func (p *plugin) hasLoop(field *descriptor.FieldDescriptorProto, visited []*generator.Descriptor, excludes []*generator.Descriptor) *generator.Descriptor { if field.IsMessage() || p.IsGroup(field) { fieldMessage := p.ObjectNamed(field.GetTypeName()).(*generator.Descriptor) fieldTypeName := generator.CamelCaseSlice(fieldMessage.TypeName()) for _, message := range visited { messageTypeName := generator.CamelCaseSlice(message.TypeName()) if fieldTypeName == messageTypeName { for _, e := range excludes { if fieldTypeName == generator.CamelCaseSlice(e.TypeName()) { return nil } } return fieldMessage } } for _, f := range fieldMessage.Field { visited = append(visited, fieldMessage) loopTo := p.hasLoop(f, visited, excludes) if loopTo != nil { return loopTo } } } return nil }
func new(rootPackage string, rootMessage string, descSet *descriptor.FileDescriptorSet, path string) (*fdesc, error) { fieldpaths := strings.Split(path, ".") keys := make([]uint64, len(fieldpaths)) fields := make([]*descriptor.FieldDescriptorProto, len(fieldpaths)) curPackage := rootPackage curMessage := rootMessage last := len(fieldpaths) - 1 var fieldDesc *descriptor.FieldDescriptorProto for i, f := range fieldpaths { fieldName := f fieldDesc = descSet.GetField(curPackage, curMessage, fieldName) if fieldDesc == nil { curPackage, fieldDesc = descSet.FindExtension(curPackage, curMessage, fieldName) if fieldDesc == nil { return nil, &errChild{fieldName: fieldName, pkg: curPackage, msg: curMessage} } typeNames := strings.Split(fieldDesc.GetTypeName(), ".") curMessage = fieldDesc.GetTypeName() if len(typeNames) > 1 { curPackage = typeNames[1] curMessage = typeNames[2] } fieldKey := fieldDesc.GetKeyUint64() keys[i] = fieldKey fields[i] = fieldDesc } else { fieldKey := fieldDesc.GetKeyUint64() if fieldDesc.IsMessage() { curPackage, curMessage = descSet.FindMessage(curPackage, curMessage, fieldName) } else if i != last { return nil, &errMessage{fieldName} } keys[i] = fieldKey fields[i] = fieldDesc } } fd := &fdesc{curPackage, curMessage, fields, fieldDesc, keys, 0} if fieldDesc.GetType() == descriptor.FieldDescriptorProto_TYPE_ENUM { typeNames := strings.Split(fieldDesc.GetTypeName(), ".") enumMessage := fieldDesc.GetTypeName() enumPackage := curPackage if len(typeNames) > 1 { enumPackage = typeNames[1] enumMessage = typeNames[2] } enum := descSet.GetEnum(enumPackage, enumMessage) if enum == nil { return nil, &errChild{fieldName: fieldDesc.GetName(), pkg: enumPackage, msg: enumMessage} } for _, v := range enum.GetValue() { if v.GetNumber() < fd.firstEnumValue { fd.firstEnumValue = v.GetNumber() } } } return fd, nil }
func GetMap(file *descriptor.FileDescriptorProto, field *descriptor.FieldDescriptorProto) *descriptor.DescriptorProto { if !field.IsMessage() { return nil } typeName := field.GetTypeName() if strings.Contains(typeName, "Map") && !strings.HasSuffix(typeName, "Entry") { typeName += "." + CamelCase(field.GetName()) + "Entry" } ts := strings.Split(typeName, ".") if len(ts) == 1 { return file.GetMessage(typeName) } newTypeName := strings.Join(ts[2:], ".") return file.GetMessage(newTypeName) }
