bool - Value int64 - Destination *int64 -} - -// String returns a readable representation of this value -// (for usage defaults) -func (f Int64Flag) String() string { - return FlagStringer(f) -} - -// GetName returns the name of the flag -func (f Int64Flag) GetName() string { - return f.Name -} - -// Int64 looks up the value of a local Int64Flag, returns -// 0 if not found -func (c *Context) Int64(name string) int64 { - return lookupInt64(name, c.flagSet) -} - -// GlobalInt64 looks up the value of a global Int64Flag, returns -// 0 if not found -func (c *Context) GlobalInt64(name string) int64 { - if fs := lookupGlobalFlagSet(name, c); fs != nil { - return lookupInt64(name, fs) - } - return 0 -} - -func lookupInt64(name string, set *flag.FlagSet) int64 { - f := set.Lookup(name) - if f != nil { - parsed, err := strconv.ParseInt(f.Value.String(), 0, 64) - if err != nil { - return 0 - } - return parsed - } - return 0 -} - -// IntFlag is a flag with type int -type IntFlag struct { - Name string - Usage string - EnvVar string - Hidden bool - Value int - Destination *int -} - -// String returns a readable representation of this value -// (for usage defaults) -func (f IntFlag) String() string { - return FlagStringer(f) -} - -// GetName returns the name of the flag -func (f IntFlag) GetName() string { - return f.Name -} - -// Int looks up the value of a local IntFlag, returns -// 0 if not found -func (c *Context) Int(name string) int { - return lookupInt(name, c.flagSet) -} - -// GlobalInt looks up the value of a global IntFlag, returns -// 0 if not found -func (c *Context) GlobalInt(name string) int { - if fs := lookupGlobalFlagSet(name, c); fs != nil { - return lookupInt(name, fs) - } - return 0 -} - -func lookupInt(name string, set *flag.FlagSet) int { - f := set.Lookup(name) - if f != nil { - parsed, err := strconv.ParseInt(f.Value.String(), 0, 64) - if err != nil { - return 0 - } - return int(parsed) - } - return 0 -} - -// IntSliceFlag is a flag with type *IntSlice -type IntSliceFlag struct { - Name string - Usage string - EnvVar string - Hidden bool - Value *IntSlice -} - -// String returns a readable representation of this value -// (for usage defaults) -func (f IntSliceFlag) String() string { - return FlagStringer(f) -} - -// GetName returns the name of the flag -func (f IntSliceFlag) GetName() string { - return f.Name -} - -// IntSlice looks up the value of a local IntSliceFlag, returns -// nil if not found -func (c *Context) IntSlice(name string) []int { - return lookupIntSlice(name, c.flagSet) -} - -// GlobalIntSlice looks up the value of a global IntSliceFlag, returns -// nil if not found -func (c *Context) GlobalIntSlice(name string) []int { - if fs := lookupGlobalFlagSet(name, c); fs != nil { - return lookupIntSlice(name, fs) - } - return nil -} - -func lookupIntSlice(name string, set *flag.FlagSet) []int { - f := set.Lookup(name) - if f != nil { - parsed, err := (f.Value.(*IntSlice)).Value(), error(nil) - if err != nil { - return nil - } - return parsed - } - return nil -} - -// Int64SliceFlag is a flag with type *Int64Slice -type Int64SliceFlag struct { - Name string - Usage string - EnvVar string - Hidden bool - Value *Int64Slice -} - -// String returns a readable representation of this value -// (for usage defaults) -func (f Int64SliceFlag) String() string { - return FlagStringer(f) -} - -// GetName returns the name of the flag -func (f Int64SliceFlag) GetName() string { - return f.Name -} - -// Int64Slice looks up the value of a local Int64SliceFlag, returns -// nil if not found -func (c *Context) Int64Slice(name string) []int64 { - return lookupInt64Slice(name, c.flagSet) -} - -// GlobalInt64Slice looks up the value of a global Int64SliceFlag, returns -// nil if not found -func (c *Context) GlobalInt64Slice(name string) []int64 { - if fs := lookupGlobalFlagSet(name, c); fs != nil { - return lookupInt64Slice(name, fs) - } - return nil -} - -func lookupInt64Slice(name string, set *flag.FlagSet) []int64 { - f := set.Lookup(name) - if f != nil { - parsed, err := (f.Value.(*Int64Slice)).Value(), error(nil) - if err != nil { - return nil - } - return parsed - } - return nil -} - -// StringFlag is a flag with type string -type StringFlag struct { - Name string - Usage string - EnvVar string - Hidden bool - Value string - Destination *string -} - -// String returns a readable representation of this value -// (for usage defaults) -func (f StringFlag) String() string { - return FlagStringer(f) -} - -// GetName returns the name of the flag -func (f StringFlag) GetName() string { - return f.Name -} - -// String looks up the value of a local StringFlag, returns -// "" if not found -func (c *Context) String(name string) string { - return lookupString(name, c.flagSet) -} - -// GlobalString looks up the value of a global StringFlag, returns -// "" if not found -func (c *Context) GlobalString(name string) string { - if fs := lookupGlobalFlagSet(name, c); fs != nil { - return lookupString(name, fs) - } - return "" -} - -func lookupString(name string, set *flag.FlagSet) string { - f := set.Lookup(name) - if f != nil { - parsed, err := f.Value.String(), error(nil) - if err != nil { - return "" - } - return parsed - } - return "" -} - -// StringSliceFlag is a flag with type *StringSlice -type StringSliceFlag struct { - Name string - Usage string - EnvVar string - Hidden bool - Value *StringSlice -} - -// String returns a readable representation of this value -// (for usage defaults) -func (f StringSliceFlag) String() string { - return FlagStringer(f) -} - -// GetName returns the name of the flag -func (f StringSliceFlag) GetName() string { - return f.Name -} - -// StringSlice looks up the value of a local StringSliceFlag, returns -// nil if not found -func (c *Context) StringSlice(name string) []string { - return lookupStringSlice(name, c.flagSet) -} - -// GlobalStringSlice looks up the value of a global StringSliceFlag, returns -// nil if not found -func (c *Context) GlobalStringSlice(name string) []string { - if fs := lookupGlobalFlagSet(name, c); fs != nil { - return lookupStringSlice(name, fs) - } - return nil -} - -func lookupStringSlice(name string, set *flag.FlagSet) []string { - f := set.Lookup(name) - if f != nil { - parsed, err := (f.Value.(*StringSlice)).Value(), error(nil) - if err != nil { - return nil - } - return parsed - } - return nil -} - -// Uint64Flag is a flag with type uint64 -type Uint64Flag struct { - Name string - Usage string - EnvVar string - Hidden bool - Value uint64 - Destination *uint64 -} - -// String returns a readable representation of this value -// (for usage defaults) -func (f Uint64Flag) String() string { - return FlagStringer(f) -} - -// GetName returns the name of the flag -func (f Uint64Flag) GetName() string { - return f.Name -} - -// Uint64 looks up the value of a local Uint64Flag, returns -// 0 if not found -func (c *Context) Uint64(name string) uint64 { - return lookupUint64(name, c.flagSet) -} - -// GlobalUint64 looks up the value of a global Uint64Flag, returns -// 0 if not found -func (c *Context) GlobalUint64(name string) uint64 { - if fs := lookupGlobalFlagSet(name, c); fs != nil { - return lookupUint64(name, fs) - } - return 0 -} - -func lookupUint64(name string, set *flag.FlagSet) uint64 { - f := set.Lookup(name) - if f != nil { - parsed, err := strconv.ParseUint(f.Value.String(), 0, 64) - if err != nil { - return 0 - } - return parsed - } - return 0 -} - -// UintFlag is a flag with type uint -type UintFlag struct { - Name string - Usage string - EnvVar string - Hidden bool - Value uint - Destination *uint -} - -// String returns a readable representation of this value -// (for usage defaults) -func (f UintFlag) String() string { - return FlagStringer(f) -} - -// GetName returns the name of the flag -func (f UintFlag) GetName() string { - return f.Name -} - -// Uint looks up the value of a local UintFlag, returns -// 0 if not found -func (c *Context) Uint(name string) uint { - return lookupUint(name, c.flagSet) -} - -// GlobalUint looks up the value of a global UintFlag, returns -// 0 if not found -func (c *Context) GlobalUint(name string) uint { - if fs := lookupGlobalFlagSet(name, c); fs != nil { - return lookupUint(name, fs) - } - return 0 -} - -func lookupUint(name string, set *flag.FlagSet) uint { - f := set.Lookup(name) - if f != nil { - parsed, err := strconv.ParseUint(f.Value.String(), 0, 64) - if err != nil { - return 0 - } - return uint(parsed) - } - return 0 -} diff --git a/vendor/github.com/urfave/cli/funcs.go b/vendor/github.com/urfave/cli/funcs.go deleted file mode 100644 index cba5e6cb..00000000 --- a/vendor/github.com/urfave/cli/funcs.go +++ /dev/null @@ -1,28 +0,0 @@ -package cli - -// BashCompleteFunc is an action to execute when the bash-completion flag is set -type BashCompleteFunc func(*Context) - -// BeforeFunc is an action to execute before any subcommands are run, but after -// the context is ready if a non-nil error is returned, no subcommands are run -type BeforeFunc func(*Context) error - -// AfterFunc is an action to execute after any subcommands are run, but after the -// subcommand has finished it is run even if Action() panics -type AfterFunc func(*Context) error - -// ActionFunc is the action to execute when no subcommands are specified -type ActionFunc func(*Context) error - -// CommandNotFoundFunc is executed if the proper command cannot be found -type CommandNotFoundFunc func(*Context, string) - -// OnUsageErrorFunc is executed if an usage error occurs. This is useful for displaying -// customized usage error messages. This function is able to replace the -// original error messages. If this function is not set, the "Incorrect usage" -// is displayed and the execution is interrupted. -type OnUsageErrorFunc func(context *Context, err error, isSubcommand bool) error - -// FlagStringFunc is used by the help generation to display a flag, which is -// expected to be a single line. -type FlagStringFunc func(Flag) string diff --git a/vendor/github.com/urfave/cli/generate-flag-types b/vendor/github.com/urfave/cli/generate-flag-types deleted file mode 100644 index 7147381c..00000000 --- a/vendor/github.com/urfave/cli/generate-flag-types +++ /dev/null @@ -1,255 +0,0 @@ -#!/usr/bin/env python -""" -The flag types that ship with the cli library have many things in common, and -so we can take advantage of the `go generate` command to create much of the -source code from a list of definitions. These definitions attempt to cover -the parts that vary between flag types, and should evolve as needed. - -An example of the minimum definition needed is: - - { - "name": "SomeType", - "type": "sometype", - "context_default": "nil" - } - -In this example, the code generated for the `cli` package will include a type -named `SomeTypeFlag` that is expected to wrap a value of type `sometype`. -Fetching values by name via `*cli.Context` will default to a value of `nil`. - -A more complete, albeit somewhat redundant, example showing all available -definition keys is: - - { - "name": "VeryMuchType", - "type": "*VeryMuchType", - "value": true, - "dest": false, - "doctail": " which really only wraps a []float64, oh well!", - "context_type": "[]float64", - "context_default": "nil", - "parser": "parseVeryMuchType(f.Value.String())", - "parser_cast": "[]float64(parsed)" - } - -The meaning of each field is as follows: - - name (string) - The type "name", which will be suffixed with - `Flag` when generating the type definition - for `cli` and the wrapper type for `altsrc` - type (string) - The type that the generated `Flag` type for `cli` - is expected to "contain" as its `.Value` member - value (bool) - Should the generated `cli` type have a `Value` - member? - dest (bool) - Should the generated `cli` type support a - destination pointer? - doctail (string) - Additional docs for the `cli` flag type comment - context_type (string) - The literal type used in the `*cli.Context` - reader func signature - context_default (string) - The literal value used as the default by the - `*cli.Context` reader funcs when no value is - present - parser (string) - Literal code used to parse the flag `f`, - expected to have a return signature of - (value, error) - parser_cast (string) - Literal code used to cast the `parsed` value - returned from the `parser` code -""" - -from __future__ import print_function, unicode_literals - -import argparse -import json -import os -import subprocess -import sys -import tempfile -import textwrap - - -class _FancyFormatter(argparse.ArgumentDefaultsHelpFormatter, - argparse.RawDescriptionHelpFormatter): - pass - - -def main(sysargs=sys.argv[:]): - parser = argparse.ArgumentParser( - description='Generate flag type code!', - formatter_class=_FancyFormatter) - parser.add_argument( - 'package', - type=str, default='cli', choices=_WRITEFUNCS.keys(), - help='Package for which flag types will be generated' - ) - parser.add_argument( - '-i', '--in-json', - type=argparse.FileType('r'), - default=sys.stdin, - help='Input JSON file which defines each type to be generated' - ) - parser.add_argument( - '-o', '--out-go', - type=argparse.FileType('w'), - default=sys.stdout, - help='Output file/stream to which generated source will be written' - ) - parser.epilog = __doc__ - - args = parser.parse_args(sysargs[1:]) - _generate_flag_types(_WRITEFUNCS[args.package], args.out_go, args.in_json) - return 0 - - -def _generate_flag_types(writefunc, output_go, input_json): - types = json.load(input_json) - - tmp = tempfile.NamedTemporaryFile(suffix='.go', delete=False) - writefunc(tmp, types) - tmp.close() - - new_content = subprocess.check_output( - ['goimports', tmp.name] - ).decode('utf-8') - - print(new_content, file=output_go, end='') - output_go.flush() - os.remove(tmp.name) - - -def _set_typedef_defaults(typedef): - typedef.setdefault('doctail', '') - typedef.setdefault('context_type', typedef['type']) - typedef.setdefault('dest', True) - typedef.setdefault('value', True) - typedef.setdefault('parser', 'f.Value, error(nil)') - typedef.setdefault('parser_cast', 'parsed') - - -def _write_cli_flag_types(outfile, types): - _fwrite(outfile, """\ - package cli - - // WARNING: This file is generated! - - """) - - for typedef in types: - _set_typedef_defaults(typedef) - - _fwrite(outfile, """\ - // {name}Flag is a flag with type {type}{doctail} - type {name}Flag struct {{ - Name string - Usage string - EnvVar string - Hidden bool - """.format(**typedef)) - - if typedef['value']: - _fwrite(outfile, """\ - Value {type} - """.format(**typedef)) - - if typedef['dest']: - _fwrite(outfile, """\ - Destination *{type} - """.format(**typedef)) - - _fwrite(outfile, "\n}\n\n") - - _fwrite(outfile, """\ - // String returns a readable representation of this value - // (for usage defaults) - func (f {name}Flag) String() string {{ - return FlagStringer(f) - }} - - // GetName returns the name of the flag - func (f {name}Flag) GetName() string {{ - return f.Name - }} - - // {name} looks up the value of a local {name}Flag, returns - // {context_default} if not found - func (c *Context) {name}(name string) {context_type} {{ - return lookup{name}(name, c.flagSet) - }} - - // Global{name} looks up the value of a global {name}Flag, returns - // {context_default} if not found - func (c *Context) Global{name}(name string) {context_type} {{ - if fs := lookupGlobalFlagSet(name, c); fs != nil {{ - return lookup{name}(name, fs) - }} - return {context_default} - }} - - func lookup{name}(name string, set *flag.FlagSet) {context_type} {{ - f := set.Lookup(name) - if f != nil {{ - parsed, err := {parser} - if err != nil {{ - return {context_default} - }} - return {parser_cast} - }} - return {context_default} - }} - """.format(**typedef)) - - -def _write_altsrc_flag_types(outfile, types): - _fwrite(outfile, """\ - package altsrc - - import ( - "gopkg.in/urfave/cli.v1" - ) - - // WARNING: This file is generated! - - """) - - for typedef in types: - _set_typedef_defaults(typedef) - - _fwrite(outfile, """\ - // {name}Flag is the flag type that wraps cli.{name}Flag to allow - // for other values to be specified - type {name}Flag struct {{ - cli.{name}Flag - set *flag.FlagSet - }} - - // New{name}Flag creates a new {name}Flag - func New{name}Flag(fl cli.{name}Flag) *{name}Flag {{ - return &{name}Flag{{{name}Flag: fl, set: nil}} - }} - - // Apply saves the flagSet for later usage calls, then calls the - // wrapped {name}Flag.Apply - func (f *{name}Flag) Apply(set *flag.FlagSet) {{ - f.set = set - f.{name}Flag.Apply(set) - }} - - // ApplyWithError saves the flagSet for later usage calls, then calls the - // wrapped {name}Flag.ApplyWithError - func (f *{name}Flag) ApplyWithError(set *flag.FlagSet) error {{ - f.set = set - return f.{name}Flag.ApplyWithError(set) - }} - """.format(**typedef)) - - -def _fwrite(outfile, text): - print(textwrap.dedent(text), end='', file=outfile) - - -_WRITEFUNCS = { - 'cli': _write_cli_flag_types, - 'altsrc': _write_altsrc_flag_types -} - -if __name__ == '__main__': - sys.exit(main()) diff --git a/vendor/github.com/urfave/cli/help.go b/vendor/github.com/urfave/cli/help.go deleted file mode 100644 index 57ec98d5..00000000 --- a/vendor/github.com/urfave/cli/help.go +++ /dev/null @@ -1,338 +0,0 @@ -package cli - -import ( - "fmt" - "io" - "os" - "strings" - "text/tabwriter" - "text/template" -) - -// AppHelpTemplate is the text template for the Default help topic. -// cli.go uses text/template to render templates. You can -// render custom help text by setting this variable. -var AppHelpTemplate = `NAME: - {{.Name}}{{if .Usage}} - {{.Usage}}{{end}} - -USAGE: - {{if .UsageText}}{{.UsageText}}{{else}}{{.HelpName}} {{if .VisibleFlags}}[global options]{{end}}{{if .Commands}} command [command options]{{end}} {{if .ArgsUsage}}{{.ArgsUsage}}{{else}}[arguments...]{{end}}{{end}}{{if .Version}}{{if not .HideVersion}} - -VERSION: - {{.Version}}{{end}}{{end}}{{if .Description}} - -DESCRIPTION: - {{.Description}}{{end}}{{if len .Authors}} - -AUTHOR{{with $length := len .Authors}}{{if ne 1 $length}}S{{end}}{{end}}: - {{range $index, $author := .Authors}}{{if $index}} - {{end}}{{$author}}{{end}}{{end}}{{if .VisibleCommands}} - -COMMANDS:{{range .VisibleCategories}}{{if .Name}} - {{.Name}}:{{end}}{{range .VisibleCommands}} - {{join .Names ", "}}{{"\t"}}{{.Usage}}{{end}}{{end}}{{end}}{{if .VisibleFlags}} - -GLOBAL OPTIONS: - {{range $index, $option := .VisibleFlags}}{{if $index}} - {{end}}{{$option}}{{end}}{{end}}{{if .Copyright}} - -COPYRIGHT: - {{.Copyright}}{{end}} -` - -// CommandHelpTemplate is the text template for the command help topic. -// cli.go uses text/template to render templates. You can -// render custom help text by setting this variable. -var CommandHelpTemplate = `NAME: - {{.HelpName}} - {{.Usage}} - -USAGE: - {{if .UsageText}}{{.UsageText}}{{else}}{{.HelpName}}{{if .VisibleFlags}} [command options]{{end}} {{if .ArgsUsage}}{{.ArgsUsage}}{{else}}[arguments...]{{end}}{{end}}{{if .Category}} - -CATEGORY: - {{.Category}}{{end}}{{if .Description}} - -DESCRIPTION: - {{.Description}}{{end}}{{if .VisibleFlags}} - -OPTIONS: - {{range .VisibleFlags}}{{.}} - {{end}}{{end}} -` - -// SubcommandHelpTemplate is the text template for the subcommand help topic. -// cli.go uses text/template to render templates. You can -// render custom help text by setting this variable. -var SubcommandHelpTemplate = `NAME: - {{.HelpName}} - {{if .Description}}{{.Description}}{{else}}{{.Usage}}{{end}} - -USAGE: - {{if .UsageText}}{{.UsageText}}{{else}}{{.HelpName}} command{{if .VisibleFlags}} [command options]{{end}} {{if .ArgsUsage}}{{.ArgsUsage}}{{else}}[arguments...]