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package main
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import (
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"fmt"
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"strings"
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"google.golang.org/genproto/googleapis/api/annotations"
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"google.golang.org/protobuf/compiler/protogen"
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"google.golang.org/protobuf/proto"
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"google.golang.org/protobuf/types/descriptorpb"
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)
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const (
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contextPackage = protogen.GoImportPath("context")
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transportHTTPPackage = protogen.GoImportPath("github.com/go-kratos/kratos/v2/transport/http")
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bindingPackage = protogen.GoImportPath("github.com/go-kratos/kratos/v2/transport/http/binding")
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)
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var methodSets = make(map[string]int)
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// generateFile generates a _http.pb.go file containing kratos errors definitions.
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func generateFile(gen *protogen.Plugin, file *protogen.File, omitempty bool) *protogen.GeneratedFile {
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if len(file.Services) == 0 || (omitempty && !hasHTTPRule(file.Services)) {
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return nil
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}
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filename := file.GeneratedFilenamePrefix + "_http.pb.go"
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g := gen.NewGeneratedFile(filename, file.GoImportPath)
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g.P("// Code generated by protoc-gen-go-http. DO NOT EDIT.")
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g.P("// versions:")
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g.P(fmt.Sprintf("// protoc-gen-go-http %s", version))
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g.P()
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g.P("package ", file.GoPackageName)
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g.P()
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generateFileContent(gen, file, g, omitempty)
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return g
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}
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// generateFileContent generates the kratos errors definitions, excluding the package statement.
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func generateFileContent(gen *protogen.Plugin, file *protogen.File, g *protogen.GeneratedFile, omitempty bool) {
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if len(file.Services) == 0 {
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return
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}
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g.P("// This is a compile-time assertion to ensure that this generated file")
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g.P("// is compatible with the kratos package it is being compiled against.")
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g.P("var _ = new(", contextPackage.Ident("Context"), ")")
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g.P("var _ = ", bindingPackage.Ident("EncodeURL"))
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g.P("const _ = ", transportHTTPPackage.Ident("SupportPackageIsVersion1"))
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g.P()
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for _, service := range file.Services {
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genService(gen, file, g, service, omitempty)
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}
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}
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func genService(gen *protogen.Plugin, file *protogen.File, g *protogen.GeneratedFile, service *protogen.Service, omitempty bool) {
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if service.Desc.Options().(*descriptorpb.ServiceOptions).GetDeprecated() {
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g.P("//")
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g.P(deprecationComment)
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}
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// HTTP Server.
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sd := &serviceDesc{
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ServiceType: service.GoName,
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ServiceName: string(service.Desc.FullName()),
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Metadata: file.Desc.Path(),
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}
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for _, method := range service.Methods {
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if method.Desc.IsStreamingClient() || method.Desc.IsStreamingServer() {
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continue
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}
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rule, ok := proto.GetExtension(method.Desc.Options(), annotations.E_Http).(*annotations.HttpRule)
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if rule != nil && ok {
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for _, bind := range rule.AdditionalBindings {
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sd.Methods = append(sd.Methods, buildHTTPRule(g, method, bind))
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}
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sd.Methods = append(sd.Methods, buildHTTPRule(g, method, rule))
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} else if !omitempty {
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path := fmt.Sprintf("/%s/%s", service.Desc.FullName(), method.Desc.Name())
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sd.Methods = append(sd.Methods, buildMethodDesc(g, method, "POST", path))
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}
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}
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if len(sd.Methods) != 0 {
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g.P(sd.execute())
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}
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}
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func hasHTTPRule(services []*protogen.Service) bool {
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for _, service := range services {
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for _, method := range service.Methods {
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if method.Desc.IsStreamingClient() || method.Desc.IsStreamingServer() {
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continue
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}
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rule, ok := proto.GetExtension(method.Desc.Options(), annotations.E_Http).(*annotations.HttpRule)
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if rule != nil && ok {
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return true
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}
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}
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}
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return false
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}
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func buildHTTPRule(g *protogen.GeneratedFile, m *protogen.Method, rule *annotations.HttpRule) *methodDesc {
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var (
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path string
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method string
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body string
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responseBody string
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isQuery bool
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)
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switch pattern := rule.Pattern.(type) {
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case *annotations.HttpRule_Get:
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path = pattern.Get
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method = "GET"
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isQuery = true
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case *annotations.HttpRule_Put:
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path = pattern.Put
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method = "PUT"
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case *annotations.HttpRule_Post:
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path = pattern.Post