func (p *plugin) GenerateField(file *generator.FileDescriptor, message *generator.Descriptor, field *descriptor.FieldDescriptorProto) { proto3 := gogoproto.IsProto3(file.FileDescriptorProto) goTyp, _ := p.GoType(message, field) fieldname := p.GetFieldName(message, field) goTypName := generator.GoTypeToName(goTyp) if generator.IsMap(file.FileDescriptorProto, field) { mapmsg := generator.GetMap(file.FileDescriptorProto, field) mapkey, mapvalue := mapmsg.GetMapFields() keygoTyp, _ := p.GoType(nil, mapkey) valuegoTyp, _ := p.GoType(nil, mapvalue) keytypName := generator.GoTypeToName(keygoTyp) valuetypName := generator.GoTypeToName(valuegoTyp) mapvaluegoType := valuegoTyp if !mapvalue.IsMessage() { mapvaluegoType = strings.Replace(mapvaluegoType, "*", "", 1) } p.P(p.varGen.Next(), ` := r.Intn(10)`) p.P(`this.`, fieldname, ` = make(map[`, strings.Replace(keygoTyp, "*", "", 1), `]`, mapvaluegoType, `)`) p.P(`for i := 0; i < `, p.varGen.Current(), `; i++ {`) p.In() keyval := "" if mapkey.IsString() { keyval = fmt.Sprintf("randString%v(r)", p.localName) } else { keyval = value(keytypName, mapkey.GetType()) } if mapvalue.IsMessage() || p.IsGroup(field) { s := `this.` + fieldname + `[` + keyval + `]` + ` = ` goTypName := generator.GoTypeToName(valuegoTyp) funcCall := getFuncCall(goTypName) s += funcCall p.P(s) } else if mapvalue.IsEnum() { s := `this.` + fieldname + `[` + keyval + `]` + ` = ` + p.getEnumVal(mapvalue, valuegoTyp) p.P(s) } else if mapvalue.IsBytes() { count := p.varGen.Next() p.P(count, ` := r.Intn(100)`) p.P(p.varGen.Next(), ` := `, keyval) p.P(`this.`, fieldname, `[`, p.varGen.Current(), `] = make(`, valuegoTyp, `, `, count, `)`) p.P(`for i := 0; i < `, count, `; i++ {`) p.In() p.P(`this.`, fieldname, `[`, p.varGen.Current(), `][i] = byte(r.Intn(256))`) p.Out() p.P(`}`) } else if mapvalue.IsString() { s := `this.` + fieldname + `[` + keyval + `]` + ` = ` + fmt.Sprintf("randString%v(r)", p.localName) p.P(s) } else { p.P(p.varGen.Next(), ` := `, keyval) p.P(`this.`, fieldname, `[`, p.varGen.Current(), `] = `, value(valuetypName, mapvalue.GetType())) if negative(mapvalue.GetType()) { p.P(`if r.Intn(2) == 0 {`) p.In() p.P(`this.`, fieldname, `[`, p.varGen.Current(), `] *= -1`) p.Out() p.P(`}`) } } p.Out() p.P(`}`) } else if field.IsMessage() || p.IsGroup(field) { funcCall := getFuncCall(goTypName) if field.IsRepeated() { p.P(p.varGen.Next(), ` := r.Intn(10)`) p.P(`this.`, fieldname, ` = make(`, goTyp, `, `, p.varGen.Current(), `)`) p.P(`for i := 0; i < `, p.varGen.Current(), `; i++ {`) p.In() if gogoproto.IsNullable(field) { p.P(`this.`, fieldname, `[i] = `, funcCall) } else { p.P(p.varGen.Next(), `:= `, funcCall) p.P(`this.`, fieldname, `[i] = *`, p.varGen.Current()) } p.Out() p.P(`}`) } else { if gogoproto.IsNullable(field) { p.P(`this.`, fieldname, ` = `, funcCall) } else { p.P(p.varGen.Next(), `:= `, funcCall) p.P(`this.`, fieldname, ` = *`, p.varGen.Current()) } } } else { if field.IsEnum() { val := p.getEnumVal(field, goTyp) if field.IsRepeated() { p.P(p.varGen.Next(), ` := r.Intn(10)`) p.P(`this.`, fieldname, ` = make(`, goTyp, `, `, p.varGen.Current(), `)`) p.P(`for i := 0; i < `, p.varGen.Current(), `; i++ {`) p.In() p.P(`this.`, fieldname, `[i] = `, val) p.Out() p.P(`}`) } else if !gogoproto.IsNullable(field) || proto3 { p.P(`this.