{{end}}{{end}} - -COMMANDS:{{range .VisibleCategories}}{{if .Name}} - {{.Name}}:{{end}}{{range .VisibleCommands}} - {{join .Names ", "}}{{"\t"}}{{.Usage}}{{end}} -{{end}}{{if .VisibleFlags}} -OPTIONS: - {{range .VisibleFlags}}{{.}} - {{end}}{{end}} -` - -var helpCommand = Command{ - Name: "help", - Aliases: []string{"h"}, - Usage: "Shows a list of commands or help for one command", - ArgsUsage: "[command]", - Action: func(c *Context) error { - args := c.Args() - if args.Present() { - return ShowCommandHelp(c, args.First()) - } - - ShowAppHelp(c) - return nil - }, -} - -var helpSubcommand = Command{ - Name: "help", - Aliases: []string{"h"}, - Usage: "Shows a list of commands or help for one command", - ArgsUsage: "[command]", - Action: func(c *Context) error { - args := c.Args() - if args.Present() { - return ShowCommandHelp(c, args.First()) - } - - return ShowSubcommandHelp(c) - }, -} - -// Prints help for the App or Command -type helpPrinter func(w io.Writer, templ string, data interface{}) - -// Prints help for the App or Command with custom template function. -type helpPrinterCustom func(w io.Writer, templ string, data interface{}, customFunc map[string]interface{}) - -// HelpPrinter is a function that writes the help output. If not set a default -// is used. The function signature is: -// func(w io.Writer, templ string, data interface{}) -var HelpPrinter helpPrinter = printHelp - -// HelpPrinterCustom is same as HelpPrinter but -// takes a custom function for template function map. -var HelpPrinterCustom helpPrinterCustom = printHelpCustom - -// VersionPrinter prints the version for the App -var VersionPrinter = printVersion - -// ShowAppHelpAndExit - Prints the list of subcommands for the app and exits with exit code. -func ShowAppHelpAndExit(c *Context, exitCode int) { - ShowAppHelp(c) - os.Exit(exitCode) -} - -// ShowAppHelp is an action that displays the help. -func ShowAppHelp(c *Context) (err error) { - if c.App.CustomAppHelpTemplate == "" { - HelpPrinter(c.App.Writer, AppHelpTemplate, c.App) - return - } - customAppData := func() map[string]interface{} { - if c.App.ExtraInfo == nil { - return nil - } - return map[string]interface{}{ - "ExtraInfo": c.App.ExtraInfo, - } - } - HelpPrinterCustom(c.App.Writer, c.App.CustomAppHelpTemplate, c.App, customAppData()) - return nil -} - -// DefaultAppComplete prints the list of subcommands as the default app completion method -func DefaultAppComplete(c *Context) { - for _, command := range c.App.Commands { - if command.Hidden { - continue - } - for _, name := range command.Names() { - fmt.Fprintln(c.App.Writer, name) - } - } -} - -// ShowCommandHelpAndExit - exits with code after showing help -func ShowCommandHelpAndExit(c *Context, command string, code int) { - ShowCommandHelp(c, command) - os.Exit(code) -} - -// ShowCommandHelp prints help for the given command -func ShowCommandHelp(ctx *Context, command string) error { - // show the subcommand help for a command with subcommands - if command == "" { - HelpPrinter(ctx.App.Writer, SubcommandHelpTemplate, ctx.App) - return nil - } - - for _, c := range ctx.App.Commands { - if c.HasName(command) { - if c.CustomHelpTemplate != "" { - HelpPrinterCustom(ctx.App.Writer, c.CustomHelpTemplate, c, nil) - } else { - HelpPrinter(ctx.App.Writer, CommandHelpTemplate, c) - } - return nil - } - } - - if ctx.App.CommandNotFound == nil { - return NewExitError(fmt.Sprintf("No help topic for '%v'", command), 3) - } - - ctx.App.CommandNotFound(ctx, command) - return nil -} - -// ShowSubcommandHelp prints help for the given subcommand -func ShowSubcommandHelp(c *Context) error { - return ShowCommandHelp(c, c.Command.Name) -} - -// ShowVersion prints the version number of the App -func ShowVersion(c *Context) { - VersionPrinter(c) -} - -func printVersion(c *Context) { - fmt.Fprintf(c.App.Writer, "%v version %v\n", c.App.Name, c.App.Version) -} - -// ShowCompletions prints the lists of commands within a given context -func ShowCompletions(c *Context) { - a := c.App - if a != nil && a.BashComplete != nil { - a.BashComplete(c) - } -} - -// ShowCommandCompletions prints the custom completions for a given command -func ShowCommandCompletions(ctx *Context, command string) { - c := ctx.App.Command(command) - if c != nil && c.BashComplete != nil { - c.BashComplete(ctx) - } -} - -func printHelpCustom(out io.Writer, templ string, data interface{}, customFunc map[string]interface{}) { - funcMap := template.FuncMap{ - "join": strings.Join, - } - if customFunc != nil { - for key, value := range customFunc { - funcMap[key] = value - } - } - - w := tabwriter.NewWriter(out, 1, 8, 2, ' ', 0) - t := template.Must(template.New("help").Funcs(funcMap).Parse(templ)) - err := t.Execute(w, data) - if err != nil { - // If the writer is closed, t.Execute will fail, and there's nothing - // we can do to recover. - if os.Getenv("CLI_TEMPLATE_ERROR_DEBUG") != "" { - fmt.Fprintf(ErrWriter, "CLI TEMPLATE ERROR: %#v\n", err) - } - return - } - w.Flush() -} - -func printHelp(out io.Writer, templ string, data interface{}) { - printHelpCustom(out, templ, data, nil) -} - -func checkVersion(c *Context) bool { - found := false - if VersionFlag.GetName() != "" { - eachName(VersionFlag.GetName(), func(name string) { - if c.GlobalBool(name) || c.Bool(name) { - found = true - } - }) - } - return found -} - -func checkHelp(c *Context) bool { - found := false - if HelpFlag.GetName() != "" { - eachName(HelpFlag.GetName(), func(name string) { - if c.GlobalBool(name) || c.Bool(name) { - found = true - } - }) - } - return found -} - -func checkCommandHelp(c *Context, name string) bool { - if c.Bool("h") || c.Bool("help") { - ShowCommandHelp(c, name) - return true - } - - return false -} - -func checkSubcommandHelp(c *Context) bool { - if c.Bool("h") || c.Bool("help") { - ShowSubcommandHelp(c) - return true - } - - return false -} - -func checkShellCompleteFlag(a *App, arguments []string) (bool, []string) { - if !a.EnableBashCompletion { - return false, arguments - } - - pos := len(arguments) - 1 - lastArg := arguments[pos] - - if lastArg != "--"+BashCompletionFlag.GetName() { - return false, arguments - } - - return true, arguments[:pos] -} - -func checkCompletions(c *Context) bool { - if !c.shellComplete { - return false - } - - if args := c.Args(); args.Present() { - name := args.First() - if cmd := c.App.Command(name); cmd != nil { - // let the command handle the completion - return false - } - } - - ShowCompletions(c) - return true -} - -func checkCommandCompletions(c *Context, name string) bool { - if !c.shellComplete { - return false - } - - ShowCommandCompletions(c, name) - return true -} diff --git a/vendor/github.com/urfave/cli/runtests b/vendor/github.com/urfave/cli/runtests deleted file mode 100644 index ee22bdee..00000000 --- a/vendor/github.com/urfave/cli/runtests +++ /dev/null @@ -1,122 +0,0 @@ -#!/usr/bin/env python -from __future__ import print_function - -import argparse -import os -import sys -import tempfile - -from subprocess import check_call, check_output - - -PACKAGE_NAME = os.environ.get( - 'CLI_PACKAGE_NAME', 'github.com/urfave/cli' -) - - -def main(sysargs=sys.argv[:]): - targets = { - 'vet': _vet, - 'test': _test, - 'gfmrun': _gfmrun, - 'toc': _toc, - 'gen': _gen, - } - - parser = argparse.ArgumentParser() - parser.add_argument( - 'target', nargs='?', choices=tuple(targets.keys()), default='test' - ) - args = parser.parse_args(sysargs[1:]) - - targets[args.target]() - return 0 - - -def _test(): - if check_output('go version'.split()).split()[2] < 'go1.2': - _run('go test -v .') - return - - coverprofiles = [] - for subpackage in ['', 'altsrc']: - coverprofile = 'cli.coverprofile' - if subpackage != '': - coverprofile = '{}.coverprofile'.format(subpackage) - - coverprofiles.append(coverprofile) - - _run('go test -v'.split() + [ - '-coverprofile={}'.format(coverprofile), - ('{}/{}'.format(PACKAGE_NAME, subpackage)).rstrip('/') - ]) - - combined_name = _combine_coverprofiles(coverprofiles) - _run('go tool cover -func={}'.format(combined_name)) - os.remove(combined_name) - - -def _gfmrun(): - go_version = check_output('go version'.split()).split()[2] - if go_version < 'go1.3': - print('runtests: skip on {}'.format(go_version), file=sys.stderr) - return - _run(['gfmrun', '-c', str(_gfmrun_count()), '-s', 'README.md']) - - -def _vet(): - _run('go vet ./...') - - -def _toc(): - _run('node_modules/.bin/markdown-toc -i README.md') - _run('git diff --exit-code') - - -def _gen(): - go_version = check_output('go version'.split()).split()[2] - if go_version < 'go1.5': - print('runtests: skip on {}'.format(go_version), file=sys.stderr) - return - - _run('go generate ./...') - _run('git diff --exit-code') - - -def _run(command): - if hasattr(command, 'split'): - command = command.split() - print('runtests: {}'.format(' '.join(command)), file=sys.stderr) - check_call(command) - - -def _gfmrun_count(): - with open('README.md') as infile: - lines = infile.read().splitlines() - return len(filter(_is_go_runnable, lines)) - - -def _is_go_runnable(line): - return line.startswith('package main') - - -def _combine_coverprofiles(coverprofiles): - combined = tempfile.NamedTemporaryFile( - suffix='.coverprofile', delete=False - ) - combined.write('mode: set\n') - - for coverprofile in coverprofiles: - with open(coverprofile, 'r') as infile: - for line in infile.readlines(): - if not line.startswith('mode: '): - combined.write(line) - - combined.flush() - name = combined.name - combined.close() - return name - - -if __name__ == '__main__': - sys.exit(main()) diff --git a/vendor/golang.org/x/crypto/AUTHORS b/vendor/golang.org/x/crypto/AUTHORS deleted file mode 100644 index 2b00ddba..00000000 --- a/vendor/golang.org/x/crypto/AUTHORS +++ /dev/null @@ -1,3 +0,0 @@ -# This source code refers to The Go Authors for copyright purposes. -# The master list of authors is in the main Go distribution, -# visible at https://tip.golang.org/AUTHORS. diff --git a/vendor/golang.org/x/crypto/CONTRIBUTORS b/vendor/golang.org/x/crypto/CONTRIBUTORS deleted file mode 100644 index 1fbd3e97..00000000 --- a/vendor/golang.org/x/crypto/CONTRIBUTORS +++ /dev/null @@ -1,3 +0,0 @@ -# This source code was written by the Go contributors. -# The master list of contributors is in the main Go distribution, -# visible at https://tip.golang.org/CONTRIBUTORS. diff --git a/vendor/golang.org/x/crypto/LICENSE b/vendor/golang.org/x/crypto/LICENSE deleted file mode 100644 index 6a66aea5..00000000 --- a/vendor/golang.org/x/crypto/LICENSE +++ /dev/null @@ -1,27 +0,0 @@ -Copyright (c) 2009 The Go Authors. All rights reserved. - -Redistribution and use in source and binary forms, with or without -modification, are permitted provided that the following conditions are -met: - - * Redistributions of source code must retain the above copyright -notice, this list of conditions and the following disclaimer. - * Redistributions in binary form must reproduce the above -copyright notice, this list of conditions and the following disclaimer -in the documentation and/or other materials provided with the -distribution. - * Neither the name of Google Inc. nor the names of its -contributors may be used to endorse or promote products derived from -this software without specific prior written permission. - -THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. diff --git a/vendor/golang.org/x/crypto/PATENTS b/vendor/golang.org/x/crypto/PATENTS deleted file mode 100644 index 73309904..00000000 --- a/vendor/golang.org/x/crypto/PATENTS +++ /dev/null @@ -1,22 +0,0 @@ -Additional IP Rights Grant (Patents) - -"This implementation" means the copyrightable works distributed by -Google as part of the Go project. - -Google hereby grants to You a perpetual, worldwide, non-exclusive, -no-charge, royalty-free, irrevocable (except as stated in this section) -patent license to make, have made, use, offer to sell, sell, import, -transfer and otherwise run, modify and propagate the contents of this -implementation of Go, where such license applies only to those patent -claims, both currently owned or controlled by Google and acquired in -the future, licensable by Google that are necessarily infringed by this -implementation of Go. This grant does not include claims that would be -infringed only as a consequence of further modification of this -implementation. If you or your agent or exclusive licensee institute or -order or agree to the institution of patent litigation against any -entity (including a cross-claim or counterclaim in a lawsuit) alleging -that this implementation of Go or any code incorporated within this -implementation of Go constitutes direct or contributory patent -infringement, or inducement of patent infringement, then any patent -rights granted to you under this License for this implementation of Go -shall terminate as of the date such litigation is filed. diff --git a/vendor/golang.org/x/crypto/argon2/argon2.go b/vendor/golang.org/x/crypto/argon2/argon2.go deleted file mode 100644 index b423feae..00000000 --- a/vendor/golang.org/x/crypto/argon2/argon2.go +++ /dev/null @@ -1,285 +0,0 @@ -// Copyright 2017 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package argon2 implements the key derivation function Argon2. -// Argon2 was selected as the winner of the Password Hashing Competition and can -// be used to derive cryptographic keys from passwords. -// -// For a detailed specification of Argon2 see [1]. -// -// If you aren't sure which function you need, use Argon2id (IDKey) and -// the parameter recommendations for your scenario. -// -// -// Argon2i -// -// Argon2i (implemented by Key) is the side-channel resistant version of Argon2. -// It uses data-independent memory access, which is preferred for password -// hashing and password-based key derivation. Argon2i requires more passes over -// memory than Argon2id to protect from trade-off attacks. The recommended -// parameters (taken from [2]) for non-interactive operations are time=3 and to -// use the maximum available memory. -// -// -// Argon2id -// -// Argon2id (implemented by IDKey) is a hybrid version of Argon2 combining -// Argon2i and Argon2d. It uses data-independent memory access for the first -// half of the first iteration over the memory and data-dependent memory access -// for the rest. Argon2id is side-channel resistant and provides better brute- -// force cost savings due to time-memory tradeoffs than Argon2i. The recommended -// parameters for non-interactive operations (taken from [2]) are time=1 and to -// use the maximum available memory. -// -// [1] https://github.com/P-H-C/phc-winner-argon2/blob/master/argon2-specs.pdf -// [2] https://tools.ietf.org/html/draft-irtf-cfrg-argon2-03#section-9.3 -package argon2 - -import ( - "encoding/binary" - "sync" - - "golang.org/x/crypto/blake2b" -) - -// The Argon2 version implemented by this package. -const Version = 0x13 - -const ( - argon2d = iota - argon2i - argon2id -) - -// Key derives a key from the password, salt, and cost parameters using Argon2i -// returning a byte slice of length keyLen that can be used as cryptographic -// key. The CPU cost and parallelism degree must be greater than zero. -// -// For example, you can get a derived key for e.g. AES-256 (which needs a -// 32-byte key) by doing: -// -// key := argon2.Key([]byte("some password"), salt, 3, 32*1024, 4, 32) -// -// The draft RFC recommends[2] time=3, and memory=32*1024 is a sensible number. -// If using that amount of memory (32 MB) is not possible in some contexts then -// the time parameter can be increased to compensate. -// -// The time parameter specifies the number of passes over the memory and the -// memory parameter specifies the size of the memory in KiB. For example -// memory=32*1024 sets the memory cost to ~32 MB. The number of threads can be -// adjusted to the number of available CPUs. The cost parameters should be -// increased as memory latency and CPU parallelism increases. Remember to get a -// good random salt. -func Key(password, salt []byte, time, memory uint32, threads uint8, keyLen uint32) []byte { - return deriveKey(argon2i, password, salt, nil, nil, time, memory, threads, keyLen) -} - -// IDKey derives a key from the password, salt, and cost parameters using -// Argon2id returning a byte slice of length keyLen that can be used as -// cryptographic key. The CPU cost and parallelism degree must be greater than -// zero. -// -// For example, you can get a derived key for e.g. AES-256 (which needs a -// 32-byte key) by doing: -// -// key := argon2.IDKey([]byte("some password"), salt, 1, 64*1024, 4, 32) -// -// The draft RFC recommends[2] time=1, and memory=64*1024 is a sensible number. -// If using that amount of memory (64 MB) is not possible in some contexts then -// the time parameter can be increased to compensate. -// -// The time parameter specifies the number of passes over the memory and the -// memory parameter specifies the size of the memory in KiB. For example -// memory=64*1024 sets the memory cost to ~64 MB. The number of threads can be -// adjusted to the numbers of available CPUs. The cost parameters should be -// increased as memory latency and CPU parallelism increases. Remember to get a -// good random salt. -func IDKey(password, salt []byte, time, memory uint32, threads uint8, keyLen uint32) []byte { - return deriveKey(argon2id, password, salt, nil, nil, time, memory, threads, keyLen) -} - -func deriveKey(mode int, password, salt, secret, data []byte, time, memory uint32, threads uint8, keyLen uint32) []byte { - if time < 1 { - panic("argon2: number of rounds too small") - } - if threads < 1 { - panic("argon2: parallelism degree too low") - } - h0 := initHash(password, salt, secret, data, time, memory, uint32(threads), keyLen, mode) - - memory = memory / (syncPoints * uint32(threads)) * (syncPoints * uint32(threads)) - if memory < 2*syncPoints*uint32(threads) { - memory = 2 * syncPoints * uint32(threads) - } - B := initBlocks(&h0, memory, uint32(threads)) - processBlocks(B, time, memory, uint32(threads), mode) - return extractKey(B, memory, uint32(threads), keyLen) -} - -const ( - blockLength = 128 - syncPoints = 4 -) - -type block [blockLength]uint64 - -func initHash(password, salt, key, data []byte, time, memory, threads, keyLen uint32, mode int) [blake2b.Size + 8]byte { - var ( - h0 [blake2b.Size + 8]byte - params [24]byte - tmp [4]byte - ) - - b2, _ := blake2b.New512(nil) - binary.LittleEndian.PutUint32(params[0:4], threads) - binary.LittleEndian.PutUint32(params[4:8], keyLen) - binary.LittleEndian.PutUint32(params[8:12], memory) - binary.LittleEndian.PutUint32(params[12:16], time) - binary.LittleEndian.PutUint32(params[16:20], uint32(Version)) - binary.LittleEndian.PutUint32(params[20:24], uint32(mode)) - b2.Write(params[:]) - binary.LittleEndian.PutUint32(tmp[:], uint32(len(password))) - b2.Write(tmp[:]) - b2.Write(password) - binary.LittleEndian.PutUint32(tmp[:], uint32(len(salt))) - b2.Write(tmp[:]) - b2.Write(salt) - binary.LittleEndian.PutUint32(tmp[:], uint32(len(key))) - b2.Write(tmp[:]) - b2.Write(key) - binary.LittleEndian.PutUint32(tmp[:], uint32(len(data))) - b2.Write(tmp[:]) - b2.Write(data) - b2.Sum(h0[:0]) - return h0 -} - -func initBlocks(h0 *[blake2b.Size + 8]byte, memory, threads uint32) []block { - var block0 [1024]byte - B := make([]block, memory) - for lane := uint32(0); lane < threads; lane++ { - j := lane * (memory / threads) - binary.LittleEndian.PutUint32(h0[blake2b.Size+4:], lane) - - binary.LittleEndian.PutUint32(h0[blake2b.Size:], 0) - blake2bHash(block0[:], h0[:]) - for i := range B[j+0] { - B[j+0][i] = binary.LittleEndian.Uint64(block0[i*8:]) - } - - binary.LittleEndian.PutUint32(h0[blake2b.Size:], 1) - blake2bHash(block0[:], h0[:]) - for i := range B[j+1] { - B[j+1][i] = binary.LittleEndian.Uint64(block0[i*8:]) - } - } - return B -} - -func processBlocks(B []block, time, memory, threads uint32, mode int) { - lanes := memory / threads - segments := lanes / syncPoints - - processSegment := func(n, slice, lane uint32, wg *sync.WaitGroup) { - var addresses, in, zero block - if mode == argon2i || (mode == argon2id && n == 0 && slice < syncPoints/2) { - in[0] = uint64(n) - in[1] = uint64(lane) - in[2] = uint64(slice) - in[3] = uint64(memory) - in[4] = uint64(time) - in[5] = uint64(mode) - } - - index := uint32(0) - if n == 0 && slice == 0 { - index = 2 // we have already generated the first two blocks - if mode == argon2i || mode == argon2id { - in[6]++ - processBlock(&addresses, &in, &zero) - processBlock(&addresses, &addresses, &zero) - } - } - - offset := lane*lanes + slice*segments + index - var random uint64 - for index < segments { - prev := offset - 1 - if index == 0 && slice == 0 { - prev += lanes // last block in lane - } - if mode == argon2i || (mode == argon2id && n == 0 && slice < syncPoints/2) { - if index%blockLength == 0 { - in[6]++ - processBlock(&addresses, &in, &zero) - processBlock(&addresses, &addresses, &zero) - } - random = addresses[index%blockLength] - } else { - random = B[prev][0] - } - newOffset := indexAlpha(random, lanes, segments, threads, n, slice, lane, index) - processBlockXOR(&B[offset], &B[prev], &B[newOffset]) - index, offset = index+1, offset+1 - } - wg.Done() - } - - for n := uint32(0); n < time; n++ { - for slice := uint32(0); slice < syncPoints; slice++ { - var wg sync.WaitGroup - for lane := uint32(0); lane < threads; lane++ { - wg.Add(1) - go processSegment(n, slice, lane, &wg) - } - wg.Wait() - } - } - -} - -func extractKey(B []block, memory, threads, keyLen uint32) []byte { - lanes := memory / threads - for lane := uint32(0); lane < threads-1; lane++ { - for i, v := range B[(lane*lanes)+lanes-1] { - B[memory-1][i] ^= v - } - } - - var block [1024]byte - for i, v := range B[memory-1] { - binary.LittleEndian.PutUint64(block[i*8:], v) - } - key := make([]byte, keyLen) - blake2bHash(key, block[:]) - return key -} - -func indexAlpha(rand uint64, lanes, segments, threads, n, slice, lane, index uint32) uint32 { - refLane := uint32(rand>>32) % threads - if n == 0 && slice == 0 { - refLane = lane - } - m, s := 3*segments, ((slice+1)%syncPoints)*segments - if lane == refLane { - m += index - } - if n == 0 { - m, s = slice*segments, 0 - if slice == 0 || lane == refLane { - m += index - } - } - if index == 0 || lane == refLane { - m-- - } - return phi(rand, uint64(m), uint64(s), refLane, lanes) -} - -func phi(rand, m, s uint64, lane, lanes uint32) uint32 { - p := rand & 0xFFFFFFFF - p = (p * p) >> 32 - p = (p * m) >> 32 - return lane*lanes + uint32((s+m-(p+1))%uint64(lanes)) -} diff --git a/vendor/golang.org/x/crypto/argon2/blake2b.go b/vendor/golang.org/x/crypto/argon2/blake2b.go deleted file mode 100644 index 10f46948..00000000 --- a/vendor/golang.org/x/crypto/argon2/blake2b.go +++ /dev/null @@ -1,53 +0,0 @@ -// Copyright 2017 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package argon2 - -import ( - "encoding/binary" - "hash" - - "golang.org/x/crypto/blake2b" -) - -// blake2bHash computes an arbitrary long hash value of in -// and writes the hash to out. -func blake2bHash(out []byte, in []byte) { - var b2 hash.Hash - if n := len(out); n < blake2b.Size { - b2, _ = blake2b.New(n, nil) - } else { - b2, _ = blake2b.New512(nil) - } - - var buffer [blake2b.Size]byte - binary.LittleEndian.PutUint32(buffer[:4], uint32(len(out))) - b2.Write(buffer[:4]) - b2.Write(in) - - if len(out) <= blake2b.Size { - b2.Sum(out[:0]) - return - } - - outLen := len(out) - b2.Sum(buffer[:0]) - b2.Reset() - copy(out, buffer[:32]) - out = out[32:] - for len(out) > blake2b.Size { - b2.Write(buffer[:]) - b2.Sum(buffer[:0]) - copy(out, buffer[:32]) - out = out[32:] - b2.Reset() - } - - if outLen%blake2b.Size > 0 { // outLen > 64 - r := ((outLen + 31) / 32) - 2 // ⌈τ /32⌉-2 - b2, _ = blake2b.New(outLen-32*r, nil) - } - b2.Write(buffer[:]) - b2.Sum(out[:0]) -} diff --git a/vendor/golang.org/x/crypto/argon2/blamka_amd64.go b/vendor/golang.org/x/crypto/argon2/blamka_amd64.go deleted file mode 100644 index 2fc1ec03..00000000 --- a/vendor/golang.org/x/crypto/argon2/blamka_amd64.go +++ /dev/null @@ -1,60 +0,0 @@ -// Copyright 2017 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build amd64,!gccgo,!appengine - -package argon2 - -import "golang.org/x/sys/cpu" - -func init() { - useSSE4 = cpu.X86.HasSSE41 -} - -//go:noescape -func mixBlocksSSE2(out, a, b, c *block) - -//go:noescape -func xorBlocksSSE2(out, a, b, c *block) - -//go:noescape -func blamkaSSE4(b *block) - -func processBlockSSE(out, in1, in2 *block, xor bool) { - var t block - mixBlocksSSE2(&t, in1, in2, &t) - if useSSE4 { - blamkaSSE4(&t) - } else { - for i := 0; i < blockLength; i += 16 { - blamkaGeneric( - &t[i+0], &t[i+1], &t[i+2], &t[i+3], - &t[i+4], &t[i+5], &t[i+6], &t[i+7], - &t[i+8], &t[i+9], &t[i+10], &t[i+11], - &t[i+12], &t[i+13], &t[i+14], &t[i+15], - ) - } - for i := 0; i < blockLength/8; i += 2 { - blamkaGeneric( - &t[i], &t[i+1], &t[16+i], &t[16+i+1], - &t[32+i], &t[32+i+1], &t[48+i], &t[48+i+1], - &t[64+i], &t[64+i+1], &t[80+i], &t[80+i+1], - &t[96+i], &t[96+i+1], &t[112+i], &t[112+i+1], - ) - } - } - if xor { - xorBlocksSSE2(out, in1, in2, &t) - } else { - mixBlocksSSE2(out, in1, in2, &t) - } -} - -func processBlock(out, in1, in2 *block) { - processBlockSSE(out, in1, in2, false) -} - -func processBlockXOR(out, in1, in2 *block) { - processBlockSSE(out, in1, in2, true) -} diff --git a/vendor/golang.org/x/crypto/argon2/blamka_amd64.s b/vendor/golang.org/x/crypto/argon2/blamka_amd64.s deleted file mode 100644 index 74a6e733..00000000 --- a/vendor/golang.org/x/crypto/argon2/blamka_amd64.s +++ /dev/null @@ -1,243 +0,0 @@ -// Copyright 2017 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build amd64,!gccgo,!appengine - -#include "textflag.h" - -DATA ·c40<>+0x00(SB)/8, $0x0201000706050403 -DATA ·c40<>+0x08(SB)/8, $0x0a09080f0e0d0c0b -GLOBL ·c40<>(SB), (NOPTR+RODATA), $16 - -DATA ·c48<>+0x00(SB)/8, $0x0100070605040302 -DATA ·c48<>+0x08(SB)/8, $0x09080f0e0d0c0b0a -GLOBL ·c48<>(SB), (NOPTR+RODATA), $16 - -#define SHUFFLE(v2, v3, v4, v5, v6, v7, t1, t2) \ - MOVO v4, t1; \ - MOVO v5, v4; \ - MOVO t1, v5; \ - MOVO v6, t1; \ - PUNPCKLQDQ v6, t2; \ - PUNPCKHQDQ v7, v6; \ - PUNPCKHQDQ t2, v6; \ - PUNPCKLQDQ v7, t2; \ - MOVO t1, v7; \ - MOVO v2, t1; \ - PUNPCKHQDQ t2, v7; \ - PUNPCKLQDQ v3, t2; \ - PUNPCKHQDQ t2, v2; \ - PUNPCKLQDQ t1, t2; \ - PUNPCKHQDQ t2, v3 - -#define SHUFFLE_INV(v2, v3, v4, v5, v6, v7, t1, t2) \ - MOVO v4, t1; \ - MOVO v5, v4; \ - MOVO t1, v5; \ - MOVO v2, t1; \ - PUNPCKLQDQ v2, t2; \ - PUNPCKHQDQ v3, v2; \ - PUNPCKHQDQ t2, v2; \ - PUNPCKLQDQ v3, t2; \ - MOVO t1, v3; \ - MOVO v6, t1; \ - PUNPCKHQDQ t2, v3; \ - PUNPCKLQDQ v7, t2; \ - PUNPCKHQDQ t2, v6; \ - PUNPCKLQDQ t1, t2; \ - PUNPCKHQDQ t2, v7 - -#define HALF_ROUND(v0, v1, v2, v3, v4, v5, v6, v7, t0, c40, c48) \ - MOVO v0, t0; \ - PMULULQ v2, t0; \ - PADDQ v2, v0; \ - PADDQ t0, v0; \ - PADDQ t0, v0; \ - PXOR v0, v6; \ - PSHUFD $0xB1, v6, v6; \ - MOVO v4, t0; \ - PMULULQ v6, t0; \ - PADDQ v6, v4; \ - PADDQ t0, v4; \ - PADDQ t0, v4; \ - PXOR v4, v2; \ - PSHUFB c40, v2; \ - MOVO v0, t0; \ - PMULULQ v2, t0; \ - PADDQ v2, v0; \ - PADDQ t0, v0; \ - PADDQ t0, v0; \ - PXOR v0, v6; \ - PSHUFB c48, v6; \ - MOVO v4, t0; \ - PMULULQ v6, t0; \ - PADDQ v6, v4; \ - PADDQ t0, v4; \ - PADDQ t0, v4; \ - PXOR v4, v2; \ - MOVO v2, t0; \ - PADDQ v2, t0; \ - PSRLQ $63, v2; \ - PXOR t0, v2; \ - MOVO v1, t0; \ - PMULULQ v3, t0; \ - PADDQ v3, v1; \ - PADDQ t0, v1; \ - PADDQ t0, v1; \ - PXOR v1, v7; \ - PSHUFD $0xB1, v7, v7; \ - MOVO v5, t0; \ - PMULULQ v7, t0; \ - PADDQ v7, v5; \ - PADDQ t0, v5; \ - PADDQ t0, v5; \ - PXOR v5, v3; \ - PSHUFB c40, v3; \ - MOVO v1, t0; \ - PMULULQ v3, t0; \ - PADDQ v3, v1; \ - PADDQ t0, v1; \ - PADDQ t0, v1; \ - PXOR v1, v7; \ - PSHUFB c48, v7; \ - MOVO v5, t0; \ - PMULULQ v7, t0; \ - PADDQ v7, v5; \ - PADDQ t0, v5; \ - PADDQ t0, v5; \ - PXOR v5, v3; \ - MOVO v3, t0; \ - PADDQ v3, t0; \ - PSRLQ $63, v3; \ - PXOR t0, v3 - -#define LOAD_MSG_0(block, off) \ - MOVOU 8*(off+0)(block), X0; \ - MOVOU 8*(off+2)(block), X1; \ - MOVOU 8*(off+4)(block), X2; \ - MOVOU 8*(off+6)(block), X3; \ - MOVOU 8*(off+8)(block), X4; \ - MOVOU 8*(off+10)(block), X5; \ - MOVOU 8*(off+12)(block), X6; \ - MOVOU 8*(off+14)(block), X7 - -#define STORE_MSG_0(block, off) \ - MOVOU X0, 8*(off+0)(block); \ - MOVOU X1, 8*(off+2)(block); \ - MOVOU X2, 8*(off+4)(block); \ - MOVOU X3, 8*(off+6)(block); \ - MOVOU X4, 8*(off+8)(block); \ - MOVOU X5, 8*(off+10)(block); \ - MOVOU X6, 8*(off+12)(block); \ - MOVOU X7, 8*(off+14)(block) - -#define LOAD_MSG_1(block, off) \ - MOVOU 8*off+0*8(block), X0; \ - MOVOU 8*off+16*8(block), X1; \ - MOVOU 8*off+32*8(block), X2; \ - MOVOU 8*off+48*8(block), X3; \ - MOVOU 8*off+64*8(block), X4; \ - MOVOU 8*off+80*8(block), X5; \ - MOVOU 8*off+96*8(block), X6; \ - MOVOU 8*off+112*8(block), X7 - -#define STORE_MSG_1(block, off) \ - MOVOU X0, 8*off+0*8(block); \ - MOVOU X1, 8*off+16*8(block); \ - MOVOU X2, 8*off+32*8(block); \ - MOVOU X3, 8*off+48*8(block); \ - MOVOU X4, 8*off+64*8(block); \ - MOVOU X5, 8*off+80*8(block); \ - MOVOU X6, 8*off+96*8(block); \ - MOVOU X7, 8*off+112*8(block) - -#define BLAMKA_ROUND_0(block, off, t0, t1, c40, c48) \ - LOAD_MSG_0(block, off); \ - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, t0, c40, c48); \ - SHUFFLE(X2, X3, X4, X5, X6, X7, t0, t1); \ - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, t0, c40, c48); \ - SHUFFLE_INV(X2, X3, X4, X5, X6, X7, t0, t1); \ - STORE_MSG_0(block, off) - -#define BLAMKA_ROUND_1(block, off, t0, t1, c40, c48) \ - LOAD_MSG_1(block, off); \ - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, t0, c40, c48); \ - SHUFFLE(X2, X3, X4, X5, X6, X7, t0, t1); \ - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, t0, c40, c48); \ - SHUFFLE_INV(X2, X3, X4, X5, X6, X7, t0, t1); \ - STORE_MSG_1(block, off) - -// func blamkaSSE4(b *block) -TEXT ·blamkaSSE4(SB), 4, $0-8 - MOVQ b+0(FP), AX - - MOVOU ·c40<>(SB), X10 - MOVOU ·c48<>(SB), X11 - - BLAMKA_ROUND_0(AX, 0, X8, X9, X10, X11) - BLAMKA_ROUND_0(AX, 16, X8, X9, X10, X11) - BLAMKA_ROUND_0(AX, 32, X8, X9, X10, X11) - BLAMKA_ROUND_0(AX, 48, X8, X9, X10, X11) - BLAMKA_ROUND_0(AX, 64, X8, X9, X10, X11) - BLAMKA_ROUND_0(AX, 80, X8, X9, X10, X11) - BLAMKA_ROUND_0(AX, 96, X8, X9, X10, X11) - BLAMKA_ROUND_0(AX, 112, X8, X9, X10, X11) - - BLAMKA_ROUND_1(AX, 0, X8, X9, X10, X11) - BLAMKA_ROUND_1(AX, 2, X8, X9, X10, X11) - BLAMKA_ROUND_1(AX, 4, X8, X9, X10, X11) - BLAMKA_ROUND_1(AX, 6, X8, X9, X10, X11) - BLAMKA_ROUND_1(AX, 8, X8, X9, X10, X11) - BLAMKA_ROUND_1(AX, 10, X8, X9, X10, X11) - BLAMKA_ROUND_1(AX, 12, X8, X9, X10, X11) - BLAMKA_ROUND_1(AX, 14, X8, X9, X10, X11) - RET - -// func mixBlocksSSE2(out, a, b, c *block) -TEXT ·mixBlocksSSE2(SB), 4, $0-32 - MOVQ out+0(FP), DX - MOVQ a+8(FP), AX - MOVQ b+16(FP), BX - MOVQ a+24(FP), CX - MOVQ $128, BP - -loop: - MOVOU 0(AX), X0 - MOVOU 0(BX), X1 - MOVOU 0(CX), X2 - PXOR X1, X0 - PXOR X2, X0 - MOVOU X0, 0(DX) - ADDQ $16, AX - ADDQ $16, BX - ADDQ $16, CX - ADDQ $16, DX - SUBQ $2, BP - JA loop - RET - -// func xorBlocksSSE2(out, a, b, c *block) -TEXT ·xorBlocksSSE2(SB), 4, $0-32 - MOVQ out+0(FP), DX - MOVQ a+8(FP), AX - MOVQ b+16(FP), BX - MOVQ a+24(FP), CX - MOVQ $128, BP - -loop: - MOVOU 0(AX), X0 - MOVOU 0(BX), X1 - MOVOU 0(CX), X2 - MOVOU 0(DX), X3 - PXOR X1, X0 - PXOR X2, X0 - PXOR X3, X0 - MOVOU X0, 0(DX) - ADDQ $16, AX - ADDQ $16, BX - ADDQ $16, CX - ADDQ $16, DX - SUBQ $2, BP - JA loop - RET diff --git a/vendor/golang.org/x/crypto/argon2/blamka_generic.go b/vendor/golang.org/x/crypto/argon2/blamka_generic.go deleted file mode 100644 index a481b224..00000000 --- a/vendor/golang.org/x/crypto/argon2/blamka_generic.go +++ /dev/null @@ -1,163 +0,0 @@ -// Copyright 2017 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package argon2 - -var useSSE4 bool - -func processBlockGeneric(out, in1, in2 *block, xor bool) { - var t block - for i := range t { - t[i] = in1[i] ^ in2[i] - } - for i := 0; i < blockLength; i += 16 { - blamkaGeneric( - &t[i+0], &t[i+1], &t[i+2], &t[i+3], - &t[i+4], &t[i+5], &t[i+6], &t[i+7], - &t[i+8], &t[i+9], &t[i+10], &t[i+11], - &t[i+12], &t[i+13], &t[i+14], &t[i+15], - ) - } - for i := 0; i < blockLength/8; i += 2 { - blamkaGeneric( - &t[i], &t[i+1], &t[16+i], &t[16+i+1], - &t[32+i], &t[32+i+1], &t[48+i], &t[48+i+1], - &t[64+i], &t[64+i+1], &t[80+i], &t[80+i+1], - &t[96+i], &t[96+i+1], &t[112+i], &t[112+i+1], - ) - } - if xor { - for i := range t { - out[i] ^= in1[i] ^ in2[i] ^ t[i] - } - } else { - for i := range t { - out[i] = in1[i] ^ in2[i] ^ t[i] - } - } -} - -func blamkaGeneric(t00, t01, t02, t03, t04, t05, t06, t07, t08, t09, t10, t11, t12, t13, t14, t15 *uint64) { - v00, v01, v02, v03 := *t00, *t01, *t02, *t03 - v04, v05, v06, v07 := *t04, *t05, *t06, *t07 - v08, v09, v10, v11 := *t08, *t09, *t10, *t11 - v12, v13, v14, v15 := *t12, *t13, *t14, *t15 - - v00 += v04 + 2*uint64(uint32(v00))*uint64(uint32(v04)) - v12 ^= v00 - v12 = v12>>32 | v12<<32 - v08 += v12 + 2*uint64(uint32(v08))*uint64(uint32(v12)) - v04 ^= v08 - v04 = v04>>24 | v04<<40 - - v00 += v04 + 2*uint64(uint32(v00))*uint64(uint32(v04)) - v12 ^= v00 - v12 = v12>>16 | v12<<48 - v08 += v12 + 2*uint64(uint32(v08))*uint64(uint32(v12)) - v04 ^= v08 - v04 = v04>>63 | v04<<1 - - v01 += v05 + 2*uint64(uint32(v01))*uint64(uint32(v05)) - v13 ^= v01 - v13 = v13>>32 | v13<<32 - v09 += v13 + 2*uint64(uint32(v09))*uint64(uint32(v13)) - v05 ^= v09 - v05 = v05>>24 | v05<<40 - - v01 += v05 + 2*uint64(uint32(v01))*uint64(uint32(v05)) - v13 ^= v01 - v13 = v13>>16 | v13<<48 - v09 += v13 + 2*uint64(uint32(v09))*uint64(uint32(v13)) - v05 ^= v09 - v05 = v05>>63 | v05<<1 - - v02 += v06 + 2*uint64(uint32(v02))*uint64(uint32(v06)) - v14 ^= v02 - v14 = v14>>32 | v14<<32 - v10 += v14 + 2*uint64(uint32(v10))*uint64(uint32(v14)) - v06 ^= v10 - v06 = v06>>24 | v06<<40 - - v02 += v06 + 2*uint64(uint32(v02))*uint64(uint32(v06)) - v14 ^= v02 - v14 = v14>>16 | v14<<48 - v10 += v14 + 2*uint64(uint32(v10))*uint64(uint32(v14)) - v06 ^= v10 - v06 = v06>>63 | v06<<1 - - v03 += v07 + 2*uint64(uint32(v03))*uint64(uint32(v07)) - v15 ^= v03 - v15 = v15>>32 | v15<<32 - v11 += v15 + 2*uint64(uint32(v11))*uint64(uint32(v15)) - v07 ^= v11 - v07 = v07>>24 | v07<<40 - - v03 += v07 + 2*uint64(uint32(v03))*uint64(uint32(v07)) - v15 ^= v03 - v15 = v15>>16 | v15<<48 - v11 += v15 + 2*uint64(uint32(v11))*uint64(uint32(v15)) - v07 ^= v11 - v07 = v07>>63 | v07<<1 - - v00 += v05 + 2*uint64(uint32(v00))*uint64(uint32(v05)) - v15 ^= v00 - v15 = v15>>32 | v15<<32 - v10 += v15 + 2*uint64(uint32(v10))*uint64(uint32(v15)) - v05 ^= v10 - v05 = v05>>24 | v05<<40 - - v00 += v05 + 2*uint64(uint32(v00))*uint64(uint32(v05)) - v15 ^= v00 - v15 = v15>>16 | v15<<48 - v10 += v15 + 2*uint64(uint32(v10))*uint64(uint32(v15)) - v05 ^= v10 - v05 = v05>>63 | v05<<1 - - v01 += v06 + 2*uint64(uint32(v01))*uint64(uint32(v06)) - v12 ^= v01 - v12 = v12>>32 | v12<<32 - v11 += v12 + 2*uint64(uint32(v11))*uint64(uint32(v12)) - v06 ^= v11 - v06 = v06>>24 | v06<<40 - - v01 += v06 + 2*uint64(uint32(v01))*uint64(uint32(v06)) - v12 ^= v01 - v12 = v12>>16 | v12<<48 - v11 += v12 + 2*uint64(uint32(v11))*uint64(uint32(v12)) - v06 ^= v11 - v06 = v06>>63 | v06<<1 - - v02 += v07 + 2*uint64(uint32(v02))*uint64(uint32(v07)) - v13 ^= v02 - v13 = v13>>32 | v13<<32 - v08 += v13 + 2*uint64(uint32(v08))*uint64(uint32(v13)) - v07 ^= v08 - v07 = v07>>24 | v07<<40 - - v02 += v07 + 2*uint64(uint32(v02))*uint64(uint32(v07)) - v13 ^= v02 - v13 = v13>>16 | v13<<48 - v08 += v13 + 2*uint64(uint32(v08))*uint64(uint32(v13)) - v07 ^= v08 - v07 = v07>>63 | v07<<1 - - v03 += v04 + 2*uint64(uint32(v03))*uint64(uint32(v04)) - v14 ^= v03 - v14 = v14>>32 | v14<<32 - v09 += v14 + 2*uint64(uint32(v09))*uint64(uint32(v14)) - v04 ^= v09 - v04 = v04>>24 | v04<<40 - - v03 += v04 + 2*uint64(uint32(v03))*uint64(uint32(v04)) - v14 ^= v03 - v14 = v14>>16 | v14<<48 - v09 += v14 + 2*uint64(uint32(v09))*uint64(uint32(v14)) - v04 ^= v09 - v04 = v04>>63 | v04<<1 - - *t00, *t01, *t02, *t03 = v00, v01, v02, v03 - *t04, *t05, *t06, *t07 = v04, v05, v06, v07 - *t08, *t09, *t10, *t11 = v08, v09, v10, v11 - *t12, *t13, *t14, *t15 = v12, v13, v14, v15 -} diff --git a/vendor/golang.org/x/crypto/argon2/blamka_ref.go b/vendor/golang.org/x/crypto/argon2/blamka_ref.go deleted file mode 100644 index baf7b551..00000000 --- a/vendor/golang.org/x/crypto/argon2/blamka_ref.go +++ /dev/null @@ -1,15 +0,0 @@ -// Copyright 2017 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build !amd64 appengine gccgo - -package argon2 - -func processBlock(out, in1, in2 *block) { - processBlockGeneric(out, in1, in2, false) -} - -func processBlockXOR(out, in1, in2 *block) { - processBlockGeneric(out, in1, in2, true) -} diff --git a/vendor/golang.org/x/crypto/blake2b/blake2b.go b/vendor/golang.org/x/crypto/blake2b/blake2b.go deleted file mode 100644 index 58ea8753..00000000 --- a/vendor/golang.org/x/crypto/blake2b/blake2b.go +++ /dev/null @@ -1,289 +0,0 @@ -// Copyright 2016 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package blake2b implements the BLAKE2b hash algorithm defined by RFC 7693 -// and the extendable output function (XOF) BLAKE2Xb. -// -// For a detailed specification of BLAKE2b see https://blake2.net/blake2.pdf -// and for BLAKE2Xb see https://blake2.net/blake2x.pdf -// -// If you aren't sure which function you need, use BLAKE2b (Sum512 or New512). -// If you need a secret-key MAC (message authentication code), use the New512 -// function with a non-nil key. -// -// BLAKE2X is a construction to compute hash values larger than 64 bytes. It -// can produce hash values between 0 and 4 GiB. -package blake2b - -import ( - "encoding/binary" - "errors" - "hash" -) - -const ( - // The blocksize of BLAKE2b in bytes. - BlockSize = 128 - // The hash size of BLAKE2b-512 in bytes. - Size = 64 - // The hash size of BLAKE2b-384 in bytes. - Size384 = 48 - // The hash size of BLAKE2b-256 in bytes. - Size256 = 32 -) - -var ( - useAVX2 bool - useAVX bool - useSSE4 bool -) - -var ( - errKeySize = errors.New("blake2b: invalid key size") - errHashSize = errors.New("blake2b: invalid hash size") -) - -var iv = [8]uint64{ - 0x6a09e667f3bcc908, 0xbb67ae8584caa73b, 0x3c6ef372fe94f82b, 0xa54ff53a5f1d36f1, - 0x510e527fade682d1, 0x9b05688c2b3e6c1f, 0x1f83d9abfb41bd6b, 0x5be0cd19137e2179, -} - -// Sum512 returns the BLAKE2b-512 checksum of the data. -func Sum512(data []byte) [Size]byte { - var sum [Size]byte - checkSum(&sum, Size, data) - return sum -} - -// Sum384 returns the BLAKE2b-384 checksum of the data. -func Sum384(data []byte) [Size384]byte { - var sum [Size]byte - var sum384 [Size384]byte - checkSum(&sum, Size384, data) - copy(sum384[:], sum[:Size384]) - return sum384 -} - -// Sum256 returns the BLAKE2b-256 checksum of the data. -func Sum256(data []byte) [Size256]byte { - var sum [Size]byte - var sum256 [Size256]byte - checkSum(&sum, Size256, data) - copy(sum256[:], sum[:Size256]) - return sum256 -} - -// New512 returns a new hash.Hash computing the BLAKE2b-512 checksum. A non-nil -// key turns the hash into a MAC. The key must between zero and 64 bytes long. -func New512(key []byte) (hash.Hash, error) { return newDigest(Size, key) } - -// New384 returns a new hash.Hash computing the BLAKE2b-384 checksum. A non-nil -// key turns the hash into a MAC. The key must between zero and 64 bytes long. -func New384(key []byte) (hash.Hash, error) { return newDigest(Size384, key) } - -// New256 returns a new hash.Hash computing the BLAKE2b-256 checksum. A non-nil -// key turns the hash into a MAC. The key must between zero and 64 bytes long. -func New256(key []byte) (hash.Hash, error) { return newDigest(Size256, key) } - -// New returns a new hash.Hash computing the BLAKE2b checksum with a custom length. -// A non-nil key turns the hash into a MAC. The key must between zero and 64 bytes long. -// The hash size can be a value between 1 and 64 but it is highly recommended to use -// values equal or greater than: -// - 32 if BLAKE2b is used as a hash function (The key is zero bytes long). -// - 16 if BLAKE2b is used as a MAC function (The key is at least 16 bytes long). -// When the key is nil, the returned hash.Hash implements BinaryMarshaler -// and BinaryUnmarshaler for state (de)serialization as documented by hash.Hash. -func New(size int, key []byte) (hash.Hash, error) { return newDigest(size, key) } - -func newDigest(hashSize int, key []byte) (*digest, error) { - if hashSize < 1 || hashSize > Size { - return nil, errHashSize - } - if len(key) > Size { - return nil, errKeySize - } - d := &digest{ - size: hashSize, - keyLen: len(key), - } - copy(d.key[:], key) - d.Reset() - return d, nil -} - -func checkSum(sum *[Size]byte, hashSize int, data []byte) { - h := iv - h[0] ^= uint64(hashSize) | (1 << 16) | (1 << 24) - var c [2]uint64 - - if length := len(data); length > BlockSize { - n := length &^ (BlockSize - 1) - if length == n { - n -= BlockSize - } - hashBlocks(&h, &c, 0, data[:n]) - data = data[n:] - } - - var block [BlockSize]byte - offset := copy(block[:], data) - remaining := uint64(BlockSize - offset) - if c[0] < remaining { - c[1]-- - } - c[0] -= remaining - - hashBlocks(&h, &c, 0xFFFFFFFFFFFFFFFF, block[:]) - - for i, v := range h[:(hashSize+7)/8] { - binary.LittleEndian.PutUint64(sum[8*i:], v) - } -} - -type digest struct { - h [8]uint64 - c [2]uint64 - size int - block [BlockSize]byte - offset int - - key [BlockSize]byte - keyLen int -} - -const ( - magic = "b2b" - marshaledSize = len(magic) + 8*8 + 2*8 + 1 + BlockSize + 1 -) - -func (d *digest) MarshalBinary() ([]byte, error) { - if d.keyLen != 0 { - return nil, errors.New("crypto/blake2b: cannot marshal MACs") - } - b := make([]byte, 0, marshaledSize) - b = append(b, magic...) - for i := 0; i < 8; i++ { - b = appendUint64(b, d.h[i]) - } - b = appendUint64(b, d.c[0]) - b = appendUint64(b, d.c[1]) - // Maximum value for size is 64 - b = append(b, byte(d.size)) - b = append(b, d.block[:]...) - b = append(b, byte(d.offset)) - return b, nil -} - -func (d *digest) UnmarshalBinary(b []byte) error { - if len(b) < len(magic) || string(b[:len(magic)]) != magic { - return errors.New("crypto/blake2b: invalid hash state identifier") - } - if len(b) != marshaledSize { - return errors.New("crypto/blake2b: invalid hash state size") - } - b = b[len(magic):] - for i := 0; i < 8; i++ { - b, d.h[i] = consumeUint64(b) - } - b, d.c[0] = consumeUint64(b) - b, d.c[1] = consumeUint64(b) - d.size = int(b[0]) - b = b[1:] - copy(d.block[:], b[:BlockSize]) - b = b[BlockSize:] - d.offset = int(b[0]) - return nil -} - -func (d *digest) BlockSize() int { return BlockSize } - -func (d *digest) Size() int { return d.size } - -func (d *digest) Reset() { - d.h = iv - d.h[0] ^= uint64(d.size) | (uint64(d.keyLen) << 8) | (1 << 16) | (1 << 24) - d.offset, d.c[0], d.c[1] = 0, 0, 0 - if d.keyLen > 0 { - d.block = d.key - d.offset = BlockSize - } -} - -func (d *digest) Write(p []byte) (n int, err error) { - n = len(p) - - if d.offset > 0 { - remaining := BlockSize - d.offset - if n <= remaining { - d.offset += copy(d.block[d.offset:], p) - return - } - copy(d.block[d.offset:], p[:remaining]) - hashBlocks(&d.h, &d.c, 0, d.block[:]) - d.offset = 0 - p = p[remaining:] - } - - if length := len(p); length > BlockSize { - nn := length &^ (BlockSize - 1) - if length == nn { - nn -= BlockSize - } - hashBlocks(&d.h, &d.c, 0, p[:nn]) - p = p[nn:] - } - - if len(p) > 0 { - d.offset += copy(d.block[:], p) - } - - return -} - -func (d *digest) Sum(sum []byte) []byte { - var hash [Size]byte - d.finalize(&hash) - return append(sum, hash[:d.size]...) -} - -func (d *digest) finalize(hash *[Size]byte) { - var block [BlockSize]byte - copy(block[:], d.block[:d.offset]) - remaining := uint64(BlockSize - d.offset) - - c := d.c - if c[0] < remaining { - c[1]-- - } - c[0] -= remaining - - h := d.h - hashBlocks(&h, &c, 0xFFFFFFFFFFFFFFFF, block[:]) - - for i, v := range h { - binary.LittleEndian.PutUint64(hash[8*i:], v) - } -} - -func appendUint64(b []byte, x uint64) []byte { - var a [8]byte - binary.BigEndian.PutUint64(a[:], x) - return append(b, a[:]...) -} - -func appendUint32(b []byte, x uint32) []byte { - var a [4]byte - binary.BigEndian.PutUint32(a[:], x) - return append(b, a[:]...) -} - -func consumeUint64(b []byte) ([]byte, uint64) { - x := binary.BigEndian.Uint64(b) - return b[8:], x -} - -func consumeUint32(b []byte) ([]byte, uint32) { - x := binary.BigEndian.Uint32(b) - return b[4:], x -} diff --git a/vendor/golang.org/x/crypto/blake2b/blake2bAVX2_amd64.go b/vendor/golang.org/x/crypto/blake2b/blake2bAVX2_amd64.go deleted file mode 100644 index 4d31dd0f..00000000 --- a/vendor/golang.org/x/crypto/blake2b/blake2bAVX2_amd64.go +++ /dev/null @@ -1,37 +0,0 @@ -// Copyright 2016 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build go1.7,amd64,!gccgo,!appengine - -package blake2b - -import "golang.org/x/sys/cpu" - -func init() { - useAVX2 = cpu.X86.HasAVX2 - useAVX = cpu.X86.HasAVX - useSSE4 = cpu.X86.HasSSE41 -} - -//go:noescape -func hashBlocksAVX2(h *[8]uint64, c *[2]uint64, flag uint64, blocks []byte) - -//go:noescape -func hashBlocksAVX(h *[8]uint64, c *[2]uint64, flag uint64, blocks []byte) - -//go:noescape -func hashBlocksSSE4(h *[8]uint64, c *[2]uint64, flag uint64, blocks []byte) - -func hashBlocks(h *[8]uint64, c *[2]uint64, flag uint64, blocks []byte) { - switch { - case useAVX2: - hashBlocksAVX2(h, c, flag, blocks) - case useAVX: - hashBlocksAVX(h, c, flag, blocks) - case useSSE4: - hashBlocksSSE4(h, c, flag, blocks) - default: - hashBlocksGeneric(h, c, flag, blocks) - } -} diff --git a/vendor/golang.org/x/crypto/blake2b/blake2bAVX2_amd64.s b/vendor/golang.org/x/crypto/blake2b/blake2bAVX2_amd64.s deleted file mode 100644 index 5593b1b3..00000000 --- a/vendor/golang.org/x/crypto/blake2b/blake2bAVX2_amd64.s +++ /dev/null @@ -1,750 +0,0 @@ -// Copyright 2016 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build go1.7,amd64,!gccgo,!appengine - -#include "textflag.h" - -DATA ·AVX2_iv0<>+0x00(SB)/8, $0x6a09e667f3bcc908 -DATA ·AVX2_iv0<>+0x08(SB)/8, $0xbb67ae8584caa73b -DATA ·AVX2_iv0<>+0x10(SB)/8, $0x3c6ef372fe94f82b -DATA ·AVX2_iv0<>+0x18(SB)/8, $0xa54ff53a5f1d36f1 -GLOBL ·AVX2_iv0<>(SB), (NOPTR+RODATA), $32 - -DATA ·AVX2_iv1<>+0x00(SB)/8, $0x510e527fade682d1 -DATA ·AVX2_iv1<>+0x08(SB)/8, $0x9b05688c2b3e6c1f -DATA ·AVX2_iv1<>+0x10(SB)/8, $0x1f83d9abfb41bd6b -DATA ·AVX2_iv1<>+0x18(SB)/8, $0x5be0cd19137e2179 -GLOBL ·AVX2_iv1<>(SB), (NOPTR+RODATA), $32 - -DATA ·AVX2_c40<>+0x00(SB)/8, $0x0201000706050403 -DATA ·AVX2_c40<>+0x08(SB)/8, $0x0a09080f0e0d0c0b -DATA ·AVX2_c40<>+0x10(SB)/8, $0x0201000706050403 -DATA ·AVX2_c40<>+0x18(SB)/8, $0x0a09080f0e0d0c0b -GLOBL ·AVX2_c40<>(SB), (NOPTR+RODATA), $32 - -DATA ·AVX2_c48<>+0x00(SB)/8, $0x0100070605040302 -DATA ·AVX2_c48<>+0x08(SB)/8, $0x09080f0e0d0c0b0a -DATA ·AVX2_c48<>+0x10(SB)/8, $0x0100070605040302 -DATA ·AVX2_c48<>+0x18(SB)/8, $0x09080f0e0d0c0b0a -GLOBL ·AVX2_c48<>(SB), (NOPTR+RODATA), $32 - -DATA ·AVX_iv0<>+0x00(SB)/8, $0x6a09e667f3bcc908 -DATA ·AVX_iv0<>+0x08(SB)/8, $0xbb67ae8584caa73b -GLOBL ·AVX_iv0<>(SB), (NOPTR+RODATA), $16 - -DATA ·AVX_iv1<>+0x00(SB)/8, $0x3c6ef372fe94f82b -DATA ·AVX_iv1<>+0x08(SB)/8, $0xa54ff53a5f1d36f1 -GLOBL ·AVX_iv1<>(SB), (NOPTR+RODATA), $16 - -DATA ·AVX_iv2<>+0x00(SB)/8, $0x510e527fade682d1 -DATA ·AVX_iv2<>+0x08(SB)/8, $0x9b05688c2b3e6c1f -GLOBL ·AVX_iv2<>(SB), (NOPTR+RODATA), $16 - -DATA ·AVX_iv3<>+0x00(SB)/8, $0x1f83d9abfb41bd6b -DATA ·AVX_iv3<>+0x08(SB)/8, $0x5be0cd19137e2179 -GLOBL ·AVX_iv3<>(SB), (NOPTR+RODATA), $16 - -DATA ·AVX_c40<>+0x00(SB)/8, $0x0201000706050403 -DATA ·AVX_c40<>+0x08(SB)/8, $0x0a09080f0e0d0c0b -GLOBL ·AVX_c40<>(SB), (NOPTR+RODATA), $16 - -DATA ·AVX_c48<>+0x00(SB)/8, $0x0100070605040302 -DATA ·AVX_c48<>+0x08(SB)/8, $0x09080f0e0d0c0b0a -GLOBL ·AVX_c48<>(SB), (NOPTR+RODATA), $16 - -#define VPERMQ_0x39_Y1_Y1 BYTE $0xc4; BYTE $0xe3; BYTE $0xfd; BYTE $0x00; BYTE $0xc9; BYTE $0x39 -#define VPERMQ_0x93_Y1_Y1 BYTE $0xc4; BYTE $0xe3; BYTE $0xfd; BYTE $0x00; BYTE $0xc9; BYTE $0x93 -#define VPERMQ_0x4E_Y2_Y2 BYTE $0xc4; BYTE $0xe3; BYTE $0xfd; BYTE $0x00; BYTE $0xd2; BYTE $0x4e -#define VPERMQ_0x93_Y3_Y3 BYTE $0xc4; BYTE $0xe3; BYTE $0xfd; BYTE $0x00; BYTE $0xdb; BYTE $0x93 -#define VPERMQ_0x39_Y3_Y3 BYTE $0xc4; BYTE $0xe3; BYTE $0xfd; BYTE $0x00; BYTE $0xdb; BYTE $0x39 - -#define ROUND_AVX2(m0, m1, m2, m3, t, c40, c48) \ - VPADDQ m0, Y0, Y0; \ - VPADDQ Y1, Y0, Y0; \ - VPXOR Y0, Y3, Y3; \ - VPSHUFD $-79, Y3, Y3; \ - VPADDQ Y3, Y2, Y2; \ - VPXOR Y2, Y1, Y1; \ - VPSHUFB c40, Y1, Y1; \ - VPADDQ m1, Y0, Y0; \ - VPADDQ Y1, Y0, Y0; \ - VPXOR Y0, Y3, Y3; \ - VPSHUFB c48, Y3, Y3; \ - VPADDQ Y3, Y2, Y2; \ - VPXOR Y2, Y1, Y1; \ - VPADDQ Y1, Y1, t; \ - VPSRLQ $63, Y1, Y1; \ - VPXOR t, Y1, Y1; \ - VPERMQ_0x39_Y1_Y1; \ - VPERMQ_0x4E_Y2_Y2; \ - VPERMQ_0x93_Y3_Y3; \ - VPADDQ m2, Y0, Y0; \ - VPADDQ Y1, Y0, Y0; \ - VPXOR Y0, Y3, Y3; \ - VPSHUFD $-79, Y3, Y3; \ - VPADDQ Y3, Y2, Y2; \ - VPXOR Y2, Y1, Y1; \ - VPSHUFB c40, Y1, Y1; \ - VPADDQ m3, Y0, Y0; \ - VPADDQ Y1, Y0, Y0; \ - VPXOR Y0, Y3, Y3; \ - VPSHUFB c48, Y3, Y3; \ - VPADDQ Y3, Y2, Y2; \ - VPXOR Y2, Y1, Y1; \ - VPADDQ Y1, Y1, t; \ - VPSRLQ $63, Y1, Y1; \ - VPXOR t, Y1, Y1; \ - VPERMQ_0x39_Y3_Y3; \ - VPERMQ_0x4E_Y2_Y2; \ - VPERMQ_0x93_Y1_Y1 - -#define VMOVQ_SI_X11_0 BYTE $0xC5; BYTE $0x7A; BYTE $0x7E; BYTE $0x1E -#define VMOVQ_SI_X12_0 BYTE $0xC5; BYTE $0x7A; BYTE $0x7E; BYTE $0x26 -#define VMOVQ_SI_X13_0 BYTE $0xC5; BYTE $0x7A; BYTE $0x7E; BYTE $0x2E -#define VMOVQ_SI_X14_0 BYTE $0xC5; BYTE $0x7A; BYTE $0x7E; BYTE $0x36 -#define VMOVQ_SI_X15_0 BYTE $0xC5; BYTE $0x7A; BYTE $0x7E; BYTE $0x3E - -#define VMOVQ_SI_X11(n) BYTE $0xC5; BYTE $0x7A; BYTE $0x7E; BYTE $0x5E; BYTE $n -#define VMOVQ_SI_X12(n) BYTE $0xC5; BYTE $0x7A; BYTE $0x7E; BYTE $0x66; BYTE $n -#define VMOVQ_SI_X13(n) BYTE $0xC5; BYTE $0x7A; BYTE $0x7E; BYTE $0x6E; BYTE $n -#define VMOVQ_SI_X14(n) BYTE $0xC5; BYTE $0x7A; BYTE $0x7E; BYTE $0x76; BYTE $n -#define VMOVQ_SI_X15(n) BYTE $0xC5; BYTE $0x7A; BYTE $0x7E; BYTE $0x7E; BYTE $n - -#define VPINSRQ_1_SI_X11_0 BYTE $0xC4; BYTE $0x63; BYTE $0xA1; BYTE $0x22; BYTE $0x1E; BYTE $0x01 -#define VPINSRQ_1_SI_X12_0 BYTE $0xC4; BYTE $0x63; BYTE $0x99; BYTE $0x22; BYTE $0x26; BYTE $0x01 -#define VPINSRQ_1_SI_X13_0 BYTE $0xC4; BYTE $0x63; BYTE $0x91; BYTE $0x22; BYTE $0x2E; BYTE $0x01 -#define VPINSRQ_1_SI_X14_0 BYTE $0xC4; BYTE $0x63; BYTE $0x89; BYTE $0x22; BYTE $0x36; BYTE $0x01 -#define VPINSRQ_1_SI_X15_0 BYTE $0xC4; BYTE $0x63; BYTE $0x81; BYTE $0x22; BYTE $0x3E; BYTE $0x01 - -#define VPINSRQ_1_SI_X11(n) BYTE $0xC4; BYTE $0x63; BYTE $0xA1; BYTE $0x22; BYTE $0x5E; BYTE $n; BYTE $0x01 -#define VPINSRQ_1_SI_X12(n) BYTE $0xC4; BYTE $0x63; BYTE $0x99; BYTE $0x22; BYTE $0x66; BYTE $n; BYTE $0x01 -#define VPINSRQ_1_SI_X13(n) BYTE $0xC4; BYTE $0x63; BYTE $0x91; BYTE $0x22; BYTE $0x6E; BYTE $n; BYTE $0x01 -#define VPINSRQ_1_SI_X14(n) BYTE $0xC4; BYTE $0x63; BYTE $0x89; BYTE $0x22; BYTE $0x76; BYTE $n; BYTE $0x01 -#define VPINSRQ_1_SI_X15(n) BYTE $0xC4; BYTE $0x63; BYTE $0x81; BYTE $0x22; BYTE $0x7E; BYTE $n; BYTE $0x01 - -#define VMOVQ_R8_X15 BYTE $0xC4; BYTE $0x41; BYTE $0xF9; BYTE $0x6E; BYTE $0xF8 -#define VPINSRQ_1_R9_X15 BYTE $0xC4; BYTE $0x43; BYTE $0x81; BYTE $0x22; BYTE $0xF9; BYTE $0x01 - -// load msg: Y12 = (i0, i1, i2, i3) -// i0, i1, i2, i3 must not be 0 -#define LOAD_MSG_AVX2_Y12(i0, i1, i2, i3) \ - VMOVQ_SI_X12(i0*8); \ - VMOVQ_SI_X11(i2*8); \ - VPINSRQ_1_SI_X12(i1*8); \ - VPINSRQ_1_SI_X11(i3*8); \ - VINSERTI128 $1, X11, Y12, Y12 - -// load msg: Y13 = (i0, i1, i2, i3) -// i0, i1, i2, i3 must not be 0 -#define LOAD_MSG_AVX2_Y13(i0, i1, i2, i3) \ - VMOVQ_SI_X13(i0*8); \ - VMOVQ_SI_X11(i2*8); \ - VPINSRQ_1_SI_X13(i1*8); \ - VPINSRQ_1_SI_X11(i3*8); \ - VINSERTI128 $1, X11, Y13, Y13 - -// load msg: Y14 = (i0, i1, i2, i3) -// i0, i1, i2, i3 must not be 0 -#define LOAD_MSG_AVX2_Y14(i0, i1, i2, i3) \ - VMOVQ_SI_X14(i0*8); \ - VMOVQ_SI_X11(i2*8); \ - VPINSRQ_1_SI_X14(i1*8); \ - VPINSRQ_1_SI_X11(i3*8); \ - VINSERTI128 $1, X11, Y14, Y14 - -// load msg: Y15 = (i0, i1, i2, i3) -// i0, i1, i2, i3 must not be 0 -#define LOAD_MSG_AVX2_Y15(i0, i1, i2, i3) \ - VMOVQ_SI_X15(i0*8); \ - VMOVQ_SI_X11(i2*8); \ - VPINSRQ_1_SI_X15(i1*8); \ - VPINSRQ_1_SI_X11(i3*8); \ - VINSERTI128 $1, X11, Y15, Y15 - -#define LOAD_MSG_AVX2_0_2_4_6_1_3_5_7_8_10_12_14_9_11_13_15() \ - VMOVQ_SI_X12_0; \ - VMOVQ_SI_X11(4*8); \ - VPINSRQ_1_SI_X12(2*8); \ - VPINSRQ_1_SI_X11(6*8); \ - VINSERTI128 $1, X11, Y12, Y12; \ - LOAD_MSG_AVX2_Y13(1, 3, 5, 7); \ - LOAD_MSG_AVX2_Y14(8, 10, 12, 14); \ - LOAD_MSG_AVX2_Y15(9, 11, 13, 15) - -#define LOAD_MSG_AVX2_14_4_9_13_10_8_15_6_1_0_11_5_12_2_7_3() \ - LOAD_MSG_AVX2_Y12(14, 4, 9, 13); \ - LOAD_MSG_AVX2_Y13(10, 8, 15, 6); \ - VMOVQ_SI_X11(11*8); \ - VPSHUFD $0x4E, 0*8(SI), X14; \ - VPINSRQ_1_SI_X11(5*8); \ - VINSERTI128 $1, X11, Y14, Y14; \ - LOAD_MSG_AVX2_Y15(12, 2, 7, 3) - -#define LOAD_MSG_AVX2_11_12_5_15_8_0_2_13_10_3_7_9_14_6_1_4() \ - VMOVQ_SI_X11(5*8); \ - VMOVDQU 11*8(SI), X12; \ - VPINSRQ_1_SI_X11(15*8); \ - VINSERTI128 $1, X11, Y12, Y12; \ - VMOVQ_SI_X13(8*8); \ - VMOVQ_SI_X11(2*8); \ - VPINSRQ_1_SI_X13_0; \ - VPINSRQ_1_SI_X11(13*8); \ - VINSERTI128 $1, X11, Y13, Y13; \ - LOAD_MSG_AVX2_Y14(10, 3, 7, 9); \ - LOAD_MSG_AVX2_Y15(14, 6, 1, 4) - -#define LOAD_MSG_AVX2_7_3_13_11_9_1_12_14_2_5_4_15_6_10_0_8() \ - LOAD_MSG_AVX2_Y12(7, 3, 13, 11); \ - LOAD_MSG_AVX2_Y13(9, 1, 12, 14); \ - LOAD_MSG_AVX2_Y14(2, 5, 4, 15); \ - VMOVQ_SI_X15(6*8); \ - VMOVQ_SI_X11_0; \ - VPINSRQ_1_SI_X15(10*8); \ - VPINSRQ_1_SI_X11(8*8); \ - VINSERTI128 $1, X11, Y15, Y15 - -#define LOAD_MSG_AVX2_9_5_2_10_0_7_4_15_14_11_6_3_1_12_8_13() \ - LOAD_MSG_AVX2_Y12(9, 5, 2, 10); \ - VMOVQ_SI_X13_0; \ - VMOVQ_SI_X11(4*8); \ - VPINSRQ_1_SI_X13(7*8); \ - VPINSRQ_1_SI_X11(15*8); \ - VINSERTI128 $1, X11, Y13, Y13; \ - LOAD_MSG_AVX2_Y14(14, 11, 6, 3); \ - LOAD_MSG_AVX2_Y15(1, 12, 8, 13) - -#define LOAD_MSG_AVX2_2_6_0_8_12_10_11_3_4_7_15_1_13_5_14_9() \ - VMOVQ_SI_X12(2*8); \ - VMOVQ_SI_X11_0; \ - VPINSRQ_1_SI_X12(6*8); \ - VPINSRQ_1_SI_X11(8*8); \ - VINSERTI128 $1, X11, Y12, Y12; \ - LOAD_MSG_AVX2_Y13(12, 10, 11, 3); \ - LOAD_MSG_AVX2_Y14(4, 7, 15, 1); \ - LOAD_MSG_AVX2_Y15(13, 5, 14, 9) - -#define LOAD_MSG_AVX2_12_1_14_4_5_15_13_10_0_6_9_8_7_3_2_11() \ - LOAD_MSG_AVX2_Y12(12, 1, 14, 4); \ - LOAD_MSG_AVX2_Y13(5, 15, 13, 10); \ - VMOVQ_SI_X14_0; \ - VPSHUFD $0x4E, 8*8(SI), X11; \ - VPINSRQ_1_SI_X14(6*8); \ - VINSERTI128 $1, X11, Y14, Y14; \ - LOAD_MSG_AVX2_Y15(7, 3, 2, 11) - -#define LOAD_MSG_AVX2_13_7_12_3_11_14_1_9_5_15_8_2_0_4_6_10() \ - LOAD_MSG_AVX2_Y12(13, 7, 12, 3); \ - LOAD_MSG_AVX2_Y13(11, 14, 1, 9); \ - LOAD_MSG_AVX2_Y14(5, 15, 8, 2); \ - VMOVQ_SI_X15_0; \ - VMOVQ_SI_X11(6*8); \ - VPINSRQ_1_SI_X15(4*8); \ - VPINSRQ_1_SI_X11(10*8); \ - VINSERTI128 $1, X11, Y15, Y15 - -#define LOAD_MSG_AVX2_6_14_11_0_15_9_3_8_12_13_1_10_2_7_4_5() \ - VMOVQ_SI_X12(6*8); \ - VMOVQ_SI_X11(11*8); \ - VPINSRQ_1_SI_X12(14*8); \ - VPINSRQ_1_SI_X11_0; \ - VINSERTI128 $1, X11, Y12, Y12; \ - LOAD_MSG_AVX2_Y13(15, 9, 3, 8); \ - VMOVQ_SI_X11(1*8); \ - VMOVDQU 12*8(SI), X14; \ - VPINSRQ_1_SI_X11(10*8); \ - VINSERTI128 $1, X11, Y14, Y14; \ - VMOVQ_SI_X15(2*8); \ - VMOVDQU 4*8(SI), X11; \ - VPINSRQ_1_SI_X15(7*8); \ - VINSERTI128 $1, X11, Y15, Y15 - -#define LOAD_MSG_AVX2_10_8_7_1_2_4_6_5_15_9_3_13_11_14_12_0() \ - LOAD_MSG_AVX2_Y12(10, 8, 7, 1); \ - VMOVQ_SI_X13(2*8); \ - VPSHUFD $0x4E, 5*8(SI), X11; \ - VPINSRQ_1_SI_X13(4*8); \ - VINSERTI128 $1, X11, Y13, Y13; \ - LOAD_MSG_AVX2_Y14(15, 9, 3, 13); \ - VMOVQ_SI_X15(11*8); \ - VMOVQ_SI_X11(12*8); \ - VPINSRQ_1_SI_X15(14*8); \ - VPINSRQ_1_SI_X11_0; \ - VINSERTI128 $1, X11, Y15, Y15 - -// func hashBlocksAVX2(h *[8]uint64, c *[2]uint64, flag uint64, blocks []byte) -TEXT ·hashBlocksAVX2(SB), 4, $320-48 // frame size = 288 + 32 byte alignment - MOVQ h+0(FP), AX - MOVQ c+8(FP), BX - MOVQ flag+16(FP), CX - MOVQ blocks_base+24(FP), SI - MOVQ blocks_len+32(FP), DI - - MOVQ SP, DX - MOVQ SP, R9 - ADDQ $31, R9 - ANDQ $~31, R9 - MOVQ R9, SP - - MOVQ CX, 16(SP) - XORQ CX, CX - MOVQ CX, 24(SP) - - VMOVDQU ·AVX2_c40<>(SB), Y4 - VMOVDQU ·AVX2_c48<>(SB), Y5 - - VMOVDQU 0(AX), Y8 - VMOVDQU 32(AX), Y9 - VMOVDQU ·AVX2_iv0<>(SB), Y6 - VMOVDQU ·AVX2_iv1<>(SB), Y7 - - MOVQ 0(BX), R8 - MOVQ 8(BX), R9 - MOVQ R9, 8(SP) - -loop: - ADDQ $128, R8 - MOVQ R8, 0(SP) - CMPQ R8, $128 - JGE noinc - INCQ R9 - MOVQ R9, 8(SP) - -noinc: - VMOVDQA Y8, Y0 - VMOVDQA Y9, Y1 - VMOVDQA Y6, Y2 - VPXOR 0(SP), Y7, Y3 - - LOAD_MSG_AVX2_0_2_4_6_1_3_5_7_8_10_12_14_9_11_13_15() - VMOVDQA Y12, 32(SP) - VMOVDQA Y13, 64(SP) - VMOVDQA Y14, 96(SP) - VMOVDQA Y15, 128(SP) - ROUND_AVX2(Y12, Y13, Y14, Y15, Y10, Y4, Y5) - LOAD_MSG_AVX2_14_4_9_13_10_8_15_6_1_0_11_5_12_2_7_3() - VMOVDQA Y12, 160(SP) - VMOVDQA Y13, 192(SP) - VMOVDQA Y14, 224(SP) - VMOVDQA Y15, 256(SP) - - ROUND_AVX2(Y12, Y13, Y14, Y15, Y10, Y4, Y5) - LOAD_MSG_AVX2_11_12_5_15_8_0_2_13_10_3_7_9_14_6_1_4() - ROUND_AVX2(Y12, Y13, Y14, Y15, Y10, Y4, Y5) - LOAD_MSG_AVX2_7_3_13_11_9_1_12_14_2_5_4_15_6_10_0_8() - ROUND_AVX2(Y12, Y13, Y14, Y15, Y10, Y4, Y5) - LOAD_MSG_AVX2_9_5_2_10_0_7_4_15_14_11_6_3_1_12_8_13() - ROUND_AVX2(Y12, Y13, Y14, Y15, Y10, Y4, Y5) - LOAD_MSG_AVX2_2_6_0_8_12_10_11_3_4_7_15_1_13_5_14_9() - ROUND_AVX2(Y12, Y13, Y14, Y15, Y10, Y4, Y5) - LOAD_MSG_AVX2_12_1_14_4_5_15_13_10_0_6_9_8_7_3_2_11() - ROUND_AVX2(Y12, Y13, Y14, Y15, Y10, Y4, Y5) - LOAD_MSG_AVX2_13_7_12_3_11_14_1_9_5_15_8_2_0_4_6_10() - ROUND_AVX2(Y12, Y13, Y14, Y15, Y10, Y4, Y5) - LOAD_MSG_AVX2_6_14_11_0_15_9_3_8_12_13_1_10_2_7_4_5() - ROUND_AVX2(Y12, Y13, Y14, Y15, Y10, Y4, Y5) - LOAD_MSG_AVX2_10_8_7_1_2_4_6_5_15_9_3_13_11_14_12_0() - ROUND_AVX2(Y12, Y13, Y14, Y15, Y10, Y4, Y5) - - ROUND_AVX2(32(SP), 64(SP), 96(SP), 128(SP), Y10, Y4, Y5) - ROUND_AVX2(160(SP), 192(SP), 224(SP), 256(SP), Y10, Y4, Y5) - - VPXOR Y0, Y8, Y8 - VPXOR Y1, Y9, Y9 - VPXOR Y2, Y8, Y8 - VPXOR Y3, Y9, Y9 - - LEAQ 128(SI), SI - SUBQ $128, DI - JNE loop - - MOVQ R8, 0(BX) - MOVQ R9, 8(BX) - - VMOVDQU Y8, 0(AX) - VMOVDQU Y9, 32(AX) - VZEROUPPER - - MOVQ DX, SP - RET - -#define VPUNPCKLQDQ_X2_X2_X15 BYTE $0xC5; BYTE $0x69; BYTE $0x6C; BYTE $0xFA -#define VPUNPCKLQDQ_X3_X3_X15 BYTE $0xC5; BYTE $0x61; BYTE $0x6C; BYTE $0xFB -#define VPUNPCKLQDQ_X7_X7_X15 BYTE $0xC5; BYTE $0x41; BYTE $0x6C; BYTE $0xFF -#define VPUNPCKLQDQ_X13_X13_X15 BYTE $0xC4; BYTE $0x41; BYTE $0x11; BYTE $0x6C; BYTE $0xFD -#define VPUNPCKLQDQ_X14_X14_X15 BYTE $0xC4; BYTE $0x41; BYTE $0x09; BYTE $0x6C; BYTE $0xFE - -#define VPUNPCKHQDQ_X15_X2_X2 BYTE $0xC4; BYTE $0xC1; BYTE $0x69; BYTE $0x6D; BYTE $0xD7 -#define