Files
fun/gen_ts.go
T
chiyi 4bf991b3e7 fun: HTTP RPC framework with DI, guards, streams and codegen
- Service binding via reflection with 4 method signatures
- Dependency injection (Wired/auto tags) and guards
- Streamable HTTP (NDJSON) streaming responses
- Go/TypeScript client code generation (self-contained, with interceptors)
- Enum support, structured Result, logging
- 16 regression tests covering all fixed bugs
2026-08-16 23:51:58 +08:00

251 lines
7.7 KiB
Go

package fun
import (
"reflect"
"strings"
)
type GenTs struct {
template templateTs
}
func (ctx GenTs) typeToTemplateType(t reflect.Type) string {
text := ""
if t.Kind() == reflect.Ptr {
text += " | null"
t = t.Elem()
}
switch t.Kind() {
case reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64,
reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64:
if t.Kind() == reflect.Uint8 && (t.Implements(displayEnumType) || t.Implements(enumType)) {
text = t.Name() + text
} else {
text = "number" + text
}
case reflect.Bool:
text = "boolean" + text
case reflect.String, reflect.Struct:
text = t.Name() + text
default:
text = ctx.typeToTemplateType(t.Elem()) + "[]" + text
}
return text
}
func (ctx GenTs) genService(svc *genSvc, serviceContext *genServiceType) {
var nestedImports []*genImportType
for _, gm := range svc.methods {
var returnValueText string
var dtoText string
var argsText string
var genericTypeText string
// () error:无数据返回,客户端类型为 void
if gm.sig.NumOut() == 1 && gm.sig.Out(0) == errorType {
genericTypeText = "void"
returnValueText = "result<void>"
if gm.dtoType != nil {
v := firstLetterToLower(ctx.typeToTemplateType(gm.dtoType))
if !strings.Contains(v, "[]") && strings.Contains(v, "[") {
dtoText += "dto:" + getGenericTypeName(v) + parseGenericTypeParams(v)
} else {
dtoText += "dto:" + v
}
argsText += ",dto"
nestedImports = append(nestedImports, ctx.genStruct(gm.dtoType))
}
serviceContext.GenMethodTypeList = append(serviceContext.GenMethodTypeList, &genMethodType{
MethodName: firstLetterToLower(gm.name),
ReturnValueText: returnValueText,
DtoText: dtoText,
ArgsText: argsText,
GenericTypeText: genericTypeText,
})
continue
}
returnType := gm.sig.Out(0)
if gm.isStream {
serviceContext.IsIncludeStream = true
if returnType == streamType {
genericTypeText = "any"
returnValueText = "void"
} else {
t := firstLetterToLower(ctx.typeToTemplateType(returnType))
if !strings.Contains(t, "[]") && strings.Contains(t, "[") {
genericTypeText = getGenericTypeName(t) + parseGenericTypeParams(t)
} else {
genericTypeText = t
}
returnValueText = "void"
nestedImports = ctx.genReturnTypes(returnType, nestedImports)
}
} else {
t := firstLetterToLower(ctx.typeToTemplateType(returnType))
if !strings.Contains(t, "[]") && strings.Contains(t, "[") {
returnValueText = getGenericTypeName(t) + parseGenericTypeParams(t)
} else {
returnValueText = t
}
genericTypeText = returnValueText
nestedImports = ctx.genReturnTypes(returnType, nestedImports)
returnValueText = "result<" + returnValueText + ">"
}
if gm.dtoType != nil {
v := firstLetterToLower(ctx.typeToTemplateType(gm.dtoType))
if !strings.Contains(v, "[]") && strings.Contains(v, "[") {
dtoText += "dto:" + getGenericTypeName(v) + parseGenericTypeParams(v)
} else {
dtoText += "dto:" + v
}
argsText += ",dto"
nestedImports = append(nestedImports, ctx.genStruct(gm.dtoType))
}
serviceContext.GenMethodTypeList = append(serviceContext.GenMethodTypeList, &genMethodType{
MethodName: firstLetterToLower(gm.name),
ReturnValueText: returnValueText,
DtoText: dtoText,
ArgsText: argsText,
GenericTypeText: firstLetterToLower(genericTypeText),
IsStream: gm.isStream,
})
}
serviceContext.GenImport = deduplicateServiceImports(nestedImports)
genCode(
ctx.template.genServiceTemplate(),
firstLetterToLower(svc.name),
serviceContext,
ctx.getName(),
)
}
// genReturnTypes 递归生成返回类型涉及的 struct/enum 导入