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method = "POST"
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case *annotations.HttpRule_Delete:
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path = pattern.Delete
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method = "DELETE"
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case *annotations.HttpRule_Patch:
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path = pattern.Patch
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method = "PATCH"
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case *annotations.HttpRule_Custom:
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path = pattern.Custom.Path
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method = pattern.Custom.Kind
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}
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body = rule.Body
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responseBody = rule.ResponseBody
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md := buildMethodDesc(g, m, method, path)
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if body == "*" {
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md.HasBody = true
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md.Body = ""
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} else if body != "" {
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md.HasBody = true
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md.Body = "." + camelCaseVars(body)
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} else {
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md.HasBody = false
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}
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if responseBody == "*" {
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md.ResponseBody = ""
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} else if responseBody != "" {
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md.ResponseBody = "." + camelCaseVars(responseBody)
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}
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md.IsQuery = isQuery
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return md
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}
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func buildMethodDesc(g *protogen.GeneratedFile, m *protogen.Method, method, path string) *methodDesc {
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defer func() { methodSets[m.GoName]++ }()
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return &methodDesc{
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Name: m.GoName,
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Num: methodSets[m.GoName],
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Request: g.QualifiedGoIdent(m.Input.GoIdent),
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Reply: g.QualifiedGoIdent(m.Output.GoIdent),
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Path: path,
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Method: method,
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Vars: buildPathVars(m, path),
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}
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}
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func buildPathVars(method *protogen.Method, path string) (res []string) {
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for _, v := range strings.Split(path, "/") {
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if strings.HasPrefix(v, "{") && strings.HasSuffix(v, "}") {
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name := strings.TrimRight(strings.TrimLeft(v, "{"), "}")
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res = append(res, name)
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}
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}
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return
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}
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func camelCaseVars(s string) string {
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var (
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vars []string
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subs = strings.Split(s, ".")
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)
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for _, sub := range subs {
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vars = append(vars, camelCase(sub))
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}
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return strings.Join(vars, ".")
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}
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// camelCase returns the CamelCased name.
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// If there is an interior underscore followed by a lower case letter,
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// drop the underscore and convert the letter to upper case.
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// There is a remote possibility of this rewrite causing a name collision,
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// but it's so remote we're prepared to pretend it's nonexistent - since the
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// C++ generator lowercases names, it's extremely unlikely to have two fields
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// with different capitalizations.
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// In short, _my_field_name_2 becomes XMyFieldName_2.
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func camelCase(s string) string {
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if s == "" {
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return ""
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}
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t := make([]byte, 0, 32)
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i := 0
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if s[0] == '_' {
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// Need a capital letter; drop the '_'.
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t = append(t, 'X')
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i++
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}
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// Invariant: if the next letter is lower case, it must be converted
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// to upper case.
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// That is, we process a word at a time, where words are marked by _ or
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// upper case letter. Digits are treated as words.
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for ; i < len(s); i++ {
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c := s[i]
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if c == '_' && i+1 < len(s) && isASCIILower(s[i+1]) {
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continue // Skip the underscore in s.
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}
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if isASCIIDigit(c) {
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t = append(t, c)
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continue
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}
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// Assume we have a letter now - if not, it's a bogus identifier.
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// The next word is a sequence of characters that must start upper case.
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if isASCIILower(c) {
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c ^= ' ' // Make it a capital letter.
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}
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t = append(t, c) // Guaranteed not lower case.
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// Accept lower case sequence that follows.
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for i+1 < len(s) && isASCIILower(s[i+1]) {
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i++
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t = append(t, s[i])
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}
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}
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return string(t)
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}
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// Is c an ASCII lower-case letter?
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func isASCIILower(c byte) bool {
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return 'a' <= c && c <= 'z'
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}
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// Is c an ASCII digit?
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func isASCIIDigit(c byte) bool {
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return '0' <= c && c <= '9'
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}
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const deprecationComment = "// Deprecated: Do not use."
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