VPUNPCKHQDQ_X15_X3_X3 BYTE $0xC4; BYTE $0xC1; BYTE $0x61; BYTE $0x6D; BYTE $0xDF -#define VPUNPCKHQDQ_X15_X6_X6 BYTE $0xC4; BYTE $0xC1; BYTE $0x49; BYTE $0x6D; BYTE $0xF7 -#define VPUNPCKHQDQ_X15_X7_X7 BYTE $0xC4; BYTE $0xC1; BYTE $0x41; BYTE $0x6D; BYTE $0xFF -#define VPUNPCKHQDQ_X15_X3_X2 BYTE $0xC4; BYTE $0xC1; BYTE $0x61; BYTE $0x6D; BYTE $0xD7 -#define VPUNPCKHQDQ_X15_X7_X6 BYTE $0xC4; BYTE $0xC1; BYTE $0x41; BYTE $0x6D; BYTE $0xF7 -#define VPUNPCKHQDQ_X15_X13_X3 BYTE $0xC4; BYTE $0xC1; BYTE $0x11; BYTE $0x6D; BYTE $0xDF -#define VPUNPCKHQDQ_X15_X13_X7 BYTE $0xC4; BYTE $0xC1; BYTE $0x11; BYTE $0x6D; BYTE $0xFF - -#define SHUFFLE_AVX() \ - VMOVDQA X6, X13; \ - VMOVDQA X2, X14; \ - VMOVDQA X4, X6; \ - VPUNPCKLQDQ_X13_X13_X15; \ - VMOVDQA X5, X4; \ - VMOVDQA X6, X5; \ - VPUNPCKHQDQ_X15_X7_X6; \ - VPUNPCKLQDQ_X7_X7_X15; \ - VPUNPCKHQDQ_X15_X13_X7; \ - VPUNPCKLQDQ_X3_X3_X15; \ - VPUNPCKHQDQ_X15_X2_X2; \ - VPUNPCKLQDQ_X14_X14_X15; \ - VPUNPCKHQDQ_X15_X3_X3; \ - -#define SHUFFLE_AVX_INV() \ - VMOVDQA X2, X13; \ - VMOVDQA X4, X14; \ - VPUNPCKLQDQ_X2_X2_X15; \ - VMOVDQA X5, X4; \ - VPUNPCKHQDQ_X15_X3_X2; \ - VMOVDQA X14, X5; \ - VPUNPCKLQDQ_X3_X3_X15; \ - VMOVDQA X6, X14; \ - VPUNPCKHQDQ_X15_X13_X3; \ - VPUNPCKLQDQ_X7_X7_X15; \ - VPUNPCKHQDQ_X15_X6_X6; \ - VPUNPCKLQDQ_X14_X14_X15; \ - VPUNPCKHQDQ_X15_X7_X7; \ - -#define HALF_ROUND_AVX(v0, v1, v2, v3, v4, v5, v6, v7, m0, m1, m2, m3, t0, c40, c48) \ - VPADDQ m0, v0, v0; \ - VPADDQ v2, v0, v0; \ - VPADDQ m1, v1, v1; \ - VPADDQ v3, v1, v1; \ - VPXOR v0, v6, v6; \ - VPXOR v1, v7, v7; \ - VPSHUFD $-79, v6, v6; \ - VPSHUFD $-79, v7, v7; \ - VPADDQ v6, v4, v4; \ - VPADDQ v7, v5, v5; \ - VPXOR v4, v2, v2; \ - VPXOR v5, v3, v3; \ - VPSHUFB c40, v2, v2; \ - VPSHUFB c40, v3, v3; \ - VPADDQ m2, v0, v0; \ - VPADDQ v2, v0, v0; \ - VPADDQ m3, v1, v1; \ - VPADDQ v3, v1, v1; \ - VPXOR v0, v6, v6; \ - VPXOR v1, v7, v7; \ - VPSHUFB c48, v6, v6; \ - VPSHUFB c48, v7, v7; \ - VPADDQ v6, v4, v4; \ - VPADDQ v7, v5, v5; \ - VPXOR v4, v2, v2; \ - VPXOR v5, v3, v3; \ - VPADDQ v2, v2, t0; \ - VPSRLQ $63, v2, v2; \ - VPXOR t0, v2, v2; \ - VPADDQ v3, v3, t0; \ - VPSRLQ $63, v3, v3; \ - VPXOR t0, v3, v3 - -// load msg: X12 = (i0, i1), X13 = (i2, i3), X14 = (i4, i5), X15 = (i6, i7) -// i0, i1, i2, i3, i4, i5, i6, i7 must not be 0 -#define LOAD_MSG_AVX(i0, i1, i2, i3, i4, i5, i6, i7) \ - VMOVQ_SI_X12(i0*8); \ - VMOVQ_SI_X13(i2*8); \ - VMOVQ_SI_X14(i4*8); \ - VMOVQ_SI_X15(i6*8); \ - VPINSRQ_1_SI_X12(i1*8); \ - VPINSRQ_1_SI_X13(i3*8); \ - VPINSRQ_1_SI_X14(i5*8); \ - VPINSRQ_1_SI_X15(i7*8) - -// load msg: X12 = (0, 2), X13 = (4, 6), X14 = (1, 3), X15 = (5, 7) -#define LOAD_MSG_AVX_0_2_4_6_1_3_5_7() \ - VMOVQ_SI_X12_0; \ - VMOVQ_SI_X13(4*8); \ - VMOVQ_SI_X14(1*8); \ - VMOVQ_SI_X15(5*8); \ - VPINSRQ_1_SI_X12(2*8); \ - VPINSRQ_1_SI_X13(6*8); \ - VPINSRQ_1_SI_X14(3*8); \ - VPINSRQ_1_SI_X15(7*8) - -// load msg: X12 = (1, 0), X13 = (11, 5), X14 = (12, 2), X15 = (7, 3) -#define LOAD_MSG_AVX_1_0_11_5_12_2_7_3() \ - VPSHUFD $0x4E, 0*8(SI), X12; \ - VMOVQ_SI_X13(11*8); \ - VMOVQ_SI_X14(12*8); \ - VMOVQ_SI_X15(7*8); \ - VPINSRQ_1_SI_X13(5*8); \ - VPINSRQ_1_SI_X14(2*8); \ - VPINSRQ_1_SI_X15(3*8) - -// load msg: X12 = (11, 12), X13 = (5, 15), X14 = (8, 0), X15 = (2, 13) -#define LOAD_MSG_AVX_11_12_5_15_8_0_2_13() \ - VMOVDQU 11*8(SI), X12; \ - VMOVQ_SI_X13(5*8); \ - VMOVQ_SI_X14(8*8); \ - VMOVQ_SI_X15(2*8); \ - VPINSRQ_1_SI_X13(15*8); \ - VPINSRQ_1_SI_X14_0; \ - VPINSRQ_1_SI_X15(13*8) - -// load msg: X12 = (2, 5), X13 = (4, 15), X14 = (6, 10), X15 = (0, 8) -#define LOAD_MSG_AVX_2_5_4_15_6_10_0_8() \ - VMOVQ_SI_X12(2*8); \ - VMOVQ_SI_X13(4*8); \ - VMOVQ_SI_X14(6*8); \ - VMOVQ_SI_X15_0; \ - VPINSRQ_1_SI_X12(5*8); \ - VPINSRQ_1_SI_X13(15*8); \ - VPINSRQ_1_SI_X14(10*8); \ - VPINSRQ_1_SI_X15(8*8) - -// load msg: X12 = (9, 5), X13 = (2, 10), X14 = (0, 7), X15 = (4, 15) -#define LOAD_MSG_AVX_9_5_2_10_0_7_4_15() \ - VMOVQ_SI_X12(9*8); \ - VMOVQ_SI_X13(2*8); \ - VMOVQ_SI_X14_0; \ - VMOVQ_SI_X15(4*8); \ - VPINSRQ_1_SI_X12(5*8); \ - VPINSRQ_1_SI_X13(10*8); \ - VPINSRQ_1_SI_X14(7*8); \ - VPINSRQ_1_SI_X15(15*8) - -// load msg: X12 = (2, 6), X13 = (0, 8), X14 = (12, 10), X15 = (11, 3) -#define LOAD_MSG_AVX_2_6_0_8_12_10_11_3() \ - VMOVQ_SI_X12(2*8); \ - VMOVQ_SI_X13_0; \ - VMOVQ_SI_X14(12*8); \ - VMOVQ_SI_X15(11*8); \ - VPINSRQ_1_SI_X12(6*8); \ - VPINSRQ_1_SI_X13(8*8); \ - VPINSRQ_1_SI_X14(10*8); \ - VPINSRQ_1_SI_X15(3*8) - -// load msg: X12 = (0, 6), X13 = (9, 8), X14 = (7, 3), X15 = (2, 11) -#define LOAD_MSG_AVX_0_6_9_8_7_3_2_11() \ - MOVQ 0*8(SI), X12; \ - VPSHUFD $0x4E, 8*8(SI), X13; \ - MOVQ 7*8(SI), X14; \ - MOVQ 2*8(SI), X15; \ - VPINSRQ_1_SI_X12(6*8); \ - VPINSRQ_1_SI_X14(3*8); \ - VPINSRQ_1_SI_X15(11*8) - -// load msg: X12 = (6, 14), X13 = (11, 0), X14 = (15, 9), X15 = (3, 8) -#define LOAD_MSG_AVX_6_14_11_0_15_9_3_8() \ - MOVQ 6*8(SI), X12; \ - MOVQ 11*8(SI), X13; \ - MOVQ 15*8(SI), X14; \ - MOVQ 3*8(SI), X15; \ - VPINSRQ_1_SI_X12(14*8); \ - VPINSRQ_1_SI_X13_0; \ - VPINSRQ_1_SI_X14(9*8); \ - VPINSRQ_1_SI_X15(8*8) - -// load msg: X12 = (5, 15), X13 = (8, 2), X14 = (0, 4), X15 = (6, 10) -#define LOAD_MSG_AVX_5_15_8_2_0_4_6_10() \ - MOVQ 5*8(SI), X12; \ - MOVQ 8*8(SI), X13; \ - MOVQ 0*8(SI), X14; \ - MOVQ 6*8(SI), X15; \ - VPINSRQ_1_SI_X12(15*8); \ - VPINSRQ_1_SI_X13(2*8); \ - VPINSRQ_1_SI_X14(4*8); \ - VPINSRQ_1_SI_X15(10*8) - -// load msg: X12 = (12, 13), X13 = (1, 10), X14 = (2, 7), X15 = (4, 5) -#define LOAD_MSG_AVX_12_13_1_10_2_7_4_5() \ - VMOVDQU 12*8(SI), X12; \ - MOVQ 1*8(SI), X13; \ - MOVQ 2*8(SI), X14; \ - VPINSRQ_1_SI_X13(10*8); \ - VPINSRQ_1_SI_X14(7*8); \ - VMOVDQU 4*8(SI), X15 - -// load msg: X12 = (15, 9), X13 = (3, 13), X14 = (11, 14), X15 = (12, 0) -#define LOAD_MSG_AVX_15_9_3_13_11_14_12_0() \ - MOVQ 15*8(SI), X12; \ - MOVQ 3*8(SI), X13; \ - MOVQ 11*8(SI), X14; \ - MOVQ 12*8(SI), X15; \ - VPINSRQ_1_SI_X12(9*8); \ - VPINSRQ_1_SI_X13(13*8); \ - VPINSRQ_1_SI_X14(14*8); \ - VPINSRQ_1_SI_X15_0 - -// func hashBlocksAVX(h *[8]uint64, c *[2]uint64, flag uint64, blocks []byte) -TEXT ·hashBlocksAVX(SB), 4, $288-48 // frame size = 272 + 16 byte alignment - MOVQ h+0(FP), AX - MOVQ c+8(FP), BX - MOVQ flag+16(FP), CX - MOVQ blocks_base+24(FP), SI - MOVQ blocks_len+32(FP), DI - - MOVQ SP, BP - MOVQ SP, R9 - ADDQ $15, R9 - ANDQ $~15, R9 - MOVQ R9, SP - - VMOVDQU ·AVX_c40<>(SB), X0 - VMOVDQU ·AVX_c48<>(SB), X1 - VMOVDQA X0, X8 - VMOVDQA X1, X9 - - VMOVDQU ·AVX_iv3<>(SB), X0 - VMOVDQA X0, 0(SP) - XORQ CX, 0(SP) // 0(SP) = ·AVX_iv3 ^ (CX || 0) - - VMOVDQU 0(AX), X10 - VMOVDQU 16(AX), X11 - VMOVDQU 32(AX), X2 - VMOVDQU 48(AX), X3 - - MOVQ 0(BX), R8 - MOVQ 8(BX), R9 - -loop: - ADDQ $128, R8 - CMPQ R8, $128 - JGE noinc - INCQ R9 - -noinc: - VMOVQ_R8_X15 - VPINSRQ_1_R9_X15 - - VMOVDQA X10, X0 - VMOVDQA X11, X1 - VMOVDQU ·AVX_iv0<>(SB), X4 - VMOVDQU ·AVX_iv1<>(SB), X5 - VMOVDQU ·AVX_iv2<>(SB), X6 - - VPXOR X15, X6, X6 - VMOVDQA 0(SP), X7 - - LOAD_MSG_AVX_0_2_4_6_1_3_5_7() - VMOVDQA X12, 16(SP) - VMOVDQA X13, 32(SP) - VMOVDQA X14, 48(SP) - VMOVDQA X15, 64(SP) - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX() - LOAD_MSG_AVX(8, 10, 12, 14, 9, 11, 13, 15) - VMOVDQA X12, 80(SP) - VMOVDQA X13, 96(SP) - VMOVDQA X14, 112(SP) - VMOVDQA X15, 128(SP) - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX_INV() - - LOAD_MSG_AVX(14, 4, 9, 13, 10, 8, 15, 6) - VMOVDQA X12, 144(SP) - VMOVDQA X13, 160(SP) - VMOVDQA X14, 176(SP) - VMOVDQA X15, 192(SP) - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX() - LOAD_MSG_AVX_1_0_11_5_12_2_7_3() - VMOVDQA X12, 208(SP) - VMOVDQA X13, 224(SP) - VMOVDQA X14, 240(SP) - VMOVDQA X15, 256(SP) - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX_INV() - - LOAD_MSG_AVX_11_12_5_15_8_0_2_13() - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX() - LOAD_MSG_AVX(10, 3, 7, 9, 14, 6, 1, 4) - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX_INV() - - LOAD_MSG_AVX(7, 3, 13, 11, 9, 1, 12, 14) - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX() - LOAD_MSG_AVX_2_5_4_15_6_10_0_8() - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX_INV() - - LOAD_MSG_AVX_9_5_2_10_0_7_4_15() - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX() - LOAD_MSG_AVX(14, 11, 6, 3, 1, 12, 8, 13) - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX_INV() - - LOAD_MSG_AVX_2_6_0_8_12_10_11_3() - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX() - LOAD_MSG_AVX(4, 7, 15, 1, 13, 5, 14, 9) - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX_INV() - - LOAD_MSG_AVX(12, 1, 14, 4, 5, 15, 13, 10) - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX() - LOAD_MSG_AVX_0_6_9_8_7_3_2_11() - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX_INV() - - LOAD_MSG_AVX(13, 7, 12, 3, 11, 14, 1, 9) - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX() - LOAD_MSG_AVX_5_15_8_2_0_4_6_10() - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX_INV() - - LOAD_MSG_AVX_6_14_11_0_15_9_3_8() - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX() - LOAD_MSG_AVX_12_13_1_10_2_7_4_5() - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX_INV() - - LOAD_MSG_AVX(10, 8, 7, 1, 2, 4, 6, 5) - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX() - LOAD_MSG_AVX_15_9_3_13_11_14_12_0() - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, X12, X13, X14, X15, X15, X8, X9) - SHUFFLE_AVX_INV() - - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, 16(SP), 32(SP), 48(SP), 64(SP), X15, X8, X9) - SHUFFLE_AVX() - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, 80(SP), 96(SP), 112(SP), 128(SP), X15, X8, X9) - SHUFFLE_AVX_INV() - - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, 144(SP), 160(SP), 176(SP), 192(SP), X15, X8, X9) - SHUFFLE_AVX() - HALF_ROUND_AVX(X0, X1, X2, X3, X4, X5, X6, X7, 208(SP), 224(SP), 240(SP), 256(SP), X15, X8, X9) - SHUFFLE_AVX_INV() - - VMOVDQU 32(AX), X14 - VMOVDQU 48(AX), X15 - VPXOR X0, X10, X10 - VPXOR X1, X11, X11 - VPXOR X2, X14, X14 - VPXOR X3, X15, X15 - VPXOR X4, X10, X10 - VPXOR X5, X11, X11 - VPXOR X6, X14, X2 - VPXOR X7, X15, X3 - VMOVDQU X2, 32(AX) - VMOVDQU X3, 48(AX) - - LEAQ 128(SI), SI - SUBQ $128, DI - JNE loop - - VMOVDQU X10, 0(AX) - VMOVDQU X11, 16(AX) - - MOVQ R8, 0(BX) - MOVQ R9, 8(BX) - VZEROUPPER - - MOVQ BP, SP - RET diff --git a/vendor/golang.org/x/crypto/blake2b/blake2b_amd64.go b/vendor/golang.org/x/crypto/blake2b/blake2b_amd64.go deleted file mode 100644 index 30e2fcd5..00000000 --- a/vendor/golang.org/x/crypto/blake2b/blake2b_amd64.go +++ /dev/null @@ -1,24 +0,0 @@ -// Copyright 2016 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build !go1.7,amd64,!gccgo,!appengine - -package blake2b - -import "golang.org/x/sys/cpu" - -func init() { - useSSE4 = cpu.X86.HasSSE41 -} - -//go:noescape -func hashBlocksSSE4(h *[8]uint64, c *[2]uint64, flag uint64, blocks []byte) - -func hashBlocks(h *[8]uint64, c *[2]uint64, flag uint64, blocks []byte) { - if useSSE4 { - hashBlocksSSE4(h, c, flag, blocks) - } else { - hashBlocksGeneric(h, c, flag, blocks) - } -} diff --git a/vendor/golang.org/x/crypto/blake2b/blake2b_amd64.s b/vendor/golang.org/x/crypto/blake2b/blake2b_amd64.s deleted file mode 100644 index 578e947b..00000000 --- a/vendor/golang.org/x/crypto/blake2b/blake2b_amd64.s +++ /dev/null @@ -1,281 +0,0 @@ -// Copyright 2016 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build amd64,!gccgo,!appengine - -#include "textflag.h" - -DATA ·iv0<>+0x00(SB)/8, $0x6a09e667f3bcc908 -DATA ·iv0<>+0x08(SB)/8, $0xbb67ae8584caa73b -GLOBL ·iv0<>(SB), (NOPTR+RODATA), $16 - -DATA ·iv1<>+0x00(SB)/8, $0x3c6ef372fe94f82b -DATA ·iv1<>+0x08(SB)/8, $0xa54ff53a5f1d36f1 -GLOBL ·iv1<>(SB), (NOPTR+RODATA), $16 - -DATA ·iv2<>+0x00(SB)/8, $0x510e527fade682d1 -DATA ·iv2<>+0x08(SB)/8, $0x9b05688c2b3e6c1f -GLOBL ·iv2<>(SB), (NOPTR+RODATA), $16 - -DATA ·iv3<>+0x00(SB)/8, $0x1f83d9abfb41bd6b -DATA ·iv3<>+0x08(SB)/8, $0x5be0cd19137e2179 -GLOBL ·iv3<>(SB), (NOPTR+RODATA), $16 - -DATA ·c40<>+0x00(SB)/8, $0x0201000706050403 -DATA ·c40<>+0x08(SB)/8, $0x0a09080f0e0d0c0b -GLOBL ·c40<>(SB), (NOPTR+RODATA), $16 - -DATA ·c48<>+0x00(SB)/8, $0x0100070605040302 -DATA ·c48<>+0x08(SB)/8, $0x09080f0e0d0c0b0a -GLOBL ·c48<>(SB), (NOPTR+RODATA), $16 - -#define SHUFFLE(v2, v3, v4, v5, v6, v7, t1, t2) \ - MOVO v4, t1; \ - MOVO v5, v4; \ - MOVO t1, v5; \ - MOVO v6, t1; \ - PUNPCKLQDQ v6, t2; \ - PUNPCKHQDQ v7, v6; \ - PUNPCKHQDQ t2, v6; \ - PUNPCKLQDQ v7, t2; \ - MOVO t1, v7; \ - MOVO v2, t1; \ - PUNPCKHQDQ t2, v7; \ - PUNPCKLQDQ v3, t2; \ - PUNPCKHQDQ t2, v2; \ - PUNPCKLQDQ t1, t2; \ - PUNPCKHQDQ t2, v3 - -#define SHUFFLE_INV(v2, v3, v4, v5, v6, v7, t1, t2) \ - MOVO v4, t1; \ - MOVO v5, v4; \ - MOVO t1, v5; \ - MOVO v2, t1; \ - PUNPCKLQDQ v2, t2; \ - PUNPCKHQDQ v3, v2; \ - PUNPCKHQDQ t2, v2; \ - PUNPCKLQDQ v3, t2; \ - MOVO t1, v3; \ - MOVO v6, t1; \ - PUNPCKHQDQ t2, v3; \ - PUNPCKLQDQ v7, t2; \ - PUNPCKHQDQ t2, v6; \ - PUNPCKLQDQ t1, t2; \ - PUNPCKHQDQ t2, v7 - -#define HALF_ROUND(v0, v1, v2, v3, v4, v5, v6, v7, m0, m1, m2, m3, t0, c40, c48) \ - PADDQ m0, v0; \ - PADDQ m1, v1; \ - PADDQ v2, v0; \ - PADDQ v3, v1; \ - PXOR v0, v6; \ - PXOR v1, v7; \ - PSHUFD $0xB1, v6, v6; \ - PSHUFD $0xB1, v7, v7; \ - PADDQ v6, v4; \ - PADDQ v7, v5; \ - PXOR v4, v2; \ - PXOR v5, v3; \ - PSHUFB c40, v2; \ - PSHUFB c40, v3; \ - PADDQ m2, v0; \ - PADDQ m3, v1; \ - PADDQ v2, v0; \ - PADDQ v3, v1; \ - PXOR v0, v6; \ - PXOR v1, v7; \ - PSHUFB c48, v6; \ - PSHUFB c48, v7; \ - PADDQ v6, v4; \ - PADDQ v7, v5; \ - PXOR v4, v2; \ - PXOR v5, v3; \ - MOVOU v2, t0; \ - PADDQ v2, t0; \ - PSRLQ $63, v2; \ - PXOR t0, v2; \ - MOVOU v3, t0; \ - PADDQ v3, t0; \ - PSRLQ $63, v3; \ - PXOR t0, v3 - -#define LOAD_MSG(m0, m1, m2, m3, src, i0, i1, i2, i3, i4, i5, i6, i7) \ - MOVQ i0*8(src), m0; \ - PINSRQ $1, i1*8(src), m0; \ - MOVQ i2*8(src), m1; \ - PINSRQ $1, i3*8(src), m1; \ - MOVQ i4*8(src), m2; \ - PINSRQ $1, i5*8(src), m2; \ - MOVQ i6*8(src), m3; \ - PINSRQ $1, i7*8(src), m3 - -// func hashBlocksSSE4(h *[8]uint64, c *[2]uint64, flag uint64, blocks []byte) -TEXT ·hashBlocksSSE4(SB), 4, $288-48 // frame size = 272 + 16 byte alignment - MOVQ h+0(FP), AX - MOVQ c+8(FP), BX - MOVQ flag+16(FP), CX - MOVQ blocks_base+24(FP), SI - MOVQ blocks_len+32(FP), DI - - MOVQ SP, BP - MOVQ SP, R9 - ADDQ $15, R9 - ANDQ $~15, R9 - MOVQ R9, SP - - MOVOU ·iv3<>(SB), X0 - MOVO X0, 0(SP) - XORQ CX, 0(SP) // 0(SP) = ·iv3 ^ (CX || 0) - - MOVOU ·c40<>(SB), X13 - MOVOU ·c48<>(SB), X14 - - MOVOU 0(AX), X12 - MOVOU 16(AX), X15 - - MOVQ 0(BX), R8 - MOVQ 8(BX), R9 - -loop: - ADDQ $128, R8 - CMPQ R8, $128 - JGE noinc - INCQ R9 - -noinc: - MOVQ R8, X8 - PINSRQ $1, R9, X8 - - MOVO X12, X0 - MOVO X15, X1 - MOVOU 32(AX), X2 - MOVOU 48(AX), X3 - MOVOU ·iv0<>(SB), X4 - MOVOU ·iv1<>(SB), X5 - MOVOU ·iv2<>(SB), X6 - - PXOR X8, X6 - MOVO 0(SP), X7 - - LOAD_MSG(X8, X9, X10, X11, SI, 0, 2, 4, 6, 1, 3, 5, 7) - MOVO X8, 16(SP) - MOVO X9, 32(SP) - MOVO X10, 48(SP) - MOVO X11, 64(SP) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE(X2, X3, X4, X5, X6, X7, X8, X9) - LOAD_MSG(X8, X9, X10, X11, SI, 8, 10, 12, 14, 9, 11, 13, 15) - MOVO X8, 80(SP) - MOVO X9, 96(SP) - MOVO X10, 112(SP) - MOVO X11, 128(SP) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE_INV(X2, X3, X4, X5, X6, X7, X8, X9) - - LOAD_MSG(X8, X9, X10, X11, SI, 14, 4, 9, 13, 10, 8, 15, 6) - MOVO X8, 144(SP) - MOVO X9, 160(SP) - MOVO X10, 176(SP) - MOVO X11, 192(SP) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE(X2, X3, X4, X5, X6, X7, X8, X9) - LOAD_MSG(X8, X9, X10, X11, SI, 1, 0, 11, 5, 12, 2, 7, 3) - MOVO X8, 208(SP) - MOVO X9, 224(SP) - MOVO X10, 240(SP) - MOVO X11, 256(SP) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE_INV(X2, X3, X4, X5, X6, X7, X8, X9) - - LOAD_MSG(X8, X9, X10, X11, SI, 11, 12, 5, 15, 8, 0, 2, 13) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE(X2, X3, X4, X5, X6, X7, X8, X9) - LOAD_MSG(X8, X9, X10, X11, SI, 10, 3, 7, 9, 14, 6, 1, 4) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE_INV(X2, X3, X4, X5, X6, X7, X8, X9) - - LOAD_MSG(X8, X9, X10, X11, SI, 7, 3, 13, 11, 9, 1, 12, 14) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE(X2, X3, X4, X5, X6, X7, X8, X9) - LOAD_MSG(X8, X9, X10, X11, SI, 2, 5, 4, 15, 6, 10, 0, 8) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE_INV(X2, X3, X4, X5, X6, X7, X8, X9) - - LOAD_MSG(X8, X9, X10, X11, SI, 9, 5, 2, 10, 0, 7, 4, 15) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE(X2, X3, X4, X5, X6, X7, X8, X9) - LOAD_MSG(X8, X9, X10, X11, SI, 14, 11, 6, 3, 1, 12, 8, 13) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE_INV(X2, X3, X4, X5, X6, X7, X8, X9) - - LOAD_MSG(X8, X9, X10, X11, SI, 2, 6, 0, 8, 12, 10, 11, 3) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE(X2, X3, X4, X5, X6, X7, X8, X9) - LOAD_MSG(X8, X9, X10, X11, SI, 4, 7, 15, 1, 13, 5, 14, 9) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE_INV(X2, X3, X4, X5, X6, X7, X8, X9) - - LOAD_MSG(X8, X9, X10, X11, SI, 12, 1, 14, 4, 5, 15, 13, 10) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE(X2, X3, X4, X5, X6, X7, X8, X9) - LOAD_MSG(X8, X9, X10, X11, SI, 0, 6, 9, 8, 7, 3, 2, 11) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE_INV(X2, X3, X4, X5, X6, X7, X8, X9) - - LOAD_MSG(X8, X9, X10, X11, SI, 13, 7, 12, 3, 11, 14, 1, 9) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE(X2, X3, X4, X5, X6, X7, X8, X9) - LOAD_MSG(X8, X9, X10, X11, SI, 5, 15, 8, 2, 0, 4, 6, 10) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE_INV(X2, X3, X4, X5, X6, X7, X8, X9) - - LOAD_MSG(X8, X9, X10, X11, SI, 6, 14, 11, 0, 15, 9, 3, 8) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE(X2, X3, X4, X5, X6, X7, X8, X9) - LOAD_MSG(X8, X9, X10, X11, SI, 12, 13, 1, 10, 2, 7, 4, 5) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE_INV(X2, X3, X4, X5, X6, X7, X8, X9) - - LOAD_MSG(X8, X9, X10, X11, SI, 10, 8, 7, 1, 2, 4, 6, 5) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE(X2, X3, X4, X5, X6, X7, X8, X9) - LOAD_MSG(X8, X9, X10, X11, SI, 15, 9, 3, 13, 11, 14, 12, 0) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, X8, X9, X10, X11, X11, X13, X14) - SHUFFLE_INV(X2, X3, X4, X5, X6, X7, X8, X9) - - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, 16(SP), 32(SP), 48(SP), 64(SP), X11, X13, X14) - SHUFFLE(X2, X3, X4, X5, X6, X7, X8, X9) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, 80(SP), 96(SP), 112(SP), 128(SP), X11, X13, X14) - SHUFFLE_INV(X2, X3, X4, X5, X6, X7, X8, X9) - - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, 144(SP), 160(SP), 176(SP), 192(SP), X11, X13, X14) - SHUFFLE(X2, X3, X4, X5, X6, X7, X8, X9) - HALF_ROUND(X0, X1, X2, X3, X4, X5, X6, X7, 208(SP), 224(SP), 240(SP), 256(SP), X11, X13, X14) - SHUFFLE_INV(X2, X3, X4, X5, X6, X7, X8, X9) - - MOVOU 32(AX), X10 - MOVOU 48(AX), X11 - PXOR X0, X12 - PXOR X1, X15 - PXOR X2, X10 - PXOR X3, X11 - PXOR X4, X12 - PXOR X5, X15 - PXOR X6, X10 - PXOR X7, X11 - MOVOU X10, 32(AX) - MOVOU X11, 48(AX) - - LEAQ 128(SI), SI - SUBQ $128, DI - JNE loop - - MOVOU X12, 0(AX) - MOVOU X15, 16(AX) - - MOVQ R8, 0(BX) - MOVQ R9, 8(BX) - - MOVQ BP, SP - RET diff --git a/vendor/golang.org/x/crypto/blake2b/blake2b_generic.go b/vendor/golang.org/x/crypto/blake2b/blake2b_generic.go deleted file mode 100644 index 4bd2abc9..00000000 --- a/vendor/golang.org/x/crypto/blake2b/blake2b_generic.go +++ /dev/null @@ -1,179 +0,0 @@ -// Copyright 2016 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package blake2b - -import "encoding/binary" - -// the precomputed values for BLAKE2b -// there are 12 16-byte arrays - one for each round -// the entries are calculated from the sigma constants. -var precomputed = [12][16]byte{ - {0, 2, 4, 6, 1, 3, 5, 7, 8, 10, 12, 14, 9, 11, 