`, fieldname, ` = `, val) } else { p.P(p.varGen.Next(), ` := `, val) p.P(`this.`, fieldname, ` = &`, p.varGen.Current()) } } else if gogoproto.IsCustomType(field) { funcCall := getCustomFuncCall(goTypName) if field.IsRepeated() { p.P(p.varGen.Next(), ` := r.Intn(10)`) p.P(`this.`, fieldname, ` = make(`, goTyp, `, `, p.varGen.Current(), `)`) p.P(`for i := 0; i < `, p.varGen.Current(), `; i++ {`) p.In() p.P(p.varGen.Next(), `:= `, funcCall) p.P(`this.`, fieldname, `[i] = *`, p.varGen.Current()) p.Out() p.P(`}`) } else if gogoproto.IsNullable(field) { p.P(`this.`, fieldname, ` = `, funcCall) } else { p.P(p.varGen.Next(), `:= `, funcCall) p.P(`this.`, fieldname, ` = *`, p.varGen.Current()) } } else if field.IsBytes() { if field.IsRepeated() { p.P(p.varGen.Next(), ` := r.Intn(100)`) p.P(`this.`, fieldname, ` = make(`, goTyp, `, `, p.varGen.Current(), `)`) p.P(`for i := 0; i < `, p.varGen.Current(), `; i++ {`) p.In() p.P(p.varGen.Next(), ` := r.Intn(100)`) p.P(`this.`, fieldname, `[i] = make([]byte,`, p.varGen.Current(), `)`) p.P(`for j := 0; j < `, p.varGen.Current(), `; j++ {`) p.In() p.P(`this.`, fieldname, `[i][j] = byte(r.Intn(256))`) p.Out() p.P(`}`) p.Out() p.P(`}`) } else { p.P(p.varGen.Next(), ` := r.Intn(100)`) p.P(`this.`, fieldname, ` = make(`, goTyp, `, `, p.varGen.Current(), `)`) p.P(`for i := 0; i < `, p.varGen.Current(), `; i++ {`) p.In() p.P(`this.`, fieldname, `[i] = byte(r.Intn(256))`) p.Out() p.P(`}`) } } else if field.IsString() { val := fmt.Sprintf("randString%v(r)", p.localName) if field.IsRepeated() { p.P(p.varGen.Next(), ` := r.Intn(10)`) p.P(`this.`, fieldname, ` = make(`, goTyp, `, `, p.varGen.Current(), `)`) p.P(`for i := 0; i < `, p.varGen.Current(), `; i++ {`) p.In() p.P(`this.`, fieldname, `[i] = `, val) p.Out() p.P(`}`) } else if !gogoproto.IsNullable(field) || proto3 { p.P(`this.`, fieldname, ` = `, val) } else { p.P(p.varGen.Next(), `:= `, val) p.P(`this.`, fieldname, ` = &`, p.varGen.Current()) } } else { typName := generator.GoTypeToName(goTyp) if field.IsRepeated() { p.P(p.varGen.Next(), ` := r.Intn(100)`) p.P(`this.`, fieldname, ` = make(`, goTyp, `, `, p.varGen.Current(), `)`) p.P(`for i := 0; i < `, p.varGen.Current(), `; i++ {`) p.In() p.P(`this.`, fieldname, `[i] = `, value(typName, field.GetType())) if negative(field.GetType()) { p.P(`if r.Intn(2) == 0 {`) p.In() p.P(`this.`, fieldname, `[i] *= -1`) p.Out() p.P(`}`) } p.Out() p.P(`}`) } else if !gogoproto.IsNullable(field) || proto3 { p.P(`this.`, fieldname, ` = `, value(typName, field.GetType())) if negative(field.GetType()) { p.P(`if r.Intn(2) == 0 {`) p.In() p.P(`this.`, fieldname, ` *= -1`) p.Out() p.P(`}`) } } else { p.P(p.varGen.Next(), ` := `, value(typName, field.GetType())) if negative(field.GetType()) { p.P(`if r.Intn(2) == 0 {`) p.In() p.P(p.varGen.Current(), ` *= -1`) p.Out() p.P(`}`) } p.P(`this.`, fieldname, ` = &`, p.varGen.Current()) } } } }
func TurnOffNullableForNativeTypesOnly(field *descriptor.FieldDescriptorProto) { if field.IsRepeated() || field.IsMessage() { return } SetBoolFieldOption(gogoproto.E_Nullable, false)(field) }
func TurnOffNullable(field *descriptor.FieldDescriptorProto) { if field.IsRepeated() && !field.IsMessage() { return } SetBoolFieldOption(gogoproto.E_Nullable, false)(field) }