func (ctx GenTs) genReturnTypes(returnType reflect.Type, nestedImports []*genImportType) []*genImportType {
if returnType.Kind() == reflect.Ptr {
returnType = returnType.Elem()
}
if returnType.Kind() == reflect.Struct {
nestedImports = append(nestedImports, ctx.genStruct(returnType))
}
if returnType.Kind() == reflect.Slice {
fieldType := returnType.Elem()
if fieldType.Kind() == reflect.Ptr {
fieldType = fieldType.Elem()
}
if fieldType.Kind() == reflect.Struct {
nestedImports = append(nestedImports, ctx.genStruct(fieldType))
}
}
if returnType.Kind() == reflect.Uint8 && (returnType.Implements(displayEnumType) || returnType.Implements(enumType)) {
nestedImports = append(nestedImports, ctx.getEnum(returnType))
}
return nestedImports
}
func (ctx GenTs) genDefaultService() {
f := GetFun()
genContext := genType{GenServiceList: []*genServiceType{}}
for svcName, methods := range f.serviceGroups() {
serviceContext := &genServiceType{
ServiceName: firstLetterToLower(svcName),
GenMethodTypeList: []*genMethodType{},
}
genContext.GenServiceList = append(genContext.GenServiceList, serviceContext)
ctx.genService(&genSvc{name: svcName, methods: methods}, serviceContext)
}
genCode(ctx.template.genClientTemplate(), "client", nil, ctx.getName())
genCode(ctx.template.genDefaultServiceTemplate(), "fun", genContext, ctx.getName())
}
func (ctx GenTs) genStruct(t reflect.Type) *genImportType {
var structTemplate genClassType
if !strings.Contains(t.String(), "[]") && strings.Contains(t.String(), "[") {
structTemplate = genClassType{
Name: firstLetterToLower(getGenericTypeName(t.Name())) + parseGenericTypeParams(t.Name()),
}
} else {
structTemplate = genClassType{
Name: firstLetterToLower(t.Name()),
}
}
var nestedImports []*genImportType
for i := 0; i < t.NumField(); i++ {
field := t.Field(i)
fieldType := field.Type
jsType := ctx.typeToTemplateType(fieldType)
name := field.Name
if fieldType.Kind() == reflect.Ptr {
fieldType = fieldType.Elem()
name += "?"
}
if !strings.Contains(jsType, "[]") && strings.Contains(jsType, "[") {
structTemplate.GenClassFieldType = append(structTemplate.GenClassFieldType, &genClassFieldType{
Name: firstLetterToLower(name),
Type: firstLetterToLower(getGenericTypeName(jsType)) + parseGenericTypeParams(jsType),
})
} else {
structTemplate.GenClassFieldType = append(structTemplate.GenClassFieldType, &genClassFieldType{
Name: firstLetterToLower(name),
Type: firstLetterToLower(jsType),
})
}
if fieldType.Kind() == reflect.Struct {
nestedImports = append(nestedImports, ctx.genStruct(fieldType))
}
if fieldType.Kind() == reflect.Slice && fieldType.Elem().Kind() == reflect.Struct {
nestedImports = append(nestedImports, ctx.genStruct(fieldType.Elem()))
}
if fieldType.Kind() == reflect.Uint8 && (fieldType.Implements(displayEnumType) || fieldType.Implements(enumType)) {
nestedImports = append(nestedImports, ctx.getEnum(fieldType))
}
}
structTemplate.GenImport = deduplicateServiceImports(nestedImports)
genCode(
ctx.template.genStructTemplate(),
structTemplate.Name,
structTemplate,
ctx.getName(),
)
if !strings.Contains(t.String(), "[]") && strings.Contains(t.String(), "[") {
return &genImportType{Name: structTemplate.Name}
}
return &genImportType{Name: firstLetterToLower(t.Name())}
}
func (ctx GenTs) getEnum(t reflect.Type) *genImportType {
var enumTemplate genEnumType
statusValue := reflect.New(t).Elem()
if t.Implements(displayEnumType) {
enumValue := statusValue.Interface().(displayEnum)
enumTemplate.Names = enumValue.Names()
enumTemplate.DisplayNames = enumValue.DisplayNames()
} else {
enumValue := statusValue.Interface().(enum)
enumTemplate.Names = enumValue.Names()
}
enumTemplate.Name = firstLetterToLower(t.Name())
genCode(
ctx.template.genEnumTemplate(),
firstLetterToLower(t.Name()),
enumTemplate,
ctx.getName(),
)
return &genImportType{Name: firstLetterToLower(t.Name())}
}
func (ctx GenTs) getName() string {
return "ts"
}