13, 15}, - {14, 4, 9, 13, 10, 8, 15, 6, 1, 0, 11, 5, 12, 2, 7, 3}, - {11, 12, 5, 15, 8, 0, 2, 13, 10, 3, 7, 9, 14, 6, 1, 4}, - {7, 3, 13, 11, 9, 1, 12, 14, 2, 5, 4, 15, 6, 10, 0, 8}, - {9, 5, 2, 10, 0, 7, 4, 15, 14, 11, 6, 3, 1, 12, 8, 13}, - {2, 6, 0, 8, 12, 10, 11, 3, 4, 7, 15, 1, 13, 5, 14, 9}, - {12, 1, 14, 4, 5, 15, 13, 10, 0, 6, 9, 8, 7, 3, 2, 11}, - {13, 7, 12, 3, 11, 14, 1, 9, 5, 15, 8, 2, 0, 4, 6, 10}, - {6, 14, 11, 0, 15, 9, 3, 8, 12, 13, 1, 10, 2, 7, 4, 5}, - {10, 8, 7, 1, 2, 4, 6, 5, 15, 9, 3, 13, 11, 14, 12, 0}, - {0, 2, 4, 6, 1, 3, 5, 7, 8, 10, 12, 14, 9, 11, 13, 15}, // equal to the first - {14, 4, 9, 13, 10, 8, 15, 6, 1, 0, 11, 5, 12, 2, 7, 3}, // equal to the second -} - -func hashBlocksGeneric(h *[8]uint64, c *[2]uint64, flag uint64, blocks []byte) { - var m [16]uint64 - c0, c1 := c[0], c[1] - - for i := 0; i < len(blocks); { - c0 += BlockSize - if c0 < BlockSize { - c1++ - } - - v0, v1, v2, v3, v4, v5, v6, v7 := h[0], h[1], h[2], h[3], h[4], h[5], h[6], h[7] - v8, v9, v10, v11, v12, v13, v14, v15 := iv[0], iv[1], iv[2], iv[3], iv[4], iv[5], iv[6], iv[7] - v12 ^= c0 - v13 ^= c1 - v14 ^= flag - - for j := range m { - m[j] = binary.LittleEndian.Uint64(blocks[i:]) - i += 8 - } - - for j := range precomputed { - s := &(precomputed[j]) - - v0 += m[s[0]] - v0 += v4 - v12 ^= v0 - v12 = v12<<(64-32) | v12>>32 - v8 += v12 - v4 ^= v8 - v4 = v4<<(64-24) | v4>>24 - v1 += m[s[1]] - v1 += v5 - v13 ^= v1 - v13 = v13<<(64-32) | v13>>32 - v9 += v13 - v5 ^= v9 - v5 = v5<<(64-24) | v5>>24 - v2 += m[s[2]] - v2 += v6 - v14 ^= v2 - v14 = v14<<(64-32) | v14>>32 - v10 += v14 - v6 ^= v10 - v6 = v6<<(64-24) | v6>>24 - v3 += m[s[3]] - v3 += v7 - v15 ^= v3 - v15 = v15<<(64-32) | v15>>32 - v11 += v15 - v7 ^= v11 - v7 = v7<<(64-24) | v7>>24 - - v0 += m[s[4]] - v0 += v4 - v12 ^= v0 - v12 = v12<<(64-16) | v12>>16 - v8 += v12 - v4 ^= v8 - v4 = v4<<(64-63) | v4>>63 - v1 += m[s[5]] - v1 += v5 - v13 ^= v1 - v13 = v13<<(64-16) | v13>>16 - v9 += v13 - v5 ^= v9 - v5 = v5<<(64-63) | v5>>63 - v2 += m[s[6]] - v2 += v6 - v14 ^= v2 - v14 = v14<<(64-16) | v14>>16 - v10 += v14 - v6 ^= v10 - v6 = v6<<(64-63) | v6>>63 - v3 += m[s[7]] - v3 += v7 - v15 ^= v3 - v15 = v15<<(64-16) | v15>>16 - v11 += v15 - v7 ^= v11 - v7 = v7<<(64-63) | v7>>63 - - v0 += m[s[8]] - v0 += v5 - v15 ^= v0 - v15 = v15<<(64-32) | v15>>32 - v10 += v15 - v5 ^= v10 - v5 = v5<<(64-24) | v5>>24 - v1 += m[s[9]] - v1 += v6 - v12 ^= v1 - v12 = v12<<(64-32) | v12>>32 - v11 += v12 - v6 ^= v11 - v6 = v6<<(64-24) | v6>>24 - v2 += m[s[10]] - v2 += v7 - v13 ^= v2 - v13 = v13<<(64-32) | v13>>32 - v8 += v13 - v7 ^= v8 - v7 = v7<<(64-24) | v7>>24 - v3 += m[s[11]] - v3 += v4 - v14 ^= v3 - v14 = v14<<(64-32) | v14>>32 - v9 += v14 - v4 ^= v9 - v4 = v4<<(64-24) | v4>>24 - - v0 += m[s[12]] - v0 += v5 - v15 ^= v0 - v15 = v15<<(64-16) | v15>>16 - v10 += v15 - v5 ^= v10 - v5 = v5<<(64-63) | v5>>63 - v1 += m[s[13]] - v1 += v6 - v12 ^= v1 - v12 = v12<<(64-16) | v12>>16 - v11 += v12 - v6 ^= v11 - v6 = v6<<(64-63) | v6>>63 - v2 += m[s[14]] - v2 += v7 - v13 ^= v2 - v13 = v13<<(64-16) | v13>>16 - v8 += v13 - v7 ^= v8 - v7 = v7<<(64-63) | v7>>63 - v3 += m[s[15]] - v3 += v4 - v14 ^= v3 - v14 = v14<<(64-16) | v14>>16 - v9 += v14 - v4 ^= v9 - v4 = v4<<(64-63) | v4>>63 - - } - - h[0] ^= v0 ^ v8 - h[1] ^= v1 ^ v9 - h[2] ^= v2 ^ v10 - h[3] ^= v3 ^ v11 - h[4] ^= v4 ^ v12 - h[5] ^= v5 ^ v13 - h[6] ^= v6 ^ v14 - h[7] ^= v7 ^ v15 - } - c[0], c[1] = c0, c1 -} diff --git a/vendor/golang.org/x/crypto/blake2b/blake2b_ref.go b/vendor/golang.org/x/crypto/blake2b/blake2b_ref.go deleted file mode 100644 index da156a1b..00000000 --- a/vendor/golang.org/x/crypto/blake2b/blake2b_ref.go +++ /dev/null @@ -1,11 +0,0 @@ -// Copyright 2016 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build !amd64 appengine gccgo - -package blake2b - -func hashBlocks(h *[8]uint64, c *[2]uint64, flag uint64, blocks []byte) { - hashBlocksGeneric(h, c, flag, blocks) -} diff --git a/vendor/golang.org/x/crypto/blake2b/blake2x.go b/vendor/golang.org/x/crypto/blake2b/blake2x.go deleted file mode 100644 index c814496a..00000000 --- a/vendor/golang.org/x/crypto/blake2b/blake2x.go +++ /dev/null @@ -1,177 +0,0 @@ -// Copyright 2017 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package blake2b - -import ( - "encoding/binary" - "errors" - "io" -) - -// XOF defines the interface to hash functions that -// support arbitrary-length output. -type XOF interface { - // Write absorbs more data into the hash's state. It panics if called - // after Read. - io.Writer - - // Read reads more output from the hash. It returns io.EOF if the limit - // has been reached. - io.Reader - - // Clone returns a copy of the XOF in its current state. - Clone() XOF - - // Reset resets the XOF to its initial state. - Reset() -} - -// OutputLengthUnknown can be used as the size argument to NewXOF to indicate -// the the length of the output is not known in advance. -const OutputLengthUnknown = 0 - -// magicUnknownOutputLength is a magic value for the output size that indicates -// an unknown number of output bytes. -const magicUnknownOutputLength = (1 << 32) - 1 - -// maxOutputLength is the absolute maximum number of bytes to produce when the -// number of output bytes is unknown. -const maxOutputLength = (1 << 32) * 64 - -// NewXOF creates a new variable-output-length hash. The hash either produce a -// known number of bytes (1 <= size < 2**32-1), or an unknown number of bytes -// (size == OutputLengthUnknown). In the latter case, an absolute limit of -// 256GiB applies. -// -// A non-nil key turns the hash into a MAC. The key must between -// zero and 32 bytes long. -func NewXOF(size uint32, key []byte) (XOF, error) { - if len(key) > Size { - return nil, errKeySize - } - if size == magicUnknownOutputLength { - // 2^32-1 indicates an unknown number of bytes and thus isn't a - // valid length. - return nil, errors.New("blake2b: XOF length too large") - } - if size == OutputLengthUnknown { - size = magicUnknownOutputLength - } - x := &xof{ - d: digest{ - size: Size, - keyLen: len(key), - }, - length: size, - } - copy(x.d.key[:], key) - x.Reset() - return x, nil -} - -type xof struct { - d digest - length uint32 - remaining uint64 - cfg, root, block [Size]byte - offset int - nodeOffset uint32 - readMode bool -} - -func (x *xof) Write(p []byte) (n int, err error) { - if x.readMode { - panic("blake2b: write to XOF after read") - } - return x.d.Write(p) -} - -func (x *xof) Clone() XOF { - clone := *x - return &clone -} - -func (x *xof) Reset() { - x.cfg[0] = byte(Size) - binary.LittleEndian.PutUint32(x.cfg[4:], uint32(Size)) // leaf length - binary.LittleEndian.PutUint32(x.cfg[12:], x.length) // XOF length - x.cfg[17] = byte(Size) // inner hash size - - x.d.Reset() - x.d.h[1] ^= uint64(x.length) << 32 - - x.remaining = uint64(x.length) - if x.remaining == magicUnknownOutputLength { - x.remaining = maxOutputLength - } - x.offset, x.nodeOffset = 0, 0 - x.readMode = false -} - -func (x *xof) Read(p []byte) (n int, err error) { - if !x.readMode { - x.d.finalize(&x.root) - x.readMode = true - } - - if x.remaining == 0 { - return 0, io.EOF - } - - n = len(p) - if uint64(n) > x.remaining { - n = int(x.remaining) - p = p[:n] - } - - if x.offset > 0 { - blockRemaining := Size - x.offset - if n < blockRemaining { - x.offset += copy(p, x.block[x.offset:]) - x.remaining -= uint64(n) - return - } - copy(p, x.block[x.offset:]) - p = p[blockRemaining:] - x.offset = 0 - x.remaining -= uint64(blockRemaining) - } - - for len(p) >= Size { - binary.LittleEndian.PutUint32(x.cfg[8:], x.nodeOffset) - x.nodeOffset++ - - x.d.initConfig(&x.cfg) - x.d.Write(x.root[:]) - x.d.finalize(&x.block) - - copy(p, x.block[:]) - p = p[Size:] - x.remaining -= uint64(Size) - } - - if todo := len(p); todo > 0 { - if x.remaining < uint64(Size) { - x.cfg[0] = byte(x.remaining) - } - binary.LittleEndian.PutUint32(x.cfg[8:], x.nodeOffset) - x.nodeOffset++ - - x.d.initConfig(&x.cfg) - x.d.Write(x.root[:]) - x.d.finalize(&x.block) - - x.offset = copy(p, x.block[:todo]) - x.remaining -= uint64(todo) - } - return -} - -func (d *digest) initConfig(cfg *[Size]byte) { - d.offset, d.c[0], d.c[1] = 0, 0, 0 - for i := range d.h { - d.h[i] = iv[i] ^ binary.LittleEndian.Uint64(cfg[i*8:]) - } -} diff --git a/vendor/golang.org/x/crypto/blake2b/register.go b/vendor/golang.org/x/crypto/blake2b/register.go deleted file mode 100644 index efd689af..00000000 --- a/vendor/golang.org/x/crypto/blake2b/register.go +++ /dev/null @@ -1,32 +0,0 @@ -// Copyright 2017 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build go1.9 - -package blake2b - -import ( - "crypto" - "hash" -) - -func init() { - newHash256 := func() hash.Hash { - h, _ := New256(nil) - return h - } - newHash384 := func() hash.Hash { - h, _ := New384(nil) - return h - } - - newHash512 := func() hash.Hash { - h, _ := New512(nil) - return h - } - - crypto.RegisterHash(crypto.BLAKE2b_256, newHash256) - crypto.RegisterHash(crypto.BLAKE2b_384, newHash384) - crypto.RegisterHash(crypto.BLAKE2b_512, newHash512) -} diff --git a/vendor/golang.org/x/crypto/hkdf/hkdf.go b/vendor/golang.org/x/crypto/hkdf/hkdf.go deleted file mode 100644 index 5bc24635..00000000 --- a/vendor/golang.org/x/crypto/hkdf/hkdf.go +++ /dev/null @@ -1,75 +0,0 @@ -// Copyright 2014 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package hkdf implements the HMAC-based Extract-and-Expand Key Derivation -// Function (HKDF) as defined in RFC 5869. -// -// HKDF is a cryptographic key derivation function (KDF) with the goal of -// expanding limited input keying material into one or more cryptographically -// strong secret keys. -// -// RFC 5869: https://tools.ietf.org/html/rfc5869 -package hkdf // import "golang.org/x/crypto/hkdf" - -import ( - "crypto/hmac" - "errors" - "hash" - "io" -) - -type hkdf struct { - expander hash.Hash - size int - - info []byte - counter byte - - prev []byte - cache []byte -} - -func (f *hkdf) Read(p []byte) (int, error) { - // Check whether enough data can be generated - need := len(p) - remains := len(f.cache) + int(255-f.counter+1)*f.size - if remains < need { - return 0, errors.New("hkdf: entropy limit reached") - } - // Read from the cache, if enough data is present - n := copy(p, f.cache) - p = p[n:] - - // Fill the buffer - for len(p) > 0 { - f.expander.Reset() - f.expander.Write(f.prev) - f.expander.Write(f.info) - f.expander.Write([]byte{f.counter}) - f.prev = f.expander.Sum(f.prev[:0]) - f.counter++ - - // Copy the new batch into p - f.cache = f.prev - n = copy(p, f.cache) - p = p[n:] - } - // Save leftovers for next run - f.cache = f.cache[n:] - - return need, nil -} - -// New returns a new HKDF using the given hash, the secret keying material to expand -// and optional salt and info fields. -func New(hash func() hash.Hash, secret, salt, info []byte) io.Reader { - if salt == nil { - salt = make([]byte, hash().Size()) - } - extractor := hmac.New(hash, salt) - extractor.Write(secret) - prk := extractor.Sum(nil) - - return &hkdf{hmac.New(hash, prk), extractor.Size(), info, 1, nil, nil} -} diff --git a/vendor/golang.org/x/crypto/ssh/terminal/terminal.go b/vendor/golang.org/x/crypto/ssh/terminal/terminal.go deleted file mode 100644 index 9a887598..00000000 --- a/vendor/golang.org/x/crypto/ssh/terminal/terminal.go +++ /dev/null @@ -1,951 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package terminal - -import ( - "bytes" - "io" - "sync" - "unicode/utf8" -) - -// EscapeCodes contains escape sequences that can be written to the terminal in -// order to achieve different styles of text. -type EscapeCodes struct { - // Foreground colors - Black, Red, Green, Yellow, Blue, Magenta, Cyan, White []byte - - // Reset all attributes - Reset []byte -} - -var vt100EscapeCodes = EscapeCodes{ - Black: []byte{keyEscape, '[', '3', '0', 'm'}, - Red: []byte{keyEscape, '[', '3', '1', 'm'}, - Green: []byte{keyEscape, '[', '3', '2', 'm'}, - Yellow: []byte{keyEscape, '[', '3', '3', 'm'}, - Blue: []byte{keyEscape, '[', '3', '4', 'm'}, - Magenta: []byte{keyEscape, '[', '3', '5', 'm'}, - Cyan: []byte{keyEscape, '[', '3', '6', 'm'}, - White: []byte{keyEscape, '[', '3', '7', 'm'}, - - Reset: []byte{keyEscape, '[', '0', 'm'}, -} - -// Terminal contains the state for running a VT100 terminal that is capable of -// reading lines of input. -type Terminal struct { - // AutoCompleteCallback, if non-null, is called for each keypress with - // the full input line and the current position of the cursor (in - // bytes, as an index into |line|). If it returns ok=false, the key - // press is processed normally. Otherwise it returns a replacement line - // and the new cursor position. - AutoCompleteCallback func(line string, pos int, key rune) (newLine string, newPos int, ok bool) - - // Escape contains a pointer to the escape codes for this terminal. - // It's always a valid pointer, although the escape codes themselves - // may be empty if the terminal doesn't support them. - Escape *EscapeCodes - - // lock protects the terminal and the state in this object from - // concurrent processing of a key press and a Write() call. - lock sync.Mutex - - c io.ReadWriter - prompt []rune - - // line is the current line being entered. - line []rune - // pos is the logical position of the cursor in line - pos int - // echo is true if local echo is enabled - echo bool - // pasteActive is true iff there is a bracketed paste operation in - // progress. - pasteActive bool - - // cursorX contains the current X value of the cursor where the left - // edge is 0. cursorY contains the row number where the first row of - // the current line is 0. - cursorX, cursorY int - // maxLine is the greatest value of cursorY so far. - maxLine int - - termWidth, termHeight int - - // outBuf contains the terminal data to be sent. - outBuf []byte - // remainder contains the remainder of any partial key sequences after - // a read. It aliases into inBuf. - remainder []byte - inBuf [256]byte - - // history contains previously entered commands so that they can be - // accessed with the up and down keys. - history stRingBuffer - // historyIndex stores the currently accessed history entry, where zero - // means the immediately previous entry. - historyIndex int - // When navigating up and down the history it's possible to return to - // the incomplete, initial line. That value is stored in - // historyPending. - historyPending string -} - -// NewTerminal runs a VT100 terminal on the given ReadWriter. If the ReadWriter is -// a local terminal, that terminal must first have been put into raw mode. -// prompt is a string that is written at the start of each input line (i.e. -// "> "). -func NewTerminal(c io.ReadWriter, prompt string) *Terminal { - return &Terminal{ - Escape: &vt100EscapeCodes, - c: c, - prompt: []rune(prompt), - termWidth: 80, - termHeight: 24, - echo: true, - historyIndex: -1, - } -} - -const ( - keyCtrlD = 4 - keyCtrlU = 21 - keyEnter = '\r' - keyEscape = 27 - keyBackspace = 127 - keyUnknown = 0xd800 /* UTF-16 surrogate area */ + iota - keyUp - keyDown - keyLeft - keyRight - keyAltLeft - keyAltRight - keyHome - keyEnd - keyDeleteWord - keyDeleteLine - keyClearScreen - keyPasteStart - keyPasteEnd -) - -var ( - crlf = []byte{'\r', '\n'} - pasteStart = []byte{keyEscape, '[', '2', '0', '0', '~'} - pasteEnd = []byte{keyEscape, '[', '2', '0', '1', '~'} -) - -// bytesToKey tries to parse a key sequence from b. If successful, it returns -// the key and the remainder of the input. Otherwise it returns utf8.RuneError. -func bytesToKey(b []byte, pasteActive bool) (rune, []byte) { - if len(b) == 0 { - return utf8.RuneError, nil - } - - if !pasteActive { - switch b[0] { - case 1: // ^A - return keyHome, b[1:] - case 5: // ^E - return keyEnd, b[1:] - case 8: // ^H - return keyBackspace, b[1:] - case 11: // ^K - return keyDeleteLine, b[1:] - case 12: // ^L - return keyClearScreen, b[1:] - case 23: // ^W - return keyDeleteWord, b[1:] - } - } - - if b[0] != keyEscape { - if !utf8.FullRune(b) { - return utf8.RuneError, b - } - r, l := utf8.DecodeRune(b) - return r, b[l:] - } - - if !pasteActive && len(b) >= 3 && b[0] == keyEscape && b[1] == '[' { - switch b[2] { - case 'A': - return keyUp, b[3:] - case 'B': - return keyDown, b[3:] - case 'C': - return keyRight, b[3:] - case 'D': - return keyLeft, b[3:] - case 'H': - return keyHome, b[3:] - case 'F': - return keyEnd, b[3:] - } - } - - if !pasteActive && len(b) >= 6 && b[0] == keyEscape && b[1] == '[' && b[2] == '1' && b[3] == ';' && b[4] == '3' { - switch b[5] { - case 'C': - return keyAltRight, b[6:] - case 'D': - return keyAltLeft, b[6:] - } - } - - if !pasteActive && len(b) >= 6 && bytes.Equal(b[:6], pasteStart) { - return keyPasteStart, b[6:] - } - - if pasteActive && len(b) >= 6 && bytes.Equal(b[:6], pasteEnd) { - return keyPasteEnd, b[6:] - } - - // If we get here then we have a key that we don't recognise, or a - // partial sequence. It's not clear how one should find the end of a - // sequence without knowing them all, but it seems that [a-zA-Z~] only - // appears at the end of a sequence. - for i, c := range b[0:] { - if c >= 'a' && c <= 'z' || c >= 'A' && c <= 'Z' || c == '~' { - return keyUnknown, b[i+1:] - } - } - - return utf8.RuneError, b -} - -// queue appends data to the end of t.outBuf -func (t *Terminal) queue(data []rune) { - t.outBuf = append(t.outBuf, []byte(string(data))...) -} - -var eraseUnderCursor = []rune{' ', keyEscape, '[', 'D'} -var space = []rune{' '} - -func isPrintable(key rune) bool { - isInSurrogateArea := key >= 0xd800 && key <= 0xdbff - return key >= 32 && !isInSurrogateArea -} - -// moveCursorToPos appends data to t.outBuf which will move the cursor to the -// given, logical position in the text. -func (t *Terminal) moveCursorToPos(pos int) { - if !t.echo { - return - } - - x := visualLength(t.prompt) + pos - y := x / t.termWidth - x = x % t.termWidth - - up := 0 - if y < t.cursorY { - up = t.cursorY - y - } - - down := 0 - if y > t.cursorY { - down = y - t.cursorY - } - - left := 0 - if x < t.cursorX { - left = t.cursorX - x - } - - right := 0 - if x > t.cursorX { - right = x - t.cursorX - } - - t.cursorX = x - t.cursorY = y - t.move(up, down, left, right) -} - -func (t *Terminal) move(up, down, left, right int) { - movement := make([]rune, 3*(up+down+left+right)) - m := movement - for i := 0; i < up; i++ { - m[0] = keyEscape - m[1] = '[' - m[2] = 'A' - m = m[3:] - } - for i := 0; i < down; i++ { - m[0] = keyEscape - m[1] = '[' - m[2] = 'B' - m = m[3:] - } - for i := 0; i < left; i++ { - m[0] = keyEscape - m[1] = '[' - m[2] = 'D' - m = m[3:] - } - for i := 0; i < right; i++ { - m[0] = keyEscape - m[1] = '[' - m[2] = 'C' - m = m[3:] - } - - t.queue(movement) -} - -func (t *Terminal) clearLineToRight() { - op := []rune{keyEscape, '[', 'K'} - t.queue(op) -} - -const maxLineLength = 4096 - -func (t *Terminal) setLine(newLine []rune, newPos int) { - if t.echo { - t.moveCursorToPos(0) - t.writeLine(newLine) - for i := len(newLine); i < len(t.line); i++ { - t.writeLine(space) - } - t.moveCursorToPos(newPos) - } - t.line = newLine - t.pos = newPos -} - -func (t *Terminal) advanceCursor(places int) { - t.cursorX += places - t.cursorY += t.cursorX / t.termWidth - if t.cursorY > t.maxLine { - t.maxLine = t.cursorY - } - t.cursorX = t.cursorX % t.termWidth - - if places > 0 && t.cursorX == 0 { - // Normally terminals will advance the current position - // when writing a character. But that doesn't happen - // for the last character in a line. However, when - // writing a character (except a new line) that causes - // a line wrap, the position will be advanced two - // places. - // - // So, if we are stopping at the end of a line, we - // need to write a newline so that our cursor can be - // advanced to the next line. - t.outBuf = append(t.outBuf, '\r', '\n') - } -} - -func (t *Terminal) eraseNPreviousChars(n int) { - if n == 0 { - return - } - - if t.pos < n { - n = t.pos - } - t.pos -= n - t.moveCursorToPos(t.pos) - - copy(t.line[t.pos:], t.line[n+t.pos:]) - t.line = t.line[:len(t.line)-n] - if t.echo { - t.writeLine(t.line[t.pos:]) - for i := 0; i < n; i++ { - t.queue(space) - } - t.advanceCursor(n) - t.moveCursorToPos(t.pos) - } -} - -// countToLeftWord returns then number of characters from the cursor to the -// start of the previous word. -func (t *Terminal) countToLeftWord() int { - if t.pos == 0 { - return 0 - } - - pos := t.pos - 1 - for pos > 0 { - if t.line[pos] != ' ' { - break - } - pos-- - } - for pos > 0 { - if t.line[pos] == ' ' { - pos++ - break - } - pos-- - } - - return t.pos - pos -} - -// countToRightWord returns then number of characters from the cursor to the -// start of the next word. -func (t *Terminal) countToRightWord() int { - pos := t.pos - for pos < len(t.line) { - if t.line[pos] == ' ' { - break - } - pos++ - } - for pos < len(t.line) { - if t.line[pos] != ' ' { - break - } - pos++ - } - return pos - t.pos -} - -// visualLength returns the number of visible glyphs in s. -func visualLength(runes []rune) int { - inEscapeSeq := false - length := 0 - - for _, r := range runes { - switch { - case inEscapeSeq: - if (r >= 'a' && r <= 'z') || (r >= 'A' && r <= 'Z') { - inEscapeSeq = false - } - case r == '\x1b': - inEscapeSeq = true - default: - length++ - } - } - - return length -} - -// handleKey processes the given key and, optionally, returns a line of text -// that the user has entered. -func (t *Terminal) handleKey(key rune) (line string, ok bool) { - if t.pasteActive && key != keyEnter { - t.addKeyToLine(key) - return - } - - switch key { - case keyBackspace: - if t.pos == 0 { - return - } - t.eraseNPreviousChars(1) - case keyAltLeft: - // move left by a word. - t.pos -= t.countToLeftWord() - t.moveCursorToPos(t.pos) - case keyAltRight: - // move right by a word. - t.pos += t.countToRightWord() - t.moveCursorToPos(t.pos) - case keyLeft: - if t.pos == 0 { - return - } - t.pos-- - t.moveCursorToPos(t.pos) - case keyRight: - if t.pos == len(t.line) { - return - } - t.pos++ - t.moveCursorToPos(t.pos) - case keyHome: - if t.pos == 0 { - return - } - t.pos = 0 - t.moveCursorToPos(t.pos) - case keyEnd: - if t.pos == len(t.line) { - return - } - t.pos = len(t.line) - t.moveCursorToPos(t.pos) - case keyUp: - entry, ok := t.history.NthPreviousEntry(t.historyIndex + 1) - if !ok { - return "", false - } - if t.historyIndex == -1 { - t.historyPending = string(t.line) - } - t.historyIndex++ - runes := []rune(entry) - t.setLine(runes, len(runes)) - case keyDown: - switch t.historyIndex { - case -1: - return - case 0: - runes := []rune(t.historyPending) - t.setLine(runes, len(runes)) - t.historyIndex-- - default: - entry, ok := t.history.NthPreviousEntry(t.historyIndex - 1) - if ok { - t.historyIndex-- - runes := []rune(entry) - t.setLine(runes, len(runes)) - } - } - case keyEnter: - t.moveCursorToPos(len(t.line)) - t.queue([]rune("\r\n")) - line = string(t.line) - ok = true - t.line = t.line[:0] - t.pos = 0 - t.cursorX = 0 - t.cursorY = 0 - t.maxLine = 0 - case keyDeleteWord: - // Delete zero or more spaces and then one or more characters. - t.eraseNPreviousChars(t.countToLeftWord()) - case keyDeleteLine: - // Delete everything from the current cursor position to the - // end of line. - for i := t.pos; i < len(t.line); i++ { - t.queue(space) - t.advanceCursor(1) - } - t.line = t.line[:t.pos] - t.moveCursorToPos(t.pos) - case keyCtrlD: - // Erase the character under the current position. - // The EOF case when the line is empty is handled in - // readLine(). - if t.pos < len(t.line) { - t.pos++ - t.eraseNPreviousChars(1) - } - case keyCtrlU: - t.eraseNPreviousChars(t.pos) - case keyClearScreen: - // Erases the screen and moves the cursor to the home position. - t.queue([]rune("\x1b[2J\x1b[H")) - t.queue(t.prompt) - t.cursorX, t.cursorY = 0, 0 - t.advanceCursor(visualLength(t.prompt)) - t.setLine(t.line, t.pos) - default: - if t.AutoCompleteCallback != nil { - prefix := string(t.line[:t.pos]) - suffix := string(t.line[t.pos:]) - - t.lock.Unlock() - newLine, newPos, completeOk := t.AutoCompleteCallback(prefix+suffix, len(prefix), key) - t.lock.Lock() - - if completeOk { - t.setLine([]rune(newLine), utf8.RuneCount([]byte(newLine)[:newPos])) - return - } - } - if !isPrintable(key) { - return - } - if len(t.line) == maxLineLength { - return - } - t.addKeyToLine(key) - } - return -} - -// addKeyToLine inserts the given key at the current position in the current -// line. -func (t *Terminal) addKeyToLine(key rune) { - if len(t.line) == cap(t.line) { - newLine := make([]rune, len(t.line), 2*(1+len(t.line))) - copy(newLine, t.line) - t.line = newLine - } - t.line = t.line[:len(t.line)+1] - copy(t.line[t.pos+1:], t.line[t.pos:]) - t.line[t.pos] = key - if t.echo { - t.writeLine(t.line[t.pos:]) - } - t.pos++ - t.moveCursorToPos(t.pos) -} - -func (t *Terminal) writeLine(line []rune) { - for len(line) != 0 { - remainingOnLine := t.termWidth - t.cursorX - todo := len(line) - if todo > remainingOnLine { - todo = remainingOnLine - } - t.queue(line[:todo]) - t.advanceCursor(visualLength(line[:todo])) - line = line[todo:] - } -} - -// writeWithCRLF writes buf to w but replaces all occurrences of \n with \r\n. -func writeWithCRLF(w io.Writer, buf []byte) (n int, err error) { - for len(buf) > 0 { - i := bytes.IndexByte(buf, '\n') - todo := len(buf) - if i >= 0 { - todo = i - } - - var nn int - nn, err = w.Write(buf[:todo]) - n += nn - if err != nil { - return n, err - } - buf = buf[todo:] - - if i >= 0 { - if _, err = w.Write(crlf); err != nil { - return n, err - } - n++ - buf = buf[1:] - } - } - - return n, nil -} - -func (t *Terminal) Write(buf []byte) (n int, err error) { - t.lock.Lock() - defer t.lock.Unlock() - - if t.cursorX == 0 && t.cursorY == 0 { - // This is the easy case: there's nothing on the screen that we - // have to move out of the way. - return writeWithCRLF(t.c, buf) - } - - // We have a prompt and possibly user input on the screen. We - // have to clear it first. - t.move(0 /* up */, 0 /* down */, t.cursorX /* left */, 0 /* right */) - t.cursorX = 0 - t.clearLineToRight() - - for t.cursorY > 0 { - t.move(1 /* up */, 0, 0, 0) - t.cursorY-- - t.clearLineToRight() - } - - if _, err = t.c.Write(t.outBuf); err != nil { - return - } - t.outBuf = t.outBuf[:0] - - if n, err = writeWithCRLF(t.c, buf); err != nil { - return - } - - t.writeLine(t.prompt) - if t.echo { - t.writeLine(t.line) - } - - t.moveCursorToPos(t.pos) - - if _, err = t.c.Write(t.outBuf); err != nil { - return - } - t.outBuf = t.outBuf[:0] - return -} - -// ReadPassword temporarily changes the prompt and reads a password, without -// echo, from the terminal. -func (t *Terminal) ReadPassword(prompt string) (line string, err error) { - t.lock.Lock() - defer t.lock.Unlock() - - oldPrompt := t.prompt - t.prompt = []rune(prompt) - t.echo = false - - line, err = t.readLine() - - t.prompt = oldPrompt - t.echo = true - - return -} - -// ReadLine returns a line of input from the terminal. -func (t *Terminal) ReadLine() (line string, err error) { - t.lock.Lock() - defer t.lock.Unlock() - - return t.readLine() -} - -func (t *Terminal) readLine() (line string, err error) { - // t.lock must be held at this point - - if t.cursorX == 0 && t.cursorY == 0 { - t.writeLine(t.prompt) - t.c.Write(t.outBuf) - t.outBuf = t.outBuf[:0] - } - - lineIsPasted := t.pasteActive - - for { - rest := t.remainder - lineOk := false - for !lineOk { - var key rune - key, rest = bytesToKey(rest, t.pasteActive) - if key == utf8.RuneError { - break - } - if !t.pasteActive { - if key == keyCtrlD { - if len(t.line) == 0 { - return "", io.EOF - } - } - if key == keyPasteStart { - t.pasteActive = true - if len(t.line) == 0 { - lineIsPasted = true - } - continue - } - } else if key == keyPasteEnd { - t.pasteActive = false - continue - } - if !t.pasteActive { - lineIsPasted = false - } - line, lineOk = t.handleKey(key) - } - if len(rest) > 0 { - n := copy(t.inBuf[:], rest) - t.remainder = t.inBuf[:n] - } else { - t.remainder = nil - } - t.c.Write(t.outBuf) - t.outBuf = t.outBuf[:0] - if lineOk { - if t.echo { - t.historyIndex = -1 - t.history.Add(line) - } - if lineIsPasted { - err = ErrPasteIndicator - } - return - } - - // t.remainder is a slice at the beginning of t.inBuf - // containing a partial key sequence - readBuf := t.inBuf[len(t.remainder):] - var n int - - t.lock.Unlock() - n, err = t.c.Read(readBuf) - t.lock.Lock() - - if err != nil { - return - } - - t.remainder = t.inBuf[:n+len(t.remainder)] - } -} - -// SetPrompt sets the prompt to be used when reading subsequent lines. -func (t *Terminal) SetPrompt(prompt string) { - t.lock.Lock() - defer t.lock.Unlock() - - t.prompt = []rune(prompt) -} - -func (t *Terminal) clearAndRepaintLinePlusNPrevious(numPrevLines int) { - // Move cursor to column zero at the start of the line. - t.move(t.cursorY, 0, t.cursorX, 0) - t.cursorX, t.cursorY = 0, 0 - t.clearLineToRight() - for t.cursorY < numPrevLines { - // Move down a line - t.move(0, 1, 0, 0) - t.cursorY++ - t.clearLineToRight() - } - // Move back to beginning. - t.move(t.cursorY, 0, 0, 0) - t.cursorX, t.cursorY = 0, 0 - - t.queue(t.prompt) - t.advanceCursor(visualLength(t.prompt)) - t.writeLine(t.line) - t.moveCursorToPos(t.pos) -} - -func (t *Terminal) SetSize(width, height int) error { - t.lock.Lock() - defer t.lock.Unlock() - - if width == 0 { - width = 1 - } - - oldWidth := t.termWidth - t.termWidth, t.termHeight = width, height - - switch { - case width == oldWidth: - // If the width didn't change then nothing else needs to be - // done. - return nil - case len(t.line) == 0 && t.cursorX == 0 && t.cursorY == 0: - // If there is nothing on current line and no prompt printed, - // just do nothing - return nil - case width < oldWidth: - // Some terminals (e.g. xterm) will truncate lines that were - // too long when shinking. Others, (e.g. gnome-terminal) will - // attempt to wrap them. For the former, repainting t.maxLine - // works great, but that behaviour goes badly wrong in the case - // of the latter because they have doubled every full line. - - // We assume that we are working on a terminal that wraps lines - // and adjust the cursor position based on every previous line - // wrapping and turning into two. This causes the prompt on - // xterms to move upwards, which isn't great, but it avoids a - // huge mess with gnome-terminal. - if t.cursorX >= t.termWidth { - t.cursorX = t.termWidth - 1 - } - t.cursorY *= 2 - t.clearAndRepaintLinePlusNPrevious(t.maxLine * 2) - case width > oldWidth: - // If the terminal expands then our position calculations will - // be wrong in the future because we think the cursor is - // |t.pos| chars into the string, but there will be a gap at - // the end of any wrapped line. - // - // But the position will actually be correct until we move, so - // we can move back to the beginning and repaint everything. - t.clearAndRepaintLinePlusNPrevious(t.maxLine) - } - - _, err := t.c.Write(t.outBuf) - t.outBuf = t.outBuf[:0] - return err -} - -type pasteIndicatorError struct{} - -func (pasteIndicatorError) Error() string { - return "terminal: ErrPasteIndicator not correctly handled" -} - -// ErrPasteIndicator may be returned from ReadLine as the error, in addition -// to valid line data. It indicates that bracketed paste mode is enabled and -// that the returned line consists only of pasted data. Programs may wish to -// interpret pasted data more literally than typed data. -var ErrPasteIndicator = pasteIndicatorError{} - -// SetBracketedPasteMode requests that the terminal bracket paste operations -// with markers. Not all terminals support this but, if it is supported, then -// enabling this mode will stop any autocomplete callback from running due to -// pastes. Additionally, any lines that are completely pasted will be returned -// from ReadLine with the error set to ErrPasteIndicator. -func (t *Terminal) SetBracketedPasteMode(on bool) { - if on { - io.WriteString(t.c, "\x1b[?2004h") - } else { - io.WriteString(t.c, "\x1b[?2004l") - } -} - -// stRingBuffer is a ring buffer of strings. -type stRingBuffer struct { - // entries contains max elements. - entries []string - max int - // head contains the index of the element most recently added to the ring. - head int - // size contains the number of elements in the ring. - size int -} - -func (s *stRingBuffer) Add(a string) { - if s.entries == nil { - const defaultNumEntries = 100 - s.entries = make([]string, defaultNumEntries) - s.max = defaultNumEntries - } - - s.head = (s.head + 1) % s.max - s.entries[s.head] = a - if s.size < s.max { - s.size++ - } -} - -// NthPreviousEntry returns the value passed to the nth previous call to Add. -// If n is zero then the immediately prior value is returned, if one, then the -// next most recent, and so on. If such an element doesn't exist then ok is -// false. -func (s *stRingBuffer) NthPreviousEntry(n int) (value string, ok bool) { - if n >= s.size { - return "", false - } - index := s.head - n - if index < 0 { - index += s.max - } - return s.entries[index], true -} - -// readPasswordLine reads from reader until it finds \n or io.EOF. -// The slice returned does not include the \n. -// readPasswordLine also ignores any \r it finds. -func readPasswordLine(reader io.Reader) ([]byte, error) { - var buf [1]byte - var ret []byte - - for { - n, err := reader.Read(buf[:]) - if n > 0 { - switch buf[0] { - case '\n': - return ret, nil - case '\r': - // remove \r from passwords on Windows - default: - ret = append(ret, buf[0]) - } - continue - } - if err != nil { - if err == io.EOF && len(ret) > 0 { - return ret, nil - } - return ret, err - } - } -} diff --git a/vendor/golang.org/x/crypto/ssh/terminal/util.go b/vendor/golang.org/x/crypto/ssh/terminal/util.go deleted file mode 100644 index 731c89a2..00000000 --- a/vendor/golang.org/x/crypto/ssh/terminal/util.go +++ /dev/null @@ -1,114 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build darwin dragonfly freebsd linux,!appengine netbsd openbsd - -// Package terminal provides support functions for dealing with terminals, as -// commonly found on UNIX systems. -// -// Putting a terminal into raw mode is the most common requirement: -// -// oldState, err := terminal.MakeRaw(0) -// if err != nil { -// panic(err) -// } -// defer terminal.Restore(0, oldState) -package terminal // import "golang.org/x/crypto/ssh/terminal" - -import ( - "golang.org/x/sys/unix" -) - -// State contains the state of a terminal. -type State struct { - termios unix.Termios -} - -// IsTerminal returns true if the given file descriptor is a terminal. -func IsTerminal(fd int) bool { - _, err := unix.IoctlGetTermios(fd, ioctlReadTermios) - return err == nil -} - -// MakeRaw put the terminal connected to the given file descriptor into raw -// mode and returns the previous state of the terminal so that it can be -// restored. -func MakeRaw(fd int) (*State, error) { - termios, err := unix.IoctlGetTermios(fd, ioctlReadTermios) - if err != nil { - return nil, err - } - - oldState := State{termios: *termios} - - // This attempts to replicate the behaviour documented for cfmakeraw in - // the termios(3) manpage. - termios.Iflag &^= unix.IGNBRK | unix.BRKINT | unix.PARMRK | unix.ISTRIP | unix.INLCR | unix.IGNCR | unix.ICRNL | unix.IXON - termios.Oflag &^= unix.OPOST - termios.Lflag &^= unix.ECHO | unix.ECHONL | unix.ICANON | unix.ISIG | unix.IEXTEN - termios.Cflag &^= unix.CSIZE | unix.PARENB - termios.Cflag |= unix.CS8 - termios.Cc[unix.VMIN] = 1 - termios.Cc[unix.VTIME] = 0 - if err := unix.IoctlSetTermios(fd, ioctlWriteTermios, termios); err != nil { - return nil, err - } - - return &oldState, nil -} - -// GetState returns the current state of a terminal which may be useful to -// restore the terminal after a signal. -func GetState(fd int) (*State, error) { - termios, err := unix.IoctlGetTermios(fd, ioctlReadTermios) - if err != nil { - return nil, err - } - - return &State{termios: *termios}, nil -} - -// Restore restores the terminal connected to the given file descriptor to a -// previous state. -func Restore(fd int, state *State) error { - return unix.IoctlSetTermios(fd, ioctlWriteTermios, &state.termios) -} - -// GetSize returns the dimensions of the given terminal. -func GetSize(fd int) (width, height int, err error) { - ws, err := unix.IoctlGetWinsize(fd, unix.TIOCGWINSZ) - if err != nil { - return -1, -1, err - } - return int(ws.Col), int(ws.Row), nil -} - -// passwordReader is an io.Reader that reads from a specific file descriptor. -type passwordReader int - -func (r passwordReader) Read(buf []byte) (int, error) { - return unix.Read(int(r), buf) -} - -// ReadPassword reads a line of input from a terminal without local echo. This -// is commonly used for inputting passwords and other sensitive data. The slice -// returned does not include the \n. -func ReadPassword(fd int) ([]byte, error) { - termios, err := unix.IoctlGetTermios(fd, ioctlReadTermios) - if err != nil { - return nil, err - } - - newState := *termios - newState.Lflag &^= unix.ECHO - newState.Lflag |= unix.ICANON | unix.ISIG - newState.Iflag |= unix.ICRNL - if err := unix.IoctlSetTermios(fd, ioctlWriteTermios, &newState); err != nil { - return nil, err - } - - defer unix.IoctlSetTermios(fd, ioctlWriteTermios, termios) - - return readPasswordLine(passwordReader(fd)) -} diff --git a/vendor/golang.org/x/crypto/ssh/terminal/util_bsd.go b/vendor/golang.org/x/crypto/ssh/terminal/util_bsd.go deleted file mode 100644 index cb23a590..00000000 --- a/vendor/golang.org/x/crypto/ssh/terminal/util_bsd.go +++ /dev/null @@ -1,12 +0,0 @@ -// Copyright 2013 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build darwin dragonfly freebsd netbsd openbsd - -package terminal - -import "golang.org/x/sys/unix" - -const ioctlReadTermios = unix.TIOCGETA -const ioctlWriteTermios = unix.TIOCSETA diff --git a/vendor/golang.org/x/crypto/ssh/terminal/util_linux.go b/vendor/golang.org/x/crypto/ssh/terminal/util_linux.go deleted file mode 100644 index 5fadfe8a..00000000 --- a/vendor/golang.org/x/crypto/ssh/terminal/util_linux.go +++ /dev/null @@ -1,10 +0,0 @@ -// Copyright 2013 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package terminal - -import "golang.org/x/sys/unix" - -const ioctlReadTermios = unix.TCGETS -const ioctlWriteTermios = unix.TCSETS diff --git a/vendor/golang.org/x/crypto/ssh/terminal/util_plan9.go b/vendor/golang.org/x/crypto/ssh/terminal/util_plan9.go deleted file mode 100644 index 799f049f..00000000 --- a/vendor/golang.org/x/crypto/ssh/terminal/util_plan9.go +++ /dev/null @@ -1,58 +0,0 @@ -// Copyright 2016 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package terminal provides support functions for dealing with terminals, as -// commonly found on UNIX systems. -// -// Putting a terminal into raw mode is the most common requirement: -// -// oldState, err := terminal.MakeRaw(0) -// if err != nil { -// panic(err) -// } -// defer terminal.Restore(0, oldState) -package terminal - -import ( - "fmt" - "runtime" -) - -type State struct{} - -// IsTerminal returns true if the given file descriptor is a terminal. -func IsTerminal(fd int) bool { - return false -} - -// MakeRaw put the terminal connected to the given file descriptor into raw -// mode and returns the previous state of the terminal so that it can be -// restored. -func MakeRaw(fd int) (*State, error) { - return nil, fmt.Errorf("terminal: MakeRaw not implemented on %s/%s", runtime.GOOS, runtime.GOARCH) -} - -// GetState returns the current state of a terminal which may be useful to -// restore the terminal after a signal. -func GetState(fd int) (*State, error) { - return nil, fmt.Errorf("terminal: GetState not implemented on %s/%s", runtime.GOOS, runtime.GOARCH) -} - -// Restore restores the terminal connected to the given file descriptor to a -// previous state. -func Restore(fd int, state *State) error { - return fmt.Errorf("terminal: Restore not implemented on %s/%s", runtime.GOOS, runtime.GOARCH) -} - -// GetSize returns the dimensions of the given terminal. -func GetSize(fd int) (width, height int, err error) { - return 0, 0, fmt.Errorf("terminal: GetSize not implemented on %s/%s", runtime.GOOS, runtime.GOARCH) -} - -// ReadPassword reads a line of input from a terminal without local echo. This -// is commonly used for inputting passwords and other sensitive data. The slice -// returned does not include the \n. -func ReadPassword(fd int) ([]byte, error) { - return nil, fmt.Errorf("terminal: ReadPassword not implemented on %s/%s", runtime.GOOS, runtime.GOARCH) -} diff --git a/vendor/golang.org/x/crypto/ssh/terminal/util_solaris.go b/vendor/golang.org/x/crypto/ssh/terminal/util_solaris.go deleted file mode 100644 index 9e41b9f4..00000000 --- a/vendor/golang.org/x/crypto/ssh/terminal/util_solaris.go +++ /dev/null @@ -1,124 +0,0 @@ -// Copyright 2015 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build solaris - -package terminal // import "golang.org/x/crypto/ssh/terminal" - -import ( - "golang.org/x/sys/unix" - "io" - "syscall" -) - -// State contains the state of a terminal. -type State struct { - termios unix.Termios -} - -// IsTerminal returns true if the given file descriptor is a terminal. -func IsTerminal(fd int) bool { - _, err := unix.IoctlGetTermio(fd, unix.TCGETA) - return err == nil -} - -// ReadPassword reads a line of input from a terminal without local echo. This -// is commonly used for inputting passwords and other sensitive data. The slice -// returned does not include the \n. -func ReadPassword(fd int) ([]byte, error) { - // see also: http://src.illumos.org/source/xref/illumos-gate/usr/src/lib/libast/common/uwin/getpass.c - val, err := unix.IoctlGetTermios(fd, unix.TCGETS) - if err != nil { - return nil, err - } - oldState := *val - - newState := oldState - newState.Lflag &^= syscall.ECHO - newState.Lflag |= syscall.ICANON | syscall.ISIG - newState.Iflag |= syscall.ICRNL - err = unix.IoctlSetTermios(fd, unix.TCSETS, &newState) - if err != nil { - return nil, err - } - - defer unix.IoctlSetTermios(fd, unix.TCSETS, &oldState) - - var buf [16]byte - var ret []byte - for { - n, err := syscall.Read(fd, buf[:]) - if err != nil { - return nil, err - } - if n == 0 { - if len(ret) == 0 { - return nil, io.EOF - } - break - } - if buf[n-1] == '\n' { - n-- - } - ret = append(ret, buf[:n]...) - if n < len(buf) { - break - } - } - - return ret, nil -} - -// MakeRaw puts the terminal connected to the given file descriptor into raw -// mode and returns the previous state of the terminal so that it can be -// restored. -// see http://cr.illumos.org/~webrev/andy_js/1060/ -func MakeRaw(fd int) (*State, error) { - termios, err := unix.IoctlGetTermios(fd, unix.TCGETS) - if err != nil { - return nil, err - } - - oldState := State{termios: *termios} - - termios.Iflag &^= unix.IGNBRK | unix.BRKINT | unix.PARMRK | unix.ISTRIP | unix.INLCR | unix.IGNCR | unix.ICRNL | unix.IXON - termios.Oflag &^= unix.OPOST - termios.Lflag &^= unix.ECHO | unix.ECHONL | unix.ICANON | unix.ISIG | unix.IEXTEN - termios.Cflag &^= unix.CSIZE | unix.PARENB - termios.Cflag |= unix.CS8 - termios.Cc[unix.VMIN] = 1 - termios.Cc[unix.VTIME] = 0 - - if err := unix.IoctlSetTermios(fd, unix.TCSETS, termios); err != nil { - return nil, err - } - - return &oldState, nil -} - -// Restore restores the terminal connected to the given file descriptor to a -// previous state. -func Restore(fd int, oldState *State) error { - return unix.IoctlSetTermios(fd, unix.TCSETS, &oldState.termios) -} - -// GetState returns the current state of a terminal which may be useful to -// restore the terminal after a signal. -func GetState(fd int) (*State, error) { - termios, err := unix.IoctlGetTermios(fd, unix.TCGETS) - if err != nil { - return nil, err - } - - return &State{termios: *termios}, nil -} - -// GetSize returns the dimensions of the given terminal. -func GetSize(fd int) (width, height int, err error) { - ws, err := unix.IoctlGetWinsize(fd, unix.TIOCGWINSZ) - if err != nil { - return 0, 0, err - } - return int(ws.Col), int(ws.Row), nil -} diff --git a/vendor/golang.org/x/crypto/ssh/terminal/util_windows.go b/vendor/golang.org/x/crypto/ssh/terminal/util_windows.go deleted file mode 100644 index 8618955d..00000000 --- a/vendor/golang.org/x/crypto/ssh/terminal/util_windows.go +++ /dev/null @@ -1,103 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build windows - -// Package terminal provides support functions for dealing with terminals, as -// commonly found on UNIX systems. -// -// Putting a terminal into raw mode is the most common requirement: -// -// oldState, err := terminal.MakeRaw(0) -// if err != nil { -// panic(err) -// } -// defer terminal.Restore(0, oldState) -package terminal - -import ( - "os" - - "golang.org/x/sys/windows" -) - -type State struct { - mode uint32 -} - -// IsTerminal returns true if the given file descriptor is a terminal. -func IsTerminal(fd int) bool { - var st uint32 - err := windows.GetConsoleMode(windows.Handle(fd), &st) - return err == nil -} - -// MakeRaw put the terminal connected to the given file descriptor into raw -// mode and returns the previous state of the terminal so that it can be -// restored. -func MakeRaw(fd int) (*State, error) { - var st uint32 - if err := windows.GetConsoleMode(windows.Handle(fd), &st); err != nil { - return nil, err - } - raw := st &^ (windows.ENABLE_ECHO_INPUT | windows.ENABLE_PROCESSED_INPUT | windows.ENABLE_LINE_INPUT | windows.ENABLE_PROCESSED_OUTPUT) - if err := windows.SetConsoleMode(windows.Handle(fd), raw); err != nil { - return nil, err - } - return &State{st}, nil -} - -// GetState returns the current state of a terminal which may be useful to -// restore the terminal after a signal. -func GetState(fd int) (*State, error) { - var st uint32 - if err := windows.GetConsoleMode(windows.Handle(fd), &st); err != nil { - return nil, err - } - return &State{st}, nil -} - -// Restore restores the terminal connected to the given file descriptor to a -// previous state. -func Restore(fd int, state *State) error { - return windows.SetConsoleMode(windows.Handle(fd), state.mode) -} - -// GetSize returns the dimensions of the given terminal. -func GetSize(fd int) (width, height int, err error) { - var info windows.ConsoleScreenBufferInfo - if err := windows.GetConsoleScreenBufferInfo(windows.Handle(fd), &info); err != nil { - return 0, 0, err - } - return int(info.Size.X), int(info.Size.Y), nil -} - -// ReadPassword reads a line of input from a terminal without local echo. This -// is commonly used for inputting passwords and other sensitive data. The slice -// returned does not include the \n. -func ReadPassword(fd int) ([]byte, error) { - var st uint32 - if err := windows.GetConsoleMode(windows.Handle(fd), &st); err != nil { - return nil, err - } - old := st - - st &^= (windows.ENABLE_ECHO_INPUT) - st |= (windows.ENABLE_PROCESSED_INPUT | windows.ENABLE_LINE_INPUT | windows.ENABLE_PROCESSED_OUTPUT) - if err := windows.SetConsoleMode(windows.Handle(fd), st); err != nil { - return nil, err - } - - defer windows.SetConsoleMode(windows.Handle(fd), old) - - var h windows.Handle - p, _ := windows.GetCurrentProcess() - if err := windows.DuplicateHandle(p, windows.Handle(fd), p, &h, 0, false, windows.DUPLICATE_SAME_ACCESS); err != nil { - return nil, err - } - - f := os.NewFile(uintptr(h), "stdin") - defer f.Close() - return readPasswordLine(f) -} diff --git a/vendor/golang.org/x/sys/AUTHORS b/vendor/golang.org/x/sys/AUTHORS deleted file mode 100644 index 15167cd7..00000000 --- a/vendor/golang.org/x/sys/AUTHORS +++ /dev/null @@ -1,3 +0,0 @@ -# This source code refers to The Go Authors for copyright purposes. -# The master list of authors is in the main Go distribution, -# visible at http://tip.golang.org/AUTHORS. diff --git a/vendor/golang.org/x/sys/CONTRIBUTORS b/vendor/golang.org/x/sys/CONTRIBUTORS deleted file mode 100644 index 1c4577e9..00000000 --- a/vendor/golang.org/x/sys/CONTRIBUTORS +++ /dev/null @@ -1,3 +0,0 @@ -# This source code was written by the Go contributors. -# The master list of contributors is in the main Go distribution, -# visible at http://tip.golang.org/CONTRIBUTORS. diff --git a/vendor/golang.org/x/sys/LICENSE b/vendor/golang.org/x/sys/LICENSE deleted file mode 100644 index 6a66aea5..00000000 --- a/vendor/golang.org/x/sys/LICENSE +++ /dev/null @@ -1,27 +0,0 @@ -Copyright (c) 2009 The Go Authors. All rights reserved. - -Redistribution and use in source and binary forms, with or without -modification, are permitted provided that the following conditions are -met: - - * Redistributions of source code must retain the above copyright -notice, this list of conditions and the following disclaimer. - * Redistributions in binary form must reproduce the above -copyright notice, this list of conditions and the following disclaimer -in the documentation and/or other materials provided with the -distribution. - * Neither the name of Google Inc. nor the names of its -contributors may be used to endorse or promote products derived from -this software without specific prior written permission. - -THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. diff --git a/vendor/golang.org/x/sys/PATENTS b/vendor/golang.org/x/sys/PATENTS deleted file mode 100644 index 73309904..00000000 --- a/vendor/golang.org/x/sys/PATENTS +++ /dev/null @@ -1,22 +0,0 @@ -Additional IP Rights Grant (Patents) - -"This implementation" means the copyrightable works distributed by -Google as part of the Go project. - -Google hereby grants to You a perpetual, worldwide, non-exclusive, -no-charge, royalty-free, irrevocable (except as stated in this section) -patent license to make, have made, use, offer to sell, sell, import, -transfer and otherwise run, modify and propagate the contents of this -implementation of Go, where such license applies only to those patent -claims, both currently owned or controlled by Google and acquired in -the future, licensable by Google that are necessarily infringed by this -implementation of Go. This grant does not include claims that would be -infringed only as a consequence of further modification of this -implementation. If you or your agent or exclusive licensee institute or -order or agree to the institution of patent litigation against any -entity (including a cross-claim or counterclaim in a lawsuit) alleging -that this implementation of Go or any code incorporated within this -implementation of Go constitutes direct or contributory patent -infringement, or inducement of patent infringement, then any patent -rights granted to you under this License for this implementation of Go -shall terminate as of the date such litigation is filed. diff --git a/vendor/golang.org/x/sys/cpu/cpu.go b/vendor/golang.org/x/sys/cpu/cpu.go deleted file mode 100644 index 3d88f866..00000000 --- a/vendor/golang.org/x/sys/cpu/cpu.go +++ /dev/null @@ -1,38 +0,0 @@ -// Copyright 2018 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package cpu implements processor feature detection for -// various CPU architectures. -package cpu - -// CacheLinePad is used to pad structs to avoid false sharing. -type CacheLinePad struct{ _ [cacheLineSize]byte } - -// X86 contains the supported CPU features of the -// current X86/AMD64 platform. If the current platform -// is not X86/AMD64 then all feature flags are false. -// -// X86 is padded to avoid false sharing. Further the HasAVX -// and HasAVX2 are only set if the OS supports XMM and YMM -// registers in addition to the CPUID feature bit being set. -var X86 struct { - _ CacheLinePad - HasAES bool // AES hardware implementation (AES NI) - HasADX bool // Multi-precision add-carry instruction extensions - HasAVX bool // Advanced vector extension - HasAVX2 bool // Advanced vector extension 2 - HasBMI1 bool // Bit manipulation instruction set 1 - HasBMI2 bool // Bit manipulation instruction set 2 - HasERMS bool // Enhanced REP for MOVSB and STOSB - HasFMA bool // Fused-multiply-add instructions - HasOSXSAVE bool // OS supports XSAVE/XRESTOR for saving/restoring XMM registers. - HasPCLMULQDQ bool // PCLMULQDQ instruction - most often used for AES-GCM - HasPOPCNT bool // Hamming weight instruction POPCNT. - HasSSE2 bool // Streaming SIMD extension 2 (always available on amd64) - HasSSE3 bool // Streaming SIMD extension 3 - HasSSSE3 bool // Supplemental streaming SIMD extension 3 - HasSSE41 bool // Streaming SIMD extension 4 and 4.1 - HasSSE42 bool // Streaming SIMD extension 4 and 4.2 - _ CacheLinePad -} diff --git a/vendor/golang.org/x/sys/cpu/cpu_arm.go b/vendor/golang.org/x/sys/cpu/cpu_arm.go deleted file mode 100644 index d93036f7..00000000 --- a/vendor/golang.org/x/sys/cpu/cpu_arm.go +++ /dev/null @@ -1,7 +0,0 @@ -// Copyright 2018 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package cpu - -const cacheLineSize = 32 diff --git a/vendor/golang.org/x/sys/cpu/cpu_arm64.go b/vendor/golang.org/x/sys/cpu/cpu_arm64.go deleted file mode 100644 index 1d2ab290..00000000 --- a/vendor/golang.org/x/sys/cpu/cpu_arm64.go +++ /dev/null @@ -1,7 +0,0 @@ -// Copyright 2018 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package cpu - -const cacheLineSize = 64 diff --git a/vendor/golang.org/x/sys/cpu/cpu_gc_x86.go b/vendor/golang.org/x/sys/cpu/cpu_gc_x86.go deleted file mode 100644 index f7cb4697..00000000 --- a/vendor/golang.org/x/sys/cpu/cpu_gc_x86.go +++ /dev/null @@ -1,16 +0,0 @@ -// Copyright 2018 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build 386 amd64 amd64p32 -// +build !gccgo - -package cpu - -// cpuid is implemented in cpu_x86.s for gc compiler -// and in cpu_gccgo.c for gccgo. -func cpuid(eaxArg, ecxArg uint32) (eax, ebx, ecx, edx uint32) - -// xgetbv with ecx = 0 is implemented in cpu_x86.s for gc compiler -// and in cpu_gccgo.c for gccgo. -func xgetbv() (eax, edx uint32) diff --git a/vendor/golang.org/x/sys/cpu/cpu_gccgo.c b/vendor/golang.org/x/sys/cpu/cpu_gccgo.c deleted file mode 100644 index e363c7d1..00000000 --- a/vendor/golang.org/x/sys/cpu/cpu_gccgo.c +++ /dev/null @@ -1,43 +0,0 @@ -// Copyright 2018 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build 386 amd64 amd64p32 -// +build gccgo - -#include -#include - -// Need to wrap __get_cpuid_count because it's declared as static. -int -gccgoGetCpuidCount(uint32_t leaf, uint32_t subleaf, - uint32_t *eax, uint32_t *ebx, - uint32_t *ecx, uint32_t *edx) -{ - return __get_cpuid_count(leaf, subleaf, eax, ebx, ecx, edx); -} - -// xgetbv reads the contents of an XCR (Extended Control Register) -// specified in the ECX register into registers EDX:EAX. -// Currently, the only supported value for XCR is 0. -// -// TODO: Replace with a better alternative: -// -// #include -// -// #pragma GCC target("xsave") -// -// void gccgoXgetbv(uint32_t *eax, uint32_t *edx) { -// unsigned long long x = _xgetbv(0); -// *eax = x & 0xffffffff; -// *edx = (x >> 32) & 0xffffffff; -// } -// -// Note that _xgetbv is defined starting with GCC 8. -void -gccgoXgetbv(uint32_t *eax, uint32_t *edx) -{ - __asm(" xorl %%ecx, %%ecx\n" - " xgetbv" - : "=a"(*eax), "=d"(*edx)); -} diff --git a/vendor/golang.org/x/sys/cpu/cpu_gccgo.go b/vendor/golang.org/x/sys/cpu/cpu_gccgo.go deleted file mode 100644 index ba49b91b..00000000 --- a/vendor/golang.org/x/sys/cpu/cpu_gccgo.go +++ /dev/null @@ -1,26 +0,0 @@ -// Copyright 2018 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build 386 amd64 amd64p32 -// +build gccgo - -package cpu - -//extern gccgoGetCpuidCount -func gccgoGetCpuidCount(eaxArg, ecxArg uint32, eax, ebx, ecx, edx *uint32) - -func cpuid(eaxArg, ecxArg uint32) (eax, ebx, ecx, edx uint32) { - var a, b, c, d uint32 - gccgoGetCpuidCount(eaxArg, ecxArg, &a, &b, &c, &d) - return a, b, c, d -} - -//extern gccgoXgetbv -func gccgoXgetbv(eax, edx *uint32) - -func xgetbv() (eax, edx uint32) { - var a, d uint32 - gccgoXgetbv(&a, &d) - return a, d -} diff --git a/vendor/golang.org/x/sys/cpu/cpu_mips64x.go b/vendor/golang.org/x/sys/cpu/cpu_mips64x.go deleted file mode 100644 index 6165f121..00000000 --- a/vendor/golang.org/x/sys/cpu/cpu_mips64x.go +++ /dev/null @@ -1,9 +0,0 @@ -// Copyright 2018 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build mips64 mips64le - -package cpu - -const cacheLineSize = 32 diff --git a/vendor/golang.org/x/sys/cpu/cpu_mipsx.go b/vendor/golang.org/x/sys/cpu/cpu_mipsx.go deleted file mode 100644 index 1269eee8..00000000 --- a/vendor/golang.org/x/sys/cpu/cpu_mipsx.go +++ /dev/null @@ -1,9 +0,0 @@ -// Copyright 2018 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build mips mipsle - -package cpu - -const cacheLineSize = 32 diff --git a/vendor/golang.org/x/sys/cpu/cpu_ppc64x.go b/vendor/golang.org/x/sys/cpu/cpu_ppc64x.go deleted file mode 100644 index d10759a5..00000000 --- a/vendor/golang.org/x/sys/cpu/cpu_ppc64x.go +++ /dev/null @@ -1,9 +0,0 @@ -// Copyright 2018 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build ppc64 ppc64le - -package cpu - -const cacheLineSize = 128 diff --git a/vendor/golang.org/x/sys/cpu/cpu_s390x.go b/vendor/golang.org/x/sys/cpu/cpu_s390x.go deleted file mode 100644 index 684c4f00..00000000 --- a/vendor/golang.org/x/sys/cpu/cpu_s390x.go +++ /dev/null @@ -1,7 +0,0 @@ -// Copyright 2018 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package cpu - -const cacheLineSize = 256 diff --git a/vendor/golang.org/x/sys/cpu/cpu_x86.go b/vendor/golang.org/x/sys/cpu/cpu_x86.go deleted file mode 100644 index 71e288b0..00000000 --- a/vendor/golang.org/x/sys/cpu/cpu_x86.go +++ /dev/null @@ -1,55 +0,0 @@ -// Copyright 2018 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build 386 amd64 amd64p32 - -package cpu - -const cacheLineSize = 64 - -func init() { - maxID, _, _, _ := cpuid(0, 0) - - if maxID < 1 { - return - } - - _, _, ecx1, edx1 := cpuid(1, 0) - X86.HasSSE2 = isSet(26, edx1) - - X86.HasSSE3 = isSet(0, ecx1) - X86.HasPCLMULQDQ = isSet(1, ecx1) - X86.HasSSSE3 = isSet(9, ecx1) - X86.HasFMA = isSet(12, ecx1) - X86.HasSSE41 = isSet(19, ecx1) - X86.HasSSE42 = isSet(20, ecx1) - X86.HasPOPCNT = isSet(23, ecx1) - X86.HasAES = isSet(25, ecx1) - X86.HasOSXSAVE = isSet(27, ecx1) - - osSupportsAVX := false - // For XGETBV, OSXSAVE bit is required and sufficient. - if X86.HasOSXSAVE { - eax, _ := xgetbv() - // Check if XMM and YMM registers have OS support. - osSupportsAVX = isSet(1, eax) && isSet(2, eax) - } - - X86.HasAVX = isSet(28, ecx1) && osSupportsAVX - - if maxID < 7 { - return - } - - _, ebx7, _, _ := cpuid(7, 0) - X86.HasBMI1 = isSet(3, ebx7) - X86.HasAVX2 = isSet(5, ebx7) && osSupportsAVX - X86.HasBMI2 = isSet(8, ebx7) - X86.HasERMS = isSet(9, ebx7) - X86.HasADX = isSet(19, ebx7) -} - -func isSet(bitpos uint, value uint32) bool { - return value&(1<